RAS Shines, SHR Complements
Santana Minerals Ltd
Level 1, 371 Queen St
Brisbane, QLD 4000
ABN 37 161 946 989
GPO Box 1305
Brisbane, QLD4000
T: +61 7 3221 7501
30 July 2024
RAS Shines, SHR Complements
Santana Minerals Ltd (Santana, ASX/NZX:SMI or the Company) is pleased to announce drill results from
its ongoing resource definition programs at the Bendigo-Ophir gold project ahead of its Pre-feasibility
Study (PFS).
Four additional assays have been received from a drill program aimed at infilling and validating sections
of the Rise and Shine (RAS) deposit. The RAS deposit features thick, high-grade intercepts that define
a higher-grade core along the structure's axis. The following outstanding drill results further enhance
the Company’s confidence in the uniformity of the core and its concentrated metal distribution:
▪ MDD313 30.7m @ 7.9g/t Au from 170.3m (true width 27.0m)
▪ MDD329 34.5m @ 5.4g/t Au from 173.5m (true width 32.7m)
▪ MDD332 35.4m @ 8.3g/t Au from 161.6m (true width 32.1m)
▪ MDD334 26.6m @ 3.1g/t Au from 154.4m (true width 24.0m), and
24.0m @ 3.2g/t Au from 186.0m (true width 21.7m)
Figure 1 Plan view of RAS showing locations of four new, previous and pending infill drillhole assays.
Announcement
ASX:SMI
NZX:SMI
2
Figure 2. RAS long section capturing MDD329, MDD332 and MDD313, with Type-1 Quartz Vein Halo (dashed red line).
Figure 3. RAS cross section looking north at N5017160 with Type-1 Quartz Vein Halo (dashed red line).
3
Figure 4. RAS cross section looking north at N5017210 with Type-1 Quartz Vein Halo (dashed red line).
Figure 5. RAS cross section looking north at N5017330 with Type-1 Quartz Vein Halo (dashed red line).
4
All results released to date from the resource definition program at RAS have expectedly confirmed
the continuity of the high-grade core of the deposit and enhanced the extent of the >200 gold metal
unit zone (total hole MU). These results validate the current mine planning being carried out by the
study team as part of the PFS, which focus initially on extracting the high-grade core at RAS.
Shreks (SHR) Resource Definition Drilling
A campaign of infill drilling has been completed at Shreks (SHR) with a view to upgrading the JORC
categorisation of the deposit from Inferred to Indicated resources, and to include it in the PFS. SHR is
a repetition of RAS style mineralisation outcropping at surface in the Rise and Shine Valley
approximately 1.5km south of RAS. Within the SHR mineralisation there are three apparent sub-
parallel zones of enhanced grade, with Shreks East (SRE) considered to be a faulted-off extension of
the most southern zone. The SHR deposit is currently host to 4.7Mt at 1.1g/t for 174,000oz of Inferred
resources. SHR deposit offers a low strip-ratio option for complementary mill feed.
Results from the program confirm a large, near surface, lower-grade resource, with best results
including:
▪ MRC181 11.0m @ 2.2g/t Au from 35.0m (true width 5.6m)
▪ MRC189 10.0m @ 1.0g/t Au from 28.0m (true width 6.5m)
▪ MRC198 7.0m @ 4.9g/t Au from 12.0m (true width 5.6m), and
8.0m @ 1.6g/t Au from 21.0m (true width 6.4m)
▪ MRC199 10.0m @ 1.5g/t Au from 51.0m (true width 9.6m)
▪ MRC210 9.0m @ 1.5g/t Au from 1.0m (true width 8.0m)
▪ MRC211 7.0m @ 1.5g/t Au from 4.0m (true width 6.2m)
▪ MRC212 4.0m @ 2.5g/t Au from 13.0m (true width 3.6m)
▪ MRC218 11.0m @ 1.3g/t Au from 3.0m (true width 9.8m)
▪ MRC225 11.0m @ 1.1g/t Au from 20.0m (true width 6.4m)
▪ MDD314 8.2m @ 0.8g/t Au from 17.9m (true width 3.7m)
▪ MDD319 10.1m @ 0.9g/t Au from 39.9m (true width 9.0m)
▪ MDD320 5.0m @ 2.2g/t Au from 79.0m (true width 3.1m)
▪ MDD324 6.0m @ 3.4g/t Au from 51.0m (true width 5.8m)
5
Figure 6. Plan view of Shreks showing results of new infill drilling
Figure 7. Section A at Shreks
6
Figure 8. Section B at Shreks
An update to the Mineral Resource Estimate is underway and both SHR and SRE Inferred resources are
expected to be upgraded to Indicated resource category for a complementary source of mill-feed that
may be included in PFS level mine planning.
Ends.
This announcement has been authorised for release by the Board.
Enquiries:
Damian Spring
Exec. Director & CEO
dspring@santanaminerals.com
Sam Smith
Exec. Director Corp Affairs & IR
ssmith@santanaminerals.com
7
Bendigo-Ophir Project Mineral Resource Estimate
The Project contains a Mineral Resource Estimate (MRE) calculated at a cutoff grade of 0.5 g/t Au with top cuts applied, as at June 2024:
Deposit Category tonnes (Mt) Au grade (g/t) Contained Gold
(koz)
RAS
Indicated 19.1 2.4 1,445
Inferred 11.4 2.1 772
RAS Total Indicated and Inferred
30.6 2.3 2,217
CIT
Inferred 1.2 1.5 59
SHR
Inferred 4.7 1.1 174
SRE
Inferred 0.3 1.3 11
RSSZ Total
Indicated 19.1 2.4 1,445
Inferred 17.6 1.8 1,018
RSSZ Total Indicated and Inferred 36.8 2.1 2,463
Table 1. June 2024 MRE Estimates
Previous
Disclosure - 2012 JORC Code
Information relating to Mineral Resources, Exploration Targets and Exploration Data associated with the Company’s
projects in this announcement is extracted from the following ASX Announcements:
• ASX announcement titled “MDD054 “JEWELLERY BOX” RE-ASSAYS TO 1400 g/t GOLD” dated 22 August 2022
• ASX announcement titled “Bendigo-Ophir Exploration and Project Update” dated 04 January 2024
• ASX announcement titled “High-Grade Intercepts Close out Resource Drilling at RAS” dated 24 January 2024
• ASX announcement titled “1.3m ounces upgraded to Indicated category from RAS drilling” dated 16 February 2024
• ASX announcement titled “Further Positive Drill Results from Infill Drilling at RAS” dated 26
March 2024
• ASX announcement titled “Outstanding Economics - RAS Scoping Study (First 10 Years)” dated 17 April 2024
• ASX announcement titled “Exploration Update” dated 6 June 2024
• ASX announcement titled “Infill drilling increases RAS Indicated category to 1.45Moz” dated 2
July 2024
A copy of such announcement is available to view on the Santana Minerals Limited website www.santanaminerals.com.
The reports were issued in accordance with the 2012 Edition of the JORC Australasian Code for Reporting of Exploration
Results, Mineral Resources and Ore Reserves. The Company confirms that it is not aware of any new information or data
that materially affects the information included in
the original market announcements. The Company confirms that the
form and context in which the CompetentPerson’s findings are presented have not been materially modified from the
original market announcements.
Current
Disclosure - Competent Persons Statement
The information in this report that relates to Exploration Results is based on information compiled by Mr Hamish
McLauchlan who is a Fellow of The Australasian Institute of Mining and Metallurgy (AusIMM). Mr McLauchlan is a
consultant and has sufficient experience relevant to the style of mineralisation and type of deposit under consideration
and to the activity which thay are undertaking to qualify as Competent Persons as defined in the 2012 Edition of the
‘Australasian Code for Reporting of Exploration Results, Mineral Resources and Ore Reserves.’ Mr McLauchlan consents to
the inclusion in this report of the matters based on their information in the form and context in which it appears. The
Company
confirms that the form and context in which the Competent Person’s findings are presented have not been
materially modified. Mr McLauchlan is eligible to participate in STI and LTI schemes in place as performance incentives for
key personnel.
8
The Company confirms that the form and context in which the Competent Person’s findings are presented have not been
materially modified.
Forward Looking Statements
Forward-looking statements in this announcement include, but are not limited to, statements with respect to Santana’s
plans, strategy, activities, events or developments the Company believes, expects or anticipates will or may occur. By their
very nature, forward-looking statements require Santana to make assumptions that may not materialize or that may not be
accurate. Although Santana believes that the expectations reflected in the forward-looking statements in this
announcement are reasonable, no assurance can be given that these expectations will prove to have been correct, as actual
results and future events could differ materially from those anticipated in the forward-looking statements. Accordingly,
viewers are cautioned not to place undue reliance on forward-looking statements. Santana does not undertake to update
publicly or to revise any of the included forward-looking statements, except as may be required under applicable securities
laws.
Appendix 1 - New Drill holes – New Mineralised Intercepts (top-cut to 100 g/t and at a 0.5
g/t lower cut-off grade)
Deposit Drillhole
From
(m)
Drill
Intercept
(m)
Estimated
True
Width
(m)
Average Gold Grade (g/t)
(min 0.5g/t Au)
Metal Units
(metre x gram/tonne)
RAS
MDD313
170.3 30.7 27.0 7.9
213.3
212.0 3.0 2.7 9.0
24.3
MDD329
173.5 34.5 32.7 5.4
176.6
MDD332
161.6 35.4 32.1 8.3
266.4
203.0 6.0 5.4 1.0
5.4
MDD334
154.4 26.6 24.0 3.1
74.4
186.0 24.0 21.7 3.2
69.4
SHR
MDD300
38 4 3.7 1.6
6.5
46 4 3.7 1.1
4.5
70 1 0.9 2.3
2.3
MDD308
32 9 8.4 0.8
6.9
62 1 0.9 1.2 1.2
MDD311
30 1 0.6 0.6
0.6
32 1 0.6 0.6
0.6
38 4 2.4 0.6
2.3
68 1 0.6 4.1
4.1
MDD314
17.9 8.2 3.7 0.8
6.6
28 4 1.8 2.5
9.9
MDD315
53.9 4.1 3.9 0.8 3.2
62 1 1.0 8.4 8.4
MDD316
56.8 8.3 5.2 0.7 5.9
66 1 0.6 1.2 1.2
MDD317
51 2 1.9 1.1 2.3
58 1 1.0 17.3 17.3
64 1.3 1.3 1.0 1.3
MDD318
40 2 1.9 0.6 1.2
51 1 1.0 0.6 0.6
9
Deposit Drillhole
From
(m)
Drill
Intercept
(m)
Estimated
True
Width
(m)
Average Gold Grade (g/t)
(min 0.5g/t Au)
Metal Units
(metre x gram/tonne)
SHR
MDD319
39.9 10.1 9.0 0.9 9.3
51 7 6.2 0.7 5.2
MDD320
70 5 3.1 0.8 3.9
79 5 3.1 2.2 10.8
MDD322
63.5 7.5 6.4 0.8 6.2
MDD323
44.2 4.8 3.6 0.7 3.4
53 6 4.4 0.5 3.2
62 1.1 0.8 0.5 0.6
MDD324
35 1 1.0 0.6 0.6
51 6 5.8 3.4 20.6
MDD325
53 5 4.0 0.8 3.8
MRC176
4 5 4.7 0.5 2.7
MRC181
35 11 5.6 2.2 24.3
66 1 0.5 0.6 0.6
68 1 0.5 0.6 0.6
74 1 0.5 0.5 0.5
78 1 0.5 0.5 0.5
MRC182
46 6 4.8 0.6 3.5
72 1 0.8 0.5 0.5
MRC183
48 1 0.8 0.9 0.9
54 8 6.8 0.6 4.5
74 1 0.9 0.8 0.8
MRC184
35 8 7.7 0.5 4.1
47 1 1.0 0.7 0.7
58 1 1.0 5.1 5.1
MRC186
12 8 6.5 0.8 6.1
MRC188
27 10 8.8 0.8 7.9
41 1 0.9 0.6 0.6
53 1 0.9 0.9 0.9
MRC189
28 10 6.5 1.0 9.7
MRC190
15 7 4.9 0.8 5.4
24 5 3.5 1.4 6.8
MRC191
18 2 1.8 0.8 1.7
27 3 2.7 7.3 21.8
MRC192
23 6 4.9 0.8 4.7
MRC193
5 6 5.3 0.6 3.8
13 3 2.7 6.6 19.9
MRC194
3 2 1.6 0.9 1.8
28 1 0.9 1.1 1.1
MRC195
20 5 4.1 1.0 5.0
46 1 0.8 0.5 0.5
10
Deposit Drillhole
From
(m)
Drill
Intercept
(m)
Estimated
True
Width
(m)
Average Gold Grade (g/t)
(min 0.5g/t Au)
Metal Units
(metre x gram/tonne)
MRC197
5 1 0.9 1.1 1.1
9 1 0.9 0.6 0.6
16 1 0.9 0.7 0.7
MRC198
12 7 0.6 4.9 34.4
21 8 0.6 1.6 12.8
MRC199
51 10 9.5 1.5 15
MRC200
45 3 2.5 0.9 2.8
59 1 0.8 1.1 1.1
63 1 0.8 0.9 0.9
MRC208
0 2 1.8 1.7 3.5
11 6 5.1 0.7 3.9
MRC209
5 1 0.9 0.7 0.7
MRC210
1 9 8.0 1.5 13.7
20 1 0.9 0.5 0.5
MRC211
4 7 6.2 1.5 10.4
MRC212
13 4 3.6 2.5 10.1
MRC213
10 6 5.3 0.6 3.4
26 1 0.9 0.5 0.5
MRC214
7 8 5.4 0.9 7.3
20 2 1.8 0.6 1.2
MRC215
5 6 5.3 0.6 3.9
MRC217
3 7 6.3 0.6 3.9
11 5 4.5 0.9 4.4
MRC218
3 11 9.8 1.3 13.9
21 4 3.6 0.6 2.6
MRC219
39 3 2.9 1.1 3.2
48 8 7.5 0.6 4.5
MRC220
22 1 0.9 0.6 0.6
31 2 1.9 4.0 7.9
38 1 0.9 0.9 0.9
MRC221
39 2 1.6 0.9 1.8
MRC222
40 2 1.2 4.0 8.0
MRC223
22 5 4.4 1.0 4.8
33 6 5.3 0.5 3.2
MRC225
20 11 6.4 1.1 11.9
35 4 2.3 0.8 3.1
MRC226
39 1 0.5 0.7 0.7
43 1 0.5 0.5 0.5
56 1 0.6 1.3 1.3
SRE
MDD312 54.7 12.3 10.4 0.7 8.7
MRC175
30 1 1.0 1.2 1.2
43 1 1.0 2.6 2.6
11
Deposit Drillhole
From
(m)
Drill
Intercept
(m)
Estimated
True
Width
(m)
Average Gold Grade (g/t)
(min 0.5g/t Au)
Metal Units
(metre x gram/tonne)
MRC196 32 3 2.8 0.6 1.7
MRC207 15 1 0.8 3.8 3.8
12
Deposit Hole No
East
NZTM
North
NZTM
RL
Azimuth
(T Avg)
Dip
(Avg)
Length Method Status Results
RAS MDD313 1318076 5017150 744.1 279 -62 230 OHD Completed Reported
RAS MDD329 1318085 5017341 692.9 262.4 -66 230.7 OHD Completed Reported
RAS MDD332 1318080 5017210 722.6 266.8 -61 230 OHD Completed Reported
RAS MDD334 1318035 5017212 731.8 268.4 -62 220.1 OHD Completed Reported
SHR MDD300 1319042 5015871 759.6 241 -56 75 OHD Completed Reported
SHR MDD308 1319119 5015734 772.4 170.1 -52 80.2 OHD Completed Reported
SHR MDD311 1319290 5015427 818.4 91.8 -50 70.1 OHD Completed Reported
SHR MDD314 1319241 5015525 793.0 37 -51 53.4 OHD Completed Reported
SHR MDD315 1319306 5015608 796.6 231.5 -55 77 OHD Completed Reported
SHR MDD316 1319236 5015644 780.4 87.4 -52 72.7 OHD Completed Reported
SHR MDD317 1319320 5015574 800.4 231.8 -61 65.3 OHD Completed Reported
SHR MDD318 1319323 5015525 805.9 223.3 -53 55 OHD Completed Reported
SHR MDD319 1319235 5015643 780.5 156.7 -50 61.1 OHD Completed Reported
SHR MDD320 1318949 5015945 754.2 79.6 -54 90 OHD Completed Reported
SHR MDD322 1319185 5015743 779.6 49.5 -82 72.9 OHD Completed Reported
SHR MDD323 1319039 5015876 759.2 288.4 -52 63.1 OHD Completed Reported
SHR MDD324 1319336 5015476 811.6 197.8 -51 62.3 OHD Completed Reported
SHR MDD325 1319177 5015689 790.2 275 -51 63.4 OHD Completed Reported
SHR MRC176 1318973 5015760 788.3 180 -50 55 RC Completed Reported
SHR MRC179 1318885 5015879 772.1 127.6 -89 28 RC Completed Reported
SHR MRC181 1318955 5015875 766.1 70 -50 80 RC Completed Reported
SHR MRC182 1319116 5015779 767.4 291.8 -57 81 RC Completed Reported
SHR MRC183 1319119 5015780 766.7 157.9 -79 78 RC Completed Reported
SHR MRC184 1319116 5015774 767.0 232.1 -56 59 RC Completed Reported
SHR MRC186 1319114 5015657 783.3 269.5 -51 33 RC Completed Reported
SHR MRC187 1319048 5015766 784.4 36.1 -64 80 RC Completed Reported
SHR MRC188 1318991 5015850 771.1 325.2 -84 54 RC Completed Reported
SHR MRC189 1319230 5015584 786.6 323.6 -53 41 RC Completed Reported
SHR MRC190 1319232 5015528 793.9 308.6 -54 30 RC Completed Reported
SHR MRC191 1319282 5015479 806.7 65.9 -87 34 RC Completed Reported
SHR MRC192 1319287 5015474 806.6 127.7 -55 39 RC Completed Reported
SHR MRC193 1319261 5015464 803.5 50 -86 25 RC Completed Reported
SHR MRC194 1319256 5015411 816.9 270.9 -56 32 RC Completed Reported
SHR MRC195 1319101 5015710 776.2 267 -51 55 RC Completed Reported
SHR MRC197 1319208 5015487 799.4 72.3 -88 31 RC Completed Reported
SHR MRC198 1319229 5015527 795.1 259.9 -45 39.5 RC Completed Reported
SHR MRC199 1319178 5015692 790.0 138.1 -76 70 RC Completed Reported
SHR MRC200 1319122 5015774 767.4 135.3 -56 64 RC Completed Reported
SHR MRC208 1319202 5015453 802.9 305.8 -85 22 RC Completed Reported
SHR MRC209 1319225 5015469 800.2 81.4 -86 28 RC Completed Reported
SHR MRC210 1319243 5015478 797.9 246.1 -85 28 RC Completed Reported
SHR MRC211 1319244 5015490 796.4 284 -82 28 RC Completed Reported
SHR MRC212 1319260 5015505 793.9 76.8 -88 31 RC Completed Reported
SHR MRC213 1319120 5015631 786.5 58.3 -87 36 RC Completed Reported
SHR MRC214 1319018 5015684 800.6 284 -89 31 RC Completed Reported
SHR MRC215 1319009 5015700 798.2 21.4 -85 34 RC Completed Reported
SHR MRC217 1318958 5015770 784.0 292.7 -88 28 RC Completed Reported
SHR MRC218 1318956 5015793 778.9 201.3 -88 28 RC Completed Partial reported
SHR MRC219 1319173 5015635 799.8 151.4 -75 64 RC Completed Reported
Appendix 2 - New Drillholes Reported )
13
SHR MRC220 1319282 5015479 806.7 157.4 -55 52 RC Completed Reported
SHR MRC221 1319241 5015601 784.3 136.9 -51 48 RC Completed Reported
SHR MRC222 1319240 5015568 787.7 92.3 -48 53 RC Completed Reported
SHR MRC223 1319125 5015673 782.9 74.8 -87 40 RC Completed Reported
SHR MRC225 1319168 5015533 810.0 90.1 -48 39 RC Completed Reported
SHR MRC226 1319277 5015541 793.3 324.6 -52 71 RC Completed Reported
SRE MDD312 1319790 5015442 800.9 284.1 -62 74.4 OHD Completed Reported
SRE MRC175 1319783 5015312 818.2 220 -50 52 RC Completed Reported
SRE MRC196 1319725 5015379 810.8 247.4 -57 63 RC Completed Reported
SRE MRC201 1319833 5015265 822.2 228.8 -52 31 RC Completed Reported
SRE MRC202 1319876 5015264 815.7 230.2 -54 31 RC Completed Reported
SRE MRC203 1319911 5015227 816.0 227.6 -52 31 RC Completed Reported
SRE MRC204 1319935 5015184 820.4 221.4 -55 34 RC Completed Partial reported
SRE MRC205 1319966 5015139 825.8 235.6 -55 31 RC Completed Reported
SRE MRC206 1319991 5015097 830.0 228.5 -50 33 RC Completed Reported
SRE MRC207 1319998 5015096 829.4 140.9 -51 30 RC Completed Reported
14
Appendix 3 - Assay Results
This includes updated assays from QAQC for previously announced holes shown in the cross sections, due to the assay method ranking with Photon > SFA > BLEG > 1000g pulp FA > 50g pulp FA.
Hole ID
Sample Depth Depth Interval Au As ppm Au
ID From (m) To (m) (m) g/t (pXRF) Method
MDD329 MG51049 171 172 1 -0.01
Au_FAA505_ppm_A
MG51050 172 172.7 0.7 -0.01
Au_FAA505_ppm_A
MG51051 172.7 173.55 0.85 0.03
Au_FAA505_ppm_A
MG51052 173.55 175 1.45 2.22
Au_FAA505_ppm_A
MG51053 175 176 1 2.00
Au_FAA505_ppm_A
MG51054 176 177 1 1.57
Au_FAA505_ppm_A
MG51055 177 178 1 3.24
Au_FAA505_ppm_A
MG51056 178 179 1 34.40
Au_FAA505_ppm_A
MG51057 179 180 1 1.85
Au_FAA505_ppm_A
MG51058 180 181 1 2.88
Au_FAA505_ppm_A
MG51059 181 182 1 9.64
Au_FAA505_ppm_A
MG51060 182 183 1 13.50
Au_FAA505_ppm_A
MG51061 183 184 1 11.7
Au_FAA505_ppm_A
MG51062 184 185 1 4.63
Au_FAA505_ppm_A
MG51063 185 186 1 21.40
Au_FAA505_ppm_A
MG51064 186 187 1 0.67
Au_FAA505_ppm_A
MG51065 187 188 1 0.30
Au_FAA505_ppm_A
MG51069 188 189 1 2.94
Au_FAA505_ppm_A
MG51070 189 190 1 5.43
Au_FAA505_ppm_A
MG51071 190 191 1 3.31
Au_FAA505_ppm_A
MG51072 191 192 1 9.86
Au_FAA505_ppm_A
MG51073 192 193 1 5.18
Au_FAA505_ppm_A
MG51074 193 194 1 15.10
Au_FAA505_ppm_A
MG51075 194 195 1 0.71
Au_FAA505_ppm_A
MG51076 195 196 1 0.36
Au_FAA505_ppm_A
MG51077 196 197 1 0.74
Au_FAA505_ppm_A
MG51078 197 198 1 0.27
Au_FAA505_ppm_A
MG51079 198 199 1 1.61
Au_FAA505_ppm_A
MG51080 199 200 1 6.02
Au_FAA505_ppm_A
MG51081 200 201 1 0.23
Au_FAA505_ppm_A
MG51082 201 202 1 9.18
Au_FAA505_ppm_A
MG51083 202 203 1 0.78
Au_FAA505_ppm_A
Hole ID
Sample Depth Depth Interval Au As ppm Au
ID From (m) To (m) (m) g/t (pXRF) Method
MDD332 MG51254 159 160 1 0.01
Au_FAA505_ppm_A
MG51255 160 160.93 0.93 -0.01
Au_FAA505_ppm_A
MG51256 160.93 161.57 0.64 0.4
Au_FAA505_ppm_A
MG51257 161.57 163 1.43 6.12
Au_FAA505_ppm_A
MG51258 163 164 1 37.90
Au_FAA505_ppm_A
MG51259 164 165 1 13.70
Au_FAA505_ppm_A
MG51260 165 166 1 4.16
Au_FAA505_ppm_A
MG51261 166 167 1 27.60
Au_FAA505_ppm_A
MG51262 167 168 1 12.30
Au_FAA505_ppm_A
MG51263 168 169 1 2.05
Au_FAA505_ppm_A
MG51264 169 170 1 19.40
Au_FAA505_ppm_A
MG51265 170 171 1 4.73
Au_FAA505_ppm_A
MG51266 171 172 1 19.10
Au_FAA505_ppm_A
MG51267 172 173 1 4.46
Au_FAA505_ppm_A
MG51268 173 174 1 3.83
Au_FAA505_ppm_A
MG51269 174 175 1 6.37
Au_FAA505_ppm_A
MG51270 175 176 1 1.36
Au_FAA505_ppm_A
Hole ID
Sample Depth Depth Interval Au As ppm Au
ID From (m) To (m) (m) g/t (pXRF) Method
MDD334 MG51334 152 153 1 -0.01
Au_FAA505_ppm_A
MG51335 153 154.2 1.2 -0.01
Au_FAA505_ppm_A
MG51336 154.2 154.4 0.2 0.37
Au_FAA505_ppm_A
MG51337 154.4 155 0.6 1.13
Au_FAA505_ppm_A
MG51338 155 156 1 1.47
Au_FAA505_ppm_A
MG51339 156 157 1 17
Au_FAA505_ppm_A
MG51340 157 158 1 4.29
Au_FAA505_ppm_A
MG51341 158 159 1 1.39
Au_FAA505_ppm_A
MG51342 159 160 1 0.66
Au_FAA505_ppm_A
MG51343 160 161 1 5.04
Au_FAA505_ppm_A
MG51344 161 162 1 18.5
Au_FAA505_ppm_A
MG51345 162 163 1 6.78
Au_FAA505_ppm_A
MG51346 163 164 1 6.58
Au_FAA505_ppm_A
MG51347 164 165 1 0.53
Au_FAA505_ppm_A
MG51348 165 166 1 0.71
Au_FAA505_ppm_A
MG51349 166 167 1 2.96
Au_FAA505_ppm_A
MG51350 167 168 1 0.97
Au_FAA505_ppm_A
MG51351 168 169 1 0.52
Au_FAA505_ppm_A
MG51352 169 170 1 0.4
Au_FAA505_ppm_A
MG51353 170 171 1 0.59
Au_FAA505_ppm_A
MG51357 171 172 1 0.59
Au_FAA505_ppm_A
MG51358 172 173 1 0.69
Au_FAA505_ppm_A
MG51359 173 174 1 8.15
Au_FAA505_ppm_A
MG51360 174 175 1 1.4
Au_FAA505_ppm_A
MG51361 175 176 1 0.37
Au_FAA505_ppm_A
MG51362 176 177 1 0.06
Au_FAA505_ppm_A
MG51363 177 178 1 1.29
Au_FAA505_ppm_A
MG51364 178 179 1 0.18
Au_FAA505_ppm_A
MG51365 179 180 1 0.14
Au_FAA505_ppm_A
MG51366 180 181 1 1.23
Au_FAA505_ppm_A
MG51367 181 182 1 0.19
Au_FAA505_ppm_A
MG51368 182 183 1 0.18
Au_FAA505_ppm_A
MG51369 183 184 1 0.3
Au_FAA505_ppm_A
MG51370 184 185 1 0.32
Au_FAA505_ppm_A
MG51371 185 186 1 0.35
Au_FAA505_ppm_A
MG51372 186 187 1 2.54
Au_FAA505_ppm_A
MG51373 187 188 1 0.14
Au_FAA505_ppm_A
MG51374 188 189 1 4.36
Au_FAA505_ppm_A
MG51375 189 190 1 5.77
Au_FAA505_ppm_A
MG51376 190 191 1 30.6
Au_FAA505_ppm_A
MG51381 191 192 1 -0.01
Au_FAA505_ppm_A
MG51382 192 193 1 1.75
Au_FAA505_ppm_A
MG51383 193 194 1 0.09
Au_FAA505_ppm_A
MG51384 194 195 1 4.59
Au_FAA505_ppm_A
MG51385 195 196 1 7.2
Au_FAA505_ppm_A
MG51386 196 197 1 1.29
Au_FAA505_ppm_A
MG51387 197 198 1 0.93
Au_FAA505_ppm_A
MG51388 198 199 1 5.94
Au_FAA505_ppm_A
MG51389 199 200 1 0.24
Au_FAA505_ppm_A
MG51390 200 201 1 0.58
Au_FAA505_ppm_A
MG51391 201 202 1 4.38
Au_FAA505_ppm_A
MG51392 202 203 1 1.18
Au_FAA505_ppm_A
MG51393 203 204 1 0.08
Au_FAA505_ppm_A
MG51394 204 205 1 0.11
Au_FAA505_ppm_A
MG51395 205 206 1 0.18
Au_FAA505_ppm_A
MG51396 206 207 1 1.20
Au_FAA505_ppm_A
MG51397 207 208 1 0.24
Au_FAA505_ppm_A
MG51398 208 209 1 0.32
Au_FAA505_ppm_A
MG51399 209 210 1 2.39
Au_FAA505_ppm_A
MG51400 210 211 1 0.02
Au_FAA505_ppm_A
MG51404 211 212 1 0.07
Au_FAA505_ppm_A
MG51405 212 213 1 0.01
Au_FAA505_ppm_A
MG51406 213 214 1 0.33
Au_FAA505_ppm_A
MG51407 214 215 1 0.2
Au_FAA505_ppm_A
MG51408 215 216 1 0.02
Au_FAA505_ppm_A
MG51409 216 217 1 0.14
Au_FAA505_ppm_A
MG51410 217 218 1 34.60
Au_FAA505_ppm_A
MG51413 218 219 1 1.6
Au_FAA505_ppm_A
MG51414 219 220.1 1.1 0.02
Au_FAA505_ppm_A
Hole ID
Sample Depth Depth Interval Au As ppm Au
ID From (m) To (m) (m) g/t (pXRF) Method
MDD332 MG51271 176 177 1 12.5
Au_FAA505_ppm_A
MG51272 177 178 1 24.6
Au_FAA505_ppm_A
MG51273 178 179 1 3.06
Au_FAA505_ppm_A
MG51277 179 180 1 18.7
Au_FAA505_ppm_A
MG51278 180 181 1 3.9
Au_FAA505_ppm_A
MG51279 181 182 1 2.22
Au_FAA505_ppm_A
MG51280 182 183 1 6.51
Au_FAA505_ppm_A
MG51281 183 184 1 9.78
Au_FAA505_ppm_A
MG51282 184 185 1 29.3
Au_FAA505_ppm_A
MG51283 185 186 1 0.7
Au_FAA505_ppm_A
MG51284 186 187 1 6.38
Au_FAA505_ppm_A
MG51285 187 188 1 0.46
Au_FAA505_ppm_A
MG51286 188 189 1 0.7
Au_FAA505_ppm_A
MG51287 189 190 1 0.97
Au_FAA505_ppm_A
MG51288 190 191 1 2.92
Au_FAA505_ppm_A
MG51289 191 192 1 0.45
Au_FAA505_ppm_A
MG51290 192 193 1 0.22
Au_FAA505_ppm_A
MG51291 193 194 1 0.36
Au_FAA505_ppm_A
MG51292 194 195 1 1.76
Au_FAA505_ppm_A
MG51293 195 196 1 0.77
Au_FAA505_ppm_A
MG51294 196 197 1 0.7
Au_FAA505_ppm_A
MG51295 197 198 1 0.46
Au_FAA505_ppm_A
MG51296 198 199 1 0.12
Au_FAA505_ppm_A
MG51300 199 200 1 0.04
Au_FAA505_ppm_A
MG51301 200 201 1 0.15
Au_FAA505_ppm_A
MG51302 201 202 1 0.06
Au_FAA505_ppm_A
MG51303 202 203 1 0.17
Au_FAA505_ppm_A
MG51304 203 204 1 0.51
Au_FAA505_ppm_A
MG51305 204 205 1 1.17
Au_FAA505_ppm_A
MG51306 205 206 1 0.52
Au_FAA505_ppm_A
MG51307 206 207 1 0.52
Au_FAA505_ppm_A
MG51308 207 208 1 0.45
Au_FAA505_ppm_A
MG51309 208 209 1 2.56
Au_FAA505_ppm_A
MG51310 209 210 1 0.2
Au_FAA505_ppm_A
MG51311 210 211 1 0.02
Au_FAA505_ppm_A
MG51312 211 212 1 0.07
Au_FAA505_ppm_A
MG51313 212 213 1 0.07
Au_FAA505_ppm_A
MG51314 213 214 1 0.14
Au_FAA505_ppm_A
MG51315 214 215 1 0.21
Au_FAA505_ppm_A
MG51316 215 216 1 0.24
Au_FAA505_ppm_A
MG51317 216 217 1 1.11
Au_FAA505_ppm_A
MG51318 217 218 1 0.14
Au_FAA505_ppm_A
MG51319 218 219 1 0.08
Au_FAA505_ppm_A
MG51323 219 220 1 1.56
Au_FAA505_ppm_A
MG51324 220 221 1 0.05
Au_FAA505_ppm_A
MG51325 221 222 1 0.24
Au_FAA505_ppm_A
MG51326 222 223 1 0.05
Au_FAA505_ppm_A
MG51327 223 224 1 -0.01
Au_FAA505_ppm_A
MG51328 224 225 1 0.12
Au_FAA505_ppm_A
MG51329 225 226 1 0.01
Au_FAA505_ppm_A
MG51330 226 227 1 0.01
Au_FAA505_ppm_A
MG51331 227 228 1 1.14
Au_FAA505_ppm_A
MG51411 228 229 1 0.25
Au_FAA505_ppm_A
MG51412 229 230 1 0.04
Au_FAA505_ppm_A
15
Hole ID
Sample Depth Depth Interval Au As ppm Au
ID From (m) To (m) (m) g/t (pXRF) Method
MG51084 203 204 1 7.58
Au_FAA505_ppm_A
MG51085 204 205 1 2.97
Au_FAA505_ppm_A
MG51089 205 206 1 0.04
Au_FAA505_ppm_A
MG51090 206 207 1 0.07
Au_FAA505_ppm_A
MG51091 207 208 1 1.70
Au_FAA505_ppm_A
MG51092 208 209 1 0.24
Au_FAA505_ppm_A
MG51093 209 210 1 0.01
Au_FAA505_ppm_A
MG51094 210 211 1 0.07
Au_FAA505_ppm_A
MG51095 211 212 1 0.27
Au_FAA505_ppm_A
MG51096 212 213 1 0.31
Au_FAA505_ppm_A
MG51097 213 214 1 3.78
Au_FAA505_ppm_A
MG51098 214 215 1 0.28
Au_FAA505_ppm_A
MG51099 215 216 1 0.31
Au_FAA505_ppm_A
MG51100 216 217 1 0.04
Au_FAA505_ppm_A
MG51101 217 218 1 0.02
Au_FAA505_ppm_A
MG51102 218 219 1 0.0
Au_FAA505_ppm_A
MG51103 219 220 1 0.54
Au_FAA505_ppm_A
MG51104 220 221 1 0.2
Au_FAA505_ppm_A
MG51105 221 222 1 0.05
Au_FAA505_ppm_A
MG51109 222 223 1 0.31
Au_FAA505_ppm_A
MG51110 223 224 1 2.58
Au_FAA505_ppm_A
MG51111 224 225 1 0.33
Au_FAA505_ppm_A
MG51112 225 226 1 0.41
Au_FAA505_ppm_A
MG51113 226 227 1 0.04
Au_FAA505_ppm_A
MG51114 227 228 1 -0.01
Au_FAA505_ppm_A
MG51115 228 229 1 -0.01
Au_FAA505_ppm_A
MG51116 229 230 1 -0.01
Au_FAA505_ppm_A
MG51117 230 230.7 0.7 -0.01
Au_FAA505_ppm_A
Hole ID
Sample Depth Depth Interval Au As ppm Au
ID From (m) To (m) (m) g/t (pXRF) Method
MDD283 MG49007 167 168 1 0.01 7 Au_FAP50V10_ppm_A
MG49008 168 169 1 -0.01 2 Au_FAP50V10_ppm_A
MG49009 169 169.65 0.65 0.14 677 Au_FAP50V10_ppm_A
MG49010 169.65 171 1.35 0.36 1327 Au_FAP50V10_ppm_A
MG49011 171 172 1 0.25 550 Au_FAP50V10_ppm_A
MG49012 172 173 1 0.35 454 Au_FAP50V10_ppm_A
MG49013 173 174 1 0.43 297 Au_FAP50V10_ppm_A
MG49014 174 175 1 0.27 967 Au_FAP50V10_ppm_A
MG49015 175 176 1 0.22 1006 Au_FAP50V10_ppm_A
MG49016 176 177 1 0.67 938 Au_FAP50V10_ppm_A
MG49017 177 178 1 0.26 184 Au_FAP50V10_ppm_A
MG49018 178 179 1 0.36 259 Au_FAP50V10_ppm_A
MG49019 179 180 1 0.09 144 Au_FAP50V10_ppm_A
MG49020 180 181 1 0.14 735 Au_FAP50V10_ppm_A
MG49021 181 182 1 0.09 594 Au_FAP50V10_ppm_A
MG49022 182 183 1 0.22 1194 Au_FAP50V10_ppm_A
MG49023 183 184 1 0.24 243 Au_FAP50V10_ppm_A
MG49024 184 185 1 0.17 538 Au_FAP50V10_ppm_A
MG49025 185 186 1 0.17 645 Au_FAP50V10_ppm_A
MG49026 186 187 1 0.4 238 Au_FAP50V10_ppm_A
MG49030 187 188 1 0.09 298 Au_FAP50V10_ppm_A
MG49031 188 189 1 0.02 25 Au_FAP50V10_ppm_A
MG49032 189 190 1 0.11 302 Au_FAP50V10_ppm_A
MG49033 190 191 1 0.1 205 Au_FAP50V10_ppm_A
MG49034 191 192 1 0.05 112 Au_FAP50V10_ppm_A
MG49035 192 193 1 0.16 240 Au_FAP50V10_ppm_A
MG49036 193 194 1 0.04 246 Au_FAP50V10_ppm_A
MG49037 194 195 1 -0.01 17 Au_FAP50V10_ppm_A
MG49038 195 196 1 0.15 23 Au_FAP50V10_ppm_A
MG49039 196 197 1 0.12 25 Au_FAP50V10_ppm_A
MG49040 197 198 1 0.02 64 Au_FAP50V10_ppm_A
MG49041 198 199 1 29.99 4621 Au_FAP50V10_ppm_A
MG49042 199 200 1 0.12 279 Au_FAP50V10_ppm_A
MG49043 200 201 1 0.02 62 Au_FAP50V10_ppm_A
MG49044 201 202 1 0.01 27 Au_FAP50V10_ppm_A
MG49045 202 203 1 0.1 425 Au_FAP50V10_ppm_A
MG49046 203 204 1 0.06 1233 Au_FAP50V10_ppm_A
MG49047 204 205 1 -0.01 13 Au_FAP50V10_ppm_A
MG49048 205 206 1 -0.01 27 Au_FAP50V10_ppm_A
MG49049 206 207 1 0.05 117 Au_FAP50V10_ppm_A
MG49053 207 208 1 0.44 514 Au_FAP50V10_ppm_A
MG49054 208 209 1 0.03 158 Au_FAP50V10_ppm_A
MG49055 209 210 1 0.02 22 Au_FAP50V10_ppm_A
MG49056 210 211 1 0.05 84 Au_FAP50V10_ppm_A
MG49057 211 212 1 0.09 215 Au_FAP50V10_ppm_A
MG49058 212 213 1 0.54 235 Au_FAP50V10_ppm_A
MG49059 213 214 1 0.05 183 Au_FAP50V10_ppm_A
MG49060 214 215 1 0.08 112 Au_FAP50V10_ppm_A
MG49061 215 216 1 0.25 2563 Au_FAP50V10_ppm_A
MG49062 216 217 1 0.32 378 Au_FAP50V10_ppm_A
MG49063 217 218 1 0.24 482 Au_FAP50V10_ppm_A
MG49064 218 219 1 3.25 2798 Au_FAP50V10_ppm_A
MG49065 219 220 1 1.46 1570 Au_FAP50V10_ppm_A
MG49066 220 221 1 2.19 384 Au_FAP50V10_ppm_A
MG49067 221 222 1 20.35 2765 Au_FAP50V10_ppm_A
MG49069 222 223 1 27.88 4307 Au_FAP50V10_ppm_A
MG49071 223 224 1 1.4 932 Au_FAP50V10_ppm_A
MG49072 224 225 1 1.24 289 Au_FAP50V10_ppm_A
MG49073 225 226 1 0.03 16 Au_FAP50V10_ppm_A
MG49074 226 227 1 0.03 122 Au_FAP50V10_ppm_A
MG49078 227 228 1 0.02 322 Au_FAP50V10_ppm_A
MG49079 228 229 1 0.38 1957 Au_FAP50V10_ppm_A
MG49080 229 230 1 0.68 2289 Au_FAP50V10_ppm_A
MG49081 230 231 1 0.42 436 Au_FAP50V10_ppm_A
MG49082 231 232 1 -0.01 10 Au_FAP50V10_ppm_A
MG49083 232 233 1 0.1 118 Au_FAP50V10_ppm_A
MG49084 233 234 1 1.14 2245 Au_FAP50V10_ppm_A
MG49085 234 235 1 1.88 3132 Au_FAP50V10_ppm_A
MG49086 235 236 1 0.28 585 Au_FAP50V10_ppm_A
MG49087 236 237 1 22.42 775 Au_FAP50V10_ppm_A
MG49089 237 238 1 0.03 379 Au_FAP50V10_ppm_A
MG49090 238 239 1 0.05 958 Au_FAP50V10_ppm_A
MG49091 239 240 1 0.75 3929 Au_FAP50V10_ppm_A
MG49092 240 241 1 0.59 370 Au_FAP50V10_ppm_A
MG49093 241 242 1 3.6 510 Au_FAP50V10_ppm_A
MG49094 242 243 1 0.1 1682 Au_FAP50V10_ppm_A
MG49095 243 244 1 0.71 1612 Au_FAP50V10_ppm_A
MG49096 244 245 1 0.24 3546 Au_FAP50V10_ppm_A
MG49097 245 246 1 0.22 1306 Au_FAP50V10_ppm_A
MG49098 246 247 1 0.56 1598 Au_FAP50V10_ppm_A
MG49102 247 248 1 2.73 1438 Au_FAP50V10_ppm_A
MG49104 248 249 1 11.49 1466 Au_FAP50V10_ppm_A
MG49105 249 250 1 0.5 285 Au_FAP50V10_ppm_A
MG49106 250 251 1 0.22 2009 Au_FAP50V10_ppm_A
MG49107 251 252 1 6.4 2188 Au_FAP50V10_ppm_A
MG49109 252 253 1 0.17 622 Au_FAP50V10_ppm_A
MG49110 253 254 1 0.12 1446 Au_FAP50V10_ppm_A
MG49111 254 255 1 0.5 2087 Au_FAP50V10_ppm_A
MG49112 255 256 1 0.19 1305 Au_FAP50V10_ppm_A
MG49113 256 257 1 0.07 214 Au_FAP50V10_ppm_A
MG49114 257 258 1 0.51 264 Au_FAP50V10_ppm_A
MG49115 258 259 1 0.01 232 Au_FAP50V10_ppm_A
MG49116 259 260 1 0.39 548 Au_FAP50V10_ppm_A
MG49117 260 261 1 0.61 1101 Au_FAP50V10_ppm_A
Hole ID
Sample Depth Depth Interval Au As ppm Au
ID From (m) To (m) (m) g/t (pXRF) Method
MDD313 MG50973 168 169 1 0.01
Au_FAA505_ppm_A
MG50974 169 170.1 1.1 0.01
Au_FAA505_ppm_A
MG50975 170.1 170.3 0.2 0.84
Au_FAA505_ppm_A
MG50976 170.3 171 0.7 6.70
Au_FAA505_ppm_A
MG50977 171 172 1 1.97
Au_FAA505_ppm_A
MG50978 172 173 1 0.29
Au_FAA505_ppm_A
MG50979 173 174 1 1.01
Au_FAA505_ppm_A
MG50980 174 175 1 0.13
Au_FAA505_ppm_A
MG50981 175 176 1 12.60
Au_FAA505_ppm_A
MG50982 176 177 1 0.12
Au_FAA505_ppm_A
MG50983 177 178 1 15.60
Au_FAA505_ppm_A
MG50984 178 179 1 1.05
Au_FAA505_ppm_A
MG50985 179 180 1 3.93
Au_FAA505_ppm_A
MG50987 180 181 1 1.18
Au_FAA505_ppm_A
MG50988 181 182 1 0.78
Au_FAA505_ppm_A
MG50989 182 183 1 1.11
Au_FAA505_ppm_A
MG50990 183 184 1 0.59
Au_FAA505_ppm_A
MG50994 184 185 1 2.84
Au_FAA505_ppm_A
MG50996 185 186 1 6.58
Au_FAA505_ppm_A
MG50997 186 187 1 2.35
Au_FAA505_ppm_A
MG50998 187 188 1 5.54
Au_FAA505_ppm_A
MG50999 188 189 1 0.81
Au_FAA505_ppm_A
MG51000 189 190 1 2.02
Au_FAA505_ppm_A
MG51001 190 191 1 0.12
Au_FAA505_ppm_A
MG51003 191 192 1 2.54
Au_FAA505_ppm_A
MG51005 192 193 1 8.95
Au_FAA505_ppm_A
MG51006 193 194 1 91.70
Au_FAA505_ppm_A
MG51007 194 195 1 6.27
Au_FAA505_ppm_A
MG51008 195 196 1 40.10
Au_FAA505_ppm_A
MG51009 196 197 1 23.30
Au_FAA505_ppm_A
MG51010 197 198 1 2.73
Au_FAA505_ppm_A
MG51011 198 199 1 0.09
Au_FAA505_ppm_A
MG51012 199 200 1 0.45
Au_FAA505_ppm_A
MG51013 200 201 1 0.6
Au_FAA505_ppm_A
MG51017 201 202 1 0.16
Au_FAA505_ppm_A
MG51018 202 203 1 0.09
Au_FAA505_ppm_A
MG51019 203 204 1 0.03
Au_FAA505_ppm_A
MG51020 204 205 1 0.09
Au_FAA505_ppm_A
MG51021 205 206 1 0.02
Au_FAA505_ppm_A
MG51022 206 207 1 0.36
Au_FAA505_ppm_A
MG51023 207 208 1 0.13
Au_FAA505_ppm_A
MG51024 208 209 1 0.03
Au_FAA505_ppm_A
MG51025 209 210 1 0.01
Au_FAA505_ppm_A
MG51026 210 211 1 0.02
Au_FAA505_ppm_A
MG51027 211 212 1 0.05
Au_FAA505_ppm_A
MG51028 212 213 1 23.5
Au_FAA505_ppm_A
MG51029 213 214 1 2.88
Au_FAA505_ppm_A
MG51030 214 215 1 0.67
Au_FAA505_ppm_A
MG51031 215 216 1 0.14
Au_FAA505_ppm_A
MG51032 216 217 1 0.21
Au_FAA505_ppm_A
MG51033 217 218 1 0.48
Au_FAA505_ppm_A
MG51037 218 219 1 0.14
Au_FAA505_ppm_A
MG51038 219 220 1 0.04
Au_FAA505_ppm_A
MG51039 220 221 1 0.03
Au_FAA505_ppm_A
MG51040 221 222 1 0.03
Au_FAA505_ppm_A
MG51041 222 223 1 -0.01
Au_FAA505_ppm_A
MG51042 223 224 1 0.07
Au_FAA505_ppm_A
MG51043 224 225 1 0.09
Au_FAA505_ppm_A
MG51044 225 226 1 0.14
Au_FAA505_ppm_A
MG51045 226 227 1 0.06
Au_FAA505_ppm_A
MG51046 227 228 1 0.03
Au_FAA505_ppm_A
MG51047 228 229 1 0.17
Au_FAA505_ppm_A
MG51048 229 230 1 0.32
Au_FAA505_ppm_A
16
Hole ID
Sample Depth Depth Interval Au As ppm Au
ID From (m) To (m) (m) g/t (pXRF) Method
MDD283 MG49118 261 262 1 0.09 270 Au_FAP50V10_ppm_A
MG49119 262 263 1 0.94 363 Au_FAP50V10_ppm_A
MG49120 263 264 1 9.16 1872 Au_FAP50V10_ppm_A
MG49121 264 265 1 0.01 33 Au_FAP50V10_ppm_A
MG49122 265 266 1 0.03 129 Au_FAP50V10_ppm_A
MG49123 266 267 1 1.05 712 Au_FAP50V10_ppm_A
MG49127 267 268 1 0.13 656 Au_FAP50V10_ppm_A
MG49128 268 269 1 0.11 422 Au_FAP50V10_ppm_A
MG49129 269 270 1 0.01 106 Au_FAP50V10_ppm_A
MG49130 270 271 1 0.02 423 Au_FAP50V10_ppm_A
MG49131 271 272 1 0.07
Au_FAP50V10_ppm_A
MG49132 272 273 1 0.3 611 Au_FAP50V10_ppm_A
MG49133 273 274 1 0.19
Au_FAP50V10_ppm_A
MG49134 274 275 1 0.04 1222 Au_FAP50V10_ppm_A
MG49135 275 276 1 4.43
Au_FAP50V10_ppm_A
MG49136 276 277 1 0.17
Au_FAP50V10_ppm_A
MG49137 277 278 1 0.1 1735 Au_FAP50V10_ppm_A
MG49138 278 279 1 0.06
Au_FAP50V10_ppm_A
MG49139 279 280 1 0.03 544 Au_FAP50V10_ppm_A
MG49140 280 281 1 4.31 261 Au_FAP50V10_ppm_A
MG49141 281 282 1 19.67 3825 Au_FAP50V10_ppm_A
MG49143 282 283 1 0.04 758 Au_FAP50V10_ppm_A
MG49144 283 284 1 0.02 255 Au_FAP50V10_ppm_A
MG49145 284 285 1 0.31 397 Au_FAP50V10_ppm_A
MG49146 285 286 1 0.01 224 Au_FAP50V10_ppm_A
MG49147 286 287 1 1.46 436 Au_FAP50V10_ppm_A
MG49151 287 288 1 0.21 912 Au_FAP50V10_ppm_A
MG49152 288 289 1 0.07 1777 Au_FAP50V10_ppm_A
MG49153 289 290 1 0.07 405 Au_FAP50V10_ppm_A
MG49154 290 291 1 0.02 65 Au_FAP50V10_ppm_A
MG49155 291 292 1 0.05 590 Au_FAP50V10_ppm_A
MG49156 292 293 1 0.02 214 Au_FAP50V10_ppm_A
MG49157 293 294 1 0.07 690 Au_FAP50V10_ppm_A
MG49158 294 295 1 3.50 78 Au_FAP50V10_ppm_A
MG49159 295 296 1 1.48 118 Au_FAP50V10_ppm_A
MG49160 296 297 1 0.04 83 Au_FAP50V10_ppm_A
MG49161 297 298 1 0.71 1371 Au_FAP50V10_ppm_A
MG49162 298 299 1 0.05 358 Au_FAP50V10_ppm_A
MG49163 299 300 1 -0.01 7 Au_FAP50V10_ppm_A
MG49164 300 301 1 -0.01 12 Au_FAP50V10_ppm_A
MG49165 301 302 1 0.07 493 Au_FAP50V10_ppm_A
MG49166 302 303 1 0.04 99 Au_FAP50V10_ppm_A
MG49167 303 304 1 0.18 623 Au_FAP50V10_ppm_A
MG49168 304 305 1 0.01 98 Au_FAP50V10_ppm_A
MG49169 305 306 1 -0.01 13 Au_FAP50V10_ppm_A
MG49170 306 307 1 0.09 97 Au_FAP50V10_ppm_A
MG49174 307 308 1 -0.01 15 Au_FAP50V10_ppm_A
MG49175 308 308.6 0.6 0.0 90 Au_FAP50V10_ppm_A
Hole ID
Sample Depth Depth Interval Au As ppm Au
ID From (m) To (m) (m) g/t (pXRF) Method
MDD234 MG39498 207 208 1 0.54 1295 Au_FAA505_ppm_A
MG39499 208 209 1 0.21 2496 Au_FAA505_ppm_A
MG39500 209 210 1 0.46 5561 Au_FAA505_ppm_A
MG39501 210 211 1 0.24 1890 Au_FAA505_ppm_A
MG39502 211 212 1 0.73 2082 Au_FAA505_ppm_A
MG39503 212 213 1 0.38 4678 Au_FAA505_ppm_A
MG39504 213 214 1 2.59 3163 Au_FAA505_ppm_A
MG39505 214 215 1 0.35 1222 Au_Au-PA01_ppm_A
MG39506 215 216 1 0.26 1846 Au_FAA505_ppm_A
MG39507 216 217 1 0.5 1671 Au_FAA505_ppm_A
MG39508 217 218 1 1.58 5606 Au_FAA505_ppm_A
MG39509 218 219 1 0.24 3982 Au_FAA505_ppm_A
MG39510 219 220 1 0.31 1068 Au_FAA505_ppm_A
MG39511 220 221 1 0.38 3648 Au_Au-PA01_ppm_A
MG39512 221 222 1 0.22 2861 Au_FAA505_ppm_A
MG39513 222 223 1 2.25 3849 Au_FAA505_ppm_A
MG39517 223 224 1 1.08 4634 Au_FAA505_ppm_A
MG39518 224 225 1 1.81 6431 Au_FAA505_ppm_A
MG39519 225 226 1 0.11 970 Au_FAA505_ppm_A
MG39520 226 227 1 0.03 441 Au_FAA505_ppm_A
MG39521 227 228 1 0.52 1741 Au_FAA505_ppm_A
MG39522 228 229 1 0.01 302 Au_FAA505_ppm_A
MG39523 229 230 1 0.08 436 Au_FAA505_ppm_A
MG39524 230 231 1 0.24 1194 Au_FAA505_ppm_A
MG39525 231 232 1 -0.01 73 Au_FAA505_ppm_A
MG39526 232 233 1 -0.01 18 Au_FAA505_ppm_A
MG39527 233 234 1 0.04 26 Au_FAA505_ppm_A
MG39528 234 235 1 0.02 98 Au_FAA505_ppm_A
MG39529 235 236 1 0.08 918 Au_FAA505_ppm_A
MG39530 236 237 1 0.03 379 Au_FAA505_ppm_A
MG39531 237 238 1 0.07 73 Au_FAA505_ppm_A
MG39532 238 239 1 0.13 163 Au_FAA505_ppm_A
MG39533 239 240 1 0.09 801 Au_FAA505_ppm_A
MG39534 240 241 1 0.05 423 Au_FAA505_ppm_A
MG39535 241 242 1 0.07 684 Au_FAA505_ppm_A
MG39536 242 243 1 0.41 3413 Au_FAA505_ppm_A
MG39540 243 244 1 0.02 169 Au_FAA505_ppm_A
MG39541 244 245 1 -0.01 71 Au_FAA505_ppm_A
MG39542 245 246 1 0.02 100 Au_FAA505_ppm_A
MG39543 246 247 1 -0.01 26 Au_FAA505_ppm_A
MG39544 247 248 1 0.07 31 Au_FAA505_ppm_A
MG39545 248 249 1 -0.01 10 Au_FAA505_ppm_A
MG39546 249 250 1 0.05 90 Au_FAA505_ppm_A
MG39547 250 251 1 0.01 276 Au_FAA505_ppm_A
MG39548 251 252 1 -0.01 12 Au_FAA505_ppm_A
MG39549 252 253 1 0.04 1226 Au_FAA505_ppm_A
MG39550 253 254 1 0.02 426 Au_FAA505_ppm_A
MG39551 254 255 1 0.06 39 Au_FAA505_ppm_A
MG39552 255 256 1 0.12 1997 Au_Au-PA01_ppm_A
MG39553 256 257 1 0.09 2005 Au_FAA505_ppm_A
MG39554 257 258 1 0.06 846 Au_FAA505_ppm_A
MG39555 258 259 1 0.27 2201 Au_FAA505_ppm_A
MG39556 259 260 1 0.06 649 Au_FAA505_ppm_A
MG39557 260 261 1 0.07 443 Au_Au-PA01_ppm_A
MG39558 261 262 1 0.21 1590 Au_FAA505_ppm_A
MG39559 262 263 1 0.37 5132 Au_FAA505_ppm_A
MG39563 263 264 1 0.04 42 Au_FAA505_ppm_A
MG39564 264 265 1 0.01 9 Au_FAA505_ppm_A
MG39565 265 266 1 0.01 8 Au_FAA505_ppm_A
MG39566 266 267 1 -0.01 60 Au_FAA505_ppm_A
MG39567 267 268 1 -0.01 10 Au_FAA505_ppm_A
MG39568 268 269 1 0.05 290 Au_FAA505_ppm_A
MG39569 269 270 1 -0.01 11 Au_FAA505_ppm_A
MG39570 270 271 1 -0.01 6 Au_FAA505_ppm_A
MG39571 271 272 1 -0.01 11 Au_FAA505_ppm_A
MG39572 272 273 1 0.02 212 Au_FAA505_ppm_A
Hole ID
Sample Depth Depth Interval Au As ppm Au
ID From (m) To (m) (m) g/t (pXRF) Method
MDD234 MG39448 163 164 1 0.02 8 Au_FAA505_ppm_A
MG39449 164 165.15 1.15 -0.01 14 Au_FAA505_ppm_A
MG39450 165.15 165.9 0.75 0.01 24 Au_FAA505_ppm_A
MG39451 165.9 167 1.1 0.60 4988 Au_FAA505_ppm_A
MG39452 167 168 1 0.85 7521 Au_FAA505_ppm_A
MG39453 168 169 1 1.56 7871 Au_FAA505_ppm_A
MG39454 169 170 1 1.08 4079 Au_FAA505_ppm_A
MG39455 170 171 1 1.02 6318 Au_FAA505_ppm_A
MG39456 171 172 1 0.39 1722 Au_Au-PA01_ppm_A
MG39457 172 173 1 3.89 4202 Au_FAA505_ppm_A
MG39458 173 174 1 0.80 9903 Au_FAA505_ppm_A
MG39459 174 175 1 1.69 6084 Au_FAA505_ppm_A
MG39460 175 176 1 0.18 4260 Au_FAA505_ppm_A
MG39461 176 177 1 0.22 3426 Au_FAA505_ppm_A
MG39462 177 178 1 0.16 3508 Au_FAA505_ppm_A
MG39463 178 179 1 1.04 2472 Au_FAA505_ppm_A
MG39464 179 180 1 0.24 808 Au_FAA505_ppm_A
MG39465 180 181 1 0.23 2835 Au_FAA505_ppm_A
MG39466 181 182 1 0.21 4619 Au_FAA505_ppm_A
MG39467 182 183 1 0.89 4494 Au_FAA505_ppm_A
MG39471 183 184 1 0.27 3504 Au_FAA505_ppm_A
MG39472 184 185 1 0.32 3934 Au_FAA505_ppm_A
MG39473 185 186 1 0.11 3285 Au_FAA505_ppm_A
MG39474 186 187 1 0.08 2197 Au_FAA505_ppm_A
MG39475 187 188 1 0.08 1809 Au_FAA505_ppm_A
MG39476 188 189 1 0.49 7649 Au_FAA505_ppm_A
MG39477 189 190 1 1.26 9448 Au_FAA505_ppm_A
MG39478 190 191 1 0.49 4146 Au_FAA505_ppm_A
MG39479 191 192 1 0.07 810 Au_FAA505_ppm_A
MG39480 192 193 1 0.34 2586 Au_FAA505_ppm_A
MG39481 193 194 1 0.29 4622 Au_FAA505_ppm_A
MG39482 194 195 1 0.52 2191 Au_FAA505_ppm_A
MG39483 195 196 1 0.11 2940 Au_FAA505_ppm_A
MG39484 196 197 1 0.77 2299 Au_FAA505_ppm_A
MG39485 197 198 1 0.74 2462 Au_FAA505_ppm_A
MG39486 198 199 1 0.21 1100 Au_FAA505_ppm_A
MG39487 199 200 1 0.56 3199 Au_FAA505_ppm_A
MG39488 200 201 1 0.7 4483 Au_FAA505_ppm_A
MG39489 201 202 1 0.01 198 Au_FAA505_ppm_A
MG39490 202 203 1 0.55 8348 Au_FAA505_ppm_A
MG39494 203 204 1 0.05 376 Au_FAA505_ppm_A
MG39495 204 205 1 0.05 177 Au_FAA505_ppm_A
MG39496 205 206 1 0.45 298 Au_FAA505_ppm_A
MG39497 206 207 1 0.75 1117 Au_Au-PA01_ppm_A
Hole ID
Sample Depth Depth Interval Au As ppm Au
ID From (m) To (m) (m) g/t (pXRF) Method
MDD226 MG39362 180 181 1 0.03 7 Au_FAA505_ppm_A
MG39363 181 182 1 0.01 7 Au_FAA505_ppm_A
MG39364 182 183.3 1.3 0.01 41 Au_FAA505_ppm_A
MG39365 183.3 185 1.7 3.46 6685 Au_Au-PA01_ppm_A
MG39366 185 186 1 4.35 4582 Au_FAA505_ppm_A
MG39367 186 187 1 5.00 6258 Au_FAA505_ppm_A
MG39368 187 188 1 1.16 2337 Au_FAA505_ppm_A
MG39369 188 189 1 5.25 6892 Au_FAA505_ppm_A
MG39370 189 190 1 2.61 5916 Au_FAA505_ppm_A
MG39371 190 191 1 2.17 8427 Au_FAA505_ppm_A
MG39372 191 192 1 2.48 8348 Au_FAA505_ppm_A
MG39373 192 193 1 9.12 7235 Au_FAA505_ppm_A
MG39374 193 194 1 7.49 8043 Au_FAA505_ppm_A
MG39375 194 195 1 30.20 9047 Au_FAA505_ppm_A
MG39376 195 196 1 9.50 5280 Au_FAA505_ppm_A
MG39377 196 197 1 10.40 5009 Au_FAA505_ppm_A
MG39378 197 198 1 0.7 2942 Au_FAA505_ppm_A
MG39379 198 199 1 0.54 5147 Au_FAA505_ppm_A
MG39380 199 200 1 1.92 1763 Au_FAA505_ppm_A
MG39382 200 201 1 0.16 1837 Au_FAA505_ppm_A
MG39386 201 202 1 13.50 5869 Au_FAA505_ppm_A
MG39387 202 203 1 43.60 6309 Au_FAA505_ppm_A
MG39389 203 204 1 1.99 8042 Au_Au-PA01_ppm_A
MG39390 204 205 1 16.90 6876 Au_FAA505_ppm_A
MG39391 205 206 1 0.74 6623 Au_FAA505_ppm_A
MG39392 206 207 1 1.33 9757 Au_Au-PA01_ppm_A
17
Hole ID
Sample Depth Depth Interval Au As ppm Au
ID From (m) To (m) (m) g/t (pXRF) Method
MDD226 MG39393 207 208 1 12.00 4595 Au_FAA505_ppm_A
MG39394 208 209 1 10.00 9421 Au_FAA505_ppm_A
MG39395 209 210 1 0.44 5860 Au_FAA505_ppm_A
MG39396 210 211 1 8.11 9179 Au_FAA505_ppm_A
MG39397 211 212 1 0.47 3127 Au_FAA505_ppm_A
MG39398 212 213 1 0.36 5767 Au_FAA505_ppm_A
MG39399 213 214 1 9.65 8713 Au_FAA505_ppm_A
MG39400 214 215 1 0.53 2526 Au_Au-PA01_ppm_A
MG39401 215 216 1 0.33 2718 Au_FAA505_ppm_A
MG39402 216 217 1 0.07 2181 Au_FAA505_ppm_A
MG39403 217 218 1 0.11 2768 Au_FAA505_ppm_A
MG39404 218 219 1 0.26 3446 Au_FAA505_ppm_A
MG39405 219 220 1 4.75 6434 Au_FAA505_ppm_A
MG39406 220 221 1 0.18 1660 Au_FAA505_ppm_A
MG39410 221 222 1 0.49 3664 Au_FAA505_ppm_A
MG39411 222 223 1 0.23 7021 Au_FAA505_ppm_A
MG39412 223 224 1 0.56 4942 Au_FAA505_ppm_A
MG39413 224 225 1 1.27 4342 Au_FAA505_ppm_A
MG39414 225 226 1 0.47 3757 Au_FAA505_ppm_A
MG39415 226 227 1 4.78 5297 Au_FAA505_ppm_A
MG39416 227 228 1 3.23 3660 Au_FAA505_ppm_A
MG39418 228 229 1 0.12 873 Au_FAA505_ppm_A
MG39419 229 230 1 0.09 1398 Au_FAA505_ppm_A
MG39420 230 231 1 0.01 121 Au_FAA505_ppm_A
MG39421 231 232 1 0.01 37 Au_FAA505_ppm_A
MG39422 232 233 1 0.01 30 Au_FAA505_ppm_A
MG39423 233 234 1 0.02 119 Au_FAA505_ppm_A
MG39424 234 235 1 0.23 1461 Au_FAA505_ppm_A
MG39425 235 236 1 1.34 3902 Au_FAA505_ppm_A
MG39426 236 237 1 0.12 258 Au_FAA505_ppm_A
MG39427 237 238 1 0.14 4071 Au_Au-PA01_ppm_A
MG39428 238 239 1 0.03 330 Au_FAA505_ppm_A
MG39429 239 240 1 0.01 287 Au_FAA505_ppm_A
MG39430 240 241 1 0.09 1007 Au_FAA505_ppm_A
MG39434 241 242 1 0.02 517 Au_FAA505_ppm_A
MG39435 242 243 1 -0.01 42 Au_FAA505_ppm_A
MG39436 243 244 1 0.85 1169 Au_FAA505_ppm_A
MG39437 244 245 1 0.05 235 Au_FAA505_ppm_A
MG39438 245 246 1 0.09 622 Au_FAA505_ppm_A
MG39439 246 247 1 0.05 52 Au_FAA505_ppm_A
MG39440 247 248 1 0.03 103 Au_FAA505_ppm_A
MG39441 248 249 1 0.03 531 Au_FAA505_ppm_A
MG39442 249 250 1 0.14 113 Au_FAA505_ppm_A
MG39443 250 251 1 0.12 1289 Au_FAA505_ppm_A
MG39444 251 252 1 0.18 1023 Au_FAA505_ppm_A
MG39445 252 253 1 -0.01 23 Au_FAA505_ppm_A
MG39446 253 254 1 0.02 17 Au_FAA505_ppm_A
MG39447 254 255 1 0.09 1181 Au_FAA505_ppm_A
Hole ID
Sample Depth Depth Interval Au As ppm Au
ID From (m) To (m) (m) g/t (pXRF) Method
MDD217 MG39085 208 209 1 -0.01 17 Au_FAA505_ppm_A
MG39086 209 210 1 0.07 63 Au_Au-PA01_ppm_A
MG39087 210 211 1 -0.01 46 Au_FAA505_ppm_A
MG39088 211 212 1 -0.01 39 Au_FAA505_ppm_A
MG39089 212 213 1 0.02 40 Au_FAA505_ppm_A
MG39090 213 214 1 0.02 34 Au_FAA505_ppm_A
MG39091 214 215 1 -0.01 55 Au_FAA505_ppm_A
MG39092 215 216 1 0.05 61 Au_FAA505_ppm_A
MG39093 216 217 1 -0.01 20 Au_FAA505_ppm_A
MG39094 217 218 1 0.02 27 Au_FAA505_ppm_A
MG39095 218 219 1 -0.01 18 Au_FAA505_ppm_A
MG39096 219 220 1 4.66 254 Au_Au-PA01_ppm_A
MG39097 220 221 1 0.01 17 Au_FAA505_ppm_A
MG39098 221 222 1 0.01 158 Au_FAA505_ppm_A
MG39099 222 223 1 0.07 26 Au_FAA505_ppm_A
MG39100 223 224 1 -0.01 12 Au_FAA505_ppm_A
MG39104 224 225 1 -0.01 12 Au_FAA505_ppm_A
MG39105 225 226 1 0.01 113 Au_FAA505_ppm_A
MG39106 226 227 1 0.01 39 Au_FAA505_ppm_A
MG39107 227 228 1 0.07 17 Au_FAA505_ppm_A
MG39108 228 229 1 -0.01 8 Au_FAA505_ppm_A
MG39109 229 230 1 0.03 11 Au_FAA505_ppm_A
MG39110 230 231 1 -0.01 7 Au_FAA505_ppm_A
MG39111 231 232 1 -0.01 5 Au_FAA505_ppm_A
MG39112 232 233 1 -0.01 10 Au_FAA505_ppm_A
MG39113 233 234 1 -0.01 6 Au_FAA505_ppm_A
MG39114 234 235 1 -0.01 11 Au_FAA505_ppm_A
MG39115 235 236 1 -0.01 10 Au_FAA505_ppm_A
MG39116 236 237 1 -0.01 15 Au_FAA505_ppm_A
MG39117 237 238 1 -0.01 12 Au_FAA505_ppm_A
MG39118 238 239 1 -0.01 11 Au_FAA505_ppm_A
MG39119 239 240 1 0.0 4 Au_FAA505_ppm_A
MG39120 240 241 1 0.0 9 Au_FAA505_ppm_A
MG39121 241 242 1 -0.01 9 Au_FAA505_ppm_A
MG39122 242 243 1 0.0 13 Au_FAA505_ppm_A
MG39123 243 244 1 0.0 46 Au_FAA505_ppm_A
MG39127 244 245 1 -0.01 12 Au_FAA505_ppm_A
MG39128 245 246 1 -0.01 9 Au_FAA505_ppm_A
MG39129 246 247 1 -0.01 6 Au_FAA505_ppm_A
MG39130 247 248 1 -0.01 7 Au_FAA505_ppm_A
MG39131 248 248.9 0.9 -0.01 9 Au_FAA505_ppm_A
Hole ID
Sample Depth Depth Interval Au As ppm Au
ID From (m) To (m) (m) g/t (pXRF) Method
MDD200 MG36631 181 182 1 -0.01 4 Au_FAA505_ppm_A
MG36632 182 183 1 0.02 6 Au_FAA505_ppm_A
MG36633 183 183.5 0.5 0.04 46 Au_FAA505_ppm_A
MG36634 183.5 185 1.5 3.06 7268 Au_FAA505_ppm_A
MG36635 185 186 1 2.18 8382 Au_FAA505_ppm_A
MG36636 186 187 1 7.26 10651 Au_FAA505_ppm_A
MG36637 187 188 1 5.20 7233 Au_FAA505_ppm_A
MG36638 188 189 1 2.75 3358 Au_FAA505_ppm_A
MG36639 189 190 1 0.89 4333 Au_FAA505_ppm_A
MG36640 190 191 1 4.72 6096 Au_FAA505_ppm_A
MG36641 191 192 1 24.00 3660 Au_FAA505_ppm_A
MG36642 192 193 1 8.15 4204 Au_FAA505_ppm_A
MG36643 193 194 1 4.13 6898 Au_FAA505_ppm_A
MG36644 194 195 1 10.5 7646 Au_FAA505_ppm_A
MG36646 195 196 1 3.8 3269 Au_FAA505_ppm_A
MG36648 196 197 1 31.0 5770 Au_FAA505_ppm_A
MG36649 197 198 1 10.50 4898 Au_FAA505_ppm_A
MG36650 198 199 1 1.13 6022 Au_FAA505_ppm_A
MG36651 199 200 1 6.33 4486 Au_FAA505_ppm_A
MG36652 200 201 1 1.79 822 Au_FAA505_ppm_A
MG36656 201 202 1 0.21 1781 Au_Au-PA01_ppm_A
MG36657 202 203 1 0.53 2600 Au_FAA505_ppm_A
MG36658 203 204 1 0.1 942 Au_FAA505_ppm_A
MG36659 204 205 1 0.11 2065 Au_FAA505_ppm_A
MG36660 205 206 1 0.21 2193 Au_Au-PA01_ppm_A
MG36661 206 207 1 0.48 1493 Au_FAA505_ppm_A
MG36662 207 208 1 0.12 831 Au_FAA505_ppm_A
MG36663 208 209 1 0.36 5753 Au_FAA505_ppm_A
MG36664 209 210 1 0.8 8724 Au_FAA505_ppm_A
MG36665 210 211 1 0.30 4151 Au_FAA505_ppm_A
MG36666 211 212 1 0.04 155 Au_FAA505_ppm_A
MG36667 212 213 1 0.10 1181 Au_Au-PA01_ppm_A
MG36668 213 214 1 0.09 806 Au_FAA505_ppm_A
MG36669 214 215 1 0.18 448 Au_FAA505_ppm_A
MG36670 215 216 1 0.49 2664 Au_FAA505_ppm_A
MG36671 216 217 1 0.12 846 Au_FAA505_ppm_A
MG36672 217 218 1 0.0 709 Au_FAA505_ppm_A
MG36673 218 219 1 0.04 482 Au_FAA505_ppm_A
MG36674 219 220 1 0.35 1971 Au_FAA505_ppm_A
MG36675 220 221 1 0.06 846 Au_FAA505_ppm_A
MG36679 221 222 1 0.06 1164 Au_FAA505_ppm_A
MG36680 222 223 1 0.15 1838 Au_FAA505_ppm_A
MG36681 223 224 1 0.24 902 Au_Au-PA01_ppm_A
MG36682 224 225 1 0.21 6054 Au_FAA505_ppm_A
MG36683 225 226 1 0.04 1007 Au_FAA505_ppm_A
MG36684 226 227 1 0.05 950 Au_FAA505_ppm_A
MG36685 227 228 1 0.03 616 Au_FAA505_ppm_A
MG36686 228 229 1 0.03 505 Au_FAA505_ppm_A
MG36687 229 230 1 0.43 384 Au_Au-PA01_ppm_A
MG36688 230 231 1 0.03 68 Au_FAA505_ppm_A
MG36689 231 232 1 0.19 1349 Au_FAA505_ppm_A
Hole ID
Sample Depth Depth Interval Au As ppm Au
ID From (m) To (m) (m) g/t (pXRF) Method
MDD217 MG39035 163 164 1 0.0 41 Au_FAA505_ppm_A
MDD217 MG39036 164 165.3 1.3 -0.01 12 Au_FAA505_ppm_A
MDD217 MG39037 165.3 167 1.7 -0.01 12 Au_FAA505_ppm_A
MDD217 MG39038 167 168 1 0.43 1036 Au_FAA505_ppm_A
MDD217 MG39039 168 169 1 0.37 862 Au_FAA505_ppm_A
MDD217 MG39040 169 170 1 -99.00
Au_FAA505_ppm_A
MDD217 MG39041 170 171 1 0.03 189 Au_FAA505_ppm_A
MDD217 MG39042 171 172 1 0.04 456 Au_FAA505_ppm_A
MDD217 MG39043 172 173 1 0.12 629 Au_FAA505_ppm_A
MDD217 MG39044 173 174 1 0.24 2335 Au_FAA505_ppm_A
MDD217 MG39045 174 175 1 0.15 1366 Au_FAA505_ppm_A
MDD217 MG39046 175 176 1 3.72 228 Au_FAA505_ppm_A
MDD217 MG39047 176 177 1 4.3 747 Au_Au-PA01_ppm_A
MDD217 MG39048 177 178 1 0.07 214 Au_FAA505_ppm_A
MDD217 MG39049 178 179 1 0.16 71 Au_FAA505_ppm_A
MDD217 MG39050 179 180 1 0.01 181 Au_FAA505_ppm_A
MDD217 MG39051 180 181 1 0.03 89 Au_FAA505_ppm_A
MDD217 MG39052 181 182 1 0.02 112 Au_FAA505_ppm_A
MDD217 MG39053 182 183 1 -0.01 23 Au_FAA505_ppm_A
MDD217 MG39054 183 184 1 0.08 102 Au_FAA505_ppm_A
MDD217 MG39058 184 185 1 0.03 54 Au_FAA505_ppm_A
MDD217 MG39059 185 186 1 0.02 153 Au_FAA505_ppm_A
MDD217 MG39060 186 187 1 0.02 442 Au_FAA505_ppm_A
MDD217 MG39061 187 188 1 -0.01 24 Au_FAA505_ppm_A
MDD217 MG39062 188 189 1 -0.01 19 Au_FAA505_ppm_A
MDD217 MG39063 189 190 1 -0.01 15 Au_FAA505_ppm_A
MDD217 MG39064 190 191 1 -0.01 19 Au_FAA505_ppm_A
MDD217 MG39065 191 192 1 0.02 305 Au_FAA505_ppm_A
MDD217 MG39066 192 193 1 0.03 52 Au_FAA505_ppm_A
MDD217 MG39067 193 194 1 0.01 95 Au_FAA505_ppm_A
MDD217 MG39068 194 195 1 -0.01 56 Au_FAA505_ppm_A
MDD217 MG39069 195 196 1 0.01 34 Au_FAA505_ppm_A
MDD217 MG39070 196 197 1 0.04 554 Au_FAA505_ppm_A
MDD217 MG39071 197 198 1 1.57 125 Au_FAA505_ppm_A
MDD217 MG39072 198 199 1 -0.01 25 Au_FAA505_ppm_A
MDD217 MG39073 199 200 1 0.16 1757 Au_FAA505_ppm_A
MDD217 MG39074 200 201 1 12.80 3664 Au_FAA505_ppm_A
MDD217 MG39075 201 202 1 1.54 5240 Au_FAA505_ppm_A
MDD217 MG39076 202 203 1 2.46 1989 Au_FAA505_ppm_A
MDD217 MG39077 203 204 1 0.11 969 Au_Au-PA01_ppm_A
MDD217 MG39081 204 205 1 0.28 258 Au_FAA505_ppm_A
MDD217 MG39082 205 206 1 0.07 230 Au_FAA505_ppm_A
MDD217 MG39083 206 207 1 0.02 123 Au_FAA505_ppm_A
MDD217 MG39084 207 208 1 -0.01 17 Au_FAA505_ppm_A
18
Hole ID
Sample Depth Depth Interval Au As ppm Au
ID From (m) To (m) (m) g/t (pXRF) Method
MDD200 MG36690 232 233 1 0.02 57 Au_FAA505_ppm_A
MG36691 233 234 1 0.07 1422 Au_FAA505_ppm_A
MG36692 234 235 1 0.01 94 Au_FAA505_ppm_A
MG36693 235 236 1 0.04 1288 Au_FAA505_ppm_A
MG36694 236 237 1 0.04 698 Au_FAA505_ppm_A
MG36695 237 238 1 0.12 1637 Au_FAA505_ppm_A
MG36696 238 239 1 0.03 202 Au_FAA505_ppm_A
MG36697 239 240 1 0.05 1092 Au_FAA505_ppm_A
MG36698 240 241 1 0.03 521 Au_FAA505_ppm_A
MG36702 241 242 1 0.12 4155 Au_FAA505_ppm_A
MG36703 242 243 1 0.05 3492 Au_FAA505_ppm_A
MG36704 243 244 1 0.41 9504 Au_FAA505_ppm_A
MG36705 244 245 1 0.77 3226 Au_FAA505_ppm_A
MG36706 245 246 1 0.02 1920 Au_FAA505_ppm_A
MG36707 246 247 1 0.03 236 Au_FAA505_ppm_A
MG36708 247 248 1 0.02 542 Au_FAA505_ppm_A
MG36709 248 249 1 0.04 420 Au_FAA505_ppm_A
MG36710 249 250 1 0.08 1634 Au_FAA505_ppm_A
MG36711 250 251 1 2.8 821 Au_FAA505_ppm_A
MG36712 251 252 1 0.04 130 Au_FAA505_ppm_A
MG36713 252 253 1 2.54 17777 Au_FAA505_ppm_A
MG36714 253 254 1 0.1 2287 Au_FAA505_ppm_A
MG36715 254 255 1 0.03 258 Au_FAA505_ppm_A
MG36716 255 256 1 0.03 239 Au_FAA505_ppm_A
MG36717 256 257 1 0.04 317 Au_FAA505_ppm_A
MG36718 257 258 1 0.18 2944 Au_FAA505_ppm_A
MG36719 258 259 1 0.18 2848 Au_FAA505_ppm_A
MG36720 259 260 1 0.26 5369 Au_FAA505_ppm_A
MG36721 260 261 1 1.06 2482 Au_FAA505_ppm_A
MG36725 261 262 1 0.28 7859 Au_Au-PA01_ppm_A
MG36726 262 263 1 0.73 11508 Au_FAA505_ppm_A
MG36727 263 264 1 0.86 9082 Au_FAA505_ppm_A
MG36728 264 265 1 0.35 4216 Au_FAA505_ppm_A
MG36729 265 266 1 0.01 181 Au_FAA505_ppm_A
MG36730 266 267 1 0.01 265 Au_FAA505_ppm_A
MG36731 267 268 1 0.04 828 Au_FAA505_ppm_A
MG36732 268 269 1 0.04 1019 Au_FAA505_ppm_A
MG36733 269 270 1 0.16 1389 Au_FAA505_ppm_A
MG36734 270 271 1 0.51 565 Au_FAA505_ppm_A
MG36735 271 272 1 0.07 332 Au_FAA505_ppm_A
MG36736 272 273 1 0.03 268 Au_FAA505_ppm_A
MG36737 273 274 1 -0.01 45 Au_FAA505_ppm_A
MG36738 274 274.8 0.8 0.11 304 Au_FAA505_ppm_A
Hole ID
Sample Depth Depth Interval Au As ppm Au
ID From (m) To (m) (m) g/t (pXRF) Method
MDD181 MG34578 192 193 1 -0.01 17 Au_FAA505_ppm_A
MG34579 193 194 1 0.2 3735 Au_FAA505_ppm_A
MG34580 194 195 1 0.08 2096 Au_FAA505_ppm_A
MG34581 195 196 1 0.6 4991 Au_FAA505_ppm_A
MG34582 196 197 1 3.85 2910 Au_FAA505_ppm_A
MG34583 197 198 1 3.69 6224 Au_FAA505_ppm_A
MG34584 198 199 1 0.68 1409 Au_Au-PA01_ppm_A
MG34585 199 200 1 0.02 880 Au_FAA505_ppm_A
MG34586 200 201 1 -0.01 124 Au_FAA505_ppm_A
MG34587 201 202 1 0.43 308 Au_FAA505_ppm_A
MG34588 202 203 1 0.03 330 Au_FAA505_ppm_A
MG34592 203 204 1 0.03 28 Au_FAA505_ppm_A
MG34593 204 205 1 -0.01
Au_FAA505_ppm_A
MG34594 205 206 1 -0.01 10 Au_FAA505_ppm_A
MG34595 206 207 1 -0.01 144 Au_FAA505_ppm_A
MG34596 207 208 1 0.27 382 Au_FAA505_ppm_A
MG34597 208 209 1 4.29 5291 Au_FAA505_ppm_A
MG34598 209 210 1 0.11 834 Au_FAA505_ppm_A
MG34599 210 211 1 0.5 2821 Au_FAA505_ppm_A
MG34600 211 212 1 0.04 1172 Au_FAA505_ppm_A
MG34601 212 213 1 0.24 2147 Au_FAA505_ppm_A
MG34602 213 214 1 0.34 582 Au_FAA505_ppm_A
MG34603 214 215 1 0.06 307 Au_FAA505_ppm_A
MG34604 215 216 1 -0.01 56 Au_FAA505_ppm_A
MG34605 216 217 1 -0.01 9 Au_FAA505_ppm_A
MG34606 217 218 1 0.27 1807 Au_FAA505_ppm_A
MG34607 218 219 1 11.5 459 Au_FAA505_ppm_A
MG34608 219 220 1 0.22 384 Au_FAA505_ppm_A
MG34609 220 221 1 0.04 60 Au_FAA505_ppm_A
MG34610 221 222 1 0.19 169 Au_Au-PA01_ppm_A
MG34611 222 223 1 0.41 843 Au_FAA505_ppm_A
MG34615 223 224 1 0.25 562 Au_Au-PA01_ppm_A
MG34616 224 225 1 0.67 1044 Au_FAA505_ppm_A
MG34617 225 226 1 0.2 774 Au_FAA505_ppm_A
MG34618 226 227 1 1.67 7359 Au_FAA505_ppm_A
MG34619 227 228 1 1.11 8167 Au_FAA505_ppm_A
MG34620 228 229 1 0.35 1560 Au_FAA505_ppm_A
MG34621 229 230 1 0.15 1894 Au_FAA505_ppm_A
MG34622 230 231 1 0.1 997 Au_FAA505_ppm_A
MG34623 231 232 1 0.05 679 Au_FAA505_ppm_A
MG34624 232 233 1 0.75 1103 Au_FAA505_ppm_A
MG34625 233 234 1 0.05 172 Au_FAA505_ppm_A
MG34626 234 235 1 0.01 328 Au_FAA505_ppm_A
MG34627 235 236 1 0.33 1435 Au_Au-PA01_ppm_A
MG34628 236 237 1 0.06 705 Au_FAA505_ppm_A
MG34629 237 238 1 0.06 670 Au_FAA505_ppm_A
MG34630 238 239 1 0.03 51 Au_FAA505_ppm_A
MG34631 239 240 1 -0.01 8 Au_FAA505_ppm_A
MG34632 240 241 1 0.1 453 Au_FAA505_ppm_A
MG34633 241 242 1 0.26 3920 Au_FAA505_ppm_A
MG34634 242 243 1 -0.01 8 Au_FAA505_ppm_A
MG34638 243 244 1 -0.01 40 Au_FAA505_ppm_A
MG34639 244 245 1 -0.01 8 Au_FAA505_ppm_A
MG34640 245 246 1 -0.01 10 Au_FAA505_ppm_A
MG34641 246 247 1 0.02 9 Au_FAA505_ppm_A
MG34642 247 248 1 0.09 417 Au_FAA505_ppm_A
MG34643 248 249 1 0.19 2680 Au_FAA505_ppm_A
MG34644 249 250 1 0.61 22397 Au_Au-PA01_ppm_A
MG34645 250 251 1 0.16 4800 Au_FAA505_ppm_A
MG34646 251 252 1 0.05 1322 Au_FAA505_ppm_A
MG34647 252 253 1 0.1 1901 Au_FAA505_ppm_A
MG34648 253 254 1 0.05 948 Au_FAA505_ppm_A
MG34649 254 255 1 0.21 1611 Au_FAA505_ppm_A
MG34650 255 256 1 0.08 1925 Au_FAA505_ppm_A
MG34651 256 257 1 0.05 1006 Au_FAA505_ppm_A
MG34652 257 258 1 0.05 403 Au_FAA505_ppm_A
MG34653 258 259 1 0.06 540 Au_FAA505_ppm_A
MG34654 259 260 1 0.04 540 Au_FAA505_ppm_A
MG34655 260 261 1 0.09 610 Au_FAA505_ppm_A
MG34656 261 262 1 0.33 9677 Au_FAA505_ppm_A
MG34657 262 263 1 0.49 4137 Au_FAA505_ppm_A
MG34661 263 264 1 0.05 285 Au_FAA505_ppm_A
MG34662 264 265 1 0.01 164 Au_FAA505_ppm_A
MG34663 265 266 1 0.21 1642 Au_FAA505_ppm_A
MG34664 266 267 1 0.14 2917 Au_FAA505_ppm_A
MG34665 267 268 1 0.04 1336 Au_FAA505_ppm_A
MG34666 268 269 1 -0.01 13 Au_FAA505_ppm_A
MG34667 269 270 1 0.01 35 Au_FAA505_ppm_A
MG34668 270 271 1 -0.01 11 Au_FAA505_ppm_A
MG34669 271 272 1 -0.01 131 Au_FAA505_ppm_A
MG34670 272 273 1 0.01 107 Au_FAA505_ppm_A
MG34671 273 274 1 0.12 2218 Au_FAA505_ppm_A
MG34672 274 275 1 0.02 277 Au_FAA505_ppm_A
MG34673 275 276 1 -0.01 13 Au_FAA505_ppm_A
MG34674 276 277 1 -0.01 57 Au_FAA505_ppm_A
MG34675 277 278 1 0.01 199 Au_FAA505_ppm_A
MG34676 278 279 1 -0.01 67 Au_FAA505_ppm_A
MG34677 279 280 1 0.01 299 Au_FAA505_ppm_A
MG34678 280 281 1 0.01 155 Au_FAA505_ppm_A
MG34679 281 282 1 0.06 769 Au_FAA505_ppm_A
MG34680 282 283 1 0.05 709 Au_FAA505_ppm_A
MG34684 283 284 1 0.03 223 Au_FAA505_ppm_A
MG34685 284 285 1 0.03 394 Au_FAA505_ppm_A
MG34686 285 286 1 0.12 248 Au_FAA505_ppm_A
MG34687 286 287 1 0.1 1122 Au_FAA505_ppm_A
Hole ID
Sample Depth Depth Interval Au As ppm Au
ID From (m) To (m) (m) g/t (pXRF) Method
MDD181 MG34523 143 144 1 0.01
Au_FAA505_ppm_A
MG34524 144 145 1 -0.01 7 Au_FAA505_ppm_A
MG34525 145 145.65 0.65 0.03 52 Au_FAA505_ppm_A
MG34526 145.65 147 1.35 0.2 561 Au_Au-PA01_ppm_A
MG34527 147 148 1 0.19 477 Au_FAA505_ppm_A
MG34528 148 149 1 0.25 334 Au_FAA505_ppm_A
MG34529 149 150 1 1 2967 Au_FAA505_ppm_A
MG34530 150 151 1 0.42 2195 Au_FAA505_ppm_A
MG34531 151 152 1 0.30 1078 Au_FAA505_ppm_A
MG34532 152 153 1 0.41 1017 Au_FAA505_ppm_A
MG34533 153 154 1 0.09 132 Au_FAA505_ppm_A
MG34534 154 155 1 0.06 425 Au_FAA505_ppm_A
MG34535 155 156 1 0.22 124 Au_FAA505_ppm_A
MG34536 156 157 1 0.12 202 Au_FAA505_ppm_A
MG34537 157 158 1 0.51 1549 Au_FAA505_ppm_A
MG34538 158 159 1 0.96 639 Au_FAA505_ppm_A
MG34539 159 160 1 0.05 109 Au_FAA505_ppm_A
MG34540 160 161 1 0.11 222 Au_FAA505_ppm_A
MG34541 161 162 1 0.26 402 Au_FAA505_ppm_A
MG34542 162 163 1 3.32 979 Au_FAA505_ppm_A
MG34546 163 164 1 0.03 208 Au_FAA505_ppm_A
MG34547 164 165 1 0.16 418 Au_FAA505_ppm_A
MG34548 165 166 1 0.05 158 Au_FAA505_ppm_A
MG34549 166 167 1 5.31 1246 Au_FAA505_ppm_A
MG34550 167 168 1 0.11 1426 Au_FAA505_ppm_A
MG34551 168 169 1 1.19 6432 Au_FAA505_ppm_A
MG34552 169 170 1 0.16 482 Au_FAA505_ppm_A
MG34553 170 171 1 0.42 1389 Au_FAA505_ppm_A
MG34554 171 172 1 1.08 5679 Au_FAA505_ppm_A
MG34555 172 173 1 0.27 3212 Au_FAA505_ppm_A
MG34556 173 174 1 1.3 1269 Au_FAA505_ppm_A
MG34557 174 175 1 0.03 199 Au_FAA505_ppm_A
MG34558 175 176 1 0.64 1971 Au_FAA505_ppm_A
MG34559 176 177 1 0.03 270 Au_FAA505_ppm_A
MG34560 177 178 1 0.03 46 Au_FAA505_ppm_A
MG34561 178 179 1 0.11 66 Au_FAA505_ppm_A
MG34562 179 180 1 4.16 117 Au_FAA505_ppm_A
MG34563 180 181 1 0.02 47 Au_FAA505_ppm_A
MG34564 181 182 1 0.01 76 Au_FAA505_ppm_A
MG34565 182 183 1 -0.01 54 Au_FAA505_ppm_A
MG34569 183 184 1 0.05 934 Au_FAA505_ppm_A
MG34570 184 185 1 0.23 1669 Au_FAA505_ppm_A
MG34571 185 186 1 0.06 146 Au_FAA505_ppm_A
MG34572 186 187 1 -0.01 8 Au_FAA505_ppm_A
MG34573 187 188 1 0.08 122 Au_FAA505_ppm_A
MG34574 188 189 1 0.23 1092 Au_FAA505_ppm_A
MG34575 189 190 1 0.02 188 Au_FAA505_ppm_A
MG34576 190 191 1 0.06 745 Au_FAA505_ppm_A
MG34577 191 192 1 0.06 1458 Au_FAA505_ppm_A
19
Hole ID
Sample Depth Depth Interval Au As ppm Au
ID From (m) To (m) (m) g/t (pXRF) Method
MDD181 MG34688 287 288 1 -0.01 20 Au_FAA505_ppm_A
MG34689 288 289 1 0.01 185 Au_FAA505_ppm_A
MG34690 289 290 1 0.38 6211 Au_FAA505_ppm_A
MG34691 290 291 1 0.1 1965 Au_FAA505_ppm_A
MG34692 291 292 1 0.08 778 Au_FAA505_ppm_A
MG34693 292 293 1 0.02 695 Au_FAA505_ppm_A
MG34694 293 294 1 0.02 394 Au_FAA505_ppm_A
MG34695 294 295 1 -0.01 94 Au_FAA505_ppm_A
MG34696 295 296 1 0.06 1099 Au_FAA505_ppm_A
MG34697 296 297 1 0.14 1788 Au_FAA505_ppm_A
MG34698 297 298 1 0.29 1808 Au_FAA505_ppm_A
MG34699 298 299 1 0.51 10925 Au_FAA505_ppm_A
MG34700 299 300 1 -0.01 23 Au_FAA505_ppm_A
MG34701 300 301 1 -0.01 12 Au_FAA505_ppm_A
MG34702 301 302 1 -0.01 19 Au_FAA505_ppm_A
MG34703 302 303 1 0.03 575 Au_FAA505_ppm_A
MG34707 303 304 1 0.01 37 Au_FAA505_ppm_A
MG34708 304 305 1 0.03 128 Au_FAA505_ppm_A
MG34709 305 306 1 0.21 998 Au_FAA505_ppm_A
MG34710 306 307 1 0.13 605 Au_FAA505_ppm_A
MG34711 307 308 1 -0.01 95 Au_FAA505_ppm_A
MG34712 308 309 1 0.26 1669 Au_FAA505_ppm_A
MG34713 309 310 1 0.14 790 Au_FAA505_ppm_A
MG34714 310 311 1 0.02 909 Au_FAA505_ppm_A
MG34715 311 312 1 0.04 1750 Au_FAA505_ppm_A
MG34716 312 313 1 0.07 2209 Au_FAA505_ppm_A
MG34717 313 314 1 0.21 3440 Au_FAA505_ppm_A
MG34718 314 315 1 0.06 797 Au_FAA505_ppm_A
MG34719 315 316 1 0.08 2557 Au_Au-PA01_ppm_A
MG34720 316 317.5 1.5 0.04 448 Au_FAA505_ppm_A
Hole ID
Sample Depth Depth Interval Au As ppm Au
ID From (m) To (m) (m) g/t (pXRF) Method
MDD176 MG33333 238 239 1 0.15 2845 Au_FAA505_ppm_A
MG33334 239 240 1 0.06 131 Au_FAA505_ppm_A
MG33335 240 241 1 -0.01 94 Au_FAA505_ppm_A
MG33336 241 242 1 0.03 27 Au_FAA505_ppm_A
MG33337 242 243 1 0.01 172 Au_FAA505_ppm_A
MG33338 243 244 1 0.05 1373 Au_FAA505_ppm_A
MG33339 244 245 1 0.33 442 Au_FAA505_ppm_A
MG33340 245 246 1 0.62 36 Au_FAA505_ppm_A
MG33341 246 247 1 0.19 1530 Au_FAA505_ppm_A
MG33342 247 248 1 0.22 614 Au_FAA505_ppm_A
MG33343 248 249 1 0.06 1547 Au_FAA505_ppm_A
MG33344 249 250 1 0.1 52 Au_FAA505_ppm_A
MG33345 250 251 1 0.03 1272 Au_FAA505_ppm_A
MG33346 251 252 1 0.04 696 Au_FAA505_ppm_A
MG33347 252 253 1 0.02 566 Au_FAA505_ppm_A
MG33348 253 254 1 -0.01 177 Au_FAA505_ppm_A
MG33349 254 255 1 0.11 2050 Au_FAA505_ppm_A
MG33350 255 256 1 0.19 958 Au_FAA505_ppm_A
MG33354 256 257 1 0.01 8 Au_FAA505_ppm_A
MG33355 257 258 1 0.01 6 Au_FAA505_ppm_A
MG33356 258 259 1 0.02 19 Au_FAA505_ppm_A
MG33357 259 260 1 -0.01 31 Au_FAA505_ppm_A
MG33358 260 261 1 0.11 3758 Au_FAA505_ppm_A
MG33359 261 262 1 -0.01 18 Au_FAA505_ppm_A
MG33360 262 263 1 0.01 67 Au_FAA505_ppm_A
MG33361 263 264 1 0.19 1191 Au_Au-PA01_ppm_A
MG33362 264 265 1 0.61 1895 Au_FAA505_ppm_A
MG33363 265 266 1 0.02 660 Au_FAA505_ppm_A
MG33364 266 267 1 0.17 3471 Au_FAA505_ppm_A
MG33365 267 268 1 1.02 12503 Au_Au-PA01_ppm_A
MG33366 268 269 1 0.03 113 Au_FAA505_ppm_A
MG33367 269 270 1 0.04 260 Au_FAA505_ppm_A
MG33368 270 271 1 0.13 239 Au_FAA505_ppm_A
MG33369 271 272 1 0.05 1144 Au_FAA505_ppm_A
MG33370 272 273 1 0.06 447 Au_FAA505_ppm_A
MG33371 273 274 1 0.02 359 Au_FAA505_ppm_A
MG33372 274 275 1 0.22 1796 Au_FAA505_ppm_A
MG33373 275 276 1 0.15 1768 Au_FAA505_ppm_A
MG33377 276 277 1 0.11 1615 Au_FAA505_ppm_A
MG33378 277 278 1 0.19 2149 Au_FAA505_ppm_A
MG33379 278 279 1 0.33 1816 Au_FAA505_ppm_A
MG33380 279 280 1 0.04 757 Au_FAA505_ppm_A
MG33381 280 281 1 0.05 999 Au_FAA505_ppm_A
MG33382 281 282 1 1.23 12074 Au_FAA505_ppm_A
MG33383 282 283 1 0.49 6742 Au_FAA505_ppm_A
MG33384 283 284 1 0.12 2027 Au_FAA505_ppm_A
MG33385 284 285 1 0.29 3236 Au_FAA505_ppm_A
MG33386 285 286 1 0.16 553 Au_FAA505_ppm_A
MG33387 286 287 1 0.05 1242 Au_FAA505_ppm_A
MG33388 287 288 1 0.04 565 Au_FAA505_ppm_A
MG33389 288 289 1 0.11 3301 Au_FAA505_ppm_A
MG33390 289 290 1 0.07 1494 Au_FAA505_ppm_A
MG33391 290 291 1 0.11 995 Au_FAA505_ppm_A
MG33392 291 292 1 0.09 2354 Au_FAA505_ppm_A
MG33393 292 293 1 0.05 1055 Au_FAA505_ppm_A
MG33394 293 294 1 0.09 1982 Au_FAA505_ppm_A
MG33395 294 295 1 0.05 2529 Au_FAA505_ppm_A
MG33396 295 296 1 0.07 2492 Au_FAA505_ppm_A
MG33400 296 297 1 0.05 2262 Au_FAA505_ppm_A
MG33401 297 298 1 0.06 72 Au_FAA505_ppm_A
MG33402 298 299 1 0.04 1329 Au_FAA505_ppm_A
MG33403 299 300 1 0.03 162 Au_FAA505_ppm_A
Hole ID
Sample Depth Depth Interval Au As ppm Au
ID From (m) To (m) (m) g/t (pXRF) Method
MDD176 MG33261 176 177 1 0.01 4 Au_FAA505_ppm_A
MG33262 177 178 1 0.01 6 Au_FAA505_ppm_A
MG33263 178 179 1 -0.01 23 Au_FAA505_ppm_A
MG33264 179 179.47 0.47 0.03 52 Au_FAA505_ppm_A
MG33265 179.47 181 1.53 0.94 11910 Au_FAA505_ppm_A
MG33266 181 182 1 0.42 12274 Au_FAA505_ppm_A
MG33267 182 183 1 0.27 8353 Au_FAA505_ppm_A
MG33268 183 184 1 0.42 12493 Au_FAA505_ppm_A
MG33269 184 185 1 0.47 7364 Au_FAA505_ppm_A
MG33270 185 186 1 0.58 5498 Au_FAA505_ppm_A
MG33271 186 187 1 1.25 6869 Au_FAA505_ppm_A
MG33272 187 188 1 0.53 3309 Au_FAA505_ppm_A
MG33273 188 189 1 0.17 2282 Au_FAA505_ppm_A
MG33274 189 190 1 0.14 6082 Au_FAA505_ppm_A
MG33275 190 191 1 0.18 6505 Au_FAA505_ppm_A
MG33276 191 192 1 5.35 4795 Au_FAA505_ppm_A
MG33278 192 193 1 4.97 7941 Au_FAA505_ppm_A
MG33279 193 194 1 0.38 11039 Au_FAA505_ppm_A
MG33280 194 195 1 15.4 6880 Au_FAA505_ppm_A
MG33281 195 196 1 2.44 7218 Au_FAA505_ppm_A
MG33285 196 197 1 0.54 5087 Au_FAA505_ppm_A
MG33286 197 198 1 0.16 3591 Au_FAA505_ppm_A
MG33287 198 199 1 0.27 5536 Au_FAA505_ppm_A
MG33288 199 200 1 0.4 7759 Au_FAA505_ppm_A
MG33289 200 201 1 0.66 7269 Au_FAA505_ppm_A
MG33290 201 202 1 2.32 3219 Au_FAA505_ppm_A
MG33291 202 203 1 0.65 5270 Au_Au-PA01_ppm_A
MG33292 203 204 1 0.23 3342 Au_FAA505_ppm_A
MG33293 204 205 1 0.35 4175 Au_FAA505_ppm_A
MG33294 205 206 1 0.39 2394 Au_FAA505_ppm_A
MG33295 206 207 1 0.33 3590 Au_Au-PA01_ppm_A
MG33296 207 208 1 0.21 2167 Au_FAA505_ppm_A
MG33297 208 209 1 0.35 5929 Au_FAA505_ppm_A
MG33298 209 210 1 0.97 1885 Au_FAA505_ppm_A
MG33299 210 211 1 0.46 2816 Au_FAA505_ppm_A
MG33300 211 212 1 0.74 2517 Au_FAA505_ppm_A
MG33301 212 213 1 0.04 37 Au_FAA505_ppm_A
MG33302 213 214 1 0.04 36 Au_FAA505_ppm_A
MG33303 214 215 1 0.04 364 Au_FAA505_ppm_A
MG33304 215 216 1 -0.01 10 Au_FAA505_ppm_A
MG33308 216 217 1 0.06 28 Au_FAA505_ppm_A
MG33309 217 218 1 0.0 11 Au_FAA505_ppm_A
MG33310 218 219 1 -0.01 10 Au_FAA505_ppm_A
MG33311 219 220 1 -0.01 15 Au_FAA505_ppm_A
MG33312 220 221 1 -0.01 14 Au_FAA505_ppm_A
MG33313 221 222 1 0.05 739 Au_FAA505_ppm_A
MG33314 222 223 1 -0.01 13 Au_FAA505_ppm_A
MG33315 223 224 1 0.03 275 Au_FAA505_ppm_A
MG33316 224 225 1 0.09 227 Au_FAA505_ppm_A
MG33317 225 226 1 0.12 755 Au_FAA505_ppm_A
MG33318 226 227 1 0.12 727 Au_FAA505_ppm_A
MG33319 227 228 1 0.03 262 Au_FAA505_ppm_A
MG33320 228 229 1 0.40 3006 Au_FAA505_ppm_A
MG33321 229 230 1 0.32 6543 Au_FAA505_ppm_A
MG33322 230 231 1 1.27 3280 Au_FAA505_ppm_A
MG33323 231 232 1 0.38 7357 Au_FAA505_ppm_A
MG33324 232 233 1 0.19 6068 Au_FAA505_ppm_A
MG33325 233 234 1 0.09 3741 Au_FAA505_ppm_A
MG33326 234 235 1 -0.01 56 Au_FAA505_ppm_A
MG33327 235 236 1 0.02 302 Au_FAA505_ppm_A
MG33331 236 237 1 0.02 86 Au_FAA505_ppm_A
MG33332 237 238 1 0.05 81 Au_FAA505_ppm_A
Hole ID
Sample Depth Depth Interval Au As ppm Au
ID From (m) To (m) (m) g/t (pXRF) Method
MDD157 MG30506 164 165 1 -0.01 10 Au_FAA50V10_ppm_A
MG30507 165 166.2 1.2 -0.01 12 Au_FAA50V10_ppm_A
MG30508 166.2 167.64 1.44 -0.01 15 Au_FAA50V10_ppm_A
MG30509 167.64 169 1.36 -0.01 26 Au_FAA50V10_ppm_A
MG30510 169 170 1 -0.01 22 Au_FAA50V10_ppm_A
MG30511 170 171 1 0.01 29 Au_FAA50V10_ppm_A
MG30512 171 172 1 0.02 28 Au_FAA50V10_ppm_A
MG30513 172 173 1 0.04 534 Au_FAA50V10_ppm_A
MG30514 173 174 1 0.06 209 Au_FAA50V10_ppm_A
MG30515 174 175 1 0.05 105 Au_FAA50V10_ppm_A
MG30516 175 176 1 -0.01 23 Au_FAA50V10_ppm_A
MG30517 176 177 1 -0.01 46 Au_FAA50V10_ppm_A
MG30518 177 178 1 -0.01 75 Au_FAA50V10_ppm_A
MG30519 178 179 1 0.01 134 Au_FAA50V10_ppm_A
MG30520 179 180 1 0.06 106 Au_FAA50V10_ppm_A
MG30521 180 181 1 0.02 126 Au_FAA50V10_ppm_A
MG30522 181 182 1 0.7 318 Au_FAA50V10_ppm_A
MG30523 182 183 1 0.07 128 Au_FAA50V10_ppm_A
MG30524 183 184 1 0.04 45 Au_FAA50V10_ppm_A
MG30525 184 185 1 1.71 163 Au_FAA50V10_ppm_A
MG30529 185 186 1 -0.01 31 Au_FAA50V10_ppm_A
MG30530 186 187 1 0.22 145 Au_FAA50V10_ppm_A
MG30531 187 188 1 0.1 74 Au_FAA50V10_ppm_A
MG30532 188 189 1 -0.01 36 Au_FAA50V10_ppm_A
MG30533 189 190 1 0.45 243 Au_FAA50V10_ppm_A
MG30534 190 191 1 -0.01 28 Au_FAA50V10_ppm_A
MG30535 191 192 1 0.04 23 Au_FAA50V10_ppm_A
MG30536 192 193 1 -0.01 22 Au_FAA50V10_ppm_A
MG30537 193 194 1 -0.01 16 Au_FAA50V10_ppm_A
MG30538 194 195 1 -0.01 19 Au_FAA50V10_ppm_A
20
Hole ID
Sample Depth Depth Interval Au As ppm Au
ID From (m) To (m) (m) g/t (pXRF) Method
MDD157 MG30539 195 196 1 0.49 1618 Au_FAA50V10_ppm_A
MG30540 196 197 1 0.08 286 Au_FAA50V10_ppm_A
MG30541 197 198 1 0.02 200 Au_FAA50V10_ppm_A
MG30542 198 199 1 -0.01 27 Au_FAA50V10_ppm_A
MG30543 199 200 1 -0.01 20 Au_FAA50V10_ppm_A
MG30544 200 201 1 -0.01 17 Au_FAA50V10_ppm_A
MG30545 201 202 1 -0.01 18 Au_FAA50V10_ppm_A
MG30546 202 203 1 0.01 223 Au_FAA50V10_ppm_A
MG30547 203 204 1 0.10 162 Au_FAA50V10_ppm_A
MG30548 204 205 1 -0.01 26 Au_FAA50V10_ppm_A
MG30552 205 206 1 0.01 41 Au_FAA50V10_ppm_A
MG30553 206 207 1 -0.01 18 Au_FAA50V10_ppm_A
MG30554 207 208 1 -0.01 21 Au_FAA50V10_ppm_A
MG30555 208 209 1 -0.01 50 Au_FAA50V10_ppm_A
MG30556 209 210 1 0.01 315 Au_FAA50V10_ppm_A
MG30557 210 211 1 -0.01 85 Au_FAA50V10_ppm_A
MG30558 211 212 1 0.04 23 Au_FAA50V10_ppm_A
MG30559 212 213 1 0.03 454 Au_FAA50V10_ppm_A
MG30560 213 214 1 -0.01 43 Au_FAA50V10_ppm_A
MG30561 214 215 1 -0.01 13 Au_FAA50V10_ppm_A
MG30562 215 216 1 -0.01 13 Au_FAA50V10_ppm_A
MG30563 216 217 1 -0.01 18 Au_FAA50V10_ppm_A
MG30564 217 218 1 -0.01 15 Au_FAA50V10_ppm_A
MG30565 218 219 1 -0.01 13 Au_FAA50V10_ppm_A
Hole ID
Sample Depth Depth Interval Au As ppm Au
ID From (m) To (m) (m) g/t (pXRF) Method
MDD145 MG31802 234 235 1 -0.01
Au_FAA505_ppm_A
MG31803 235 236 1 2.05
Au_FAA505_ppm_A
MG31804 236 237 1 0.06
Au_FAA505_ppm_A
MG31805 237 238 1 0.04
Au_FAA505_ppm_A
MG31806 238 239 1 0.07
Au_FAA505_ppm_A
MG31807 239 240 1 0.13
Au_FAA505_ppm_A
MG31808 240 241 1 0.02
Au_FAA505_ppm_A
MG31809 241 242 1 0.05
Au_FAA505_ppm_A
MG31810 242 243 1 0.04
Au_FAA505_ppm_A
MG31811 243 244 1 0.31
Au_FAA505_ppm_A
MG31812 244 245 1 0.01
Au_FAA505_ppm_A
MG31813 245 246 1 0.02
Au_FAA505_ppm_A
MG31814 246 247 1 0.1
Au_FAA505_ppm_A
MG31815 247 248 1 0.31
Au_FAA505_ppm_A
MG31819 248 249 1 0.11
Au_FAA505_ppm_A
MG31820 249 250 1 0.19
Au_FAA505_ppm_A
MG31821 250 251 1 0.02
Au_FAA505_ppm_A
MG31822 251 252 1 0.08
Au_FAA505_ppm_A
MG31823 252 253 1 0.1
Au_FAA505_ppm_A
MG31824 253 254 1 0.06
Au_FAA505_ppm_A
MG31825 254 255 1 -0.01
Au_FAA505_ppm_A
MG31826 255 256 1 -0.01
Au_FAA505_ppm_A
MG31827 256 257 1 -0.01
Au_FAA505_ppm_A
MG31828 257 258 1 0.04
Au_FAA505_ppm_A
MG31829 258 259 1 -0.01
Au_FAA505_ppm_A
MG31830 259 260 1 0.01
Au_FAA505_ppm_A
MG31831 260 261 1 -0.01
Au_FAA505_ppm_A
MG31832 261 262 1 -0.01
Au_FAA505_ppm_A
MG31833 262 263 1 -0.01
Au_FAA505_ppm_A
MG31834 263 264 1 -0.01
Au_FAA505_ppm_A
MG31835 264 265 1 0.01
Au_FAA505_ppm_A
MG31836 265 266 1 -0.01
Au_FAA505_ppm_A
MG31837 266 267 1 -0.01
Au_FAA505_ppm_A
MG31838 267 268 1 0.02
Au_FAA505_ppm_A
MG31842 268 268.9 0.9 -0.01
Au_FAA505_ppm_A
Hole ID
Sample Depth Depth Interval Au As ppm Au
ID From (m) To (m) (m) g/t (pXRF) Method
MDD145 MG31727 167.9 169 1.1 -0.01
Au_FAA505_ppm_A
MG31728 169 170 1 -0.01
Au_FAA505_ppm_A
MG31729 170 171 1 -0.01
Au_FAA505_ppm_A
MG31730 171 172 1 -0.01
Au_FAA505_ppm_A
MG31731 172 173 1 -0.01
Au_FAA505_ppm_A
MG31732 173 174 1 -0.01
Au_FAA505_ppm_A
MG31733 174 175.1 1.1 -0.01
Au_FAA505_ppm_A
MG31734 175.1 175.47 0.37 -0.01
Au_FAA505_ppm_A
MG31735 175.47 177 1.53 0.17
Au_FAA505_ppm_A
MG31736 177 178 1 0.62
Au_FAA505_ppm_A
MG31737 178 179 1 0.11
Au_FAA505_ppm_A
MG31738 179 180 1 0.07
Au_FAA505_ppm_A
MG31739 180 181 1 0.79
Au_FAA505_ppm_A
MG31740 181 182 1 0.05
Au_FAA505_ppm_A
MG31741 182 183 1 0.91
Au_FAA505_ppm_A
MG31742 183 184 1 0.04
Au_FAA505_ppm_A
MG31743 184 185 1 0.29
Au_FAA505_ppm_A
MG31744 185 186 1 0.26
Au_FAA505_ppm_A
MG31745 186 187 1 0.07
Au_FAA505_ppm_A
MG31746 187 188 1 0.24
Au_FAA505_ppm_A
MG31750 188 189 1 0.2
Au_FAA505_ppm_A
MG31751 189 190 1 0.32
Au_FAA505_ppm_A
MG31752 190 191 1 0.19
Au_FAA505_ppm_A
MG31753 191 192 1 0.45
Au_FAA505_ppm_A
MG31754 192 193 1 1.7
Au_FAA505_ppm_A
MG31755 193 194 1 1.68
Au_FAA505_ppm_A
MG31756 194 195 1 0.31
Au_FAA505_ppm_A
MG31757 195 196 1 0.41
Au_FAA505_ppm_A
MG31758 196 197 1 0.16
Au_FAA505_ppm_A
MG31759 197 198 1 0.40
Au_FAA505_ppm_A
MG31760 198 199 1 0.11
Au_FAA505_ppm_A
MG31761 199 200 1 0.5
Au_FAA505_ppm_A
MG31762 200 201 1 0.2
Au_FAA505_ppm_A
MG31763 201 202 1 0.25
Au_FAA505_ppm_A
MG31764 202 203 1 0.35
Au_FAA505_ppm_A
MG31765 203 204 1 1.34
Au_FAA505_ppm_A
MG31766 204 205 1 0.32
Au_FAA505_ppm_A
MG31767 205 206 1 0.57
Au_FAA505_ppm_A
MG31768 206 207 1 0.28
Au_FAA505_ppm_A
MG31769 207 208 1 0.15
Au_FAA505_ppm_A
MG31773 208 209 1 0.02
Au_FAA505_ppm_A
MG31774 209 210 1 0.25
Au_FAA505_ppm_A
MG31775 210 211 1 0.51
Au_FAA505_ppm_A
MG31776 211 212 1 0.05
Au_FAA505_ppm_A
MG31777 212 213 1 0.6
Au_FAA505_ppm_A
MG31778 213 214 1 0.14
Au_FAA505_ppm_A
MG31779 214 215 1 0.42
Au_FAA505_ppm_A
MG31780 215 216 1 0.5
Au_FAA505_ppm_A
MG31781 216 217 1 0.1
Au_FAA505_ppm_A
MG31782 217 218 1 0.90
Au_FAA505_ppm_A
MG31783 218 219 1 0.96
Au_FAA505_ppm_A
MG31784 219 220 1 0.12
Au_FAA505_ppm_A
MG31785 220 221 1 0.12
Au_FAA505_ppm_A
MG31786 221 222 1 0.45
Au_FAA505_ppm_A
MG31787 222 223 1 0.9
Au_FAA505_ppm_A
MG31788 223 224 1 0.01
Au_FAA505_ppm_A
MG31789 224 225 1 -0.01
Au_FAA505_ppm_A
MG31790 225 226 1 -0.01
Au_FAA505_ppm_A
MG31791 226 227 1 -0.01
Au_FAA505_ppm_A
MG31792 227 228 1 -0.01
Au_FAA505_ppm_A
MG31796 228 229 1 -0.01
Au_FAA505_ppm_A
MG31797 229 230 1 0.43
Au_FAA505_ppm_A
MG31798 230 231 1 0.01
Au_FAA505_ppm_A
MG31799 231 232 1 0.03
Au_FAA505_ppm_A
MG31800 232 233 1 0.04
Au_FAA505_ppm_A
MG31801 233 234 1 -0.01
Au_FAA505_ppm_A
Hole ID
Sample Depth Depth Interval Au As ppm Au
ID From (m) To (m) (m) g/t (pXRF) Method
MDD136 MG31443 167 168 1 -0.01 10 Au_FAA505_ppm_A
MG31444 168 169.2 1.2 -0.01 11 Au_FAA505_ppm_A
MG31445 169.2 169.6 0.4 0.04 237 Au_FAA505_ppm_A
MG31446 169.6 171 1.4 7.16 4941 Au_Au-PA01_ppm_A
MG31447 171 172 1 5.26 4594 Au_FAA505_ppm_A
MG31448 172 173 1 3.37 3951 Au_FAA505_ppm_A
MG31449 173 174 1 3.77 6913 Au_FAA505_ppm_A
MG31450 174 175 1 7.44 3795 Au_FAA505_ppm_A
MG31451 175 176 1 11 2738 Au_FAA505_ppm_A
MG31452 176 177 1 36.2 2531 Au_FAA505_ppm_A
MG31453 177 178 1 3.06 4383 Au_Au-PA01_ppm_A
MG31454 178 179 1 3.38 6541 Au_Au-PA01_ppm_A
MG31455 179 180 1 1.11 5383 Au_FAA505_ppm_A
MG31456 180 181 1 2.24 5679 Au_FAA505_ppm_A
MG31457 181 182 1 1.41 7692 Au_Au-PA01_ppm_A
MG31458 182 183 1 7.81 6512 Au_FAA505_ppm_A
MG31459 183 184 1 1.06 10157 Au_FAA505_ppm_A
MG31460 184 185 1 0.55 7380 Au_FAA505_ppm_A
MG31461 185 186 1 14.9 6216 Au_FAA505_ppm_A
MG31462 186 187 1 3.48 3058 Au_Au-PA01_ppm_A
MG31463 187 188 1 1.43 5319 Au_FAA505_ppm_A
MG31467 188 189 1 0.48 4426 Au_FAA505_ppm_A
MG31468 189 190 1 1.3 7116 Au_FAA505_ppm_A
MG31469 190 191 1 0.91 7087 Au_FAA505_ppm_A
MG31470 191 192 1 0.36 4545 Au_FAA505_ppm_A
MG31471 192 193 1 0.35 3378 Au_Au-PA01_ppm_A
MG31472 193 194 1 2.85 8259 Au_Au-PA01_ppm_A
MG31474 194 195 1 0.4 1151 Au_FAA505_ppm_A
MG31475 195 196 1 0.12 1238 Au_FAA505_ppm_A
MG31476 196 197 1 0.03 155 Au_FAA505_ppm_A
MG31477 197 198 1 0.05 134 Au_FAA505_ppm_A
MG31478 198 199 1 0.03 241 Au_FAA505_ppm_A
MG31479 199 200 1 0.83 3337 Au_FAA505_ppm_A
MG31480 200 201 1 0.12 152 Au_FAA505_ppm_A
MG31481 201 202 1 0.34 1190 Au_FAA505_ppm_A
MG31482 202 203 1 3.3 2691 Au_FAA505_ppm_A
MG31483 203 204 1 0.14 1681 Au_FAA505_ppm_A
MG31484 204 205 1 0.05 258 Au_FAA505_ppm_A
MG31485 205 206 1 0.88 1654 Au_FAA505_ppm_A
MG31486 206 207 1 1.22 4158 Au_FAA505_ppm_A
MG31487 207 208 1 3.79 4357 Au_Au-PA01_ppm_A
MG31491 208 209 1 0.22 649 Au_FAA505_ppm_A
MG31492 209 210 1 0.33 240 Au_FAA505_ppm_A
MG31493 210 211 1 0.03 323 Au_FAA505_ppm_A
MG31494 211 212 1 0.05 65 Au_FAA505_ppm_A
MG31495 212 213 1 1.06 2100 Au_FAA505_ppm_A
MG31496 213 214 1 2.54 1525 Au_Au-PA01_ppm_A
MG31497 214 215 1 0.2 1271 Au_FAA505_ppm_A
MG31498 215 216 1 0.32 1206 Au_FAA505_ppm_A
MG31499 216 217 1 0.96 2613 Au_FAA505_ppm_A
MG31500 217 218 1 1.79 4270 Au_FAA505_ppm_A
MG31501 218 219 1 0.17 3071 Au_FAA505_ppm_A
MG31502 219 220 1 0.06 442 Au_FAA505_ppm_A
MG31503 220 221 1 0.14 2260 Au_FAA505_ppm_A
MG31504 221 222 1 0.05 1786 Au_FAA505_ppm_A
21
Hole ID
Sample Depth Depth Interval Au As ppm Au
ID From (m) To (m) (m) g/t (pXRF) Method
MDD136 MG31505 222 223 1 23.5 7390 Au_FAA505_ppm_A
MG31507 223 224 1 0.24 1430 Au_FAA505_ppm_A
MG31508 224 225 1 0.01 19 Au_FAA505_ppm_A
MG31509 225 226 1 0.02 116 Au_FAA505_ppm_A
MG31510 226 227 1 -0.01 12 Au_FAA505_ppm_A
MG31511 227 228 1 0.1 1328 Au_FAA505_ppm_A
MG31515 228 229 1 0.26 441 Au_Au-PA01_ppm_A
MG31516 229 230 1 0.05 912 Au_FAA505_ppm_A
MG31517 230 231 1 0.14 3260 Au_FAA505_ppm_A
MG31518 231 232 1 0.14 4447 Au_FAA505_ppm_A
MG31519 232 233 1 0.08 670 Au_FAA505_ppm_A
MG31520 233 234 1 0.09 2980 Au_FAA505_ppm_A
MG31521 234 235 1 0.05 1355 Au_FAA505_ppm_A
MG31522 235 236 1 0.21 4930 Au_FAA505_ppm_A
MG31523 236 237 1 0.22 4803 Au_FAA505_ppm_A
MG31524 237 238 1 0.09 805 Au_FAA505_ppm_A
MG31525 238 239 1 0.02 42 Au_FAA505_ppm_A
MG31526 239 240 1 0.04 1376 Au_FAA505_ppm_A
MG31527 240 241 1 0.04 489 Au_FAA505_ppm_A
MG31528 241 242 1 0.88 1488 Au_FAA505_ppm_A
MG31529 242 243 1 0.01 58 Au_FAA505_ppm_A
MG31530 243 244 1 0.02 45 Au_FAA505_ppm_A
MG31531 244 245 1 0.02 24 Au_FAA505_ppm_A
MG31532 245 246 1 -0.01 88 Au_FAA505_ppm_A
MG31533 246 247 1 0.27 812 Au_Au-PA01_ppm_A
MG31534 247 248 1 0.42 502 Au_Au-PA01_ppm_A
MG31535 248 249 1 0.08 638 Au_FAA505_ppm_A
MG31536 249 250 1 0.30 3988 Au_FAA505_ppm_A
MG31540 250 251 1 0.08 295 Au_FAA505_ppm_A
MG31541 251 252 1 0.26 3113 Au_FAA505_ppm_A
MG31542 252 253 1 0.01 36 Au_FAA505_ppm_A
MG31543 253 254 1 -0.01 172 Au_FAA505_ppm_A
MG31544 254 255 1 0.01 10 Au_FAA505_ppm_A
MG31545 255 256 1 0.02 40 Au_FAA505_ppm_A
MG31546 256 257 1 0.01 34 Au_FAA505_ppm_A
MG31547 257 258 1 0.08 119 Au_FAA505_ppm_A
MG31548 258 259 1 0.07 559 Au_FAA505_ppm_A
MG31549 259 260 1 0.06 500 Au_FAA505_ppm_A
MG31550 260 261 1 -0.01 8 Au_FAA505_ppm_A
MG31551 261 262 1 -0.01 63 Au_FAA505_ppm_A
MG31552 262 263 1 0.09 858 Au_FAA505_ppm_A
MG31553 263 264 1 0.06 338 Au_FAA505_ppm_A
MG31554 264 265 1 0.12 390 Au_FAA505_ppm_A
MG31555 265 266 1 1.35 1814 Au_Au-PA01_ppm_A
MG31556 266 267 1 0.06 768 Au_FAA505_ppm_A
MG31557 267 268 1 0.02 202 Au_FAA505_ppm_A
MG31558 268 269 1 0.08 1562 Au_FAA505_ppm_A
MG31559 269 270 1 0.11 589 Au_FAA505_ppm_A
MG31560 270 271 1 0.57 693 Au_FAA505_ppm_A
MG31561 271 272 1 0.38 1369 Au_Au-PA01_ppm_A
MG31565 272 273 1 0.16 451 Au_FAA505_ppm_A
MG31566 273 274 1 0.86 216 Au_FAA505_ppm_A
MG31567 274 275 1 0.05 31 Au_FAA505_ppm_A
MG31568 275 276 1 0.05 338 Au_FAA505_ppm_A
MG31569 276 277 1 0.03 280 Au_FAA505_ppm_A
MG31570 277 278 1 0.14 601 Au_FAA505_ppm_A
MG31571 278 279 1 0.03 21 Au_FAA505_ppm_A
MG31572 279 280 1 0.12 184 Au_FAA505_ppm_A
MG31573 280 281 1 0.28 166 Au_FAA505_ppm_A
MG31574 281 282 1 0.53 92 Au_FAA505_ppm_A
MG31575 282 283 1 0.2 696 Au_FAA505_ppm_A
MG31576 283 284 1 0.03 124 Au_FAA505_ppm_A
MG31577 284 285 1 0.03 582 Au_FAA505_ppm_A
MG31578 285 286 1 0.01 658 Au_FAA505_ppm_A
MG31579 286 287 1 0.06 1051 Au_FAA505_ppm_A
MG31580 287 288 1 0.02 266 Au_FAA505_ppm_A
MG31581 288 289 1 -0.01 27 Au_FAA505_ppm_A
MG31582 289 290 1 -0.01 15 Au_FAA505_ppm_A
MG31583 290 291 1 0.03 580 Au_FAA505_ppm_A
MG31584 291 292 1 0.23 777 Au_FAA505_ppm_A
MG31588 292 293 1 0.01 21 Au_FAA505_ppm_A
MG31589 293 294 1 0.07 1198 Au_FAA505_ppm_A
MG31590 294 295 1 0.01 14 Au_FAA505_ppm_A
MG31591 295 296 1 0.03 12 Au_FAA505_ppm_A
MG31592 296 297 1 0.04 24 Au_Au-PA01_ppm_A
MG31593 297 298 1 0.01 54 Au_FAA505_ppm_A
MG31594 298 299 1 0.04 117 Au_FAA505_ppm_A
MG31595 299 300 1 0.26 266 Au_FAA505_ppm_A
MG31596 300 301 1 0.03 173 Au_FAA505_ppm_A
MG31597 301 302 1 0.64 214 Au_Au-PA01_ppm_A
MG31598 302 303 1 0.18 107 Au_FAA505_ppm_A
MG31599 303 304 1 0.02 11 Au_FAA505_ppm_A
MG31600 304 305 1 0.02 17 Au_FAA505_ppm_A
MG31601 305 306 1 -0.01 58 Au_FAA505_ppm_A
MG31602 306 307 1 0.06 50 Au_FAA505_ppm_A
MG31603 307 308 1 0.01 28 Au_FAA505_ppm_A
MG31604 308 309 1 -0.01 10 Au_FAA505_ppm_A
MG31605 309 310 1 0.02 62 Au_FAA505_ppm_A
MG31606 310 311 1 -0.01 20 Au_FAA505_ppm_A
MG31607 311 312 1 0.04 25 Au_FAA505_ppm_A
MG31611 312 313 1 0.12 443 Au_FAA505_ppm_A
MG31612 313 314 1 0.01 145 Au_FAA505_ppm_A
MG31613 314 315 1 0.38 437 Au_FAA505_ppm_A
Hole ID
Sample Depth Depth Interval Au As ppm Au
ID From (m) To (m) (m) g/t (pXRF) Method
MDD136 MG31614 315 316 1 0.05 140 Au_FAA505_ppm_A
MG31615 316 317 1 -0.01 6 Au_FAA505_ppm_A
MG31616 317 318 1 -0.01 5 Au_FAA505_ppm_A
MG31617 318 319 1 0.01 22 Au_FAA505_ppm_A
MG31618 319 320 1 -0.01 9 Au_FAA505_ppm_A
MG31619 320 321 1 0.01 15 Au_FAA505_ppm_A
MG31620 321 322.5 1.5 0.01 12 Au_FAA505_ppm_A
Hole ID
Sample Depth Depth Interval Au As ppm Au
ID From (m) To (m) (m) g/t (pXRF) Method
MDD135 MG22466 118 119 1 0.02 3 Au_FAA505_ppm_A
MG22467 119 120.5 1.5 -0.01 4 Au_FAA505_ppm_A
MG22468 120.5 120.9 0.4 0.1 501 Au_FAA505_ppm_A
MG22469 120.9 122 1.1 0.17 284 Au_Au-PA01_ppm_A
MG22470 122 123 1 0.42 652 Au_FAA505_ppm_A
MG22471 123 124 1 1.19 1420 Au_FAA505_ppm_A
MG22472 124 125 1 0.75 971 Au_FAA505_ppm_A
MG22473 125 126 1 0.09 392 Au_FAA505_ppm_A
MG22474 126 127 1 0.09 660 Au_FAA505_ppm_A
MG22475 127 128 1 0.27 2128 Au_FAA505_ppm_A
MG22476 128 129 1 2.75 648 Au_FAA505_ppm_A
MG22477 129 130 1 0.1 62 Au_FAA505_ppm_A
MG22478 130 131 1 0.3 406 Au_FAA505_ppm_A
MG22479 131 132 1 2.47 307 Au_FAA505_ppm_A
MG22480 132 133 1 0.31 488 Au_FAA505_ppm_A
MG22481 133 134 1 0.31 723 Au_FAA505_ppm_A
MG22482 134 135 1 0.18 198 Au_FAA505_ppm_A
MG22483 135 136 1 0.26 2348 Au_FAA505_ppm_A
MG22484 136 137 1 0.18 436 Au_FAA505_ppm_A
MG22485 137 138 1 0.3 72 Au_FAA505_ppm_A
MG22489 138 139 1 0.55 777 Au_FAA505_ppm_A
MG22490 139 140 1 0.54 1535 Au_FAA505_ppm_A
MG22491 140 141 1 0.07 368 Au_FAA505_ppm_A
MG22492 141 142 1 0.35 1079 Au_FAA505_ppm_A
MG22493 142 143 1 0.16 734 Au_FAA505_ppm_A
MG22494 143 144 1 0.13 26 Au_FAA505_ppm_A
MG22495 144 145 1 0.01 25 Au_FAA505_ppm_A
MG22496 145 146 1 0.14 617 Au_FAA505_ppm_A
MG22497 146 147 1 0.23 3390 Au_Au-PA01_ppm_A
MG22498 147 148 1 0.05 271 Au_FAA505_ppm_A
MG22499 148 149 1 0.34 151 Au_FAA505_ppm_A
MG22500 149 150 1 0.1 272 Au_FAA505_ppm_A
MG22501 150 151 1 9 3712 Au_FAA505_ppm_A
MG22502 151 152 1 0.19 958 Au_FAA505_ppm_A
MG22503 152 153 1 1.45 2170 Au_FAA505_ppm_A
MG22504 153 154 1 1.31 537 Au_Au-PA01_ppm_A
MG22505 154 155 1 2.73 1247 Au_FAA505_ppm_A
MG22506 155 156 1 0.11 1073 Au_FAA505_ppm_A
MG22507 156 157 1 2.18 926 Au_FAA505_ppm_A
MG22508 157 158 1 0.02 7 Au_FAA505_ppm_A
MG22512 158 159 1 0.35 50 Au_FAA505_ppm_A
MG22513 159 160 1 0.01 22 Au_FAA505_ppm_A
MG22514 160 161 1 0.27 756 Au_FAA505_ppm_A
MG22515 161 162 1 0.02 15 Au_FAA505_ppm_A
MG22516 162 163 1 0.05 432 Au_Au-PA01_ppm_A
MG22517 163 164 1 0.65 4997 Au_FAA505_ppm_A
MG22518 164 165 1 0.23 3028 Au_FAA505_ppm_A
MG22519 165 166 1 0.07 838 Au_FAA505_ppm_A
MG22520 166 167 1 0.03 207 Au_FAA505_ppm_A
MG22521 167 168 1 0.02 183 Au_FAA505_ppm_A
MG22522 168 169 1 0.04 178 Au_FAA505_ppm_A
MG22523 169 170 1 -0.01 21 Au_FAA505_ppm_A
MG22524 170 171 1 0.03 550 Au_FAA505_ppm_A
MG22525 171 172 1 -0.01 12 Au_FAA505_ppm_A
MG22526 172 173 1 0.03 286 Au_FAA505_ppm_A
MG22527 173 174 1 0.04 161 Au_FAA505_ppm_A
MG22528 174 175 1 0.07 360 Au_FAA505_ppm_A
MG22529 175 176 1 0.34 470 Au_Au-PA01_ppm_A
MG22530 176 177 1 0.11 1045 Au_FAA505_ppm_A
MG22531 177 178 1 2.01 1878 Au_Au-PA01_ppm_A
MG22535 178 179 1 7.91 2737 Au_FAA505_ppm_A
MG22536 179 180 1 0.04 27 Au_FAA505_ppm_A
MG22537 180 181 1 0.03 124 Au_FAA505_ppm_A
MG22538 181 182 1 0.61 832 Au_FAA505_ppm_A
MG22539 182 183 1 0.15 862 Au_FAA505_ppm_A
MG22540 183 184 1 0.06 891 Au_FAA505_ppm_A
MG22541 184 185 1 0.02 164 Au_FAA505_ppm_A
MG22542 185 186 1 0.01 58 Au_FAA505_ppm_A
MG22543 186 187 1 0.05 215 Au_FAA505_ppm_A
MG22544 187 188 1 -0.01 44 Au_FAA505_ppm_A
MG22545 188 189 1 0.43 690 Au_FAA505_ppm_A
MG22546 189 190 1 0.61 83 Au_FAA505_ppm_A
MG22547 190 191 1 0.2 485 Au_FAA505_ppm_A
MG22548 191 192 1 0.03 182 Au_FAA505_ppm_A
MG22549 192 193 1 -0.01 39 Au_FAA505_ppm_A
MG22550 193 194 1 0.04 71 Au_FAA505_ppm_A
MG22551 194 195 1 0.12 109 Au_FAA505_ppm_A
MG22552 195 196 1 0.03 159 Au_FAA505_ppm_A
MG22553 196 197 1 0.08 230 Au_FAA505_ppm_A
MG22554 197 198 1 0.01 32 Au_FAA505_ppm_A
MG22555 198 199 1 -0.01 29 Au_FAA505_ppm_A
MG22556 199 200 1 0.17 619 Au_FAA505_ppm_A
MG22557 200 201 1 0.06 397 Au_FAA505_ppm_A
22
Hole ID
Sample Depth Depth Interval Au As ppm Au
ID From (m) To (m) (m) g/t (pXRF) Method
MDD135 MG22558 201 202 1 0.02 48 Au_FAA505_ppm_A
MG22559 202 203 1 0.04 10 Au_FAA505_ppm_A
MG22560 203 204 1 9.06 526 Au_FAA505_ppm_A
MG22561 204 205 1 0.03 21 Au_FAA505_ppm_A
MG22562 205 206 1 -0.01 5 Au_FAA505_ppm_A
MG22563 206 207 1 -0.01
Au_FAA505_ppm_A
MG22564 207 208 1 0.03 4 Au_FAA505_ppm_A
MG22565 208 209 1 -0.01 5 Au_FAA505_ppm_A
MG22566 209 210 1 0.58 3883 Au_Au-PA01_ppm_A
MG22567 210 211 1 0.18 1225 Au_FAA505_ppm_A
MG22568 211 212 1 0.01 132 Au_FAA505_ppm_A
MG22569 212 213 1 0.07 95 Au_FAA505_ppm_A
MG22570 213 214 1 0.02 22 Au_FAA505_ppm_A
MG22571 214 215 1 0.01 18 Au_FAA505_ppm_A
MG22575 215 216 1 0.08 193 Au_FAA505_ppm_A
MG22576 216 217 1 -0.01 79 Au_FAA505_ppm_A
MG22577 217 218 1 0.68 1162 Au_FAA505_ppm_A
MG22578 218 219 1 0.06 38 Au_FAA505_ppm_A
MG22579 219 220 1 0.01 115 Au_FAA505_ppm_A
MG22580 220 221 1 -0.01 33 Au_FAA505_ppm_A
MG22581 221 222 1 0.01 244 Au_FAA505_ppm_A
MG22582 222 223 1 0.49 3171 Au_FAA505_ppm_A
MG22583 223 224 1 0.14 588 Au_FAA505_ppm_A
MG22584 224 225 1 -0.01 43 Au_FAA505_ppm_A
MG22585 225 226 1 -0.01 31 Au_FAA505_ppm_A
MG22586 226 227 1 -0.01 17 Au_FAA505_ppm_A
MG22587 227 228 1 -0.01 12 Au_FAA505_ppm_A
MG22588 228 229 1 -0.01 11 Au_FAA505_ppm_A
MG22589 229 230 1 0.01 277 Au_FAA505_ppm_A
MG22590 230 231 1 -0.01 131 Au_FAA505_ppm_A
MG22591 231 232 1 -0.01 49 Au_FAA505_ppm_A
MG22592 232 233 1 -0.01 7 Au_FAA505_ppm_A
MG22593 233 234 1 -0.01 8 Au_FAA505_ppm_A
MG22594 234 235 1 0.01 331 Au_FAA505_ppm_A
MG22598 235 236 1 0.03 126 Au_FAA505_ppm_A
MG22599 236 237 1 0.01 12 Au_FAA505_ppm_A
MG22600 237 238 1 0.54 831 Au_Au-PA01_ppm_A
MG22601 238 239 1 0.04 180 Au_FAA505_ppm_A
MG22602 239 240 1 0.09 146 Au_FAA505_ppm_A
MG22603 240 241 1 0.01 63 Au_FAA505_ppm_A
MG22604 241 242 1 0.31 59 Au_FAA505_ppm_A
MG22605 242 243 1 0.17 246 Au_FAA505_ppm_A
MG22606 243 244 1 0.38 105 Au_FAA505_ppm_A
MG22607 244 245 1 -0.01 14 Au_FAA505_ppm_A
MG22608 245 245.9 0.9 -0.01 16 Au_FAA505_ppm_A
Hole ID
Sample Depth Depth Interval Au As ppm Au
ID From (m) To (m) (m) g/t (pXRF) Method
MDD132 MG22416 181 182 1 0.34 1691 Au_Au-PA01_ppm_A
MG22417 182 183 1 0.01 49 Au_FAA505_ppm_A
MG22418 183 184 1 0.02 8 Au_FAA505_ppm_A
MG22419 184 185 1 0.07 11 Au_FAA505_ppm_A
MG22420 185 186 1 -0.01 11 Au_FAA505_ppm_A
MG22421 186 187 1 -0.01 6 Au_FAA505_ppm_A
MG22422 187 188 1 -0.01 19 Au_FAA505_ppm_A
MG22423 188 189 1 -0.01 16 Au_FAA505_ppm_A
MG22424 189 190 1 0.01 10 Au_FAA505_ppm_A
MG22425 190 191 1 -0.01 8 Au_FAA505_ppm_A
MG22426 191 192 1 0.16 44 Au_FAA505_ppm_A
MG22427 192 193 1 0.2 443 Au_FAA505_ppm_A
MG22428 193 194 1 0.11 429 Au_FAA505_ppm_A
MG22432 194 195 1 0.05 124 Au_FAA505_ppm_A
MG22433 195 196 1 -0.01 23 Au_FAA505_ppm_A
MG22434 196 197 1 3.24 724 Au_FAA505_ppm_A
MG22435 197 198 1 0.01 11 Au_FAA505_ppm_A
MG22436 198 199 1 -0.01 11 Au_FAA505_ppm_A
MG22437 199 200 1 0.03 16 Au_FAA505_ppm_A
MG22438 200 201 1 0.01 37 Au_FAA505_ppm_A
MG22439 201 202 1 0.04 112 Au_FAA505_ppm_A
MG22440 202 203 1 0.04 238 Au_FAA505_ppm_A
MG22441 203 204 1 3.13 534 Au_FAA505_ppm_A
MG22442 204 205 1 0.02 56 Au_FAA505_ppm_A
MG22443 205 206 1 0.02 38 Au_FAA505_ppm_A
MG22444 206 207 1 -0.01 12 Au_FAA505_ppm_A
MG22445 207 208 1 -0.01 15 Au_FAA505_ppm_A
MG22446 208 209 1 -0.01 39 Au_FAA505_ppm_A
MG22447 209 210 1 -0.01 26 Au_FAA505_ppm_A
MG22448 210 211 1 0.02 111 Au_FAA505_ppm_A
MG22449 211 212 1 0.02 170 Au_FAA505_ppm_A
MG22450 212 213 1 0.13 1366 Au_FAA505_ppm_A
MG22451 213 214 1 0.41 4208 Au_FAA505_ppm_A
MG22455 214 215 1 0.15 1938 Au_FAA505_ppm_A
MG22456 215 216 1 0.5 7050 Au_FAA505_ppm_A
MG22457 216 217 1 0.15 1410 Au_FAA505_ppm_A
MG22458 217 218 1 0.14 1727 Au_FAA505_ppm_A
MG22459 218 219 1 0.05 813 Au_FAA505_ppm_A
MG22460 219 220 1 0.19 2600 Au_FAA505_ppm_A
MG22461 220 221 1 0.02 173 Au_FAA505_ppm_A
MG22462 221 222 1 0.05 104 Au_FAA505_ppm_A
MG22463 222 223 1 0.07 202 Au_FAA505_ppm_A
MG22464 223 224 1 0.19 509 Au_FAA505_ppm_A
MG22465 224 224.8 0.8 -0.01 15 Au_FAA505_ppm_A
Hole ID
Sample Depth Depth Interval Au As ppm Au
ID From (m) To (m) (m) g/t (pXRF) Method
MDD130 MG22269 185 186 1 0.01 9.8 Au_FAA505_ppm_A
MG22270 186 187 1 -0.01 10.3 Au_FAA505_ppm_A
MG22271 187 187.62 0.62 0.02 9.7 Au_FAA505_ppm_A
MG22272 187.62 189 1.38 0.45 8427 Au_FAA505_ppm_A
MG22273 189 190 1 0.27 3810 Au_FAA505_ppm_A
MG22274 190 191 1 0.37 8887 Au_FAA505_ppm_A
MG22275 191 192 1 0.2 4591 Au_FAA505_ppm_A
MG22276 192 193 1 0.13 3219 Au_FAA505_ppm_A
MG22277 193 194 1 2.74 4404 Au_FAA505_ppm_A
MG22278 194 195 1 0.41 648 Au_FAA505_ppm_A
MG22279 195 196 1 0.59 1050 Au_FAA505_ppm_A
MG22280 196 197 1 0.18 679 Au_FAA505_ppm_A
MG22281 197 198 1 0.38 342 Au_FAA505_ppm_A
MG22282 198 199 1 7.64 903 Au_FAA505_ppm_A
MG22283 199 200 1 0.33 328 Au_FAA505_ppm_A
MG22284 200 201 1 2.27 4243 Au_FAA505_ppm_A
MG22285 201 202 1 0.08 230 Au_FAA505_ppm_A
MG22286 202 203 1 0.7 1212 Au_FAA505_ppm_A
MG22287 203 204 1 8.19 2437 Au_Au-PA01_ppm_A
MG22291 204 205 1 0.42 1128 Au_FAA505_ppm_A
MG22292 205 206 1 42.9 2533 Au_FAA505_ppm_A
MG22293 206 207 1 10.4 2021 Au_FAA505_ppm_A
MG22295 207 208 1 0.2 142 Au_Au-PA01_ppm_A
MG22296 208 209 1 0.08 394 Au_FAA505_ppm_A
MG22297 209 210 1 0.34 179 Au_FAA505_ppm_A
MG22298 210 211 1 0.01 42.6 Au_FAA505_ppm_A
MG22299 211 212 1 0.05 344 Au_FAA505_ppm_A
MG22300 212 213 1 0.36 160 Au_FAA505_ppm_A
MG22301 213 214 1 0.06 151 Au_FAA505_ppm_A
MG22302 214 215 1 1.43 1042 Au_FAA505_ppm_A
MG22304 215 216 1 0.93 93 Au_FAA505_ppm_A
MG22305 216 217 1 1.09 608 Au_FAA505_ppm_A
MG22306 217 218 1 0.09 259 Au_FAA505_ppm_A
MG22307 218 219 1 0.04 238 Au_FAA505_ppm_A
MG22308 219 220 1 0.21 848 Au_FAA505_ppm_A
MG22309 220 221 1 0.14 848 Au_FAA505_ppm_A
MG22310 221 222 1 95.2 3653 Au_FAA505_ppm_A
MG22311 222 223 1 1.55 433 Au_Au-PA01_ppm_A
MG22315 223 224 1 0.02 43.8 Au_FAA505_ppm_A
MG22316 224 225 1 0.02 164 Au_FAA505_ppm_A
MG22317 225 226 1 0.03 115 Au_FAA505_ppm_A
MG22318 226 227 1 0.04 257 Au_FAA505_ppm_A
MG22319 227 228 1 0.05 192 Au_FAA505_ppm_A
MG22320 228 229 1 0.03 211 Au_FAA505_ppm_A
MG22321 229 230 1 -0.01 15 Au_FAA505_ppm_A
MG22322 230 231 1 0.01 85 Au_FAA505_ppm_A
MG22323 231 232 1 0.01 22.9 Au_FAA505_ppm_A
MG22324 232 233 1 0.02 23 Au_FAA505_ppm_A
Hole ID
Sample Depth Depth Interval Au As ppm Au
ID From (m) To (m) (m) g/t (pXRF) Method
MDD132 MG22363 135 136 1 -0.01 7 Au_FAA505_ppm_A
MG22364 136 136.7 0.7 0.05 24 Au_FAA505_ppm_A
MG22365 136.7 136.85 0.15 0.73 3277 Au_FAA505_ppm_A
MG22366 136.85 138 1.15 0.03 144 Au_FAA505_ppm_A
MG22367 138 139 1 0.18 72 Au_Au-PA01_ppm_A
MG22368 139 140 1 0.04 150 Au_FAA505_ppm_A
MG22369 140 141 1 0.02 52 Au_FAA505_ppm_A
MG22370 141 142 1 0.04 142 Au_FAA505_ppm_A
MG22371 142 143 1 0.02 52 Au_FAA505_ppm_A
MG22372 143 144 1 0.02 88 Au_FAA505_ppm_A
MG22373 144 145 1 0.08 267 Au_FAA505_ppm_A
MG22374 145 146 1 0.35 160 Au_Au-PA01_ppm_A
MG22375 146 147 1 0.05 37 Au_FAA505_ppm_A
MG22376 147 148 1 1.22 70 Au_FAA505_ppm_A
MG22377 148 149 1 0.08 276 Au_FAA505_ppm_A
MG22378 149 150 1 0.52 1539 Au_FAA505_ppm_A
MG22379 150 151 1 0.38 1427 Au_FAA505_ppm_A
MG22380 151 152 1 0.16 92 Au_FAA505_ppm_A
MG22381 152 153 1 0.02 17 Au_FAA505_ppm_A
MG22382 153 154 1 0.06 33 Au_FAA505_ppm_A
MG22386 154 155 1 0.03 18 Au_FAA505_ppm_A
MG22387 155 156 1 0.01 14 Au_FAA505_ppm_A
MG22388 156 157 1 0.04 23 Au_FAA505_ppm_A
MG22389 157 158 1 0.01 44 Au_FAA505_ppm_A
MG22390 158 159 1 0.02 28 Au_FAA505_ppm_A
MG22391 159 160 1 0.01 34 Au_FAA505_ppm_A
MG22392 160 161 1 0.17 205 Au_FAA505_ppm_A
MG22393 161 162 1 0.07 120 Au_FAA505_ppm_A
MG22394 162 163 1 0.07 382 Au_FAA505_ppm_A
MG22395 163 164 1 0.18 2215 Au_FAA505_ppm_A
MG22396 164 165 1 0.10 748 Au_FAA505_ppm_A
MG22397 165 166 1 0.07 450 Au_FAA505_ppm_A
MG22398 166 167 1 0.02 83 Au_FAA505_ppm_A
MG22399 167 168 1 0.48 390 Au_FAA505_ppm_A
MG22400 168 169 1 0.02 78 Au_FAA505_ppm_A
MG22401 169 170 1 0.11 69 Au_FAA505_ppm_A
MG22402 170 171 1 -0.01 10 Au_FAA505_ppm_A
MG22403 171 172 1 9.48 1348 Au_Au-PA01_ppm_A
MG22404 172 173 1 32.30 2392 Au_FAA505_ppm_A
MG22405 173 174 1 0.08 437 Au_FAA505_ppm_A
MG22409 174 175 1 0.38 863 Au_FAA505_ppm_A
MG22410 175 176 1 0.06 25 Au_FAA505_ppm_A
MG22411 176 177 1 0.03 19 Au_FAA505_ppm_A
MG22412 177 178 1 0.04 58 Au_FAA505_ppm_A
MG22413 178 179 1 0.11 653 Au_FAA505_ppm_A
MG22414 179 180 1 0.08 384 Au_FAA505_ppm_A
MG22415 180 181 1 0.40 1515 Au_Au-PA01_ppm_A
23
Hole ID
Sample Depth Depth Interval Au As ppm Au
ID From (m) To (m) (m) g/t (pXRF) Method
MDD130 MG22325 233 234 1 0.01 16 Au_FAA505_ppm_A
MG22326 234 235 1 0.02 110 Au_FAA505_ppm_A
MG22327 235 236 1 0.41 980 Au_Au-PA01_ppm_A
MG22328 236 237 1 0.02 13.3 Au_FAA505_ppm_A
MG22329 237 238 1 -0.01 13.6 Au_FAA505_ppm_A
MG22330 238 239 1 -0.01 13.9 Au_FAA505_ppm_A
MG22331 239 240 1 -0.01 15.6 Au_FAA505_ppm_A
MG22332 240 241 1 0.41 367 Au_FAA505_ppm_A
MG22333 241 242 1 0.38 142 Au_FAA505_ppm_A
MG22337 242 243 1 0.02 98 Au_FAA505_ppm_A
MG22338 243 244 1 -0.01 25.8 Au_FAA505_ppm_A
MG22339 244 245 1 -0.01 15.4 Au_FAA505_ppm_A
MG22340 245 246 1 -0.01 43.6 Au_FAA505_ppm_A
MG22341 246 247 1 -0.01 17.6 Au_FAA505_ppm_A
MG22342 247 248 1 0.01 14.9 Au_FAA505_ppm_A
MG22343 248 249 1 -0.01 10.6 Au_FAA505_ppm_A
MG22344 249 250 1 -0.01 5.3 Au_FAA505_ppm_A
MG22345 250 251 1 -0.01 8.2 Au_FAA505_ppm_A
MG22346 251 252 1 -0.01 11.3 Au_FAA505_ppm_A
MG22347 252 253 1 -0.01 7.4 Au_FAA505_ppm_A
MG22348 253 254 1 0.02 8.2 Au_FAA505_ppm_A
MG22349 254 255 1 0.06 50.4 Au_FAA505_ppm_A
MG22350 255 256 1 -0.01 4.7 Au_FAA505_ppm_A
MG22351 256 257 1 0.01 19.3 Au_FAA505_ppm_A
MG22352 257 258 1 0.09 321 Au_FAA505_ppm_A
MG22353 258 259 1 0.02 127 Au_FAA505_ppm_A
MG22354 259 260 1 -0.01 17.3 Au_FAA505_ppm_A
MG22355 260 261 1 0.09 10.9 Au_FAA505_ppm_A
MG22359 261 262 1 -0.01 9.4 Au_FAA505_ppm_A
MG22360 262 263 1 0.03 8.2 Au_FAA505_ppm_A
MG22361 263 264 1 0.04 27.3 Au_FAA505_ppm_A
MG22362 264 265.4 1.4 -0.01 13.8 Au_FAA505_ppm_A
Hole ID
Sample Depth Depth Interval Au As ppm Au
ID From (m) To (m) (m) g/t (pXRF) Method
MDD125 MG22192 202 203 1 0.04 616.84 Au_FAA505_ppm_A
MG22193 203 204 1 0.05 32.9 Au_FAA505_ppm_A
MG22194 204 205 1 0.01 54.47 Au_FAA505_ppm_A
MG22198 205 206 1 0.03 20.42 Au_FAA505_ppm_A
MG22199 206 207 1 0.2 407.04 Au_FAA505_ppm_A
MG22200 207 208 1 0.24 363.12 Au_FAA505_ppm_A
MG22201 208 209 1 0.04 13.14 Au_FAA505_ppm_A
MG22202 209 210 1 0.01 25.16 Au_FAA505_ppm_A
MG22203 210 211 1 0.02 19.8 Au_FAA505_ppm_A
MG22204 211 212 1 5.26 657.04 Au_FAA505_ppm_A
MG22205 212 213 1 1.86 696.61 Au_FAA505_ppm_A
MG22206 213 214 1 6.98 1416.1 Au_FAA505_ppm_A
MG22207 214 215 1 0.36 1304.5 Au_FAA505_ppm_A
MG22208 215 216 1 0.05 120.24 Au_FAA505_ppm_A
MG22209 216 217 1 0.06 15.77 Au_FAA505_ppm_A
MG22210 217 218 1 0.01 46.17 Au_FAA505_ppm_A
MG22211 218 219 1 0.01 13.39 Au_FAA505_ppm_A
MG22212 219 220 1 0.03 29.13 Au_FAA505_ppm_A
MG22213 220 221 1 0.05 38.25 Au_FAA505_ppm_A
MG22214 221 222 1 0.03 32.48 Au_FAA505_ppm_A
MG22215 222 223 1 0.02 13.91 Au_FAA505_ppm_A
MG22216 223 224 1 -0.01 7.14 Au_FAA505_ppm_A
MG22217 224 225 1 0.04 115.17 Au_FAA505_ppm_A
MG22218 225 226 1 0.01 31.33 Au_FAA505_ppm_A
MG22222 226 227 1 0.03 44.52 Au_FAA505_ppm_A
MG22223 227 228 1 0.07 407.02 Au_FAA505_ppm_A
MG22224 228 229 1 2.29 74.84 Au_FAA505_ppm_A
MG22225 229 230 1 0.74 3355.3 Au_Au-PA01_ppm_A
MG22226 230 231 1 0.46 1375.1 Au_FAA505_ppm_A
MG22227 231 232 1 0.01 38.06 Au_FAA505_ppm_A
MG22228 232 233 1 0.69 669.89 Au_FAA505_ppm_A
MG22229 233 234 1 0.34 2112 Au_Au-PA01_ppm_A
MG22230 234 235 1 0.22 1239.4 Au_FAA505_ppm_A
MG22231 235 236 1 0.3 1080.1 Au_Au-PA01_ppm_A
MG22232 236 237 1 0.88 4148.3 Au_FAA505_ppm_A
MG22233 237 238 1 0.44 329.69 Au_FAA505_ppm_A
MG22234 238 239 1 0.52 260.67 Au_FAA505_ppm_A
MG22235 239 240 1 0.94 98.57 Au_FAA505_ppm_A
MG22236 240 241 1 0.08 40.01 Au_FAA505_ppm_A
MG22237 241 242 1 0.04 34.85 Au_FAA505_ppm_A
MG22238 242 243 1 3.3 1509 Au_FAA505_ppm_A
MG22239 243 244 1 0.06 185.1 Au_FAA505_ppm_A
MG22240 244 245 1 0.2 974.21 Au_FAA505_ppm_A
MG22241 245 246 1 0.28 1716.4 Au_FAA505_ppm_A
MG22242 246 247 1 0.19 1363.5 Au_FAA505_ppm_A
MG22246 247 248 1 0.41 1790.3 Au_FAA505_ppm_A
MG22247 248 249 1 0.21 1440.2 Au_FAA505_ppm_A
MG22248 249 250 1 0.33 401.68 Au_FAA505_ppm_A
MG22249 250 251 1 0.07 55.51 Au_FAA505_ppm_A
MG22250 251 252 1 0.01 18.75 Au_FAA505_ppm_A
MG22251 252 253 1 0.04 15.32 Au_FAA505_ppm_A
MG22252 253 254 1 0.01 10.56 Au_FAA505_ppm_A
MG22253 254 255 1 -0.01 19.34 Au_FAA505_ppm_A
MG22254 255 256 1 0.02 14.23 Au_FAA505_ppm_A
MG22255 256 257 1 -0.01 8.2 Au_FAA505_ppm_A
MG22256 257 258 1 0.02 11.26 Au_FAA505_ppm_A
MG22257 258 259 1 -0.01 15.54 Au_FAA505_ppm_A
MG22258 259 260 1 0.06 17.83 Au_FAA505_ppm_A
MG22259 260 261 1 1.48 1121.4 Au_FAA505_ppm_A
MG22260 261 262 1 5.21 409.48 Au_Au-PA01_ppm_A
MG22261 262 263 1 0.02 18.84 Au_FAA505_ppm_A
MG22262 263 264 1 -0.01 14.21 Au_FAA505_ppm_A
MG22263 264 265 1 -0.01 5.47 Au_FAA505_ppm_A
MG22264 265 266 1 -0.01 11.71 Au_FAA505_ppm_A
MG22265 266 266.7 0.7 0.03 42.39 Au_FAA505_ppm_A
Hole ID
Sample Depth Depth Interval Au As ppm Au
ID From (m) To (m) (m) g/t (pXRF) Method
MDD125 MG22125 142 143 1 -0.01 8.44 Au_FAA505_ppm_A
MG22126 143 144.5 1.5 -0.01 0 Au_FAA505_ppm_A
MG22127 144.5 145.13 0.63 0.02 23.08 Au_FAA505_ppm_A
MG22128 145.13 146 0.87 0.77 3451.8 Au_FAA505_ppm_A
MG22129 146 147 1 0.28 1155.5 Au_FAA505_ppm_A
MG22130 147 148 1 0.36 2763.4 Au_FAA505_ppm_A
MG22131 148 149 1 0.81 8099.1 Au_FAA505_ppm_A
MG22132 149 150 1 0.11 490.02 Au_FAA505_ppm_A
MG22133 150 151 1 1.02 523.45 Au_FAA505_ppm_A
MG22134 151 152 1 0.45 911.39 Au_FAA505_ppm_A
MG22135 152 153 1 0.31 101.09 Au_FAA505_ppm_A
MG22136 153 154 1 1.01 1112.8 Au_FAA505_ppm_A
MG22137 154 155 1 0.46 269.17 Au_FAA505_ppm_A
MG22138 155 156 1 1.71 5021.9 Au_FAA505_ppm_A
MG22139 156 157 1 0.91 1979 Au_FAA505_ppm_A
MG22140 157 158 1 0.16 1573.5 Au_FAA505_ppm_A
MG22141 158 159 1 0.03 70.71 Au_FAA505_ppm_A
MG22142 159 160 1 0.6 3085.4 Au_FAA505_ppm_A
MG22143 160 161 1 0.54 2369.6 Au_FAA505_ppm_A
MG22144 161 162 1 1.3 269.04 Au_FAA505_ppm_A
MG22145 162 163 1 0.31 403.2 Au_FAA505_ppm_A
MG22149 163 164 1 0.23 893.68 Au_FAA505_ppm_A
MG22150 164 165 1 1.02 2659.5 Au_FAA505_ppm_A
MG22151 165 166 1 1.7 2879.1 Au_FAA505_ppm_A
MG22152 166 167 1 0.55 614.48 Au_FAA505_ppm_A
MG22153 167 168 1 0.73 1062.2 Au_FAA505_ppm_A
MG22154 168 169 1 0.25 246.62 Au_FAA505_ppm_A
MG22155 169 170 1 7.18 6866.5 Au_FAA505_ppm_A
MG22156 170 171 1 4.25 2472.9 Au_FAA505_ppm_A
MG22157 171 172 1 0.1 490.25 Au_FAA505_ppm_A
MG22158 172 173 1 4.94 1111.3 Au_FAA505_ppm_A
MG22159 173 174 1 2.9 2851.4 Au_FAA505_ppm_A
MG22160 174 175 1 0.51 1540.6 Au_FAA505_ppm_A
MG22161 175 176 1 11.5 1110.1 Au_FAA505_ppm_A
MG22162 176 177 1 5.95 3884.4 Au_FAA505_ppm_A
MG22163 177 178 1 0.53 1827.6 Au_FAA505_ppm_A
MG22164 178 179 1 1.17 12295 Au_FAA505_ppm_A
MG22165 179 180 1 0.71 7929 Au_FAA505_ppm_A
MG22166 180 181 1 0.31 1130.6 Au_FAA505_ppm_A
MG22167 181 182 1 0.07 201.61 Au_FAA505_ppm_A
MG22168 182 183 1 0.05 90.87 Au_FAA505_ppm_A
MG22169 183 184 1 0.02 135.87 Au_FAA505_ppm_A
MG22173 184 185 1 0.24 1190.7 Au_Au-PA01_ppm_A
MG22174 185 186 1 0.45 1162.7 Au_FAA505_ppm_A
MG22175 186 187 1 0.17 1015.3 Au_Au-PA01_ppm_A
MG22176 187 188 1 0.19 3387 Au_FAA505_ppm_A
MG22177 188 189 1 0.19 4786.7 Au_FAA505_ppm_A
MG22178 189 190 1 0.44 455.28 Au_FAA505_ppm_A
MG22179 190 191 1 0.13 1093.7 Au_FAA505_ppm_A
MG22181 191 192 1 1.28 2795.9 Au_FAA505_ppm_A
MG22182 192 193 1 0.31 1355.5 Au_FAA505_ppm_A
MG22183 193 194 1 0.18 1675 Au_FAA505_ppm_A
MG22184 194 195 1 0.22 424.4 Au_FAA505_ppm_A
MG22185 195 196 1 0.27 541.76 Au_Au-PA01_ppm_A
MG22186 196 197 1 0.04 104.82 Au_FAA505_ppm_A
MG22187 197 198 1 0.02 101.98 Au_FAA505_ppm_A
MG22188 198 199 1 32.5 785.74 Au_FAA505_ppm_A
MG22189 199 200 1 0.12 391.78 Au_FAA505_ppm_A
MG22190 200 201 1 0.02 132.71 Au_FAA505_ppm_A
MG22191 201 202 1 0.02 71.54 Au_FAA505_ppm_A
Hole ID
Sample Depth Depth Interval Au As ppm Au
ID From (m) To (m) (m) g/t (pXRF) Method
MDD090 MG20961 157 158 1 -0.01
Au_FAA505_ppm_A
MG20962 158 158.9 0.9 -0.01 5 Au_FAA505_ppm_A
MG20963 158.9 160.2 1.3 -0.01 8 Au_FAA505_ppm_A
MG20964 160.2 161 0.8 3.61 9125 Au_FAA505_ppm_A
MG20965 161 162 1 2.39 5199 Au_FAA505_ppm_A
MG20966 162 163 1 8.04 6626 Au_FAA505_ppm_A
MG20967 163 164 1 0.36 2252 Au_FAA505_ppm_A
MG20968 164 165 1 0.31 2403 Au_FAA505_ppm_A
MG20969 165 166 1 6.48 493 Au_FAA505_ppm_A
MG20970 166 167 1 8.3 1023 Au_FAA505_ppm_A
MG20971 167 168 1 2.58 812 Au_calc_BLEG_ppm_A
MG20972 168 169 1 2.22 3229 Au_calc_BLEG_ppm_A
MG20974 169 170 1 0.35 458 Au_FAA505_ppm_A
MG20975 170 171 1 1 633 Au_FAA505_ppm_A
MG20976 171 172 1 7.3 2777 Au_calc_BLEG_ppm_A
MG20977 172 173 1 1.92 2014 Au_FAA505_ppm_A
MG20978 173 174 1 8.28 2679 Au_FAA505_ppm_A
MG20980 174 175 1 1.75 539 Au_FAA505_ppm_A
MG20981 175 176 1 0.41 648 Au_FAA505_ppm_A
MG20982 176 177 1 24.3 3512 Au_FAA505_ppm_A
MG20984 177 178 1 1.61 1204 Au_FAA505_ppm_A
MG20988 178 179 1 7.5 1475 Au_calc_BLEG_ppm_A
MG20990 179 180 1 0.3 1077 Au_FAA505_ppm_A
MG20991 180 181 1 0.21 1175 Au_calc_BLEG_ppm_A
MG20992 181 182 1 11.8 4207 Au_FAA505_ppm_A
MG20994 182 183 1 0.27 3405 Au_FAA505_ppm_A
MG20995 183 184 1 1.16 1800 Au_FAA505_ppm_A
24
Hole ID
Sample Depth Depth Interval Au As ppm Au
ID From (m) To (m) (m) g/t (pXRF) Method
MDD090 MG20996 184 185 1 10.7 3218 Au_FAA505_ppm_A
MG20997 185 186 1 1.22 2093 Au_calc_BLEG_ppm_A
MG20998 186 187 1 0.36 2082 Au_FAA505_ppm_A
MG20999 187 188 1 0.09 1050 Au_calc_BLEG_ppm_A
MG21000 188 189 1 0.05 803 Au_FAA505_ppm_A
MG21001 189 190 1 0.09 1136 Au_FAA505_ppm_A
MG21002 190 191 1 0.25 2314 Au_FAA505_ppm_A
MG21003 191 192 1 0.63 4022 Au_calc_BLEG_ppm_A
MG21005 192 193 1 0.13 1464 Au_calc_BLEG_ppm_A
MG21006 193 194 1 0.17 3988 Au_FAA505_ppm_A
MG21007 194 195 1 0.11 1415 Au_FAA505_ppm_A
MG21008 195 196 1 0.25 1308 Au_FAA505_ppm_A
MG21009 196 197 1 2.69 2732 Au_FAA505_ppm_A
MG21010 197 198 1 0.17 3720 Au_FAA505_ppm_A
MG21011 198 199 1 0.03 415 Au_FAA505_ppm_A
MG21012 199 200 1 0.29 3280 Au_FAA505_ppm_A
MG21016 200 201 1 0.12 1586 Au_FAA505_ppm_A
MG21017 201 202 1 0.19 2071 Au_calc_BLEG_ppm_A
MG21018 202 203 1 2.43 2973 Au_FAA505_ppm_A
MG21019 203 204 1 3.07 3847 Au_calc_BLEG_ppm_A
MG21021 204 205 1 0.12 153 Au_FAA505_ppm_A
MG21022 205 206 1 0.05 375 Au_FAA505_ppm_A
MG21023 206 207 1 0.1 484 Au_FAA505_ppm_A
MG21024 207 208 1 0.55 3446 Au_FAA505_ppm_A
MG21025 208 209 1 0.09 2014 Au_FAA505_ppm_A
MG21026 209 210 1 0.17 1718 Au_calc_BLEG_ppm_A
MG21027 210 211 1 0.53 2395 Au_FAA505_ppm_A
MG21028 211 212 1 0.11 299 Au_FAA505_ppm_A
MG21029 212 213 1 0.23 171 Au_calc_BLEG_ppm_A
MG21030 213 214 1 0.11 176 Au_FAA505_ppm_A
MG21031 214 215 1 0.03 182 Au_FAA505_ppm_A
MG21032 215 216 1 0.28 759 Au_FAA505_ppm_A
MG21033 216 217 1 0.1 2155 Au_FAA505_ppm_A
MG21034 217 218 1 0.03 36 Au_FAA505_ppm_A
MG21035 218 219 1 0.2 1768 Au_FAA505_ppm_A
MG21036 219 220 1 0.14 627 Au_FAA505_ppm_A
MG21037 220 221 1 0.26 1324 Au_FAA505_ppm_A
MG21041 221 222 1 0.05 1207 Au_FAA505_ppm_A
MG21042 222 223 1 0.19 220 Au_FAA505_ppm_A
MG21043 223 224 1 2.3 1009 Au_calc_BLEG_ppm_A
MG21045 224 225 1 0.11 411 Au_calc_BLEG_ppm_A
MG21046 225 226 1 0.2 689 Au_FAA505_ppm_A
MG21047 226 227 1 0.29 604 Au_calc_BLEG_ppm_A
MG21048 227 228 1 0.21 958 Au_FAA505_ppm_A
MG21049 228 229 1 0.11 1116 Au_FAA505_ppm_A
MG21050 229 230 1 0.3 1101 Au_FAA505_ppm_A
MG21051 230 231 1 0.07 252 Au_FAA505_ppm_A
MG21052 231 232 1 0.04 354 Au_FAA505_ppm_A
MG21053 232 233 1 0.02 7 Au_FAA505_ppm_A
MG21054 233 234 1 0.04 371 Au_FAA505_ppm_A
MG21055 234 235 1 -0.01 79 Au_FAA505_ppm_A
MG21056 235 236 1 0.03 29 Au_FAA505_ppm_A
MG21057 236 237 1 0.04 185 Au_FAA505_ppm_A
MG21058 237 238 1 0.15 730 Au_FAA505_ppm_A
MG21059 238 239 1 0.03 303 Au_FAA505_ppm_A
MG21060 239 240 1 0.05 1783 Au_FAA505_ppm_A
MG21061 240 241 1 0.02 705 Au_FAA505_ppm_A
MG21062 241 242 1 0.06 1272 Au_FAA505_ppm_A
MG21066 242 243 1 0.07 479 Au_FAA505_ppm_A
MG21067 243 244 1 0.12 362 Au_calc_BLEG_ppm_A
MG21068 244 245 1 0.13 387 Au_FAA505_ppm_A
MG21069 245 246 1 0.05 12 Au_FAA505_ppm_A
MG21070 246 247 1 0.07 189 Au_FAA505_ppm_A
MG21071 247 248 1 -0.01 7 Au_FAA505_ppm_A
MG21072 248 249 1 -0.01 7 Au_FAA505_ppm_A
MG21073 249 250 1 -0.01 5 Au_FAA505_ppm_A
MG21074 250 251 1 -0.01 8 Au_FAA505_ppm_A
MG21075 251 252 1 0.02 298 Au_FAA505_ppm_A
MG21076 252 253 1 0.08 1522 Au_FAA505_ppm_A
MG21077 253 254 1 0.02 6 Au_FAA505_ppm_A
MG21078 254 254.9 0.9 0.05 18 Au_FAA505_ppm_A
Hole ID
Sample Depth Depth Interval Au As ppm Au
ID From (m) To (m) (m) g/t (pXRF) Method
MDD086 MG20850 176 177 1 0.38 456 Au_FAA505_ppm_A
MG20851 177 178 1 2.9 675 Au_FAA505_ppm_A
MG20853 178 179 1 0.21 1790 Au_FAA505_ppm_A
MG20854 179 180 1 0.44 2005 Au_FAA505_ppm_A
MG20855 180 181 1 0.41 138 Au_FAA505_ppm_A
MG20856 181 182 1 18.9 3867 Au_FAA505_ppm_A
MG20858 182 183 1 49.8 4479 Au_FAA505_ppm_A
MG20859 183 184 1 20.2 3069 Au_FAA505_ppm_A
MG20861 184 185 1 0.16 299 Au_FAA505_ppm_A
MG20862 185 186 1 0.33 1980 Au_FAA505_ppm_A
MG20863 186 187 1 0.02 74 Au_FAA505_ppm_A
MG20864 187 188 1 0.03 217 Au_FAA505_ppm_A
MG20865 188 189 1 0.06 434 Au_FAA505_ppm_A
MG20866 189 190 1 15.9 990 Au_FAA505_ppm_A
MG20867 190 191 1 0.75 844 Au_FAA505_ppm_A
MG20868 191 192 1 0.7 1348 Au_calc_BLEG_ppm_A
MG20869 192 193 1 0.02 399 Au_FAA505_ppm_A
MG20870 193 194 1 0.06 374 Au_FAA505_ppm_A
MG20871 194 195 1 0.05 502 Au_FAA505_ppm_A
MG20875 195 196 1 0.26 1260 Au_FAA505_ppm_A
MG20876 196 197 1 0.31 2961 Au_calc_BLEG_ppm_A
MG20877 197 198 1 0.09 2169 Au_FAA505_ppm_A
MG20878 198 199 1 0.15 1891 Au_calc_BLEG_ppm_A
MG20879 199 200 1 0.57 2277 Au_calc_BLEG_ppm_A
MG20880 200 201 1 0.12 1947 Au_FAA505_ppm_A
MG20881 201 202 1 0.64 1695 Au_FAA505_ppm_A
MG20882 202 203 1 1.13 1004 Au_FAA505_ppm_A
MG20883 203 204 1 1.46 1379 Au_FAA505_ppm_A
MG20884 204 205 1 3.91 2433 Au_FAA505_ppm_A
MG20885 205 206 1 0.06 722 Au_FAA505_ppm_A
MG20886 206 207 1 0.11 198 Au_FAA505_ppm_A
MG20887 207 208 1 0.07 1170 Au_FAA505_ppm_A
MG20888 208 209 1 0.32 7351 Au_FAA505_ppm_A
MG20889 209 210 1 0.37 5415 Au_FAA505_ppm_A
MG20890 210 211 1 0.51 13686 Au_FAA505_ppm_A
MG20891 211 212 1 1.36 12380 Au_FAA505_ppm_A
MG20892 212 213 1 0.18 4524 Au_FAA505_ppm_A
MG20893 213 214 1 0.43 4136 Au_FAA505_ppm_A
MG20894 214 215 1 0.38 6029 Au_calc_BLEG_ppm_A
MG20898 215 216 1 2.03 528 Au_FAA505_ppm_A
MG20899 216 217 1 0.14 230 Au_FAA505_ppm_A
MG20900 217 218 1 -0.01 52 Au_FAA505_ppm_A
MG20901 218 219 1 -0.01 29 Au_FAA505_ppm_A
MG20902 219 220 1 0.01 27 Au_FAA505_ppm_A
MG20903 220 221 1 0.05 42 Au_FAA505_ppm_A
MG20904 221 222 1 -0.01 21 Au_FAA505_ppm_A
MG20905 222 223 1 -0.01 29 Au_FAA505_ppm_A
MG20906 223 224 1 -0.01 13 Au_FAA505_ppm_A
MG20907 224 225 1 -0.01 11 Au_FAA505_ppm_A
MG20908 225 226 1 0.01 18 Au_FAA505_ppm_A
MG20909 226 227 1 0.01 204 Au_FAA505_ppm_A
MG20910 227 228 1 0.05 482 Au_FAA505_ppm_A
MG20911 228 229 1 0.09 1062 Au_FAA505_ppm_A
MG20912 229 230 1 -0.01 13 Au_FAA505_ppm_A
MG20913 230 231 1 0.02 119 Au_FAA505_ppm_A
MG20914 231 232 1 -0.01 9 Au_FAA505_ppm_A
MG20915 232 233 1 -0.01 10 Au_FAA505_ppm_A
MG20916 233 234 1 0.04 308 Au_calc_BLEG_ppm_A
MG20917 234 235 1 0.02 25 Au_FAA505_ppm_A
MG20921 235 236 1 -0.01 8 Au_FAA505_ppm_A
MG20922 236 237 1 0.02 33 Au_FAA505_ppm_A
MG20923 237 238 1 -0.01 16 Au_FAA505_ppm_A
MG20924 238 239 1 0.01 46 Au_FAA505_ppm_A
MG20925 239 240 1 -0.01 11 Au_FAA505_ppm_A
MG20926 240 241 1 -0.01 6 Au_FAA505_ppm_A
MG20927 241 242 1 0.16 48 Au_FAA505_ppm_A
MG20928 242 243 1 1.65 142 Au_FAA505_ppm_A
MG20929 243 244 1 0.02 46 Au_FAA505_ppm_A
MG20930 244 245 1 0.07 425 Au_FAA505_ppm_A
MG20931 245 246 1 0.12 560 Au_FAA505_ppm_A
MG20932 246 247 1 0.01 101 Au_FAA505_ppm_A
MG20933 247 248 1 0.02 22 Au_FAA505_ppm_A
MG20934 248 249 1 0.03 69 Au_FAA505_ppm_A
MG20935 249 250 1 0.02 11 Au_FAA505_ppm_A
MG20936 250 251 1 0.02 7 Au_FAA505_ppm_A
MG20937 251 252 1 -0.01 7 Au_FAA505_ppm_A
MG20938 252 253 1 -0.01 10 Au_FAA505_ppm_A
MG20939 253 254 1 -0.01 4 Au_FAA505_ppm_A
MG20940 254 255 1 -0.01 3 Au_FAA505_ppm_A
MG20944 255 256 1 0.01 14 Au_FAA505_ppm_A
MG20945 256 257 1 -0.01 9 Au_FAA505_ppm_A
MG20946 257 258 1 -0.01 19 Au_FAA505_ppm_A
MG20947 258 259 1 -0.01 86 Au_FAA505_ppm_A
MG20948 259 260 1 -0.01 21 Au_FAA505_ppm_A
MG20949 260 261 1 -0.01 13 Au_FAA505_ppm_A
MG20950 261 262 1 -0.01 8 Au_FAA505_ppm_A
MG20951 262 263 1 -0.01 13 Au_FAA505_ppm_A
MG20952 263 264 1 0.37 218 Au_FAA505_ppm_A
MG20953 264 265 1 2.36 1930 Au_FAA505_ppm_A
MG20954 265 266 1 0.15 1268 Au_calc_BLEG_ppm_A
MG20955 266 267 1 0.03 181 Au_FAA505_ppm_A
MG20956 267 268 1 0.1 536 Au_FAA505_ppm_A
MG20957 268 269.4 1.4 0.04
Au_FAA505_ppm_A
Hole ID
Sample Depth Depth Interval Au As ppm Au
ID From (m) To (m) (m) g/t (pXRF) Method
MDD086 MG20826 154 155 1 -0.01 15 Au_FAA505_ppm_A
MG20827 155 156 1 -0.01 12 Au_FAA505_ppm_A
MG20828 156 157.8 1.8 -0.01 13 Au_FAA505_ppm_A
MG20829 157.8 158.6 0.8 -0.01 6 Au_FAA505_ppm_A
MG20830 158.6 160 1.4 0.49 5407 Au_calc_BLEG_ppm_A
MG20831 160 161 1 2.03 6508 Au_FAA505_ppm_A
MG20832 161 162 1 0.74 2657 Au_FAA505_ppm_A
MG20833 162 163 1 1.64 5703 Au_calc_BLEG_ppm_A
MG20834 163 164 1 9.21 6621 Au_calc_BLEG_ppm_A
MG20835 164 165 1 2.85 2735 Au_FAA505_ppm_A
MG20836 165 166 1 0.77 1431 Au_calc_BLEG_ppm_A
MG20837 166 167 1 2.82 1002 Au_FAA505_ppm_A
MG20838 167 168 1 0.1 373 Au_FAA505_ppm_A
MG20839 168 169 1 0.65 659 Au_calc_BLEG_ppm_A
MG20840 169 170 1 0.32 2030 Au_FAA505_ppm_A
MG20841 170 171 1 4.23 1987 Au_FAA505_ppm_A
MG20842 171 172 1 5.63 1241 Au_FAA505_ppm_A
MG20843 172 173 1 7.76 1640 Au_calc_BLEG_ppm_A
MG20844 173 174 1 2.35 621 Au_FAA505_ppm_A
MG20845 174 175 1 0.92 3524 Au_FAA505_ppm_A
MG20849 175 176 1 2.86 2195 Au_calc_BLEG_ppm_A
25
Hole ID
Sample Depth Depth Interval Au As ppm Au
ID From (m) To (m) (m) g/t (pXRF) Method
MDD085 MG18255 169 170 1 -0.01 8 Au_FAA505_ppm_A
MG18256 170 171 1 -0.01 8 Au_FAA505_ppm_A
MG18257 171 172.36 1.36 -0.01 8 Au_FAA505_ppm_A
MG18258 172.36 173.1 0.74 -0.01 18 Au_FAA505_ppm_A
MG18259 173.1 174 0.9 2.4 12007 Au_calc_BLEG_ppm_A
MG18261 174 175 1 4.13 5806 Au_FAA505_ppm_A
MG18262 175 176 1 3.56 2685 Au_FAA505_ppm_A
MG18263 176 177 1 3.82 5693 Au_FAA505_ppm_A
MG18265 177 178 1 4.4 1690 Au_FAA505_ppm_A
MG18266 178 179 1 0.35 616 Au_calc_BLEG_ppm_A
MG18267 179 180 1 2.02 634 Au_FAA505_ppm_A
MG18268 180 181 1 3.11 372 Au_FAA505_ppm_A
MG18270 181 182 1 1.17 345 Au_FAA505_ppm_A
MG18272 182 183 1 0.36 1151 Au_FAA505_ppm_A
MG18273 183 184 1 3.89 1636 Au_calc_BLEG_ppm_A
MG18274 184 185 1 5.01 3540 Au_FAA505_ppm_A
MG18276 185 186 1 6.1 4468 Au_FAA505_ppm_A
MG18277 186 187 1 12.2 1912 Au_FAA505_ppm_A
MG18278 187 188 1 11.9 4002 Au_FAA505_ppm_A
MG18279 188 189 1 4.39 3407 Au_calc_BLEG_ppm_A
MG18283 189 190 1 3.51 1781 Au_FAA505_ppm_A
MG18284 190 191 1 1.76 3191 Au_FAA505_ppm_A
MG18285 191 192 1 0.72 1023 Au_FAA505_ppm_A
MG18286 192 193 1 3.93 3632 Au_FAA505_ppm_A
MG18288 193 194 1 0.4 1806 Au_FAA505_ppm_A
MG18289 194 195 1 0.45 1796 Au_FAA505_ppm_A
MG18290 195 196 1 2.04 3690 Au_calc_BLEG_ppm_A
MG18291 196 197 1 3.47 2718 Au_FAA505_ppm_A
MG18292 197 198 1 0.32 1505 Au_FAA505_ppm_A
MG18293 198 199 1 1.36 3284 Au_FAA505_ppm_A
MG18294 199 200 1 0.36 1673 Au_FAA505_ppm_A
MG18295 200 201 1 0.95 1836 Au_FAA505_ppm_A
MG18296 201 202 1 7.69 2010 Au_FAA505_ppm_A
MG18297 202 203 1 0.21 1056 Au_FAA505_ppm_A
MG18298 203 204 1 0.41 2430 Au_FAA505_ppm_A
MG18299 204 205 1 0.97 976 Au_FAA505_ppm_A
MG18300 205 206 1 1.69 3777 Au_calc_BLEG_ppm_A
MG18301 206 207 1 11.6 3617 Au_FAA505_ppm_A
MG18302 207 208 1 56.8 2273 Au_FAA505_ppm_A
MG18304 208 209 1 13.1 2890 Au_FAA505_ppm_A
MG18308 209 210 1 0.43 3165 Au_FAA505_ppm_A
MG18309 210 211 1 0.03 23 Au_FAA505_ppm_A
MG18310 211 212 1 0.28 99 Au_FAA505_ppm_A
MG18311 212 213 1 0.25 1367 Au_FAA505_ppm_A
MG18312 213 214 1 0.09 793 Au_FAA505_ppm_A
MG18313 214 215 1 0.09 590 Au_FAA505_ppm_A
MG18314 215 216 1 0.19 1733 Au_FAA505_ppm_A
MG18315 216 217 1 0.13 3066 Au_FAA505_ppm_A
MG18316 217 218 1 8.38 3302 Au_FAA505_ppm_A
MG18317 218 219 1 1.29 2488 Au_FAA505_ppm_A
MG18319 219 220 1 0.13 1648 Au_FAA505_ppm_A
MG18321 220 221 1 0.63 1904 Au_FAA505_ppm_A
MG18322 221 222 1 0.05 1217 Au_FAA505_ppm_A
MG18323 222 223 1 0.22 4109 Au_FAA505_ppm_A
MG18324 223 224 1 0.35 664 Au_FAA505_ppm_A
MG18325 224 225 1 0.04 256 Au_FAA505_ppm_A
MG18326 225 226 1 0.05 1077 Au_FAA505_ppm_A
MG18327 226 227 1 0.2 631 Au_FAA505_ppm_A
MG18328 227 228 1 0.35 297 Au_FAA505_ppm_A
MG18329 228 229 1 0.05 59 Au_FAA505_ppm_A
MG18333 229 230 1 -0.01 25 Au_FAA505_ppm_A
MG18334 230 231 1 0.08 486 Au_FAA505_ppm_A
MG18335 231 232 1 0.05 76 Au_FAA505_ppm_A
MG18336 232 233 1 0.09 326 Au_FAA505_ppm_A
MG18337 233 234 1 0.01 75 Au_FAA505_ppm_A
MG18338 234 235 1 0.05 406 Au_FAA505_ppm_A
MG18339 235 236 1 0.02 36 Au_FAA505_ppm_A
MG18340 236 237 1 0.43 4905 Au_FAA505_ppm_A
MG18341 237 238 1 0.33 4397 Au_FAA505_ppm_A
MG18342 238 239 1 -0.01 35 Au_FAA505_ppm_A
MG18343 239 240 1 -0.01 159 Au_FAA505_ppm_A
MG18344 240 241 1 -0.01 90 Au_FAA505_ppm_A
MG18345 241 242 1 0.08 1420 Au_FAA505_ppm_A
MG18346 242 243 1 0.03 194 Au_FAA505_ppm_A
MG18347 243 244 1 0.02 37 Au_FAA505_ppm_A
MG18348 244 245 1 0.02 67 Au_FAA505_ppm_A
MG18349 245 246 1 -0.01 8 Au_FAA505_ppm_A
MG18350 246 247 1 0.02 15 Au_FAA505_ppm_A
MG18351 247 248 1 0.03 62 Au_FAA505_ppm_A
MG18352 248 249 1 -0.01 653 Au_FAA505_ppm_A
MG18356 249 250 1 -0.01 11 Au_FAA505_ppm_A
MG18357 250 251 1 0.05 274 Au_FAA505_ppm_A
MG18358 251 252 1 0.09 1121 Au_FAA505_ppm_A
MG18359 252 253 1 0.02 70 Au_FAA505_ppm_A
MG18360 253 254 1 0.04 40 Au_FAA505_ppm_A
MG18361 254 255 1 0.25 1170 Au_FAA505_ppm_A
MG18362 255 256 1 0.01 88 Au_FAA505_ppm_A
MG18363 256 257 1 -0.01 8 Au_FAA505_ppm_A
MG18364 257 258 1 1.26 21 Au_FAA505_ppm_A
MG18365 258 259 1 0.01 3 Au_FAA505_ppm_A
MG18366 259 260 1 0.01 24 Au_FAA505_ppm_A
MG18367 260 261 1 -0.01 22 Au_FAA505_ppm_A
MG18368 261 262 1 0.01 15 Au_calc_BLEG_ppm_A
MG18369 262 263 1 0.02 52 Au_FAA505_ppm_A
MG18370 263 264 1 0.03 249 Au_FAA505_ppm_A
Hole ID
Sample Depth Depth Interval Au As ppm Au
ID From (m) To (m) (m) g/t (pXRF) Method
MDD085 MG18371 264 265 1 0.07 27 Au_FAA505_ppm_A
MG18372 265 266 1 0.02 7 Au_FAA505_ppm_A
MG18373 266 266.9 0.9 -0.01 7 Au_FAA505_ppm_A
Hole ID
Sample Depth Depth Interval Au As ppm Au
ID From (m) To (m) (m) g/t (pXRF) Method
MDD084 MG27014 174 175 1 -0.01 4 Au_FAA505_ppm_A
MG27015 175 176 1 0.05 7 Au_FAA505_ppm_A
MG27016 176 177.2 1.2 -0.01 10 Au_FAA505_ppm_A
MG27017 177.2 177.9 0.7 0.04 40 Au_FAA505_ppm_A
MG27018 177.9 179 1.1 21.2 4423 Au_FAA505_ppm_A
MG27020 179 180 1 4.24 6109 Au_FAA505_ppm_A
MG27021 180 181 1 3.14 5465 Au_FAA505_ppm_A
MG27022 181 182 1 6.76 6468 Au_FAA505_ppm_A
MG27023 182 183 1 33.9 7065 Au_FAA505_ppm_A
MG27025 183 184 1 4.51 8308 Au_calc_BLEG_ppm_A
MG27026 184 185 1 59.9 10928 Au_FAA505_ppm_A
MG27027 185 186 1 20.4 9408 Au_FAA505_ppm_A
MG27029 186 187 1 17 8598 Au_FAA505_ppm_A
MG27031 187 188 1 1.96 7732 Au_FAA505_ppm_A
MG27033 188 189 1 3.19 6928 Au_FAA505_ppm_A
MG27035 189 190 1 1.35 8173 Au_FAA505_ppm_A
MG27037 190 191 1 3.38 2961 Au_FAA505_ppm_A
MG27038 191 192 1 1.14 7714 Au_calc_BLEG_ppm_A
MG27039 192 193 1 0.44 9049 Au_FAA505_ppm_A
MG27040 193 194 1 0.98 8692 Au_FAA505_ppm_A
MG27044 194 195 1 0.75 8278 Au_FAA505_ppm_A
MG27045 195 196 1 0.14 935 Au_FAA505_ppm_A
MG27046 196 197 1 0.38 406 Au_FAA505_ppm_A
MG27047 197 198 1 0.41 1308 Au_FAA505_ppm_A
MG27048 198 199 1 0.3 2153 Au_calc_BLEG_ppm_A
MG27049 199 200 1 1.03 5299 Au_FAA505_ppm_A
MG27050 200 201 1 0.14 3600 Au_FAA505_ppm_A
MG27051 201 202 1 0.17 4314 Au_calc_BLEG_ppm_A
MG27052 202 203 1 0.19 3043 Au_calc_BLEG_ppm_A
MG27053 203 204 1 0.36 2111 Au_calc_BLEG_ppm_A
MG27054 204 205 1 1.37 4884 Au_calc_BLEG_ppm_A
MG27055 205 206 1 4.42 4234 Au_FAA505_ppm_A
MG27056 206 207 1 121 4540 Au_FAD505_ppm_A
MG27058 207 208 1 33.9 1711 Au_FAA505_ppm_A
MG27060 208 209 1 2.25 3197 Au_calc_BLEG_ppm_A
MG27061 209 210 1 1.69 3922 Au_calc_BLEG_ppm_A
MG27063 210 211 1 0.24 7567 Au_FAA505_ppm_A
MG27064 211 212 1 0.07 321 Au_FAA505_ppm_A
MG27065 212 213 1 0.04 309 Au_FAA505_ppm_A
MG27066 213 214 1 0.04 1445 Au_FAA505_ppm_A
MG27070 214 215 1 0.28 5293 Au_FAA505_ppm_A
MG27071 215 216 1 0.08 957 Au_FAA505_ppm_A
MG27072 216 217 1 0.04 725 Au_FAA505_ppm_A
MG27073 217 218 1 0.07 581 Au_FAA505_ppm_A
MG27074 218 219 1 0.45 7486 Au_FAA505_ppm_A
MG27075 219 220 1 0.15 4204 Au_FAA505_ppm_A
MG27076 220 221 1 0.12 2603 Au_FAA505_ppm_A
MG27077 221 222 1 1.02 2595 Au_FAA505_ppm_A
MG27078 222 223 1 0.55 4777 Au_FAA505_ppm_A
MG27079 223 224 1 0.34 6004 Au_FAA505_ppm_A
MG27080 224 225 1 0.58 2168 Au_calc_BLEG_ppm_A
MG27081 225 226 1 0.07 1683 Au_FAA505_ppm_A
MG27082 226 227 1 0.08 1325 Au_FAA505_ppm_A
MG27083 227 228 1 0.72 19927 Au_FAA505_ppm_A
MG27084 228 229 1 0.88 1433 Au_FAA505_ppm_A
MG27085 229 230 1 0.05 262 Au_FAA505_ppm_A
MG27086 230 231 1 0.07 976 Au_FAA505_ppm_A
MG27087 231 232 1 0.13 3288 Au_FAA505_ppm_A
MG27088 232 233 1 0.06 870 Au_FAA505_ppm_A
MG27089 233 234 1 0.04 886 Au_FAA505_ppm_A
MG27093 234 235 1 0.3 2663 Au_FAA505_ppm_A
MG27094 235 236 1 3.59 895 Au_FAA505_ppm_A
MG27095 236 237 1 0.03 108 Au_FAA505_ppm_A
MG27096 237 238 1 0.03 256 Au_FAA505_ppm_A
MG27097 238 239 1 0.26 8976 Au_FAA505_ppm_A
MG27098 239 240 1 0.06 1734 Au_FAA505_ppm_A
MG27099 240 241 1 0.26 2390 Au_FAA505_ppm_A
MG27100 241 242 1 0.22 2933 Au_FAA505_ppm_A
MG27101 242 243 1 0.48 1297 Au_FAA505_ppm_A
MG27102 243 244 1 0.12 2040 Au_FAA505_ppm_A
MG27103 244 245 1 0.22 2892 Au_FAA505_ppm_A
MG27104 245 246 1 0.04 1078 Au_FAA505_ppm_A
MG27105 246 247 1 0.07 1407 Au_FAA505_ppm_A
MG27106 247 248 1 0.15 2278 Au_FAA505_ppm_A
MG27107 248 249 1 0.08 790 Au_FAA505_ppm_A
MG27108 249 250 1 -0.01 26 Au_FAA505_ppm_A
MG27109 250 251 1 0.03 323 Au_FAA505_ppm_A
MG27110 251 252 1 0.13 1982 Au_FAA505_ppm_A
MG27111 252 253 1 0.08 2567 Au_FAA505_ppm_A
MG27112 253 254 1 0.06 1165 Au_FAA505_ppm_A
MG27116 254 255 1 0.1 277 Au_FAA505_ppm_A
MG27117 255 256 1 0.12 517 Au_FAA505_ppm_A
MG27118 256 257 1 0.1 1627 Au_FAA505_ppm_A
MG27119 257 258 1 0.36 5944 Au_FAA505_ppm_A
MG27120 258 259 1 0.6 9483 Au_FAA505_ppm_A
MG27121 259 260 1 0.04 342 Au_FAA505_ppm_A
MG27122 260 261 1 0.09 1094 Au_FAA505_ppm_A
MG27123 261 262 1 0.11 2013 Au_FAA505_ppm_A
MG27124 262 263 1 0.08 2541 Au_FAA505_ppm_A
26
Hole ID
Sample Depth Depth Interval Au As ppm Au
ID From (m) To (m) (m) g/t (pXRF) Method
MDD084 MG27125 263 264 1 0.38 2925 Au_FAA505_ppm_A
MG27126 264 265 1 1.34 3572 Au_FAA505_ppm_A
MG27127 265 266 1 0.27 3726 Au_calc_BLEG_ppm_A
MG27128 266 267 1 0.2 2428 Au_FAA505_ppm_A
MG27129 267 268 1 0.13 2184 Au_FAA505_ppm_A
MG27130 268 269 1 0.11 2037 Au_FAA505_ppm_A
MG27131 269 270 1 0.05 692 Au_FAA505_ppm_A
MG27132 270 271 1 0.35 5915 Au_FAA505_ppm_A
MG27133 271 272 1 0.05 983 Au_FAA505_ppm_A
MG27134 272 273 1 0.12 1275 Au_FAA505_ppm_A
MG27135 273 274 1 0.06 409 Au_FAA505_ppm_A
MG27139 274 275 1 0.28 3775 Au_FAA505_ppm_A
MG27140 275 276 1 0.12 405 Au_FAA505_ppm_A
MG27141 276 277 1 0.14 2037 Au_FAA505_ppm_A
MG27142 277 278 1 0.45 6081 Au_FAA505_ppm_A
MG27143 278 279 1 0.25 1398 Au_FAA505_ppm_A
MG27144 279 280 1 0.17 1734 Au_calc_BLEG_ppm_A
MG27145 280 281 1 0.02 224 Au_FAA505_ppm_A
MG27146 281 282 1 0.92 9289 Au_FAA505_ppm_A
MG27147 282 283 1 0.41 4306 Au_FAA505_ppm_A
MG27148 283 284 1 0.83 4867 Au_calc_BLEG_ppm_A
MG27149 284 285 1 0.2 1905 Au_FAA505_ppm_A
MG27150 285 286 1 0.04 811 Au_FAA505_ppm_A
MG27151 286 287 1 0.2 2572 Au_calc_BLEG_ppm_A
MG27152 287 288 1 0.2 3278 Au_FAA505_ppm_A
MG27153 288 289 1 0.08 2182 Au_FAA505_ppm_A
MG27154 289 290 1 0.07 1279 Au_FAA505_ppm_A
MG27155 290 291 1 0.44 1919 Au_FAA505_ppm_A
MG27156 291 292 1 0.44 174 Au_FAA505_ppm_A
MG27157 292 293 1 0.01 30 Au_FAA505_ppm_A
MG27158 293 294 1 0.04 1062 Au_FAA505_ppm_A
MG27162 294 295 1 0.07 398 Au_FAA505_ppm_A
MG27163 295 296 1 0.03 290 Au_FAA505_ppm_A
MG27164 296 297 1 0.05 981 Au_FAA505_ppm_A
MG27165 297 298 1 0.14 11 Au_FAA505_ppm_A
MG27166 298 299 1 0.27 2267 Au_FAA505_ppm_A
MG27167 299 300 1 0.15 1074 Au_FAA505_ppm_A
MG27168 300 301 1 0.5 4688 Au_FAA505_ppm_A
MG27169 301 302 1 -0.01 56 Au_FAA505_ppm_A
MG27170 302 303 1 0.06 547 Au_FAA505_ppm_A
MG27171 303 304 1 -0.01 44 Au_FAA505_ppm_A
MG27172 304 305 1 -0.01 12 Au_FAA505_ppm_A
MG27173 305 306 1 0.08 186 Au_FAA505_ppm_A
MG27174 306 307 1 0.01 81 Au_FAA505_ppm_A
MG27175 307 308 1 0.04 734 Au_FAA505_ppm_A
MG27176 308 309 1 0.01 20 Au_FAA505_ppm_A
MG27177 309 310 1 -0.01 15 Au_FAA505_ppm_A
MG27178 310 311 1 0.22 14 Au_FAA505_ppm_A
MG27179 311 312 1 0.04 12 Au_FAA505_ppm_A
MG27180 312 313 1 0.04 432 Au_FAA505_ppm_A
MG27181 313 314 1 -0.01 16 Au_FAA505_ppm_A
MG27185 314 315 1 0.03 572 Au_FAA505_ppm_A
MG27186 315 316 1 -0.01 101 Au_FAA505_ppm_A
MG27187 316 317 1 0.04 78 Au_FAA505_ppm_A
MG27188 317 318 1 0.18 1260 Au_FAA505_ppm_A
MG27189 318 319 1 0.03 394 Au_FAA505_ppm_A
MG27190 319 320 1 -0.01 11 Au_FAA505_ppm_A
MG27191 320 321 1 -0.01 12 Au_FAA505_ppm_A
MG27192 321 322 1 -0.01 9 Au_FAA505_ppm_A
MG27193 322 323 1 -0.01 9 Au_FAA505_ppm_A
MG27194 323 323.6 0.6 -0.01 6 Au_FAA505_ppm_A
Hole ID
Sample Depth Depth Interval Au As ppm Au
ID From (m) To (m) (m) g/t (pXRF) Method
MDD054 MG15776 194 195 1 8.43 1956 Au_FAA505_ppm_A
MG15777 195 196 1 0.13 651 Au_FAA505_ppm_A
MG15778 196 197 1 0.3 1263 Au_FAA505_ppm_A
MG15779 197 198 1 0.25 161 Au_FAA505_ppm_A
MG15780 198 199 1 0.08 742 Au_FAA505_ppm_A
MG15781 199 200 1 0.27 921 Au_FAA505_ppm_A
MG15782 200 201 1 0.5 1767 Au_FAA505_ppm_A
MG15783 201 202 1 7.44 2644 Au_FAA505_ppm_A
MG15784 202 203 1 6.52 2987 Au_calc_BLEG_ppm_A
MG15788 203 204 1 0.19 950 Au_FAA505_ppm_A
MG15789 204 205 1 0.11 1045 Au_FAA505_ppm_A
MG15790 205 206 1 0.18 2070 Au_FAA505_ppm_A
MG15791 206 207 1 22.6 2515 Au_FAA505_ppm_A
MG15793 207 208 1 0.46 1504 Au_calc_BLEG_ppm_A
MG15794 208 209 1 0.31 534 Au_FAA505_ppm_A
MG15795 209 210 1 0.1 535 Au_FAA505_ppm_A
MG15796 210 211 1 0.07 175 Au_FAA505_ppm_A
MG15797 211 212 1 0.59 140 Au_FAA505_ppm_A
MG15798 212 213 1 0.05 35 Au_FAA505_ppm_A
MG15799 213 214 1 0.02 16.3 Au_FAA505_ppm_A
MG15800 214 215 1 0.01 15.7 Au_FAA505_ppm_A
MG15801 215 216 1 -0.01 7.3 Au_FAA505_ppm_A
MG15802 216 217 1 1.01 88 Au_FAA505_ppm_A
MG15803 217 218 1 0.04 227 Au_FAA505_ppm_A
MG15804 218 219 1 0.03 20 Au_FAA505_ppm_A
MG15805 219 220 1 0.06 653 Au_FAA505_ppm_A
MG15806 220 221 1 38.1 1722 Au_FAA505_ppm_A
MG15808 221 222 1 1.06 1395 Au_FAA505_ppm_A
MG15812 222 223 1 0.4 4131 Au_calc_BLEG_ppm_A
MG15813 223 224 1 0.02 21.6 Au_FAA505_ppm_A
MG15814 224 225 1 0.02 125 Au_FAA505_ppm_A
MG15815 225 226 1 0.02 151 Au_FAA505_ppm_A
MG15816 226 227 1 0.06 1285 Au_FAA505_ppm_A
MG15817 227 228 1 0.21 4182 Au_FAA505_ppm_A
MG15818 228 229 1 0.56 3506 Au_calc_BLEG_ppm_A
MG15819 229 230 1 0.05 633 Au_FAA505_ppm_A
MG15820 230 231 1 -0.01 9.6 Au_FAA505_ppm_A
MG15821 231 232 1 -0.01 9.4 Au_FAA505_ppm_A
MG15822 232 233 1 0.02 283 Au_FAA505_ppm_A
MG15823 233 234 1 -0.01 83.3 Au_FAA505_ppm_A
MG15824 234 235 1 0.19 10.9 Au_FAA505_ppm_A
MG15825 235 236 1 0.01 14.2 Au_FAA505_ppm_A
MG15826 236 237 1 0.12 1462 Au_FAA505_ppm_A
MG15827 237 238 1 0.16 1383 Au_FAA505_ppm_A
MG15828 238 239 1 0.03 476 Au_FAA505_ppm_A
MG15829 239 240 1 -0.01 13.4 Au_FAA505_ppm_A
MG15830 240 241 1 0.02 84.2 Au_FAA505_ppm_A
MG15834 241 242 1 0.13 805 Au_FAA505_ppm_A
MG15835 242 243 1 0.04 322 Au_FAA505_ppm_A
MG15836 243 244 1 -0.01 7 Au_FAA505_ppm_A
MG15837 244 245 1 0.02 14.4 Au_FAA505_ppm_A
MG15838 245 246 1 -0.01 7.1 Au_FAA505_ppm_A
MG15839 246 247 1 -0.01 9.8 Au_FAA505_ppm_A
MG15840 247 248 1 -0.01 8.5 Au_FAA505_ppm_A
MG15841 248 249 1 -0.01 8.8 Au_FAA505_ppm_A
MG15842 249 250 1 0.04 23.1 Au_FAA505_ppm_A
MG15843 250 251 1 -0.01 8.8 Au_FAA505_ppm_A
MG15844 251 252 1 -0.01 6.9 Au_FAA505_ppm_A
MG15845 252 253 1 -0.01 8.5 Au_FAA505_ppm_A
MG15846 253 254 1 -0.01 14.5 Au_FAA505_ppm_A
MG15847 254 255 1 -0.01 3.9 Au_FAA505_ppm_A
MG15848 255 256 1 -0.01 25 Au_FAA505_ppm_A
MG15849 256 257 1 -0.01 12.9 Au_FAA505_ppm_A
MG15850 257 258 1 -0.01 92.5 Au_FAA505_ppm_A
MG15851 258 259 1 0.09 22.5 Au_FAA505_ppm_A
MG15852 259 260 1 -0.01 14.5 Au_FAA505_ppm_A
MG15856 260 261 1 0.02 267 Au_FAA505_ppm_A
MG15857 261 262 1 0.17 450 Au_FAA505_ppm_A
MG15858 262 263 1 0.28 17.9 Au_FAA505_ppm_A
MG15859 263 264 1 0.03 51.6 Au_FAA505_ppm_A
MG15860 264 265 1 -0.01 9.6 Au_FAA505_ppm_A
MG15861 265 266 1 0.04 128 Au_FAA505_ppm_A
MG15862 266 267 1 0.01 88.1 Au_FAA505_ppm_A
MG15863 267 268 1 0.14 400 Au_FAA505_ppm_A
MG15864 268 269 1 0.04 173 Au_FAA505_ppm_A
MG15865 269 270 1 -0.01 44.2 Au_FAA505_ppm_A
MG15866 270 271 1 -0.01 12.7 Au_FAA505_ppm_A
MG15868 271 272 1 -0.01 6.4 Au_FAA505_ppm_A
MG15869 272 273 1 -0.01 13.6 Au_FAA505_ppm_A
MG15870 273 274 1 -0.01 19.9 Au_FAA505_ppm_A
MG15871 274 275 1 0.04 74.4 Au_FAA505_ppm_A
MG15872 275 276 1 -0.01 11.1 Au_FAA505_ppm_A
MG15873 276 277 1 0.14 28.3 Au_FAA505_ppm_A
MG15874 277 278 1 0.01 32.6 Au_FAA505_ppm_A
MG15875 278 279 1 0.14 32.7 Au_FAA505_ppm_A
MG15879 279 280 1 -0.01 6.6 Au_FAA505_ppm_A
MG15880 280 281 1 -0.01 194 Au_FAA505_ppm_A
MG15881 281 282 1 -0.01 12.2 Au_FAA505_ppm_A
MG15882 282 283 1 -0.01 11.1 Au_FAA505_ppm_A
MG15883 283 284 1 -0.01 23.8 Au_FAA505_ppm_A
MG15884 284 285 1 0.03 184 Au_FAA505_ppm_A
MG15885 285 286 1 -0.01 4.2 Au_FAA505_ppm_A
MG15886 286 287 1 -0.01 13 Au_FAA505_ppm_A
MG15887 287 288 1 -0.01 21.2 Au_FAA505_ppm_A
MG15888 288 289 1 -0.01 10.6 Au_FAA505_ppm_A
Hole ID
Sample Depth Depth Interval Au As ppm Au
ID From (m) To (m) (m) g/t (pXRF) Method
MDD054 MG15733 162 163 1 -0.01 4.9 Au_FAA505_ppm_A
MG15734 163 164.44 1.44 0.01
Au_FAA505_ppm_A
MG15735 164.44 165.75 1.31 -0.01 19 Au_FAA505_ppm_A
MG15736 165.75 167 1.25 3.96 7250 Au_FAA505_ppm_A
MG15737 167 168 1 7.88 10530 Au_FAA505_ppm_A
MG15738 168 169 1 6.71 6379 Au_calc_BLEG_ppm_A
MG15739 169 170 1 3.17 4726 Au_calc_BLEG_ppm_A
MG15740 170 171 1 3.17 2899 Au_FAA505_ppm_A
MG15742 171 172 1 0.46 2764 Au_FAA505_ppm_A
MG15743 172 173 1 0.62 1286 Au_FAA505_ppm_A
MG15744 173 174 1 0.5 1542 Au_calc_BLEG_ppm_A
MG15745 174 175 1 14.7 911 Au_FAA505_ppm_A
MG15747 175 176 1 0.66 2192 Au_FAA505_ppm_A
MG15748 176 177 1 6.87 1345 Au_FAA505_ppm_A
MG15749 177 178 1 3.43 1715 Au_calc_BLEG_ppm_A
MG15750 178 179 1 14.5 1820 Au_FAA505_ppm_A
MG15751 179 180 1 1400 4104 Au_FAD52V_ppm_A
MG15753 180 181 1 127 2134 Au_FAD505_ppm_A
MG15758 181 182 1 6.07 3450 Au_FAA505_ppm_A
MG15759 182 183 1 65.5 3894 Au_FAA505_ppm_A
MG15761 183 184 1 9.77 1202 Au_FAA505_ppm_A
MG15763 184 185 1 14.8 2778 Au_FAA505_ppm_A
MG15765 185 186 1 11.4 1764 Au_FAA505_ppm_A
MG15766 186 187 1 0.66 259 Au_FAA505_ppm_A
MG15767 187 188 1 1.96 2833 Au_FAA505_ppm_A
MG15768 188 189 1 5.49 2700 Au_calc_BLEG_ppm_A
MG15769 189 190 1 1.69 317 Au_FAA505_ppm_A
MG15771 190 191 1 11.34 1353 Au_calc_BLEG_ppm_A
MG15773 191 192 1 3.81 2111 Au_FAA505_ppm_A
MG15774 192 193 1 0.02 375 Au_FAA505_ppm_A
MG15775 193 194 1 0.11 615 Au_FAA505_ppm_A
27
Hole ID
Sample Depth Depth Interval Au As ppm Au
ID From (m) To (m) (m) g/t (pXRF) Method
MDD054 MG15889 289 290 1 -0.01 6.8 Au_FAA505_ppm_A
MG15890 290 291 1 -0.01 9.9 Au_FAA505_ppm_A
MG15891 291 292 1 -0.01 11.5 Au_FAA505_ppm_A
MG15892 292 293 1 -0.01 22.9 Au_FAA505_ppm_A
MG15893 293 294 1 0.21 1146 Au_FAA505_ppm_A
MG15894 294 295 1 -0.01 13.1 Au_FAA505_ppm_A
MG15895 295 296 1 -0.01 15.7 Au_FAA505_ppm_A
MG15896 296 297 1 -0.01 10.2 Au_FAA505_ppm_A
MG15897 297 298 1 -0.01 8.7 Au_FAA505_ppm_A
MG15901 298 299 1 -0.01 13.1 Au_FAA505_ppm_A
MG15902 299 300 1 -0.01 10.8 Au_FAA505_ppm_A
MG15903 300 301 1 -0.01 12.3 Au_FAA505_ppm_A
MG15904 301 302 1 0.19 931 Au_FAA505_ppm_A
MG15905 302 303 1 0.01 26.8 Au_FAA505_ppm_A
MG15906 303 304 1 -0.01 13.1 Au_FAA505_ppm_A
MG15907 304 305 1 -0.01 8.3 Au_FAA505_ppm_A
MG15908 305 306 1 -0.01 30.7 Au_FAA505_ppm_A
MG15909 306 307 1 -0.01 5.4 Au_FAA505_ppm_A
MG15910 307 308 1 -0.01 7.7 Au_FAA505_ppm_A
MG15911 308 309 1 -0.01 7 Au_FAA505_ppm_A
MG15912 309 310 1 -0.01 7.9 Au_FAA505_ppm_A
MG15913 310 311 1 -0.01 6.6 Au_FAA505_ppm_A
Hole ID
Sample Depth Depth Interval Au As ppm Au
ID From (m) To (m) (m) g/t (pXRF) Method
MDD054 MG15914 311 312 1 -0.01 4.6 Au_FAA505_ppm_A
MG15915 312 313 1 -0.01 7.4 Au_FAA505_ppm_A
MG15916 313 314 1 -0.01 8 Au_FAA505_ppm_A
MG15917 314 315 1 -0.01 8.3 Au_FAA505_ppm_A
MG15918 315 316 1 0.01 25.6 Au_FAA505_ppm_A
MG15919 316 317 1 0.04 249 Au_FAA505_ppm_A
MG15923 317 318 1 0.04 181 Au_FAA505_ppm_A
MG15924 318 319 1 0.01 27.3 Au_FAA505_ppm_A
MG15925 319 320 1 -0.01 11.5 Au_FAA505_ppm_A
MG15926 320 321 1 -0.01 12.1 Au_FAA505_ppm_A
MG15927 321 322 1 -0.01 12.5 Au_FAA505_ppm_A
MG15928 322 323 1 0.07 48.2 Au_FAA505_ppm_A
MG15929 323 324 1 0.07 35.7 Au_FAA505_ppm_A
MG15930 324 325 1 -0.01 10.9 Au_FAA505_ppm_A
MG15931 325 326 1 -0.01 8.9 Au_FAA505_ppm_A
MG15932 326 327 1 -0.01 8.4 Au_FAA505_ppm_A
MG15933 327 328 1 -0.01 11.2 Au_FAA505_ppm_A
MG15934 328 329 1 0.02 8.6 Au_FAA505_ppm_A
MG15935 329 330 1 -0.01 15.9 Au_FAA505_ppm_A
MG15936 330 331 1 -0.01 15.2 Au_FAA505_ppm_A
MG15937 331 332.4 1.4 -0.01 9.1 Au_FAA505_ppm_A
JORC Code, 2012 Edition – Table 1
Section 1 Sampling Techniques and Data
Criteria JORC Code explanation
Commentary
Sampling techniques
Nature and quality of sampling (eg cut channels, random
chips, or specific specialised industry standard measurement
tools appropriate to the minerals under investigation, such as
down hole gamma sondes, or handheld XRF instruments, etc).
These examples should not be taken as limiting the broad
meaning of sampling.
Include reference to measures taken to ensure sample
representivity and the appropriate calibration of any
measurement tools or systems used.
Aspects of the determination of mineralisation that are
Material to the Public Report.
In cases where ‘industry standard’ work has been done this
would be relatively simple (eg ‘reverse circulation drilling was
used to obtain 1 m samples from which 3 kg was pulverised to
produce a 30 g charge for fire assay’). In other cases more
explanation may be required, such as where there is coarse
gold that has inherent sampling problems. Unusual
commodities or mineralisation types (eg submarine nodules)
may warrant disclosure of detailed information.
This Mineral Resource Estimate (MRE) is estimated from drilling samples collected by reverse circulation
and diamond drilling. ‘Blasthole’, surface trench and underground channel samples were used as an aid
for geological interpretation and domaining but not for grade estimation.
Diamond drill (DD) core samples for laboratory assay are typically 1 metre samples of diamond saw cut ½
diameter core. In the rare cases where the core was friable or unconsolidated the sample was collected
from one side of the core using a scoop. Where distinct mineralisation boundaries are logged, sample
lengths are adjusted to the respective geological contact. RC samples were sub-sampled at 1.0 m intervals
using a rotary splitter mounted below the cyclone. The splitter produced 2 x 30% splits and 1 x 40% split.
The two 30% splits were used as primary sample and field duplicate (if submitted) with the 40% split used
for logging and then stored at the MGL core yard.
Samples are crushed at the receiving laboratory to minus 2mm (85% passing) and split using a rotary
splitter to provide 1kg for pulverising in a ring mill to -75um. Pulps are fire assayed (FAA) using a 50g charge
with AAS finish. Prior to 2019 only 200g of the crushed material was pulverised. 877 samples were assayed
this way.
Certified standards, blanks and field replicates are inserted with the original batches at a frequency of ~5%
each for QAQC purposes.
All pulps and crush reject (CREJ) are returned from the laboratory to MGL for storage on site. Of these
returned samples, a further ~5% are re-submitted as QC check samples which involve pulp FAA re-assays
by the original and an umpire laboratory and CREJ re-assayed by 500-gram (+ & -75mu) screen fire assay
(SFA), 1kg BLEG (LeachWELL) and 2*500-gram Photon analysis (PHA) for gold.
Where multiple assays exist for a single sample interval, larger samples are ranked in the database: PHA >
BLEG > SFA > FAA.
All returned pulps are analysed for a suite of 31 elements by portable XRF (pXRF).
The sampling, sub-sampling and assaying methods are appropriate to the geology and mineralization of
the RAS deposit.
28
Criteria JORC Code explanation Commentary
Drilling techniques
Drill type (eg core, reverse circulation, open-hole
hammer, rotary air blast, auger, Bangka, sonic, etc) and
details (eg core diameter, triple or standard tube, depth
of diamond tails, face-sampling bit or other type,
whether core is oriented and if so, by what method,
etc).
Current drilling techniques are diamond coring (DD) PQ3 and HQ3 size triple tube. Where PQ3
core size (83mm diameter) is commenced this is maintained throughout the DD hole until
drilling conditions dictate reduction in size to HQ3 core (61mm diameter). DD pre-collars are
drilled open hole through un-mineralised TZ3 schist to within about 15 m of the mineralisation
hangingwall at which point diamond coring commences.
RC drilling is only carried out where the mineralisation target is less than about 150m downhole
and used a face sample bit with sample collected in a cyclone mounted over a rotary splitter
producing 2 x 30% splits and 1 x 40% split. The two 30% splits were used as primary sample and
field duplicate (if submitted) with the 40% split used for logging and then stored at the MGL
core yard.
Drillholes are oriented to intersect known mineralised features in a nominally perpendicular
orientation as much as is practicable.
All drill core is oriented to assist with interpretation of mineralisation and structure using a Trucore
orientation tool.
Drill sample recovery
Method of recording and assessing core and chip
sample recoveries and results assessed.
Measures taken to maximise sample recovery and
ensure representative nature of the samples.
Whether a relationship exists between sample recovery
and grade and whether sample bias may have occurred
due to preferential loss/gain of fine/coarse material.
DD core sample recoveries are recorded by the drillers at the time of drilling by measuring the
actual distance of the drill run against the actual core recovered. The measurements are
checked by the site geologist.
When poor core recoveries are recorded the site geologist and driller endeavour to immediately
rectify any problems to maintain maximum core recoveries.DD core logging to date indicate
~96% recoveries.
RC sample recovery is measured as sample weight recovered. RC sample moisture for all RC
drilling data was logged as dry (83.7% of RC samples), moist (12.0%) or wet (4.3%). All samples
logged as wet were omitted from use in this MRE.
The drilling contract used states for any given run, a level of recovery is required otherwise
financial penalties are applied to the drill contractor to ensure sample recovery priority along
with production performance.
Sample grades were plotted against drilling recovery by drilling method and no relationship was
established.
Wet RC samples do show higher grades than dry RC samples. This may be due to wet RC samples
coming from higher grade zones or sampling bias due to the loss of fines in wet samples.
Whatever the cause, this bias was the reason that wet RC samples were omitted from use in
29
this MRE.
Criteria JORC Code explanation
Commentary
Logging
Whether core and chip samples have been geologically
and geotechnically logged to a level of detail to support
appropriate Mineral Resource estimation, mining
studies and metallurgical studies.
Whether logging is qualitative or quantitative in
nature. Core (or costean, channel, etc) photography.
The total length and percentage of the relevant
intersections logged.
All DD holes have been logged for their entire sampled length below upper open hole drilling
(nominally 0-450 metres below collar). Data is recorded directly into AcQuire database with
sufficient detail that supports Mineral Resource estimations (MRE).
Logging is mostly qualitative but there are estimations of quartz and sulphide content and
quantitative records of geological / structural unit, oxidation state and water table boundaries.
Oriented DD core allows alpha / beta measurements to determine structural element detail
(dip / dip direction) to supplement routine recording of lithologies / alteration / mineralisation
/ structure / oxidation / colour and other features for MRE reporting, geotechnical and
metallurgical studies.
All RC chips were sieved and logged for lithology, colour, oxidation, weathering, vein
percentage and sulphide minerals.
All core is photographed wet and dry before cutting. Sieved RC chips are also photographed.
100% of all relevant (within the gold grade domains) intersections were logged. The logging is
of sufficient quality and detail for resource estimation.
Sub-sampling techniques
and sample preparation
If core, whether cut or sawn and whether quarter, half or
all core taken.
If non-core, whether riffled, tube sampled, rotary split,
etc and whether sampled wet or dry.
For all sample types, the nature, quality and
appropriateness of the sample preparation technique.
Quality control procedures adopted for all sub-
sampling stages to maximise representivity of samples.
Measures taken to ensure that the sampling is
representative of the in situ material collected,
including for instance results for field duplicate/second-
half sampling.
Whether sample sizes are appropriate to the grain size
Industry standard laboratory sample preparation methods are suitable for the mineralisation
style and involve oven drying, crushing and splitting of samples to 1kg for pulverising to -75um.
Pulps are fire assayed (FAA) using a 50g charge.
50g charge is considered minimum requirement for the coarse nature of the gold. Larger screen
fire assays (SFA), 1kg BLEG (LeachWELL) and 2*500gm Photon Analyses (PHA) are conducted
periodically as a QAQC check.
Field duplicates of RC samples are sub-sampled by a splitter as described above at the time of
sampling.
Large diameter (83mm) PQ3 core was maintained (where conditions allow) for DD holes to
MDD016 and subsequently HQ3 (61mm) for drillholes MDD017 onwards.
DD core drill samples are sawn in ½ along the length of the core on cut lines marked by
geologists’ perpendicular to structure / foliation or to bisect vein mineralisation for
representative samples whilst preserving the orientation line. Intervals required for QAQC
30
Criteria JORC Code explanation
Commentary
of the material being sampled. checks are nominated by geologists and the crushed sample being split by the laboratory with
the two replicated samples then assayed.
QA procedures used to maximise the representivity of sub-samples include the use of a cone
splitter on the RC rig and cutting DD core perpendicular to the regional foliation. QC procedures
to assess the representivity of sub-sampling include field replicates, standards, and blanks at a
frequency of ~5% and also cross-lab assay checks at an umpire laboratory.
The mass proportion of every 10th sample passing 75um is reported by the laboratory and
monitored to ensure sample preparation quality.
Calculations based on Pitard (1993) show that sub-sample masses are appropriate to gold
particle size and grade, if the size and shape of the gold particles are reduced in the ring mill in
a similar way to the gangue particles.
Quality of assay data and
laboratory tests
The nature, quality and appropriateness of the assaying
and laboratory procedures used and whether the
technique is considered partial or total.
For geophysical tools, spectrometers, handheld XRF
instruments, etc, the parameters used in determining
the analysis including instrument make and model,
reading times, calibrations factors applied and their
derivation, etc.
Nature of quality control procedures adopted (eg
standards, blanks, duplicates, external laboratory
checks) and whether acceptable levels of accuracy (ie
lack of bias) and precision have been established.
SFA and PHA are all total gold assays and are appropriate to the RSSZ mineralization. DD core
and RC chip samples for gold assays undergo sample preparation by SGS laboratory Westport
and 50g fire assay with an AAS finish (SGS method FAA505 DDL 0.01ppm Au or FAD505 DDL
1ppm Au & FAD52V DDL 500ppm Au) by SGS laboratory Waihi. Other SGS laboratories at
Macraes and Townsville and the ALS laboratory in Townsville, are used from time to time and
follow the same processes. For laboratory QAQC, samples (3*certified standards, blanks and
field replicates) are inserted into laboratory batches at a frequency of ~5% respectively. A
selection of 5% of retained lab pulps across a range of grades are sent for re-assay and to an
umpire laboratory for cross-lab check assays.
Portable XRF (pXRF) instrumentation is used onsite (Olympus Innov-X Delta Professional Series
model DPO-4000 equipped with a 4 W 40kV X-Ray tube) primarily to identify arsenical samples
(arsenic correlates well with gold grade in these orogenic deposits). The pXRF analyses a 31-
element suite (Ag, As, Bi, Ca, Cd, Cl, Co, Cr, Cu, Fe, Hg, K, Mn, Mo, Nb, Ni, P, Pb, Rb, S, Sb, Se, Sn,
Sr, Th, Ti, V, W, Y, Zn, Zr) utilising 3 beam Soil mode, each beam set for 30 secs (90 secs total).
pXRF QAQC checks involve regular calibration (every 20 samples) and QAQC analyses of SiO2
blank, NIST standards (NIST 2710a & NIST 2711a), & OREAS standards. pXRF QAQC checks
involve regular calibration (every 20 samples) and QAQC analyses of SiO2 blank, NIST standards
(NIST 2710a & NIST 2711a), & OREAS standards.
No geophysical tools have been used in this MRE.
31
Verification of sampling
and assaying
The verification of significant intersections by either
independent or alternative company personnel.
The use of twinned holes.
Documentation of primary data, data entry procedures,
data verification, data storage (physical and electronic)
protocols.
Discuss any adjustment to assay data.
Significant gold assays and pXRF arsenic analyses are checked by alternative senior company
personnel. Original lab assays are initially reported and where replicate assays and other QAQC
work require re-assay or screen fire assays, the larger sample results are adopted. To date
results are accurate and fit well with the mineralisation model.
Twinned data is available where DD core holes have been sited adjacent to previous RC
drillholes and where DD redrills have occurred.
pXRF multi-element analyses are directly downloaded from the pXRF analyser as csv electronic
files. These and laboratory assay csv files are imported into the database, appended and merged
with previous data.
Since October 2022 all logging has been directly entered into the Acquire database using tablets.
All collar surveys, downhole surveys and assay results are provided digitally and directly
imported into the database. On import into the database validation checks are made for:
interval overlaps, gaps, duplicate holes, duplicate samples and out of range values. The AcQuire
database is stored on a cloud server and is regularly backed up, updated and verified by an
independent qualified person.
The only adjustment made to the data on import to the database is to convert below detection
results to negative the detection limit. Samples with multiple Au results are ranked by assay
method (SFA > FA > other) and on export only the highest ranked method is exported. Prior to
import into Minesight software the data is further validated as above plus checks on the highest
and lowest values. Negative below detection results are converted to half the detection limit
on import into Minesight.
Location of data points
Accuracy and quality of surveys used to locate drill
holes (collar and down-hole surveys), trenches, mine
workings and other locations used in
Mineral Resource
estimation.
Specification of the
grid system used.
Quality and adequacy of topographic control.
All drillhole collar locations are accurate (+/- 50mm) xyz coordinates when captured by an
experienced surveyor using RTK-GPS equipment.
All drill holes reference the NZGD2000 NZTM map projection and collar RLs the NZVD2016 vertical
datum.
DD down hole surveys are recorded continuously with a Precision Mining and Drilling “North-
seeking” Gyro downhole survey tool. RC holes are surveyed at 12m intervals using a Reflex
multi-shot camera.
There are very minor historical adits and shafts at RAS. No surveys of these voids exist, although
at least one adit is still accessible. Historical production records total 630.5 tons of ore crushed.
32
Such small volumes are not material to this MRE.
Topographic control is provided by LiDAR topographic surveys in 2018 and 2021 covering the
entire project area. These are very accurate and suitable for resource estimation.
Data spacing and
distribution
Data spacing for reporting of Exploration Results.
Whether the data spacing and distribution is sufficient
to establish the degree of geological and grade
continuity appropriate for the Mineral Resource and
Ore Reserve estimation procedure(s) and classifications
applied.
Whether sample compositing has been applied.
Drill collar site locations in steep terrain are dictated by best access allowed by contour tracks
with gradients to allow safe working access and drill pad excavations. Drillhole designs take into
account this variation to achieve evenly spaced intercepts at the hangingwall of the
mineralisation.
Drillhole intersection spacing on the hangingwall of the mineralisation is typically 30 m (EW) by
30 m (NS) but varies from 20 m (EW) by 20 m (NS) in closely spaced areas to 120 m (EW) by 100
m (NS) in widely spaced (inferred) areas. This spacing is considered appropriate for determination
of geological and grade continuity at the mineral resource categories reported.
Some of the RC drilling was sampled as 4m composites and later re-sampled if the composite
result exceeded a threshold. There are no composited samples within the gold grade estimation
domains and so no composited samples were used in this MRE.
Sampling and assaying are in one metre intervals or truncated to logged features.
Orientation of data in
relation to geological
structure
Whether the orientation of sampling achieves unbiased
sampling of possible structures and the extent to which
this is known, considering the deposit type.
If the relationship between the drilling orientation and
the orientation of key mineralised structures is
considered to have introduced a sampling bias, this
should be assessed and reported if material.
Drillholes are oriented to intersect known mineralised features in a nominally perpendicular
orientation as much as is practicable. True widths are estimated perpendicular to mineralisation
boundaries where these limits are known. As the deposits are tabular and lie at low angles,
there is not anticipated to be any introduced bias for resource estimates.
Sample security
The measures taken to ensure sample security.
Company personnel manage the chain of custody from sampling site to laboratory.
DD drill core samples are transported daily from DD rig by the drilling contractor in numbered
core boxes to the Company secure storage facility for logging and sample preparation. After
core cutting, the core for assay is bagged, securely tied, and weighed before being placed in
polyweave bags which are securely tied. Retained core is stored on racks in secure locked
containers. RC samples are also place in polyweave bags and secured with zip ties.
33
Polyweave bags with the calico bagged samples for assay are placed in plastic cage pallets,
sealed with a wire-tied cover, photographed, and transported to local freight distributer for
delivery to the laboratory. On arrival at the laboratory photographs taken of the consignment
are checked against despatch condition to ensure no tampering has occurred.
Audits or reviews
The results of any audits or reviews of sampling
techniques and data.
An independent Competent Person (CP) conducted a site audit in January 2021 and December
2022 of all sampling techniques and data management. No major issues were identified, and
recommendations have been followed.
In February 2023 Snowdon Optiro completed a desktop review of the assay methods and QC
sample results and in its report concluded that the sampling and assaying methods are in line
with standard industry procedures and that that the assay data in the supplied database is
suitable to be used as the basis for a Mineral Resource.
Section 2 Reporting of Exploration Results
Criteria JORC Code explanation
Commentary
Mineral tenement and
land tenure status
• Type, reference name/number, location and
ownership including agreements or material
issues with third parties such as joint
ventures, partnerships, overriding royalties,
native title interests, historical sites,
wilderness or national park and
environmental settings.
• The security of the tenure held at the time of
reporting along with any known
impediments to obtaining a licence to
operate in the area.
Exploration is being currently conducted within Mineral Exploration Permit (MEP) 60311 (252km²)
registered to Matakanui Gold Ltd (MGL) issued on 13
th
April 2018 for 5 years. In 2023 the term
of this permit was extended for a further 5 years until 12 April 2028.
There are no material issues with third parties.
MGL was granted Minerals Prospecting Permit (MPP) 60882 (40km²) on 30 Nov 2023 for a term
of 2 years.
The tenure of the Permits is secure and there are no known impediments to obtaining a licence
to operate.
As gold is a Crown mineral, a royalty is payable to the Crown as either the higher of an ad
valorem royalty of 2% of the net sales revenue or an accounting profits royalty of 10%.
The Project is subject to a 1.5% Net Smelter Royalty (NSR) on all production from MEP 60311
(and successor permits) payable to an incorporated, private company (Rise and Shine Holdings
Limited) which is owned by the prior shareholders of MGL (NSRW Agreement) before
acquisition of 100% of MGL shares by Santana Minerals Limited.
34
Criteria JORC Code explanation
Commentary
Access arrangements are in place with landowners that provide for current exploration and
other activities, and any future decision to mine. As such, compensation is payable, including
payments of up to $1.5M on a decision to mine, plus total royalties starting at 1% on the net
value of gold produced, increasing to 1.5% and ultimately 2% dependent on location and total
gold produced over the life of the mine. The royalties are also subject to pre-payment of up to
$3M upon commencement of mining operations.
Exploration done by other
parties
• Acknowledgment and appraisal of
exploration by other parties.
Early exploration in the late 1800’s and early 1900’s included small pits,
adits and cross-cuts and alluvial mining.
Exploration has included soil and rock chip sampling by numerous companies since 1983 with
drilling starting in 1986. Exploration in the 1990’s commenced with a search for Macraes style
gold deposits along the RSSZ. Drilling included 13 RC holes by Homestake NZ Exploration Ltd in
1986, 20 RC holes by BHP Gold Mines NZ Ltd in 1988 (10 of these holes were in the Bendigo
Reefs area which is not part of the MRE area), 5 RC holes by Macraes Mining Company Ltd in
1991, 22 shallow (probably blasthole) holes by Aurum Reef Resources (NZ) Ltd in 1996, 30 RC
holes by CanAlaska Ventures Ltd from 2005-2007, 35 RC holes by MGL in 2018 and a further 18
RC holes by MGL in 2019.
Geology
• Deposit type, geological setting and style of
mineralisation.
The RSSZ is a low-angle late-metamorphic shear-zone, presently known to be up to 120m thick.
It is sub-parallel to the metamorphic foliation and dips gently to the north- east. It occurs within
psammitic, pelitic and meta-volcanic rocks.
The hangingwall of the RSSZ is truncated by the post metamorphic and post mineralisation
Thomsons Gorge Fault (TGF). The TGF is a regional low-angle fault that separates upper barren
chlorite (TZ3) schist from underlying mineralised biotite (TZ4) schists.
Gold mineralisation is occurs in the RSSZ as 4 known deposits with Mineral Resource Estimates
(MRE) – Come-in-Time (CIT), Rise and Shine (RAS), Shreks (SHR) and Shreks-East (SRE). The gold
and associated pyrite/arsenopyrite mineralisation at all deposits occur along micro-shears, and
in brecciated / laminar quartz veinlets within the highly- sheared schist. There are several
controls on mineralisation with apparent NNW, N and NNE trending structures all influencing
gold distribution. S h e a r d o m i n a t e d mineralisation within the top 20-40m of the shear zone
immediately below the Thomsons Gorge Fault (TGF). Stacked stockwork vein swarms (SVS)
35
Criteria JORC Code explanation
Commentary
occur deeper in the RSSZ.
Unlike Macraes, the gold mineralisation in the oxide, transition and fresh zones is characterised
by coarse free gold.
Drill hole Information • A summary of all information material to the
understanding of the exploration results
including a tabulation of the following
information for all Material drill holes:
o easting and northing of the drill hole
collar
o elevation or RL (Reduced Level –
elevation above sea level in metres)
of the drill hole collar
o dip and azimuth of the hole
o down hole length and interception
depth
o hole length.
• If the exclusion of this information is justified
on the basis that the information is not
Material and this exclusion does not detract
from the understanding of the report, the
Competent Person should clearly explain why
this is the case.
Refer to the body of text.
No material information has been excluded.
Data aggregation
methods
• In reporting Exploration Results, weighting
averaging techniques, maximum and/or
minimum grade truncations (eg cutting of
high grades) and cut-off grades are usually
Material and should be stated.
• Where aggregate intercepts incorporate
short lengths of high grade results and longer
Significant gold intercepts are reported on a continuous basis using 0.25g/t Au and 0.50g/t Au
lower grade cut-offs with a maximum of 4m of internal dilution included. Broad zonation is:
0.10g/t Au cut-off defines the wider low-grade halo of mineralisation, 0.25g/t Au cut-off
represents possible economic mineralisation, with 0.50g/t Au defining high-grade axes /
envelopes.
1.50g/t Au cut-off is possible economically underground exploitable
Metal unit (MU) distribution, where shown on maps and in tables are calculated from total drill
36
Criteria JORC Code explanation
Commentary
lengths of low grade results, the procedure
used for such aggregation should be stated
and some typical examples of such
aggregations should be shown in detail.
• The assumptions used for any reporting of
metal equivalent values should be clearly
stated.
hole Au * associated drill hole interval metres.
pXRF analytical results reported for laboratory pulp returns are considered accurate for the
suite of elements analysed.
Relationship between
mineralisation widths and
intercept lengths
• These relationships are particularly
important in the reporting of Exploration
Results.
• If the geometry of the mineralisation with
respect to the drill hole angle is known, its
nature should be reported.
• If it is not known and only the down hole
lengths are reported, there should be a clear
statement to this effect (eg ‘down hole
length, true width not known’).
All intercepts quoted are downhole widths. True widths are estimated perpendicular to
mineralisation boundaries where these limits are known.
Intercepts are associated with a major 20-120m thick low-angle mineralised shear that is
largely perpendicular to the drillhole traces.
Aggregate widths of mineralisation reported up until 2
nd
June 2023 are drillhole intervals
>0.50g/t Au occurring in apparent low angle stacked zones. Subsequent reporting is on a
continuous basis.
There are steeply dipping narrow (1-5m) structures deeper in the footwall and the
appropriateness of the current drillhole orientation will become evident and modified as
additional drill results dictate.
Diagrams • Appropriate maps and sections (with scales)
and tabulations of intercepts should be
included for any significant discovery being
reported These should include, but not be
limited to a plan view of drill hole collar
locations and appropriate sectional views.
All significant intercepts have been reported.
Balanced reporting • Where comprehensive reporting of all
Exploration Results is not practicable,
representative reporting of both low and high
grades and/or widths should be practiced to
avoid misleading reporting of Exploration
Results.
All significant intercepts have been reported.
37
Criteria JORC Code explanation
Commentary
Other substantive
exploration data
• Other exploration data, if meaningful and
material, should be reported including (but
not limited to): geological observations;
geophysical survey results; geochemical
survey results; bulk samples – size and
method of treatment; metallurgical test
results; bulk density, groundwater,
geotechnical and rock characteristics;
potential deleterious or contaminating
substances.
Not applicable; meaningful and material results are reported in the body of the text.
Further work • The nature and scale of planned further work
(eg tests for lateral extensions or depth
extensions or large-scale step-out drilling).
• Diagrams clearly highlighting the areas of
possible extensions, including the main
geological interpretations and future drilling
areas, provided this information is not
commercially sensitive.
DD infill drilling of existing inferred resources is continuing at RAS on 30*40m metre spacing
and deeper sub-vertical structures.
A review of field mapping, soil sampling and geophysical surveys is in progress to determine
new targets for drilling in the project area.
Concurrent to the planned drilling outlined above, additional metallurgical test work,
environmental, geotechnical and hydrological investigations are on-going to support the pre-
feasibility studies into a gold mining and processing operation.
38
Data sourced from publicly available filings. Our datasets may not be complete. Automated analysis can produce errors. If you believe any data on this page is incorrect, please contact us at hello@nzxplorer.co.nz. For informational purposes only. Not investment advice.