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METALS AUSTRALIA LTD Capital/Financing Update 2015

Mar 23, 2015

65344_rns_2015-03-23_38092a0b-c3ab-4c8f-9a43-0e68ae08178a.pdf

Capital/Financing Update

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A S X A N N O U N C E M E N T 2 4 M a r c h 2 0 1 5 MANI N DI M INE R AL R E SOURCE U PG R ADE

HI G HLIGH T S

  • Updated JORC 2012 mineral resource estimate 1.08Mt at 6.52% Zn, 0.26% Cu and 3.19g/t Ag reported at a 2% Zn cut-off.

  • Geological database brought up to JORC 2012 standard.

  • Mining lease M57/240 at Manindi was successfully renewed until 2035.

  • A new scoping study is to be completed in light of a predicted strengthening in the zinc market and the improved resource model.

  • New high priority targets identified, which provide the potential to significantly increase the mineral resource and improve project economics at Manindi.

JORC 2012 MINERAL RESOURCE ESTIMATE

Up d ates to and interrogatio n of the geological data b ase, reinte r pretation of 3D geologi c al models, and a review o f the depo s it geostatis t ics have allowed the u pgrading o f the miner a l resource esti m ate for Manindi to JORC 2012 standard. The new resource m odel is a significant imp r ovement on the JORC 2 004 resour c e model an d will form th e basis of a n ew scopin g study.

There were sli g ht reductio n s in tonna g es and gr a des from the JORC 2 004 miner a l resource esti m ate and d owngrading of the res o urce cate g ories, but t hese are f a r outweighed by the sig n ificant impr o vement in the unders t anding of m etal distrib u tions withi n the deposit. Future eco n omic evalu a tions will b e far more reliable as a r e sult.

Table
Ca
Mea
Ind
Inf
T
Mea
Ind
Inf
T
1 – Manindi J
Reso
tegory
C
(Z
sured
0
icated
0
erred
0
otal
0
sured
2
icated
2
erred
2
otal
2
ORC 2012 Min
urces
ut off
Ton
n%)
(
.5
48
.5
172
.5
1,447
.5
1,668
.0
37
.0
13
.0
906
.0
1,075
eral Resource
nage
Z
t)
(
,785
8
,347
6
,039
4
,172
4
,697
10
1,472
7
,690
6
,859
6
Estimate. No
Metal G
inc
Coppe
%)
(%)
.20
0.34
.26
0.28
.27
0.22
.59
0.23
.22
0.39
.84
0.32
.17
0.25
.52
0.26
te figures may
rade
r
Silver
(g/t)
7.22
4.30
2.77
3.06
6.24
4.60
2.86
3.19
not add up pr
Co
Zinc
(t)
3,999
10,781
61,774
76,553
3,855
10,309
55,939
70,102
ecisely due to
ntained Meta
Copper
(t)
166
483
3126
1
3775
1
149
421
2267
2837
1
rounding.
l
Silver
(oz)
11,320
23,805
28,795
63,920
7,565
19,439
83,316
10,321
Table
Ca
Mea
Ind
Inf
T
Mea
Ind
Inf
T
1 – Manindi J
Reso
tegory
C
(Z
sured
0
icated
0
erred
0
otal
0
sured
2
icated
2
erred
2
otal
2
ORC 2012 Min
urces
ut off
Ton
n%)
(
.5
48
.5
172
.5
1,447
.5
1,668
.0
37
.0
13
.0
906
.0
1,075
eral Resource
nage
Z
t)
(
,785
8
,347
6
,039
4
,172
4
,697
10
1,472
7
,690
6
,859
6
Estimate. No
Metal G
inc
Coppe
%)
(%)
.20
0.34
.26
0.28
.27
0.22
.59
0.23
.22
0.39
.84
0.32
.17
0.25
.52
0.26
te figures may
rade
r
Silver
(g/t)
7.22
4.30
2.77
3.06
6.24
4.60
2.86
3.19
not add up pr
Co
Zinc
(t)
3,999
10,781
61,774
76,553
3,855
10,309
55,939
70,102
ecisely due to
ntained Meta
Copper
(t)
166
483
3126
1
3775
1
149
421
2267
2837
1
rounding.
l
Silver
(oz)
11,320
23,805
28,795
63,920
7,565
19,439
83,316
10,321
Ca
Mea
Ind
Inf
T
Mea
Ind
Inf
T
Reso
tegory
C
(Z
sured
0
icated
0
erred
0
otal
0
sured
2
icated
2
erred
2
otal
2
urces
ut off
Ton
n%)
(
.5
48
.5
172
.5
1,447
.5
1,668
.0
37
.0
13
.0
906
.0
1,075
nage
t)
,785
,347
,039
,172
,697
1,472
,690
,859
Z
(
8
6
4
4
10
7
6
6
Metal G
inc
Coppe
%)
(%)
.20
0.34
.26
0.28
.27
0.22
.59
0.23
.22
0.39
.84
0.32
.17
0.25
.52
0.26
rade
r
Silver
(g/t)
7.22
4.30
2.77
3.06
6.24
4.60
2.86
3.19

Metals A ustralia Ltd (ABN 38 008 9 8 2 474) www.metals a ustralia.com. a 1[st] Flo o r, 8 Parliament P lace, West Perth, WA 6005 ▪ PO B ox 1618, West Perth, WA 6872 ▪ t : +61 8 9481 78 3 3 ▪ f: +61 9481 7 8 35 ▪ e: mls@me t alsaustralia.com. a

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Figure 1 – Long se c tion view of th e Warabi (left) a n d Mulgara (right) mineral res o urce block mo d els looking so u th west

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Figure 2 – Long se c tion view of th e Kowari (left) a n d Kultarr (right) mineral resource block models looking sout h west

DATABASE UPGRADES

The following u p grades we r e complete d on the M a nindi data in preparati o n for the n e w mineral res o urce estima t e:

  • Validati o n of all of t h e drilling c o mpleted an d available for inclusion in the data b ase, being 104 dia m ond drillho l es, 105 RC drillholes, 1 6 9 RAB drill h oles and 8 percussion h oles. This include d 17 RC hol e s and 52 di a mond hole s completed by Metals A u stralia in 2 0 06 (Figure 2).

  • Additio n of 21 historical geologi c al logs.

  • Additio n of important geotechnical and core r ecovery inf o rmation for 2 4 holes.

2

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  • Validati o n and addit i on of 408 S p ecific Gravi t y (SG) measurements.

  • The ra w assay dat a for all drilling was re - loaded into the Comp a ny’s industr y standard Databa s e Manage m ent Softw a re (Datas h ed) to mi n imise unm e rged assa y s and to accurat e ly load mis s ing QAQC ( Q uality Ass u rance, Quality Control) s amples.

 A detail e d QAQC re p ort was ru n on the database Thi s ensured t h at the data s ets were u p to a suit a ble standard to be us e d for the J O RC 2012 min e ral resourc e estimate.

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Figure 3 - Drillholes by ty p e over mappe d geology and s tructure at Ma n indi

SIGNIFICANT HISTORIC DRILLING INTERSECTIONS

Drilling at Mani n di to date h a s identified four zones o f high grad e zinc miner a lisation. Th e four main zon e s from nort h to south are Kultarr, K o wari, Mulgara and Warabi.

A n u mber of fac t ors are beli e ved to cont r ol the mine r alisation at M anindi:

  • The miner a lisation occ u rs within m u ltiple strati g raphic hori z ons, which e xtend disc o ntinuously over a strik e length of 4 km (See Fi g ure 4).

  • The gabbr o footwall do e s not appe a r to intrude a nd remove the minerali s ation, but r a ther forms a ‘marker’ u nit within th e stratigraphy above whi c h is potenti a lly prospec t ive for mineralisation.

Table 1 shows s ignificant d r ill results fr o m the four mineralised zones at M a nindi. The high tenor and significant t h ickness of t he zinc min e ralisation a r e important positive attr i butes of M a nindi. The pre s ence of int e rsections s u ch as 52m* at 5.96% Zn and 0.25% Cu in FWD0053 from 137.60m

3

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and 10m* at 12.61% Zn and 0.42%Cu from 172.36m in MND005 in the no r thern Kulta r r zone can be c ompared to intersection s in the sou t hern Warabi zone of 24m at 11.41% and 0.33% Cu from 43m in MNRC014 and 13.97m* at 11.61% Zn and 0.39% Cu from 38.70m in MND007. These min e ralised are a s are separ a ted by 1.7km of strike w hich is poorly tested by d rilling.

Appendix 1 con t ains detaile d list of all i n tersections a bove 0.5% Zn used in t he interpret a tion of the curr e nt minerali s ed wirefra m es.

Table 2 – Significant drill I n tersections in m ineralised wir e frames at Manindi using a 0. 5 % Zn cut-off. Internal intersec t ions over 5% a re shown withi n each hole. A full listing of all intersections u s ed for the cre a tion of the curr e nt wireframe i n terpretation is show in Appendix A. Intersections in Table 1 do not repres e nt true widths o f the mineralis a tion.

Prospe
ct
Hole
No.
From
(m)
To
(m)
Length
(m)
Zn % Ag g
g/t
Cu %
Warab
Mulgar
Mulgar
Kultarr
Kowar
i
a North
a
i
MN
MN
MN
MN
MN
MN
MN
MN
MN
MN
MN
FW
FW
FW
FR
FR
MN
MN
MN
MN
MN
MN
MN
MN
MN
MN
MN
MN
FR
FR
FR
FR
MN
MN
MN
FR
MN
FW
FW
MN
MN
MN
MN
MN
MN
MN
MN
FW
FW
FW
FW
FW
FW
FR
RC014
RC008
D049
D048
D048
D047
D013
D011
D009
D008
D007
D0005
D0002
D0001
C0007
C0011
D052
D021
D020
D015
D023
RC013
RC012
D023
D020
D019
D017
D016
C0044
C0034
C0033
C0012
RC013
D017
D016
C0013
D043
D0050
D0023
D042
D041
D038
D037
D036
D033
D032
D005
D0053
D0022
D0020
D0019
D0017
D0015
C0004
43.00
44.00
24.00
20.50
48.65
48.00
42.00
56.00
30.50
19.33
38.70
44.29
40.80
42.37
1.00
1.00
24.18
38.50
14.25
59.00
38.70
89.00
22.00
21.00
38.60
82.20
68.90
48.00
20.00
28.00
71.00
77.00
32.00
24.00
19.00
21.00
55.73
129.0
47.70
180.5
69.65
155.0
128.7
64.00
198.0
122.0
162.72
137.6
118.9
149.8
157.0
92.90
103.3
44.00
0
0
0
0
0
0
0
6
7
3
6
67.00
54.00
40.90
29.80
55.00
52.78
44.63
63.50
35.00
28.00
52.67
63.61
44.65
48.07
28.00
20.00
28.30
39.88
20.17
65.00
40.50
92.00
39.00
28.00
44.80
91.60
70.50
53.50
36.00
39.00
92.00
101.00
39.00
25.90
23.00
32.00
72.00
141.70
62.09
184.80
83.00
168.40
149.00
164.40
207.00
181.70
186.00
190.40
135.64
183.46
193.39
106.65
138.17
54.00
24.00
10.00
16.90
9.30
6.35
4.78
2.63
7.50
4.50
8.67
13.97
19.32
3.85
5.70
27.00
19.00
4.12
1.38
5.92
6.00
1.80
3.00
17.00
7.00
6.20
9.40
1.60
5.50
16.00
11.00
21.00
24.00
7.00
1.90
4.00
11.00
16.27
12.70
14.39
4.30
13.35
13.40
20.30
100.40
9.00
59.70
23.28
49.02
16.68
33.59
36.36
13.75
34.81
10.00
11.41
6.80
12.00
4.70
4.95
5.66
7.84
11.13
5.42
3.75
11.56
12.01
17.70
12.11
4.20
5.00
8.06
7.83
17.67
3.99
14.36
16.87
7.04
10.75
3.94
7.79
4.24
3.03
6.05
8.29
8.64
7.53
5.09
3.12
19.76
5.99
4.45
5.98
4.63
7.54
5.89
13.04
2.82
2.15
11.79
3.54
7.15
5.96
8.69
6.95
6.95
5.79
4.19
7.81
7.02
6.00
10.44
6.90
5.97
1.17
10.56
2.73
6.11
1.40
8.30
4.29
0.25
11.60
7.31
2.66
2.18
6.51
10.56
4.50
8.61
10.67
6.53
2.83
3.03
13.72
3.16
10.18
2.53
6.37
11.50
7.06
1.36
6.07
6.38
3.77
4.80
4.11
0.25
1.00
2.49
2.13
2.35
2.93
1.00
1.15
4.54
2.59
0.25
0.25
0.25
0.25
0.25
2.50
2
0
4
0
7
7
6
3
1
0
0
9
5
0
1
6
8
1
6
0
1
7
3
3
3
2
6
8
3
7
0
6
6
7
8
7
0
1
5
0
9
3
5
3
0
5
4
9
5
5
5
5
5
0
0.33
0.40
0.55
0.29
0.49
0.08
0.58
0.15
0.30
0.15
0.48
0.54
0.56
0.61
0.81
0.14
0.05
0.55
0.73
0.30
0.54
0.74
0.33
0.22
0.21
0.51
0.08
0.90
0.17
0.65
0.76
0.47
0.07
0.29
0.24
0.25
0.34
0.20
0.18
0.07
0.12
0.24
0.38
0.17
0.04
0.15
0.23
0.25
0.18
0.24
0.26
0.06
0.24
0.16

No t indicative o f true width d ue to holes being drille d at a low angle to the m i neralised st r* ucture

4

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SCOPING STUDY

The Company is conductin g a strategi c review of Manindi in the light of improving s upply and de m and funda m entals for z inc, and p o tentially im p roved economics for t h e project. T he rapidly dec l ining London Metal Exchange (LM E ) stockpile w as 527,325t at 19 Mar c h 2015, fro m a high of ove r 1.2Mt in J a nuary 2013 (source: lm e .co.uk). T h e LME zinc stockpile h a s dropped b y 163,500t (23.66%) since J anuary 1 2 0 15. In addit i on several o f the world’ s major zinc producing m ines are in the process of c losing, whi c h will put m ore pressur e on zinc s u pply. This i s expected to translate into an increase in the zinc p rice in the m edium term .

A f e asibility stu d y was previously comp l eted at Ma n indi in 2009. A number of the para m eters and ass u mptions of the study a r e still valid, but others require upd a ting. A ne w scoping st u dy will be initi a ted using the new J O RC 2012 mineral resource bloc k model as the input f or Whittle opti m isations. N ew price f o recasts for t he metals i n the miner a l resource w ill be used as well as upd a tes to capi t al, consum a ble, and la b our costs. The results of the det a iled metallu r gical work carried out in 2009 remain v a lid and will b e used in t h e new scoping study.

The developme n t studies completed in 2 009 include d :

  • Metallu r gical test w o rk

  • Plant d e sign and co s tings

  • Mining s tudy

Each of these s t udies are s u mmarised b e low.

Metallurgical Test Work

Met a llurgical te s ting of the M anindi ore s indicated that both co n ventional fl o tation and s pecialised bac t erial leachi n g could b e effective e xtractive m etallurgical processes. Preliminary test work sho w ed good r e coveries fr o m both pr o cesses. Th e company preferred t h e use of c o nventional flot a tion. Theref o re all subs e quent test w ork focused on optimisi n g this proce s sing route.

Qu a ntities of high-grade a n d theoretic a l ‘run of mine’ grade (ROM) mat e rial were tested using con v entional flotation. Both low grade a nd high grade mineralisation resp o nded well to the test wor k . More wo r k is recommended to op t imise the e x traction and achieved c o ncentrate grades from the ROM grade mineralisat i on. The k e y findings o f the vario u s phases o f detailed metallurgical wor k undertake n by the Co m pany are s u mmarised i n Table 2 below.

Table 3 – Summary of Metallurgical t e st work and re s ults conducted between 2007 and 2009 on sa m ples of Manindi zinc mineralis a tion

Flota
Pha
tion
se
Ke
y Observations
Flota
Pha
tion
se
Ke
y Observations
Con
centrate grade
achieved
Concent
achi
rate yield
eved
1 ZoneD
At 80%
liberati
Gangu
liberati
Flotatio
charac
High d
to sele
Sphale
depres
sample used
passing 75 mi
on, excellent lib
e minerals pyrit
on.
n results confir
teristics.
osage of coppe
ctively float sph
rite flotation is
sant than gang
(Kultarr), 14.5%
crons, sphalerit
eration overall.
e and pyrrhotite
m QEMSCANl
r sulphate activ
alerite from oth
more sensitivet
ue sulphides
Zn, 0.28% Cu
e grains show8
exhibit excelle
iberation
ator (1kg/t), req
er sulphides.
o sodium cyan
.
0%
nt
uired
ide
Ro
co
30
Pr
cle
pro
co
ugher
ncentrate of
.9% Zn.
eliminary
aning test
duced 50.1%Z
ncentrate.
n

Rougher
of 94.3%
mins flot
Prelimina
cleaning
recovery
recovery
after 3
ation time.
ry
test stage
of 85%.
2 ZoneD
Furthe
sample used
r cleaning tests
(Kultarr), 14.5%
and a cycle tes
Zn, 0.28% Cu
t undertaken.
.
Ba
tes
tch cleaning
ts achieved a
Batch cle
achieved
aning tests
a

5

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A com
S7261
employ
results
Using
an acc
needs
bination of copp
A depression o
ed. None of the
.
the Zone D sam
eptable gradec
to be further re
er sulphate act
f gangue sulphi
se alone could
ple, the batcha
an be achieved
fined to confirm
ivation of sphal
des and high p
achieve satisfa
nd cycle tests
, but the flows
.
erite,
H
ctory
how
heet
co
of
Sin
(un
tes
co
48
ncentrate grade
50.5% Zn.
gle
optimised) cyc
t produced a
ncentrate of
.3% Zn.
le

concentr
recovery
Single
(unoptim
test prod
concentr
recovery
ate
of 90.3%.
ised) cycle
uced a
ate
of 89.3%.
3 ZoneD
Testing
assess
Site wa
margin
negativ
The re
testsp
grade.
The fa
establi
sample used
focused on re
ing site water (
ter had no effe
al effect on the
e effect on the
duction of A510
roduced a step
ct the processm
shed.
(Kultarr), 14.5%
fining rougherc
for potential pro
ct on the rough
first cleaningp
second cleanin
0 collector to2
change improv
ust run at pH1
Zn, 0.28% Cu
onditions and
cessing use).
er phase, hada
hase and signif
g phase.
5g/t from previo
ement in rough
1 or higher was
.
icant
us
er
firmly
Ro
co
25
co
pre
yie
Pe
29
wa
ugher
ncentrate using
% of collector
mpared to
vious tests
lded 31.7% Zn
rth tap water an
.6% Zn in site
ter
in
d

Rougher
concentr
25% ofc
compare
previous
yielded9
recovery
tap wate
97.3% Z
in site wa
ate using
ollector
d to
tests
8.1% Zn
in Perth
r and
n recovery
ter
4 New,m
usingp
Sampl
ZoneB
(Kultar
For Zo
achiev
collect
For Zo
needed
Test re
encour
Testss
ZoneD
ore representa
arameters esta
es from ZoneA
(Mulgara, 7.29
r, 7.06% Zn, 0.2
ne A, acceptab
ed by control of
or.
ne D, a significa
to produce as
peatability was
aging for condi
uspended prio
.
tive samples u
blished in earli
(Warabi, 8.68%
% Zn, 0.42%C
4% Cu) select
le rougher con
pH, copper sul
nt increase in
uitable roughe
difficult to achi
tions to be optim
r to completion
sed for test wor
er tests.
Zn, 0.39% Cu
u) and ZoneD
ed from drillhole
ditions could be
phate and A51
copper sulphate
r concentrate.
eve but results
ised.
of cleaner tests
k
),
s.
00
was
are
for
Zo
res
27
co
Zo
cle
40
co
Zo
res
23
co
ne A rougher
ults yielded 24
% Zinc
ncentrates.
ne A first stage
aner yielded
.3-43.5% Zn
ncentrates.
ne D rougher
ults yielded
.3-24.9% Zn
ncentrates.
-
Zone Ar
recovery
99% was
Zone A f
cleanerr
81.4-87.5
achieved
Zone Dr
recovery
97.4 %w
achieved
ougher
of 93.3-
achieved.
irst stage
ecovery of
% was
.
ougher
of 95.7-
as
.

Plant Design & Costings

A significant time has pass e d since pla n t design and costings w ere compl et ed in 2009. Additional met a llurgical sa m pling is re q uired from t h e variety of mineralisati o n types, as well as the completion of optimisation t esting before detailed processing circuits, plant requiremen t s and costi n gs can be fina l ised. The c o mpany int e nds to con d uct some m ore detailed work in t h is area in the coming mo n ths.

Mining Study

In 2009, mining studies indi c ated that Z o nes A & B (Mulgara a n d Warabi) w ere amena b le to open pit m ining operations, whil e Zone D ( K ultarr and Kowari) were more lik e ly to be m ined by a co m bination of open pit and undergro u nd method s . The Co m pany inten d s to compl e te Whittle opti m isations u s ing the JO R C 2012 m i neral resource model, 2009 metallurgical test work, with upd a ted cost a n d revenue i n puts. A c o nceptual underground m ining study may follow the Whittle ope n pit optimis a tion work.

NEW EXPLORATION TARGETS INDENTIFIED

Ne w 3D geological interpret a tion and d e tailed explo r ation targeting carried o ut over the p ast twelve mo n ths has identified a number of new very high priority exploration targets. The discovery of mineralisation at these new targets would significantly increase the mineral resource at

6

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Manindi and could substantially improve project economics . The expl o ration targ e ts and the Ma n indi explora t ion potential will be the s ubject of a s eparate an n ouncement to be released shortly.

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ABOUT M A NINDI Z INC-CO PPER PR O JECT, W ESTER N AUSTR A LIA

Met a ls Australia holds an in t erest in two base metal s projects in W estern Aust r alia (Figure 1).

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The Manindi zi n c-copper project is located aroun d 500 km northeast of Perth, and is b eing explo r ed by Metals with a vie w to ultimately developin g a zinc min e

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The Manindi P r oject is loc a ted in the M urchison D istrict of We s tern Austra l ia, 20 km s o uthwest of t he defunct Youanmi gol d mine. The project is located on three granted mining lice n ces and co n tains a high grade zinc d eposit.

.

Ma n indi is considered to be a volcanog e nic massive sulphide (V M S) deposit, comprisin g a series of lenses of zinc- Figure 4 – L o cation of the Western Australian do m inated min e ralisation t h at have b e en folded, sheared, base metals pr o jects. faul t ed, and po s sibly intrud e d by later dolerite an d gabbro. The style of mi n eralisation i s similar to other base metal sulph i de deposits in the Yilg a rn Craton, particularly Gol d en Grove n ear Yalgoo to the wes t of Manindi , and Teuto n ic Bore-Ja g uar in the Eas t ern Goldfields.

Figure 4 – L o cation of the Western Australian base metals pr o jects.

Sin c e the depo s its were discovered, a c omprehensive body of w ork has be e n generate d , including geo c hemistry, g eophysics, detailed ge o logical ma p ping, extensive drilling , wireframe modelling, res o urce modelling and met a llurgical test work.

For further information please contact:

Lu k e Marshall +61 8 9 481 7833 Or consult our website: w w w.metalsa u stralia.com. a u

Competent Person Declaration

The i n formation in this release relating t o geology, explor a tion results and the mineral reso u rce estimate is baased on information compiled by Luke Marshall, who is a consultant to M etals Australia. M r Marshall is a m ember of The A ustralian Institute e of Geoscientists, a Recognised Profe s sional Organisa t ion by the Aus t ralasian Joint O re Reserves Committee, and has sufficient expeerience relevant to the style of mineralisation and typ e s of deposits un d er consideration and to the activi t y which is being undertaken to quualify as a Comp e tent Person as defin e d in the 2012 edition of the Joint O re Reserves Co m mittee (JORC) A ustralasian Cod e for Reporting of Exploration Results. Mr Marshall cons e nts to the inclusi o n in this report of the matters bas e d on his information in the form an d context in which h it appears. Forward-Looking Statements

This d ocument may include forward-lo o king statements. Forward-looking statements inclu d e, but are not limmited to, statem e nts concerning Metal s Australia Ltd’s planned exploration programme a n d other statem e nts that are not h istorical facts. WWhen used in this document, the word s such as "coul d ," "plan," "estim a te," "expect," "i n tend," "may”, " p otential," "shoul d ," and similar eexpressions are forward-looking state m ents. Although M etals Australia L td believes that i ts expectations r e flected in these forward-looking sstatements are reasonable, such state m ents involve ris k s and uncertaint i es and no assur a nce can be giv e n that actual results will be consiistent with these forward-looking state m ents.

7

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JO R C TABLE 1 Section 1 – Sa m ple Techniques and Da t a

Crit
eria
Explana
tion
Samp
techn
ling
iques
Sampling
drilling pro
years.
Much of th
from open
Exploratio
appropriat
out by Met
2006
RC sampl
sample wh
nominal 1m
The assay
Malaga. S
in the sam
2007
Drilling pro
supplied d
Diamondc
The assay
Duplicates
includes core,R
grams carried
e sampling an
file reporting an
n results are ba
e quality assur
als in 2006 and
ing method was
ich was collect
intervals, with
method wasO
tandards withz
ple stream alon
gram conducte
oes not contain
ore samplingw
method was
or blanks were
C, RAB andp
out by multiple
d assay inform
d is incomplete
sed on industr
ance quality co
2007.
by trowel ors
ed in plastic PV
sampling brea
G-62, a 4 aci
inc and copper
g with a duplica
d by Terrasear
date sampled,
as cut to ¼ cor
4 acid digest
recorded.
ercussion chip
exploration a
ation for the ho
.
y best practice
ntrol (QAQC)m
pear taking a
C bags. Diamo
ks adjusted tog
d digest with IC
values consist
te every 30ths
ch. Original sa
names of samp
e with sampling
with ICPES.4
s, which haveb
nd drilling com
les drilled betw
s, including sam
easures for tw
representatives
nd core was cu
eological boun
PES as carrie
ent with the ex
ample.
mple sheets ha
lers or sample
breaks adjuste
4 standardsw
een collected
panies over a
een 1971 and
pling, assaym
o drilling prog
ample from th
t to ¼ core and
daries where a
d out by ALS
pected levelsw
ve not been se
methods.
d to geologica
ere recorded
over multiple
period of 40
2003 comes
ethods, and
rams carried
e entire bulk
sampled on
ppropriate.
Laboratories,
ere also run
en and data
l boundaries.
in total. No
Drilli
ng techniques
Pre-2006
Drilling de
records an
2006
RC drilling
Diamondh
2007
Diamondc
zone. Allc
tails are incomp
d company rep
details incomp
oles have RCp
ore size is HQ
oordinates are
lete but where
orts.
lete. All coordin
recollars ands
at the start of
quoted in GDA9
possible this in
ates are quoted
witch to NQ2 b
the holes and
4 datum unles
formation has
in GDA94 datu
efore the miner
changed to N
s otherwise stat
been derived fr
m unless othe
alised zones.
Q2 through the
ed.
om open file
rwise stated.
mineralised
Drill
reco
sample
very
Pre-2006
Sample re
open file re
2006
Sample re
The quality
parameter
The qualit
togetherw
representa
2007
The quality
parameter
covery detailsa
cords and com
covery detailsa
of diamond co
s, and loggingo
y of analytical
ith the use of
tive and within
of diamond co
s, andlogging o
re incomplete
pany reports.
re not recorded
re samples wa
f core recovery
results wasm
certified stand
acceptable ran
re samples ism
fcorerecovery
but where poss
however field
s monitored by
and competen
onitored by t
ards, duplicate
ges of accuracy
onitored by the
and competen
ible this informa
duplicates were
the logging ofv
cy.
he use of inte
s and blankst
and precision.
logging of vari
cy.
tion has been
used in the RC
arious geotech
rnal laboratory
o ensure that
ous geotechnic
derived from
sampling.
nical
procedures
results were
al

8

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The quali t y of analytica l results was m onitored by the use of int e rnal laborator y procedures together w ith the use of certified stan d ards, duplicat e s and blanks t o ensure that results were represent a tive and within acceptable ranges of accurac y and precision . Logging Pre 2006 – All available logs have bee n converted for m digital and/o r hardcopy into the standard Metals/Datashed logging template. The resulting data w as uploaded t o a Datashed d atabase and validated. Once validat e d, the data is exported to modelling softw a re for visual v a lidation and interpretation. 2006/200 7 All loggin g was complet e d according to industry stand a rd practice. L o gging was co m pleted using standard logging templa t es. The data h as been conv e rted form digi t al and/or hard c opy into the standard M etals/Datash e d format. The resulting data is uploaded to a Datashed d atabase and validated. Once validat e d, the data is exported to modelling softw a re for visual v a lidation and interpretation. Sub- sampling Pre-2006 techniques and Details of s ub-sampling a nd preparation are incomplete . sample preparation 2006/200 7 For all sa m ple types, the nature, quality and appropriateness of the s a mple preparation technique is considered suitable as per industry be s t practice. Field duplicates were tak e n within the R C sample runs t o ensure the s a mples were representative. A full quality control rep o rt was underta k en recently to assess the pe r formance of fi e ld standards and dupli c ates. The min e ral resource cl a ssification was adjusted acco r dingly. Quality of assay Pre-2006 data and laboratory Details of assay quality a re incomplete b ut where possible this inform a tion has been derived from tests open file r e cords and co m pany reports. 2006/200 7 The samples have been sorted, dried, c rushed and p u lverised. Prim a ry preparation has been by crushing t h e whole samp l e. Field sta n dards, duplic a tes and bla n ks were inserted as per i n dustry stand a rd practice. Laboratories also inserte d their own sta n dards and bla n ks at random intervals and to confirm high grade res u lts.

9

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Verif
samp
assa
ication of
ling and
ying
All signific
release to
All data is
then carrie
ant intercepts
the market.
validated using
d out by senior
are revieweda
the QAQCr rep
staff members
nd confirmed
orter validation
.
by at least thre
tool with Datas
e senior pers
hed. Visual va
onnel before
lidations are
Loca
point
tion of data
s
Pre-2006
Accuracyo
Differentia
to GD94M
2006/2007
Collars we
Down hole
The topog
f hole locations
l GPS. Most ha
GA coordinate
re located using
surveys wered
raphic surfacew
has not been
ve then beenc
s.
a Differential
one for all hole
as generated
verified for allc
onverted form l
GPS.
s with SingleS
from the differe
ollars. Some ho
ocal grid coord
hot Eastman
ntial collar pick-
les were locate
inates or AMG8
ups.
d and with a
4 or AMG66
Data
distr
spacing and
ibution
Pre-2006
The drilld
sufficiently
Diamondd
modelling.
RC holesw
2006/2007
The drilld
sufficiently
Diamondd
modelling.
RC holesw
sampledb
ata spacinga
for the current
rill hole sample
ere sampledb
ata spacinga
for the current
rill hole sample
ere sampledb
y 1m composite
nd sampling i
Mineral Resou
s were compo
y a combinatio
nd sampling i
Mineral Resou
s were compo
y 4m composit
s.
s able to esta
rce Estimates.
sited to a nom
n of 2m and 4m
s able to esta
rce Estimates.
sited to a nom
es for the entir
blish the geolo
inal 1.0 m down
composites
blish the geolo
inal 1.0 m down
e length of the
gical and grad
-hole intervals
gical and grad
-hole intervals
hole with miner
e continuity
for resource
e continuity
for resource
alised zones
Orien
in rel
geolo
tation of data
ation to
gical structur
e
Orientation
and interp
If structure
general str
If the relat
is conside
considered
Drilling is
known inte
of sampling is
retation of thed
and geometry
ike of stratigrap
ionship betwee
red to havei
material.
at an angle to
rpretation of th
as unbiased a
eposit geometr
is not well und
hy and/or regio
n the drilling or
ntroduced as
surface and i
e strike of previ
s possible base
y.
erstood, sampl
nal structure.
ientation and th
ampling bias,
s drilled to ma
ously intersecte
d on the domin
ing is orientated
e orientationo
this would be
ximise perpend
d mineralisatio
ating mineralis
to be perpend
f key mineralise
assessed and
icular intersec
n.
ed structures
icular to the
d structures
reported if
tion with the
Samp
le security
All sample
field collec
s remain in the
tion to laborato
custody of co
ry drop-off.
mpany geologi
sts, and are fu
lly supervised
from point of
Audi
ts and reviews
None yetu
ndertaken fort
his dataset.

Section 2 – Reporting of Ex p loration Re s ults

Criteria Explanation

Mineral, tenement The Com p any controls a n 80% Intere s t in three gra n ted Mining Li c ences in Wes t ern Australia and land tenure covering the known min e ralisation and s urrounding area. The licence s are M57/227, M57/240 and status M57/533. The licence r e ports and exp e nditure are all in good standing at the tim e of reporting. There are no known imp e diments with r e spect to opera t e in the area.

10

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Explo
other
ration done b
parties
y
The depos
surface a
airborne a
The projec
completed
percussion
its were identif
nd geophysical
nd surface geo
t has been dri
. These includ
holes (. Thed
ied by WMC in
techniques pr
physical techniq
lled in 8 separa
e 104 diamond
eposits have ne
the early 1970s
ior to drilling.
ue being applie
te drill program
drillholes, 10
ver been mine
and have bee
Mapping and
d to the projec
s since 1971,
5 RC drillholes
d.
n extensively e
soil geochemis
t.
with 389 holes
, 169 RAB dri
xplored using
try preceded
having been
llholes and 8
Geol
ogy
The miner
The seque
related to
granitic ph
massive
mineralisa
gabbro.
alisation at Ma
nce has been
the YouanmiF
ases. TheM
sulphide (VMS
tion that haveb
nindi is hosted
extensively d
ault and empl
anindi zinc-co
) zinc depos
een folded, sh
within an Arc
eformed by reg
acement of the
pper mineralisa
it, comprising
eared, faulted,
haean felsic an
ional metamor
Youanmi gabb
tion is consid
a series of
and possibly in
d mafic volcan
phism and str
ro intrusion an
ered to be a
lenses of zi
truded by late
ic sequence.
uctural event
d other later
volcanogenic
nc-dominated
r dolerite and
Drillh
oleinformatio
n
All relevan
t drillhole inform
ation is supplie
d in Appendix
2 and 3 of thea
nnouncement.
Data
meth
aggregation
ods
All explora
of high gra
A cut-offg
constructio
The cut-of
tion results are
de material rec
rade has been
n of mineralise
f was chosena
reported by a
eive less weigh
applied to the
d envelopes u
s it reflects a di
length weighte
ting than longe
data. In the cas
sing 3-D mode
stinction betwee
d average. Thi
r lengths of low
e of data conta
lling software,a
n mineraliseda
s ensures that
grade material
ined in Appen
0.5% Zn cut-o
nd un-minerali
short lengths
.
dix 3 and the
ff was used.
sed material.
Relat
betw
mine
width
lengt
ionship
een
ralisation
s and interce
hs
pt
The miner
striking zo
appears to
mineralisa
orientation
dip steeply
the holes
close to tru
alisation at Ma
nes located ea
be strata-bou
tion are locate
s. Overall thez
to the west an
are drilled towa
e thickness int
nindi is comple
st of a gabbroi
nd following th
d within the
one is steeply
d as such inte
rds the easta
ersections
x in nature but
c intrusion. The
e complex N-S
lower grade
dipping to the
rsect the miner
nd intersect the
confined to a
overall zoneo
stratigraphy.
envelope and
west, A majorit
alisation at low
mineralisation
series of appro
f lower gradem
Higher gradez
these havem
y of the holesd
angles. A sma
at high angles
ximately N-S
ineralisation
ones of zinc
ore varying
rilled to date
ller portion of
, resulting in
Diag
rams
A series o
f relevant diagra
ms are include
d in the body o
f the announce
ment.
Balan
ced reporting
Informatio
announce
cut-off whi
n relating to g
ment. Laborato
ch representst
eophysical, ge
ry assay results
he outlines ofm
ochemical and
are included fo
ineralised vs u
metallurgicalt
r composite int
nmineralisedm
est work is inc
ersections abo
aterial at Manin
luded in the
ve a 0.5% Zn
di.
Furth
er work
Plans forf
urther work are
outlined in the
body of the ann
ouncement

11

==> picture [54 x 56] intentionally omitted <==

==> picture [55 x 56] intentionally omitted <==

==> picture [55 x 56] intentionally omitted <==

==> picture [55 x 56] intentionally omitted <==

==> picture [54 x 56] intentionally omitted <==

==> picture [55 x 56] intentionally omitted <==

==> picture [55 x 56] intentionally omitted <==

==> picture [55 x 56] intentionally omitted <==

==> picture [54 x 56] intentionally omitted <==

==> picture [55 x 56] intentionally omitted <==

==> picture [55 x 56] intentionally omitted <==

==> picture [4 x 56] intentionally omitted <==

Appendix 1 – Manindi Drilling All Collars

Hole_ID
H
ole_Type
De
pth
NAT_Gr
id_ID
East
**North **
RL
7
7
7
7
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
5FWD0032
5FWD0033
5FWD0034
5FWD0035
3COR001
3COR002
3COR003
3COR004
3COR005
3COR006
3COR007
3COR008
3COR009
3COR010
3COR011
3COR012
3COR013
3COR014
3COR015
3COR016
3COR017
3COR018
3COR019
3COR020
3COR021
3COR022
3COR023
3COR024
3COR025
3COR026
3COR027
3COR028
3COR029
3COR030
3COR031
3COR032
3COR033
3COR034
3COR035
3COR036
3COR037
3COR038
3COR039
3COR040
3COR041
3COR042
3COR043
3COR044
3COR045
3COR046
3COR047
3COR048
3COR049
3COR050
3COR051
3COR052
3COR053
3COR054
3COR055
3COR056
3COR057
3COR058
3COR059
3COR060
3COR061
3COR062
3COR063
3COR064
3COR065
3COR066
3COR067
3COR068
3COR069
3COR070
3COR071
3COR072
3COR073
3COR074
3COR075
3COR076
3COR077
3COR078
3COR079
3COR080
3COR081
3COR082
DD
27
DD
25
DD
27
DD
29
RAB
6
RAB
43
RAB
47
RAB
20
RAB
32
RAB
16
RAB
35
RAB
30
RAB
36
RAB
31
RAB
27
RAB
5
RAB
54
RAB
32
RAB
23
RAB
18
RAB
24
RAB
7
RAB
6
RAB
4
RAB
3
RAB
42
RAB
53
RAB
38
RAB
26
RAB
25
RAB
23
RAB
8
RAB
9
RAB
6
RAB
19
RAB
20
RAB
21
RAB
18
RAB
8
RAB
22
RAB
16
RAB
2
RAB
19
RAB
18
RAB
5
RAB
38
RAB
38
RAB
47
RAB
56
RAB
35
RAB
33
RAB
28
RAB
28
RAB
17
RAB
30
RAB
14
RAB
13
RAB
23
RAB
8
RAB
12
RAB
10
RAB
12
RAB
12
RAB
13
RAB
23
RAB
26
RAB
12
RAB
8
RAB
10
RAB
10
RAB
26
RAB
26
RAB
35
RAB
35
RAB
50
RAB
20
RAB
20
RAB
14
RAB
20
RAB
16
RAB
10
RAB
14
RAB
14
RAB
44
RAB
20
RAB
20
4.20
MGA94
9.60
MGA94
8.70
MGA94
8.12
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
_50
663,44
_50
663,49
_50
663,57
_50
663,27
_50
663,95
_50
663,78
_50
663,61
_50
663,88
_50
664,05
_50
664,10
_50
663,98
_50
664,07
_50
664,11
_50
664,16
_50
664,20
_50
664,24
_50
664,09
_50
664,17
_50
664,21
_50
664,26
_50
664,30
_50
664,34
_50
664,39
_50
664,43
_50
664,47
_50
664,19
_50
664,27
_50
664,32
_50
664,36
_50
664,40
_50
664,45
_50
664,49
_50
664,53
_50
664,57
_50
664,62
_50
664,64
_50
664,66
_50
664,70
_50
664,81
_50
664,76
_50
664,72
_50
664,68
_50
664,63
_50
664,59
_50
664,57
_50
664,55
_50
664,51
_50
664,46
_50
664,42
_50
664,29
_50
664,57
_50
664,61
_50
664,65
_50
664,69
_50
664,74
_50
664,76
_50
664,78
_50
664,80
_50
664,82
_50
664,87
_50
664,91
_50
665,10
_50
665,01
_50
664,97
_50
664,95
_50
664,92
_50
664,90
_50
664,88
_50
664,86
_50
664,84
_50
664,80
_50
664,75
_50
664,71
_50
664,67
_50
664,63
_50
665,20
_50
665,16
_50
665,11
_50
665,07
_50
665,03
_50
664,99
_50
664,94
_50
664,90
_50
665,44
_50
665,27
_50
665,10
0
6,819,021
4
6,818,934
7
6,818,803
8
6,819,208
5
6,818,234
4
6,818,132
2
6,818,030
6
6,817,961
8
6,818,063
1
6,818,089
9
6,817,789
4
6,817,840
7
6,817,866
0
6,817,892
3
6,817,916
6
6,817,942
1
6,817,617
7
6,817,669
9
6,817,694
2
6,817,720
5
6,817,745
8
6,817,771
1
6,817,797
4
6,817,823
7
6,817,848
3
6,817,445
9
6,817,497
3
6,817,523
5
6,817,549
8
6,817,574
1
6,817,599
4
6,817,625
6
6,817,651
9
6,817,676
2
6,817,702
3
6,817,715
5
6,817,728
7
6,817,754
1
6,817,582
8
6,817,556
5
6,817,530
2
6,817,505
9
6,817,480
6
6,817,454
4
6,817,441
3
6,817,428
0
6,817,402
7
6,817,376
5
6,817,352
6
6,817,274
0
6,817,205
3
6,817,231
6
6,817,257
9
6,817,283
2
6,817,307
3
6,817,320
4
6,817,333
2
6,817,344
7
6,817,359
0
6,817,385
3
6,817,411
1
6,817,290
6
6,817,239
2
6,817,214
1
6,817,201
9
6,817,188
8
6,817,175
7
6,817,162
5
6,817,149
4
6,817,136
1
6,817,111
8
6,817,085
5
6,817,060
3
6,817,034
0
6,817,008
4
6,817,119
1
6,817,093
8
6,817,067
5
6,817,042
2
6,817,016
0
6,816,990
7
6,816,965
3
6,816,940
3
6,816,913
2
6,816,810
1
6,816,708
497.87
497.18
502.99
498.43
498.99
500.19
500.16
500
500
499.99
500
500
500
500
500
500
500
500
500
500
500
500
500
500
499.92
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500

12

==> picture [54 x 56] intentionally omitted <==

==> picture [55 x 56] intentionally omitted <==

==> picture [55 x 56] intentionally omitted <==

==> picture [55 x 56] intentionally omitted <==

==> picture [54 x 56] intentionally omitted <==

==> picture [55 x 56] intentionally omitted <==

==> picture [55 x 56] intentionally omitted <==

==> picture [55 x 56] intentionally omitted <==

==> picture [54 x 56] intentionally omitted <==

==> picture [55 x 56] intentionally omitted <==

==> picture [55 x 56] intentionally omitted <==

==> picture [4 x 56] intentionally omitted <==

Hole_ID
H
ole_Type
De
pth
NAT_Gr
id_ID
East
**North **
RL
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
3COR083
3COR084
3COR085
3COR086
3COR087
3COR088
3COR089
3COR090
3COR091
3COR092
3COR093
3COR094
3COR095
3COR096
3COR097
3COR098
3COR099
3COR100
3COR101
3COR102
3COR103
3COR104
3COR105
3COR106
3COR107
3COR108
3COR109
3COR110
3COR111
3COR112
3COR113
3COR114
3COR115
3COR116
3COR117
3COR118
3COR119
3COR120
3COR121
3COR122
3COR123
3COR124
3COR125
3COR126
3COR127
3COR128
3COR129
3COR130
3COR131
3COR132
3COR133
3COR134
3COR135
3COR136
3COR137
4FWD0040
4FWD0041
4FWD0042
4FWD0043
4FWD0044
4FWP0004
4FWP0005
4FWP0006
4FWP0007
4FWP0008
CORB001
CORB002
CORB003
CORB004
CORB005
CORB006
CORB007
CORB008
CORB009
CORB010
CORB011
CORB012
CORB013
CORB014
CORB015
CORB016
CORB017
CORB018
CORB019
CORB020
CORB021
CORB022
CORB023
CORB024
RAB
38
RAB
48
RAB
44
RAB
53
RAB
39
RAB
25
RAB
35
RAB
29
RAB
32
RAB
26
RAB
20
RAB
6
RAB
11
RAB
14
RAB
38
RAB
32
RAB
29
RAB
15
RAB
23
RAB
26
RAB
17
RAB
41
RAB
17
RAB
17
RAB
38
RAB
17
RAB
44
RAB
38
RAB
32
RAB
11
RAB
26
RAB
28
RAB
23
RAB
23
RAB
26
RAB
29
RAB
23
RAB
42
RAB
13
RAB
41
RAB
35
RAB
44
RAB
20
RAB
32
RAB
41
RAB
20
RAB
21
RAB
50
RAB
32
RAB
11
RAB
2
RAB
7
RAB
26
RAB
53
RAB
53
DD
14
DD
15
DD
16
DD
11
DD
11
RC
91
RC
39
RC
78
RC
44
RC
75
RAB
30
RAB
32
RAB
40
RAB
41
RAB
18
RAB
3
RAB
25
RAB
31
RAB
38
RAB
21
RAB
25
RAB
27
RAB
32
RAB
20
RAB
14
RAB
49
RAB
46
RAB
53
RAB
39
RAB
42
RAB
59
RAB
44
RAB
48
RAB
40
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
8.30
MGA94
8.60
MGA94
8.10
MGA94
7.40
MGA94
1.70
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.60
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
_50
664,92
_50
664,75
_50
665,64
_50
665,47
_50
665,30
_50
665,13
_50
665,85
_50
665,68
_50
665,51
_50
665,33
_50
666,05
_50
665,88
_50
665,71
_50
666,26
_50
666,09
_50
665,92
_50
666,29
_50
666,46
_50
666,63
_50
666,81
_50
666,50
_50
666,67
_50
666,84
_50
667,01
_50
667,05
_50
667,22
_50
666,87
_50
667,08
_50
667,25
_50
667,42
_50
667,80
_50
667,97
_50
668,17
_50
668,00
_50
668,21
_50
668,38
_50
668,55
_50
669,10
_50
668,93
_50
668,76
_50
668,58
_50
668,41
_50
669,30
_50
669,13
_50
668,96
_50
668,79
_50
668,62
_50
669,17
_50
669,34
_50
669,51
_50
669,68
_50
669,89
_50
669,71
_50
669,54
_50
669,37
_50
662,70
_50
662,82
_50
663,02
_50
663,68
_50
662,47
_50
663,59
_50
663,76
_50
662,45
_50
662,90
_50
662,65
_50
666,19
_50
666,14
_50
666,08
_50
666,04
_50
665,99
_50
665,93
_50
665,88
_50
665,83
_50
665,78
_50
665,73
_50
665,68
_50
665,63
_50
665,59
_50
665,54
_50
665,50
_50
665,44
_50
665,39
_50
665,34
_50
665,29
_50
665,24
_50
665,20
_50
665,16
_50
665,12
_50
665,08
9
6,816,606
7
6,816,502
8
6,816,570
7
6,816,468
5
6,816,364
4
6,816,262
3
6,816,227
1
6,816,124
0
6,816,022
9
6,815,919
8
6,815,884
7
6,815,781
6
6,815,679
3
6,815,541
2
6,815,438
1
6,815,336
7
6,815,096
8
6,815,198
9
6,815,300
1
6,815,403
1
6,814,753
4
6,814,855
5
6,814,958
7
6,815,060
0
6,814,615
1
6,814,717
9
6,814,512
3
6,814,170
5
6,814,272
6
6,814,374
3
6,814,134
4
6,814,236
9
6,813,893
8
6,813,791
3
6,813,448
4
6,813,550
6
6,813,653
4
6,813,515
2
6,813,412
1
6,813,310
9
6,813,207
8
6,813,105
9
6,813,172
7
6,813,069
6
6,812,967
4
6,812,864
3
6,812,762
1
6,812,624
2
6,812,726
4
6,812,829
5
6,812,931
0
6,812,589
9
6,812,486
7
6,812,384
6
6,812,281
0
6,819,810
0
6,819,649
2
6,819,426
9
6,818,425
9
6,819,518
4
6,818,359
7
6,818,878
3
6,819,664
1
6,820,107
7
6,820,019
2
6,814,532
9
6,814,535
7
6,814,551
0
6,814,551
0
6,814,540
7
6,814,531
5
6,814,529
2
6,814,520
1
6,814,519
6
6,814,516
6
6,814,510
7
6,814,515
1
6,814,505
2
6,814,498
3
6,814,475
4
6,814,487
5
6,814,481
2
6,814,473
3
6,814,466
8
6,814,445
5
6,814,420
9
6,814,393
9
6,814,363
6
6,814,337
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
502.94
499.88
500
500.47
499.55
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500

13

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==> picture [55 x 56] intentionally omitted <==

==> picture [55 x 56] intentionally omitted <==

==> picture [54 x 56] intentionally omitted <==

==> picture [55 x 56] intentionally omitted <==

==> picture [55 x 56] intentionally omitted <==

==> picture [55 x 56] intentionally omitted <==

==> picture [54 x 56] intentionally omitted <==

==> picture [55 x 56] intentionally omitted <==

==> picture [55 x 56] intentionally omitted <==

==> picture [4 x 56] intentionally omitted <==

Hole_ID
H
ole_Type
De
pth
NAT_Gr
id_ID
East
**North **
RL
CORB025
CORB026
CORB027
CORB028
CORB029
CORB030
CORB031
CORB032
EMD0001
EMD0002
EMD0003
EMP0001
EMP0002
EMP0003
EMP0004
FD0001
FRC0001
FRC0002
FRC0003
FRC0004
FRC0005
FRC0006
FRC0007
FRC0008
FRC0009
FRC0010
FRC0011
FRC0012
FRC0013
FRC0014
FRC0015
FRC0016
FRC0017
FRC0018
FRC0019
FRC0020
FRC0021
FRC0022
FRC0023
FRC0024
FRC0025
FRC0026
FRC0027
FRC0028
FRC0029
FRC0030
FRC0031
FRC0032
FRC0033
FRC0034
FRC0035
FRC0036
FRC0037
FRC0038
FRC0039
FRC0040
FRC0041
FRC0042
FRC0043
FRC0044
FRC0045
FRC0046
FRC0047
FRC0048
FRC0049
FRC0050
FRC0060
FRC0061
FRC0062
FRC0063
FRC0064
FW0017
FW0022
FW0023
FWD0001
FWD0002
FWD0003
FWD0004
FWD0005
FWD0006
FWD0007
FWD0008
FWD0009
FWD0010
FWD0011
FWD0012
FWD0013
FWD0014
FWD0015
RAB
37
RAB
24
RAB
33
RAB
35
RAB
45
RAB
26
RAB
14
RAB
39
DD
28
DD
20
DD
19
PER
86
PER
89
PER
80
PER
80
DD
19
RC
15
RC
11
RC
10
RC
10
RC
12
RC
10
RC
80
RC
94
RC
82
RC
10
RC
10
RC
12
RC
82
RC
12
RC
15
RC
92
RC
15
RC
15
RC
15
RC
15
RC
14
RC
11
RC
15
RC
14
RC
11
RC
11
RC
10
RC
12
RC
83
RC
15
RC
90
RC
16
RC
97
RC
11
RC
11
RC
13
RC
15
RC
16
RC
16
RC
10
RC
10
RC
10
RC
10
RC
80
RC
13
RC
11
RC
10
RC
14
RC
10
RC
15
RC
94
RC
13
RC
12
RC
88
RC
10
PER
18
PER
16
PER
2
DD
77
DD
63
DD
10
DD
10
DD
91
DD
12
DD
12
DD
12
DD
10
DD
10
DD
91
DD
15
DD
17
DD
12
DD
15
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
0.00
MGA94
1.50
MGA94
3.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.65
MGA94
4.70
MGA94
4.00
MGA94
8.00
MGA94
3.00
MGA94
0.00
MGA94
0.00
MGA94
0.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
0.00
MGA94
0.00
MGA94
4.00
MGA94
.00
MGA94
9.00
MGA94
7.00
MGA94
.00
MGA94
9.00
MGA94
3.00
MGA94
9.00
MGA94
9.00
MGA94
7.00
MGA94
7.00
MGA94
9.00
MGA94
0.00
MGA94
0.00
MGA94
0.00
MGA94
0.00
MGA94
0.00
MGA94
.00
MGA94
0.00
MGA94
.00
MGA94
0.00
MGA94
.00
MGA94
0.00
MGA94
0.00
MGA94
6.00
MGA94
4.00
MGA94
0.00
MGA94
1.00
MGA94
9.00
MGA94
0.00
MGA94
0.00
MGA94
6.00
MGA94
.00
MGA94
7.00
MGA94
0.00
MGA94
9.00
MGA94
3.00
MGA94
0.00
MGA94
5.00
MGA94
.00
MGA94
0.00
MGA94
0.00
MGA94
.00
MGA94
6.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.72
MGA94
.19
MGA94
8.20
MGA94
2.11
MGA94
.14
MGA94
1.31
MGA94
8.02
MGA94
2.68
MGA94
6.68
MGA94
2.11
MGA94
.44
MGA94
2.40
MGA94
6.17
MGA94
6.80
MGA94
7.30
MGA94
_50
665,03
_50
664,89
_50
664,79
_50
664,69
_50
664,59
_50
664,50
_50
664,40
_50
665,93
_50
664,87
_50
664,71
_50
664,62
_50
664,79
_50
664,75
_50
664,83
_50
664,87
_50
663,94
_50
663,22
_50
663,33
_50
663,36
_50
663,42
_50
663,44
_50
663,46
_50
664,43
_50
664,44
_50
664,42
_50
664,47
_50
664,33
_50
664,34
_50
664,33
_50
666,29
_50
665,31
_50
664,95
_50
664,31
_50
663,99
_50
663,63
_50
663,45
_50
665,21
_50
664,94
_50
668,01
_50
667,96
_50
664,91
_50
664,87
_50
664,36
_50
664,36
_50
664,36
_50
664,35
_50
664,31
_50
664,35
_50
664,35
_50
664,31
_50
664,32
_50
664,33
_50
664,36
_50
663,10
_50
668,03
_50
667,96
_50
668,03
_50
667,85
_50
664,34
_50
664,28
_50
664,24
_50
664,21
_50
663,88
_50
663,47
_50
665,21
_50
663,48
_50
663,38
_50
663,52
_50
664,26
_50
664,37
_50
662,94
_50
669,14
_50
666,04
_50
665,24
_50
664,45
_50
664,45
_50
664,48
_50
664,45
_50
664,45
_50
664,48
_50
664,33
_50
664,47
_50
664,34
_50
664,34
_50
663,97
_50
663,53
_50
663,56
_50
663,44
_50
663,30
2
6,814,339
5
6,814,298
2
6,814,265
8
6,814,267
9
6,814,256
2
6,814,232
5
6,814,221
8
6,814,529
8
6,817,273
6
6,817,234
8
6,817,147
3
6,817,222
8
6,817,202
6
6,817,248
8
6,817,273
6
6,818,114
1
6,819,191
2
6,819,025
3
6,818,951
6
6,818,887
6
6,818,840
9
6,818,735
1
6,818,150
1
6,818,047
9
6,817,969
5
6,817,789
1
6,818,352
5
6,818,313
2
6,818,260
8
6,815,678
5
6,816,952
1
6,817,200
7
6,817,870
0
6,818,256
0
6,818,506
7
6,818,913
1
6,817,239
7
6,817,198
3
6,812,975
7
6,812,948
7
6,817,180
8
6,817,157
0
6,818,166
4
6,818,119
8
6,818,081
9
6,818,079
9
6,818,256
9
6,818,261
1
6,818,296
4
6,818,300
0
6,818,351
5
6,818,354
4
6,818,298
9
6,819,125
2
6,812,985
8
6,812,946
9
6,812,877
1
6,812,996
1
6,818,147
9
6,818,313
6
6,818,313
0
6,817,806
6
6,818,195
6
6,818,783
2
6,816,891
1
6,818,850
5
6,818,829
6
6,818,565
4
6,818,312
8
6,818,260
1
6,819,375
4
6,818,939
4
6,819,051
6
6,819,554
3
6,818,161
2
6,818,118
6
6,818,114
3
6,818,086
7
6,818,148
8
6,818,146
4
6,818,148
2
6,818,167
7
6,818,367
9
6,818,301
2
6,818,336
0
6,818,670
5
6,818,692
3
6,818,831
7
6,819,101
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500
500.08
500.8
503.71
502.65
498.33
502.92
503.47
504.38
500.44
499.95
500
503
503.48
500.26
500
500
500
500
498.2
501.03
497.8
500
500
500
500
500
500
500.84
499.4
498.66
498.71
499.2
503.75
502.86
501.61
502.14
502.92
502.37
494.83
500
500
500
500
500.34
498.97
494.4
500
500.18
503.34
500
501.88
503.65
500.53
495.73
505.02
506.62
483.45
493.09
494.36
505.33
502.77
502.32
501.53
504.18
504.38
500.39
506.05
497.88
503.05
496.93
503.4
502.9
503.34
500.14

14

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==> picture [55 x 56] intentionally omitted <==

==> picture [54 x 56] intentionally omitted <==

==> picture [55 x 56] intentionally omitted <==

==> picture [55 x 56] intentionally omitted <==

==> picture [55 x 56] intentionally omitted <==

==> picture [54 x 56] intentionally omitted <==

==> picture [55 x 56] intentionally omitted <==

==> picture [55 x 56] intentionally omitted <==

==> picture [4 x 56] intentionally omitted <==

Hole_ID
H
ole_Type
De
pth
NAT_Gr
id_ID
East
**North **
RL
F
F
F
FWD0016
FWD0017
FWD0018
FWD0019
FWD0020
FWD0021
FWD0022
FWD0023
FWD0024
FWD0025
FWD0026
FWD0027
FWD0028
FWD0029
FWD0030
FWD0031
FWD0036
FWD0037
FWD0038
FWD0039
FWD0050
FWD0051
FWD0052
FWD0053
FWD0054
FWP0001
WPD0001
WPD0002
WPD0003
FWRC001
FWRC002
FWRC003
FWRC004
FWRC005
FWRC006
FWRC007
MND001
MND002
MND003
MND004
MND005
MND006
MND007
MND008
MND009
MND010
MND011
MND012
MND013
MND014
MND015
MND016
MND017
MND018
MND019
MND020
MND021
MND022
MND023
MND024
MND025
MND026
MND027
MND028
MND029
MND030
MND031
MND032
MND033
MND034
MND035
MND036
MND037
MND038
MND039
MND040
MND041
MND042
MND043
MND044
MND045
MND046
MND047
MND048
MND049
MND050
MND051
MND052
MNPC016
DD
15
DD
14
DD
11
DD
20
DD
19
DD
20
DD
16
DD
12
DD
14
DD
26
DD
11
DD
30
DD
35
DD
11
DD
11
DD
33
DD
18
DD
37
DD
42
DD
25
RC
15
RC
24
RC
90
RC
19
RC
16
PER
80
PER
88
PER
28
PER
88
RC
18
RC
22
RC
22
RC
22
RC
22
RC
18
RC
29
DD
36
DD
35
DD
95
DD
10
DD
22
DD
87
DD
75
DD
60
DD
60
DD
11
DD
75
DD
10
DD
75
DD
78
DD
13
DD
93
DD
90
DD
49
DD
12
DD
81
DD
90
DD
90
DD
55
DD
81
DD
16
DD
99
DD
21
DD
49
DD
13
DD
11
DD
29
DD
20
DD
25
DD
15
DD
22
DD
16
DD
18
DD
22
DD
27
DD
23
DD
14
DD
25
DD
96
DD
19
DD
12
DD
87
DD
87
DD
72
DD
45
DD
16
DD
15
DD
60
RC
10
1.18
MGA94
5.08
MGA94
1.56
MGA94
9.09
MGA94
9.80
MGA94
9.09
MGA94
7.64
MGA94
1.92
MGA94
0.00
MGA94
7.00
MGA94
5.06
MGA94
7.80
MGA94
7.50
MGA94
0.85
MGA94
2.57
MGA94
.53
MGA94
0.00
MGA94
4.80
MGA94
.00
MGA94
7.00
MGA94
0.20
MGA94
5.93
MGA94
.50
MGA94
5.45
MGA94
2.40
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
4.00
MGA94
7.00
MGA94
7.00
MGA94
1.00
MGA94
1.00
MGA94
5.00
MGA94
9.00
MGA94
3.70
MGA94
3.51
MGA94
.30
MGA94
0.07
MGA94
8.30
MGA94
.70
MGA94
.70
MGA94
.60
MGA94
.70
MGA94
1.70
MGA94
.70
MGA94
5.70
MGA94
.70
MGA94
.05
MGA94
8.74
MGA94
.39
MGA94
.41
MGA94
.12
MGA94
0.62
MGA94
.70
MGA94
.60
MGA94
.70
MGA94
.50
MGA94
.70
MGA94
5.80
MGA94
.90
MGA94
9.70
MGA94
.90
MGA94
2.60
MGA94
7.00
MGA94
9.70
MGA94
4.70
MGA94
8.70
MGA94
6.87
MGA94
0.70
MGA94
4.40
MGA94
9.00
MGA94
7.30
MGA94
2.10
MGA94
7.70
MGA94
1.70
MGA94
5.60
MGA94
.70
MGA94
5.70
MGA94
0.80
MGA94
.70
MGA94
.70
MGA94
.10
MGA94
.70
MGA94
0.40
MGA94
3.70
MGA94
.60
MGA94
6.00
MGA94
_50
663,32
_50
663,27
_50
663,19
_50
663,32
_50
663,30
_50
663,33
_50
663,26
_50
663,14
_50
663,11
_50
663,11
_50
663,58
_50
663,35
_50
663,40
_50
663,27
_50
663,25
_50
663,22
_50
663,05
_50
662,99
_50
663,18
_50
663,21
_50
663,11
_50
663,08
_50
663,21
_50
663,29
_50
663,29
_50
664,45
_50
664,45
_50
664,40
_50
664,47
_50
664,15
_50
664,33
_50
664,22
_50
663,08
_50
663,12
_50
662,77
_50
664,25
_50
663,35
_50
663,30
_50
664,31
_50
664,38
_50
663,29
_50
664,37
_50
664,40
_50
664,41
_50
664,44
_50
664,38
_50
664,38
_50
664,36
_50
664,38
_50
664,34
_50
664,35
_50
664,33
_50
664,34
_50
664,31
_50
664,35
_50
664,32
_50
664,33
_50
664,33
_50
664,31
_50
663,60
_50
663,60
_50
663,44
_50
663,47
_50
663,40
_50
663,43
_50
663,43
_50
663,43
_50
663,31
_50
663,33
_50
663,28
_50
663,34
_50
663,28
_50
663,28
_50
663,32
_50
663,30
_50
663,30
_50
663,23
_50
663,29
_50
663,20
_50
663,60
_50
664,40
_50
664,38
_50
664,46
_50
664,40
_50
664,40
_50
664,36
_50
664,37
_50
664,32
_50
663,34
0
6,819,049
5
6,819,129
4
6,819,118
9
6,819,116
1
6,819,143
4
6,819,092
1
6,819,156
6
6,819,119
1
6,819,143
7
6,819,041
6
6,818,602
9
6,819,155
9
6,819,077
8
6,819,097
5
6,819,118
7
6,819,137
8
6,819,210
8
6,819,175
9
6,819,288
7
6,819,247
6
6,819,102
8
6,819,085
7
6,819,131
8
6,819,105
6
6,819,069
9
6,818,131
3
6,817,865
5
6,817,838
6
6,817,701
1
6,818,003
9
6,817,882
8
6,818,049
7
6,819,337
7
6,819,368
7
6,819,624
4
6,818,065
7
6,819,103
0
6,819,168
7
6,818,328
2
6,818,188
7
6,819,167
0
6,818,150
0
6,818,135
0
6,818,120
0
6,818,100
5
6,818,080
0
6,818,170
0
6,818,190
5
6,818,200
5
6,818,260
0
6,818,280
0
6,818,280
0
6,818,300
0
6,818,300
0
6,818,320
0
6,818,320
0
6,818,330
0
6,818,340
0
6,818,340
0
6,818,610
0
6,818,610
8
6,818,771
7
6,818,858
4
6,818,885
0
6,818,958
8
6,818,905
9
6,819,022
0
6,819,120
2
6,819,133
9
6,819,072
1
6,819,068
8
6,819,118
2
6,819,138
2
6,819,139
8
6,819,153
4
6,819,151
2
6,819,143
3
6,819,179
7
6,819,163
8
6,818,617
0
6,818,135
0
6,818,120
5
6,818,100
0
6,818,080
0
6,818,190
0
6,818,268
5
6,818,320
0
6,818,360
3
6,819,088
503.61
500.58
504.03
498.26
499.4
499.34
499.88
500.95
496.58
513.77
502.1
495.79
498.24
502.69
502.31
501.26
507.17
504.17
500.38
500.23
508.96
509.37
501.98
500.26
504.22
503.14
499.85
499.94
500
499.97
500
499.58
499.78
498.23
500
499.58
496.76
498.99
502.2
504.2
499.03
502
502
500
502
500
502
503
504
503
502
503
503
502
504
502
504
502
501
499
499
500
502
499
498
498
498
499
498
505
504
500
500
498
499
499
501
499
499
499
502
500
502
500
505
503
504
503
500

15

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Hole_ID
H
ole_Type
De
pth
NAT_Gr
id_ID
East
**North **
RL
M
M
M
M
MNPC017
MNRC001
MNRC002
MNRC003
MNRC004
MNRC005
MNRC006
MNRC007
MNRC008
MNRC009
MNRC010
MNRC011
MNRC012
MNRC013
MNRC014
MNRC015
YOD0045
YOD0046
YOD0047
YOP0048
PH0001
PH0002
PH0003
PH0004
PH0005
PH0006
PH0007
PH0008
PH0009
PH0010
PH0011
PH0012
PH0013
PH0014
PH0015
PH0016
RC
11
RC
82
RC
88
RC
75
RC
75
RC
88
RC
75
RC
10
RC
75
RC
76
RC
75
RC
52
RC
64
RC
10
RC
94
RC
10
DD
12
DD
12
DD
12
DD
60
RC
44
RC
39
RC
34
RC
45
RC
32
RC
30
RC
45
RC
45
RC
25
RC
60
RC
60
RC
27
RC
39
RC
30
RC
67
RC
61
2.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
0.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
.00
MGA94
6.00
MGA94
.00
MGA94
6.00
MGA94
5.00
MGA94
7.15
MGA94
9.82
MGA94
.00
MGA94
.20
MGA94
.62
MGA94
.40
MGA94
.70
MGA94
.00
MGA94
.48
MGA94
.72
MGA94
.70
MGA94
.90
MGA94
.10
MGA94
.10
MGA94
.40
MGA94
.60
MGA94
.50
MGA94
.40
MGA94
.00
MGA94
_50
663,28
_50
664,44
_50
664,43
_50
664,41
_50
664,53
_50
664,54
_50
664,53
_50
664,36
_50
664,38
_50
664,30
_50
664,26
_50
664,30
_50
664,31
_50
664,35
_50
664,45
_50
663,88
_50
666,22
_50
666,13
_50
667,49
_50
667,73
_50
664,33
_50
664,36
_50
664,33
_50
664,23
_50
664,15
_50
663,96
_50
663,95
_50
663,60
_50
663,56
_50
663,91
_50
663,98
_50
664,89
_50
664,64
_50
664,64
_50
664,22
_50
664,22
1
6,819,155
7
6,817,485
7
6,817,593
9
6,817,672
5
6,817,991
3
6,818,026
0
6,818,044
8
6,818,210
6
6,818,188
2
6,818,357
4
6,818,410
3
6,818,410
3
6,818,325
3
6,818,295
3
6,818,148
7
6,818,243
3
6,815,649
6
6,815,850
1
6,815,456
9
6,815,342
6
6,818,329
5
6,818,330
5
6,818,357
6
6,817,905
6
6,818,028
4
6,818,350
0
6,818,352
9
6,818,467
6
6,818,590
8
6,818,339
8
6,818,237
8
6,818,193
2
6,817,711
2
6,817,711
6
6,818,252
6
6,818,201
500
500
500
500
499.37
499.19
500.14
503.41
504.48
500.31
493.66
495.88
501.87
502.85
504.19
499.55
500
500
500
500
503.11
501.57
502.18
500
499.92
496.93
497.05
501
501.9
497.44
498.58
499.22
500
500
496.31
498.11

16

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Appendix 2 - Complete listing Manindi Drill Intersections >0.5% Zn inside mineralisation envelopes. Minimum intercept reported in the table is 2m, maximum internal waste is 1m (downhole) thicknesses.

Hol
e_ID
mFrom mTo Interce
pt
Interce
pt
Zn
%
Cu%
75FW
D0032

211.2
213.8 2.55m
@ 0.88 %
0
.88
0.04
EMP0
003
50 52 2.00m
@ 0.54 %
0
.54
0.06
FRC0
031
20 28 8.00m
@ 0.73 %
0
.73
0.04
FRC0
033
28 30 2.00m
@ 2.83 %
2
.83
0.08
FRC0
033
71 83 12.00m
@ 9.95 %
9
.95
0.85
FRC0
033
87 92 5.00m
@ 12.15 %
12
.15

0.68
FRC0
034
0 4 4.00m
@ 0.52 %
0
.52
0.32
FRC0
034
29 39 10.00m
@ 9.09 %
9
.09
0.68
FRC0
035
4 8 4.00m
@ 2.83 %
2
.83
0.08
FRC0
035
27 30 3.00m
@ 2.05 %
2
.05
0.53
FRC0
044
20 36 16.00m
@ 6.05 %
6
.05
0.17
FRC0
048
76 80 4.00m
@ 0.66 %
0
.66
0.1
FRC0
050
140 144 4.00m
@ 0.53 %
0
.53
0
FRC0
060
60 62 2.00m
@ 2.26 %
2
.26
0.13
FRC0
062
58 63 5.00m
@ 4.29 %
4
.29
0.16
FRC0
062
69 76 7.00m
@ 6.74 %
6
.74
0.44
FRC0
063
22 24 2.00m
@ 0.96 %
0
.96
0.05
FWD0
002
40.8 44.65 3.85m
@ 17.70 %
17
.7
0.56
FWD0
005
44.29 50.75 6.46m
@ 22.49 %
22
.49

0.66
FWD0
009
6.1 10.97 4.87m
@ 1.19 %
1
.19
0.02
FWD0
010
26.34 30.11 3.77m
@ 0.94 %
0
.94
0.03
FWD0
010
75.74 78.33 2.59m
@ 17.00 %
1
7
0.42
FWD0
015
148.2 151.2 3.00m
@ 0.55 %
0
.55
0.01
FWD0
029
82.03 84.92 2.89m
@ 2.04 %
2
.04
0.36
FWD0
030
42 46.23 4.23m
@ 2.42 %
2
.42
0.19
FWD0
030
47.7 50.98 3.28m
@ 1.78 %
1
.78
0.18
FWD0
050
132.5 141.7 9.20m
@ 7.18 %
7
.18
0.24
FWD0
052
46 48 2.00m
@ 2.14 %
2
.14
0.21
FWD0
053
137.6 148.9 11.30m
@ 14.83 %
14
.83

0.26
FWD0
053
152 162.8 10.75m
@ 8.80 %
8
.8
0.27
FWD0
053
168.5 174.3 5.80m
@ 8.04 %
8
.04
0.18
FWD0
054
21 26 5.00m
@ 5.24 %
5
.24
0.18
FWD0
054
138 149 11.00m
@ 2.11 %
2
.11
0.14
MND0
03
6.7 8.9 2.20m
@ 0.63 %
0
.63
0.17
MND0
07
38.7 45 6.30m
@ 14.40 %
14
.4
0.76
MND0
07
46.8 52.67 5.87m
@ 10.33 %
10
.33

0.32
MND0
08
24.9 28 3.10m
@ 7.86 %
7
.86
0.2
MND0
09
30.5 35 4.50m
@ 5.42 %
5
.42
0.3
MND0
10
17 26.5 9.50m
@ 2.83 %
2
.83
0.4
MND0
20
40 42 2.00m
@ 1.01 %
1
.01
0.09
MND0
26
21.15 25.15 4.00m
@ 0.70 %
0
.7
0.3
MND0
30
107.6 112.8 5.20m
@ 1.65 %
1
.65
0
MND0
32
153.2 155.2 2.00m
@ 0.73 %
0
.73
0.18
MND0
32
158.2 160.8 2.55m
@ 0.65 %
0
.65
0.15
MND0
33
202 207 5.00m
@ 1.01 %
1
.01
0.05
MND0
34
18.7 21 2.30m
@ 0.52 %
0
.52
0.35
MND0
36
59 63 4.00m
@ 1.08 %
1
.08
0.04
MND0
36
77.06 87 9.94m
@ 1.02 %
1
.02
0.27
MND0
36
129.58
133
3.42m
@ 0.75 %
0
.75
0.12
MND0
36
138 140 2.00m
@ 0.52 %
0
.52
0.07
MND0
37
129.32
140
10.68m
@ 3.87 %
3
.87
0.35
MND0
37
144 147 3.00m
@ 4.72 %
4
.72
0.51
MND0
38
155 167 12.00m
@ 14.52 %
14
.52

0.24
MND0
40
171 173 2.00m
@ 0.47 %
0
.47
0.2
MND0
40
183 189.1 6.10m
@ 0.77 %
0
.77
0.12
MND0
41
69.65 75 5.35m
@ 3.53 %
3
.53
0.11
MND0
41
76.5 82.25 5.75m
@ 8.15 %
8
.15
0.16
MND0
41
101 103 2.00m
@ 0.70 %
0
.7
0.1
MND0
43
55.73 66.8 11.07m
@ 6.46 %
6
.46
0.23
MND0
49
27.8 40.9 13.10m
@ 14.64 %
14
.64

0.6
MND0
52
3 5 2.00m
@ 0.88 %
0
.88
0.45
MNRC
002
82 86 4.00m
@ 1.58 %
1
.58
0.03
MNRC
005
15 18 3.00m
@ 0.62 %
0
.62
0.15
MNRC
008
44 49 5.00m
@ 11.79 %
11
.79

0.74
MNRC
008
52 54 2.00m
@ 3.88 %
3
.88
0.09
MNRC
009
3 9 6.00m
@ 0.98 %
0
.98
0.35
MNRC
010
3 6 3.00m
@ 1.71 %
1
.71
0.2
MNRC
012
22 26 4.00m
@ 4.22 %
4
.22
0.4
MNRC
012
29 39 10.00m
@ 10.21 %
10
.21

0.39
MNRC
012
43 48 5.00m
@ 1.10 %
1
.1
0.07
MNRC
013
32 39 7.00m
@ 5.09 %
5
.09
0.07
MNRC
013
69 72 3.00m
@ 0.56 %
0
.56
0.01
MNRC
013
89 92 3.00m
@ 16.87 %
16
.87

0.74
MNRC
014
43 46 3.00m
@ 3.31 %
3
.31
0.05
MNRC
014
48 67 19.00m
@ 13.87 %
13
.87

0.41
MNRC
015
81 85 4.00m
@ 0.50 %
0
.5
0.09
MNRC
015
91 95 4.00m
@0.74 %
0
.74
0.14

17