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S20C6SEM58 S20WSEM34 KAWASHE LAKE O1O
NORANDA EXPLORATION COMPANY, LIMITED (no personal liability)
REPORT OF GEOLOGICAL AND GEOPHYSICAL WORKON
KAH LAKE PROPERTY
N.T.S. 520/6
NORTHWESTERN ONTARIO DIVISION
PROJECT NO. 1334 THUNDER SAY, ONTARIO DECEMBER 1986
THUNDER BAY, ONTARIO DECEMBER 1986
PAUL DEGAGNEGEOLOGIST
RED LAKE DISTRICT
D. R. CARRIERE DIVISION GEOPHYSICIST
RECEIVED
(* C r. 1986
MINIM MMS SECTION
(i)
Table of Contents
S2OM8EM34 KAWASHE LAKE
1.0 INTRODUCTION
2.0 LOCATION AND ACCESS
3.0 CAIMS
4.0 PREVIOUS WORK
5.0 GEOLOGY
5.1 Description of Units5.2 Property Geology5.3 Structure5.4 Mineralization
6.0 HUMUS SAMPLING
7.0 GEOPHYSICS
7.1 Instrumentation7.1.1 Horizontal Loop EM7.1.2 Magnetometer
7.2 Discussion of Results
8.0 CONCLUSIONS
9.0 RECOMMENDATIONS
Pag;
2333
444
5
5
010C
Figure l
Figure 2
List of '.ttachments
Location Map
Claim Sketch
Scale
l"-8 mi
I'M mi
Map l
Map 2
Map 3
Map 4
Map 5
Geology
Humus Sample Map
Magnetometer Survey
MaxMin HLEM Survey - 444 Hz
MaxMin HLEM Survey - 1777 Hz
1:5000
1:5000
l:5000
1:5000
1:5000
INTRODUCTION
Between August 18 and September 4, 1986, a geological mapping and humus sampling program was carried out on the Kam Lake property by Noranda Exploration Company Limited personnel. The work was conducted along a cut grid with 100m line spacings. Happing was carried out on a scale of 1:5000.
In July 1986, horizontal loop EH and magnetometer surveys were carried out on the Kam property. A total of 54.2 km of both EM and magnetometer survey was completed (2168 stations). The work was carried out by employees of Noranda Exploration.
2.0 LOCATION AND ACCESS (Figure 1)
The Kam Lake property is located on the north shore of Kaminiskag Lake, approximately 56 kras southwest of the Town of Pickle Lake, Ontario.
Access is by float- or ski-equipped aircraft based out of Pickle Lake.
3.0 CLAIMS (Figure 2)
The property consists of 40 unpatented mining claims in the Patricia Mining Division, Claim Map G.2083 - Kawashe Lake. The claims are numbered as follows:
Pa 811477-486, inclusivePa 811506-517, inclusivePa 811576-579, inclusivePa 811581-582, inclusivePa 811584-585, inclusivePa 811903-912, inclusive
4.0 PREVIOUS WORK
In 1978, an area including the Kam Lake property was covered in a Questor airborne survey flown for Cominco.
The property was staked in May, 1984, by Noranda Exploration to cover a tightly folded section of iron formation indicated on both the l""lmi government aeromagnetic survey maps and the 1978 Questor survey.
Geological mapping, magnetometer and VLF-EM carried out along the claim lines in August 1984.
surveys were
t Between February 16 and 26, 1985, a basal till sampling ogram was done on the property in order to test the fold nose areas
of the iron formation for gold mineralization. Results of this survey were discouraging. It was felt that detailed mapping and humus sampling programs would locate and define any mineralized horizons.
5.0 GEOLOGY
5 . l Description of Units
1) Mafic (Basalt) Volcanic Flows: This unit outcrops frequently in the eastern half of the property. It is dark green to green, aphanitic to fine grained with feldspar porphyritic phases. Both massive and pillowed flows are present. Pillows are small (less than 0.5m in diameter), bun shaped and tops are unobtainable where exposed. The mafic flows display weak to strong foliation which follows the structural trends on the property. ^ ;
2) Intermediate (Andesite) Volcanic Flows: This unit is typically found throughout the western half on the property. Like the mafic flows, this unit is aphanitic to fine grained, massive to pillowed, and displays a foliation which parallels the structure on the property. The intermediate flows can be distinguished from the mafic flows by their more siliceous nature and lighter colour (green to pale green) .
3) Intermediate Tuff: This unit occurs as two separate horizons intercalated within the mafic and intermediate volcanic flows. It is exposed as two Z-shaped bands in the center on the property and outlines a tight isoclinal east-west trending fold. In both horizons this unit is green to brown, fine grained and thinly laminated. Occasional stretched fragments of chert, magnetite and volcanic material up to 10cm in length were noted, particularly near lines 10 to 12 along the baseline. However, in general, fragments of any kind are rare. ,
4) Magnetite Iron Formation: The only exposure of this unit is located approx 50m north of BL 23+75E. It is black, fine grained and composed of amphibolite, magnetite and garnet. The magnetite in this unit was picked up by the geophysical surveys and appears to lie within and following the southern tuffaceous horizon. The second tuffaceous
located to the north and east lacks this iron formation.
5) Diorite: Numerous small diorite plugs, up to 100m in diameter, were notel on the property. They are non-foliated, fine to medium grained am1 hive a mottled to porphyritic texture due to the feldspar minerals. Phe.'-e plugs intrude both the tuffaceous horizons and the volcanic flows and appear to be concentrated along or near the limbs of the fold.
5.2 Property Geology
The Kam Lake property is underlain by a tightly folded sequence of intercalated mafic to intermediate flows and tuffaceous sediments of Precambrian Age. The sequence of units from north to south is as follows:
1) mafic flows2) tuffaceous argillite3) mafic flows (east), intermediate flows (west)4) tuffaceous argillite with magnetite iron formation5) mafic flows (east), intermediate flows (west)6) diorite plugs
5.3 Structure
The predominant structure on the property is a tight, Z- snaped isoclinal fold as defined by mapping and geophysics. The fold axis trends east-west and is located approx 400m north of baseline 100N. Foliations exhibited in all lithologies reflect this east-west axial trend.
The magnetic survey also inferred several areas of faulting. The more prominent of these faults occur between LI18E/100+25N and L123E/101+OON and between LI 17E/105+OON to 107+75N and LI20E/107+OON.
5.4 Mineralization
Weak disseminated pyrite mineralization is found sporadically throughout the mafic flows. Other than this, mineralization is lacking in all units exposed on the property.
6.0 HUMUS SAMPLING
Two hundred and thirty-seven (237) samples were collected over the iron formation (as defined by the geophysics) and analyzed for gold. The location and results of this sampling are shown on Map 2.
Although all values were very low, there was a slight increase in gold values between L116 and L124E just north of baseline 100N and between L116E and L121E between 106N and 108N. Both of these areas occur over the iron formation near the faults.
tp GEOPHYSICS
7 . l Instrumentation
7.1.1 Horizontal Loop EM
The HLEM equipment employed on this survey was the MaxMin II unit manufactured by Apex Parametrics of Uxbridge, Ontario. The survey parameters were as follows:
Coil Separation Frequencies Reading Interval Measurements
100 meters444 Hz and 1777 Hz25 metersIn-phase and out-of-phasecomponents in percent
7.1.2 Magnetometer
The magnetometer survey was carried out using the Scintrex MP-3 proton magnetometer. The unit is manufactured by Scintrex Ltd. of Concord, Ontario. and measures the total magnetic field to 0.1 nt. Readings were taken every 25m or less in areas of relief. A base station mag was used to monitor the variation in the earth's field and the field data was automatically levelled using this data.
7.2 Discussion of Results
The results of the magnetic survey display a variation from -109 to 13988 nts with the background in the range of 900 to 1200 nts. The most dominant feature is the east-west trending magnetic high which extends from L107E to L133E at 101N and is open to the east. At L107E the high is folded around and trends northeast. The zone is partially broken from L111E to L113E. The magnetic high runs northeast until L122E where it is folded again and starts to take a turn to the north. The response is shallow, 10 to 20m, and is caused by oxide facies iron formation, because of the high magnetics and the lack of
are located in this structure as , One of the more severe breaks is theat L125E at baseline 10JN. Anotherana L113E.
EM responses. Numerous breaks indicated on the contour map, northeast trend cutting the zone major break occurs between L110E
There are some other basically east-west magnetic trends. These are felt to be ralated to mafic volcanics in the area. The EM survey identified no significant EM conductors. The occasional bumps on the EH profiles are related to magnetics or topographit/chainage errors.
The present work has defined no EM conductors, however a number of distortions have been noted in the iron formation which maybe of interest.
CONCLUSIONS
The mapping and geopnysical programs outliiud an extensive unit of magnetite iron formation within a tuf faceous-sed inicntar y sequence. This iron formation has been tightly folded along an east- west trending fold axis and has been broken by several small faults.
Although gold values from the humus sampling program were low (all less than 15ppb) slightly elevated gold values were picked up over the iron formation.
9.0 RECOMMENDATIONS
The iron formation should be tested at depth, particularly in the areas showing a slight increase in gold values. The iron formation should also be tested at depth in the vicinity of the fold nose (near L107E/103+OON) :
Respectfully submitted
NORANDA EXPLORATION COMPANY, LIMITED (no personal liability)
Th-ui. t-r Bay, Ontario December 17, 1986
Paul DegagneGeologist - Red Lak'j DistrictNorthwestern Ontario Division i^t
n#
\
Thunder Bay, Ontario December 17, 1986
V --0D. R. Carriere ' ' Division Geophysicist Northwestern Ontario Division
n 6
DATE RECEIVED: fit 16 1987
DATE REPORT MAILED:
ACME AW-YTl^-AL LABORATORIES LTD.852 E.HASTINGS ST.VANCOUVER B.C. V6A 1R6PHONE 253-3158 DATA LINE 251-1O11
GEOCMEIMI
;~ .500 BRAN SAMPLE IS DIGESTED KITH 3HL 3-1-2 HCL-HN03-H20 AT 95 DEB, C FOR ONE HOUR AND IS DILUTED TO 10 KL KITH HATER.' THIS LEACH IS PARTIAL FOR NN.FE.CA.P.CR.NG.fiA.TIJ.AL.NA.K.H.SI.ZR.CE.SN.Y.NB AND TA. AU DETECTION L l HI T (Y ICP IS 3 PPH.Ifr - SAMPLE TYPE: ROCK CHIPS
ASSAYER: J&St&f??. DEAN TOYE. CERTIFIED B.C. ASS AYER.
NORANDA EXPLORATION 1334-E2-15 FILE* 86-2753R PAGE
SAMPLE**
3136931370313713137231373
3137431375313763137731378
31379313803 1 38 13138231383
3138431385313863138731388
3 1 38931390313913139231393
313943139531396STD C
AsPPM
74227
55622
35422
232424
22242
397
41
ACHE ANALYTICAL LABORATORIES LTD. 852 E.HASTINGS ST.VANCOUVER B.C. V6A 1R6•-, - 'fcv '--.r .*v; -- '" .. . .UJMOL.E: ROCK i c f*
PHONE 293-3lSB DATA LINE 251-1011
* .two MM smt is rasci nw .w IMW ir uw MI is iitstim H so us st nun.- IMW tint wcr CMH f
DATE RECEIVEDl fEI 11 IW DATE REPORT MAILEDl
SAMPLE*
3137031371313733137431375
3137631378313803138131383
3138431386313873138831389
3139031391313923139331393
STD SO-4 67.72 10.12 3.31 .96 1.63 1.40 2.10 .99 .23
l *1V wr-lib T^fc,r wrt l )f*l*k.bVt
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NORANDA EXPLORATION (THUNDER BAY)
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48.8397.9642.9346.4468.82
63.0031.6149.1049.1396.61
35.0349.1447.7844.8731.33
96.6833.6650.8487.3149.55
A1203X
14.14.17
19.1117.14
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4.83. 13.19.81.9
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98.6399.6799.7699.6099.89
99.7299.8699.8699.7599.79
98.8799.8298.5199.7899.66
99.8999.3699.7699.8399.72
PAGE l
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mmi E. HASTINGS, VANCOUVER B.C. PR: (604)253-3158 COMPUTER LINEt251-lOll DATE REPORTS HAILED
SAMPLE TYPE l ROCK - CRUSJO AND PULVERIZED TO -100 HESN.Ait - 10 6M.1BN1TED. HOT AQUA RE61A LEAOB. H1BK EITRAC1ION, AA ANALYSIS.
ASSAYfcR __ ^^...DEAN TOYE . CERTIFIED B.C. ASSAYER
W^"'- ."'-' NORANDA EXPLORATION PROJECT 1334-E2-15 FILEt 86-2753
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31369 - 831370 l'31371 l31372 1631373 t
31374 l31375 731376 195O31377 l31378 13
31379 l31380 l31381 l31382 119313B3 l
31384 l31385 l31386 l31387 331388 t
31389 l31390 l31391 11631392 l31393 3
31394 J31395 l31396 ' 5
ACME ANALYTICAL LABORATORIES LTD. 832 E.HASTINGS ST.VANCOUVER B.C. V6A IRA PHONE 233-3156
FCOCK ICf* Atsifei-V8 X S
DATA LINE 231-1011
i .10M MM suni it rasa tin .M MM * urn W it IHHUD n M w n MM. : mtl war mn
DATE RECEIVEDi KM If IW DATE REPORT MAILED! AS8AYER. TOYE. CERTIFIED B.C. ASSAYEft.
NORANDA EXPLORATION (THUNDER BAY) PROJECT - 1334-E2-1S FILE * 86-2733
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KPOET: 016-4636 L PROJECT: 1334 PAGE 1A
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(0.5 (0.7 0.9
(0.7
1.2 2.5 0.8
(0.7 0.7
0.5 0.7 2.9 0.52.9
C.5 0.4 1.9 0.4 0.5
0.18 0.21 0.55 0.17 0.79
1 "'
0.14 0.13 0.42 0.13 0.1G
^
L113E-104*25I! L113E-104+OON L113E-103+OON L113E-102+75N
' , -. L113E-102+50N
44 62 62 52 59
(0.2 (0.2 (0.2 (0.2 (0.2
(0.5 (0.5 (0.5 (0.5 (0.5
(10 (10 (10 (10 (10
0.7 0.8
(0.6 (0.7 0.9
0.7 0.7 1.3 1.5 1.0
0.20 0.22 0.44 0.52 0.38
L113E-102*OON LH3E-101+75M
, , L113E-101+50N * : . L113E-101+25N
100 170 100
42 36
(0.2 0.2
(0.2 (0.2 (0.2
(0.5 0.6
(0.5 (0.5 (0.5
(10 (10 (10 (10 (10
(0.6 0.9
(0.8 (0.5 (0.5
1.9 2.0 2.8 0.6 0.4
0.56 0.67 1.00 ; ' '
' 0.22 0.17 . v;
* ; --'-- L113E-101+OON K;- ; 'V-:L..,. L113E-100*75N "- '^.. ' L113E-100+50N
.';, ;';H U13E-100N
20 35
130 92
170
(0.2 (0.2 (0.2 (0.2 (0.2
(0.5 (0.5 (0.5 (0.5 (0.5
(10 (10 (10 (10 (10
(0.5 0.6
(0.8 0.9
(0.8
0.2 0.5 2.9 0.8 2.1
0.06 "X^;-.0.18 . ''••r?..^: : ; 1.20 ': 0.27 0.69
L113E-99+75N L113E-99*50N L113E-99+25N
-i ,- ; . L113E-99N .--. : L113E-93+75N
71 73 51 81 69
(0,2 (0.2 (0.2 (0.2 (0.2
(0.5 (0.5 (0.5 (0,5 (0.5
(10 (10(10'
(10
(0.7
(O.b (0.8
1.1 1.3 1.1 2.8
0.48 0.47 0.39 1.00 0.59 -
M20 ra,On.... C*nad* l
unp..) l*.
Ri! Geochemical Ijib Report
REPORT: 01&-4636 G PROJECT: 1334 PAGE 2A
•ifc*tfM SAMPLE --, ELEMENT^H;- NUMBER,; . UNITS
CrPPM
CoPPM
HiPPM
Zn .PPM
AsPPM
SePPM
BrPPM
HoPPM
ASPPM
CdPPM
SbPPM
•^^^^^^" lil3E-98*50M•^ra^^P^^tll5'E-107: *2SN ':
va^^^^^^v^*^' t 1 1 f f ~ i At x*7OJ'^^^Ss^a"'-^^^P^^lli5E-106t50N
361310 C5C5
7an
4
C5C5C5 C5C5
354339 6736
1.12.88.6 3.61.2
C2C2C2 C2C2
; 14.0,;.' 11.6';v i8.o,
i6.o ;
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^A-M&.'r'-'r•;V^'-.^1'-V :' v.
•--•:7-'^.''" /; :VX1: ~ : '"' :'.'.Q .',
0.090.180.35 0.230.13
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1265
10C J
n J
2131
C5C5C5
7C5
4645
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2.72.31.42.72.8
C2C2QC2C2
12.022.0'19.014.0
' 7.4
V 2 -7'•'.-•v-ri'.fi.-s'•1.1
0.90.6
,','V:X1;-: V '.((J .
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0.190.270.120.180.25
-fr'-V'-i :- L115E-105NVv . i' LllSE-104+75'J
- L115E-104+50NL115E-104+25NL115E-104*OON
L11SE-103H; L115E-102^75N
L115E-102+5QNL115E-102*25N
-: ; . L115E-102N
8520191414
101914
814
131
CICI
"ci "CIciCICI
C5C5C5C5C5
C5C5C5C5C5
3253588469
32no592953
2.92.83.76.14.8
2.62.03.30.92.3
C2C2C2C2C2
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C2C2C2C2C2
5.816.019.011.013.0
7.46.89.2
12.09.0
1.60.91.00.90.8
0.60.81.21.50.9
ciCICICICI
CIciCICICI
CI2
CI1
CI
CICICICICI
0.480.350.310.510.35
0.170.200.540.08C. 24
L115E-101+75N•- L115E-101+50N
L115E-101+OONL115E-100*75NL115E-100+50H
V .i-:v . L115E-100+25M•' ' -'- L115E-100N
. , L115E-99+75N.v, L115E-99+50N
';^;X;;;, i ; L115E-99+25N
1913
89
13
1218131470
ciCICICI^CI
1CICICI
C5C5C5C5C5
C5C5C5C5C5
7252473554
5622706721
2.61.81.70.71.1
2.11.94.04.23.3
C2C2C2C2C2
C2C2C2C2a
6.411.014.014.013.0
11.016.06.58.9. -; .w
0.50.80.80.91.2
0.80.50,90.8
Oo*'9;
CICICICICI
CI'•* CICICI
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: ..CI.*',-: ci
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0.4&0.130.140.070.10 :
0.220.15 i0.430.340.42
:- : . L115E-99N' : L115E-98*75N
,. : -. LllfH-98*50NL L117E-108H
-' :': L117E-107+75H
5143411
6
CICI
2CICI
C5C5
7C5C5
47C20C20
- 5769
3.3.3.32.13.43.7
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0.430.310.19 ;0.390.27
L117E-107+50NL117E-107+25N
v. - : L117E-107NX, ;',- ; - L117E-106*75N
•V;'-; L117E-106*50N
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5
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C5C5C5C5C5
728074 ,6346 ,
3.93.08.83.93.2
., C2C2C2C2C2
8.010.017.07.5
11.0
0.60.60.66.4
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0.360.251.000.380.23
ItnvcW-tVo 4 C.m.p.1.; 1 Ml.Ei:F""r^r.^0"-'1' isSH!
REPORT: 016-4636
. SWPLE ELEMENT , NUMBER UNITS
if!iS^ L113E~98 *50N^M,-::~ " L115E-107S^TV^1:'-: L115E-1Q6+75N1 * ,i *',v "* ;'V ' ^ Til *sP ? AC i^TAi!•J* - "' \" ' MA i 36 *VD * JV™
:.^ -J. ;- : L115E-106*25f! i:?'---' : L115E-106+OON ;;.-,ftrVi:,'- L115E-105+75N
'.^^.- l ' L115E-105+50N 'y:',:- ' : L115E-105+25N
L115E-10SN
L115E-104+50N L115E-104+25N
L115E-103N L115E-102+75N L115E-102+50N U15E-102+21N Lllf.E-102N
L115E-101+75N L115E-101+50N L11SE-101+OON L115E-100+75N L115E-100+50N
L115E-100+25N L115E-100N L115E-99+75N
L115E-99+25N
L115E-99N . L115E-98+75N
' L115E-98+50N ^ L117E-108N
- ' L117E-107+75N
L117E-107+50N L117E-107+25N
•. ' L117E-107N L117E-106+75N
•- . V L117E-106t50H
tcirfi&RgjglEffl
B3PPM
110 24
12083 91
120 90 83
150 54
230 92 40
35
22(20
43 26 34
31 (20
32
34
26 92 64 36
140
70 190 190
38 43
32
36 27 40
.HI E
1la
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(0.2
(0.2(0.2 (0.2
(0.2 (0.2 (0.2 (0.2 (0.2
(0.2 (0.2 (0.2 (0.2 (0.2
(ft, 2 (0.2 (0.2 (0.2 (0.2
(0.2 (0.2 (0.2 (0.2 (0.2
(0.2 (0.2 (0.2 (0.2 (C. 2
(0.2 (0.2 0.3
(0.2 (0.2
(0.2 (0.2 (0.2 (0.2 (0.2
BOPHiii
uPPrt
(0.5 (0.5 (0.5(0.5 (0.5
(0.5 (0.5 (0.5 (0.5 (0.5
(0.5 (0.5 (0.5 (0.5
(0.5 (0,5 (0.5 (0.5 (0.5
(0.5 (0.5 (0.5 (0.5 (0.5
(0.5 (0.5 (0.5 (0.5 (0.5
(0.5 (0.5 0.8
(0.5 (0.5
(0.5 (0.5 (0.5 (0.5 (0.5
MDAS^matem
Ir PPB
(10 (10 (10(10 (10
(10 (10 (10 (10 (10
(10 (10 (10 (10 (10
(10 (10 (10 (10 (10
(10 (10 (10 (10 (10
(10 (10 (10 (10(10
(10 (10 (10 (10 (10
(10 (10 (10 (10'
(10
.R-CMUiUfitriMMBOBBIKuHHC
1Au
PPB
(0.8 (C.5 (0.8(0.6 0.9
(0.6 (0.7 0.9 1.2
(0.5
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1.1 0.9
(0.5 (0.5 (0.5 (0.5
1.0
(0.5 1.0
(0.5 (0.5 (0.6
(0.5 (0.7 (0.5 1.0 0.7
2.4 3.6 0.8 3.2 6.0
7.6 1.9 3.5 7.9 3.3
21-iUI
pIh
PPH
4.0 0.3 0.50.4 1,5
0.9 0.6 1.0 1.9 0.3
1.6 1.3 0.4 0.5 0.4
0.3 0.2 0.5 0.3 0.4
0.5 0.4 0.5 0.5 0.4
0.3 2.0 9.5 0.3 1.0
C.5 i.O 4.9 0.3 0.4
0.4 0.3 O.B 0.3 0.4
F— n-if-5 GeochemicaJ •*—~ jJZjgirlfa I^ab ReportJSfflKJiiii
ROJECI: 1334 PAGE 23. - . . - ... . - . . ..
U PPM
"
1.70 0.08 0.330.17
-0.651 . , . .
0.39 0.38 0.81 1.20 0.09
0.43 0.43 0.16 0.15 0.14
0.09 0.07 0.15 0.06 0.10
0.07 0.15 0.13 0.16 0.09 .
0.10 0.72 "'v-vK--.0.18 '- ••-^•— : - o.n -. i0.30 ' ,v . ' - . ,
0.14 i 0.23 1.10 0.16 0.13
0.15 0.07 0.23 . V. .•-..: -'. 0.11 ;" ..-' .
BoMhf-OrttiC "W"! l M.
•HHjl
V' REPORT: 016-4636
^ ii," SAMPLE ELEHINI•'J'^'-^'HWBEJ UNITS
IIH!^ 1H7E-106+25N .:fiaiKSfi|^iii7E*l66H
L117E-105+75N.366^5?^ L117E-105+50N ' ' -1f||f^g^lll7E-105*25N.
sflBfflmittii?^^B-3Ktttt^U^BmA^^^^mtt^tMliiBBfifiittJfcttiailMSiiM^M^iKi^ai^^g^A 1^**U r\C|jUi i•"^^^^^^^^^^^•P*^KBi^***W^BI^^^BWlP^WWWBIBHB^K^H^K^R*lMBMHBKiflHBBBE5WI
] 1" PROJECT: 1334
Crm
531
81021
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21
tt^
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51120
603626
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3.25.74.73.43. b
SePPM
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5.912.08.77.4 '•6.3
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0.30.90.60.60.9
PAGE 3A
A3PPH
tt .,.••'xr-tt
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V 0.440.53
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0.200.260.640.470.54
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4676483233
5.15.63.54.13.6
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11.05^.07,8
12.07.3
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0.40 :0.590.480.430.43 i
L119E-110NLU9E-109+75NL119E-109+50NL119E-109+25NL1.I.9E-109+OON
-•,:,.'V T- -^ L119E-108+7SH;:'^^:5 L119E-10B+50N•7?':' - V ! L1WE-108+2SN
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4.74.04.15.63.8
4.33.15.34.63.7
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3.67.4
12.08.0
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9.06.3
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0.80.30.50.80.9
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0.91.00.9
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0.63 l0.51 j0.320.65 j0.35
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L119E-107+50N, : " L119E-1Q7*25N
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0.70.50.80.91.4
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;V.0.410.44
?: 0.38H- 0.22;j:ib.2i
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REPORT: 016-4636
SAMPLE ELEMENTr KUHBEK UNITS
JsB a
PPH
~1la
PPH
HHBKBDtfftffi ^^^x^^^^ffiBM^WHMB
wPPH
GfiiMHDtt jHfSBBffi
IrPPB
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nfjff^nf^fgfBBBgy]
nTh
PPH.
F— f~— SP-i ~ Geochemical Jb~^g.V-g-. I -ab Report
ROJECI: 1334 PAGE 38
UPPH
1
^j|pl4*Hn7E-106*25N^ffe;;^Ul7E-l66N . :^*:'H*1.117E-W5*75N• :^--:"'--' ; L117E-105+50N-r - ' L117E-105*25N
6174 397373
(0.2
(J:2(0.2(0.2
(0.5(0.5 (O.:(0.5(0.5
(10(10 (10(10(10
7.24.3 6.1
: 4.55.1
0.61.0 0.50.50.5
.0.17 |0.28 i 0.17
:- 0.19 - ;0.18 i
;j!t'-:C L117E-105N^|;' - ;" ' L117E-102+50N•Wt:^.r-: U17E-102W'^J.:,f---'' L117E-101+50N-^'V"f ' UWH01H
91 ,80
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(0.5
0.61.0
(0.20.50.3
0.170.31
(0.050.140.09
r . L117E-100+7SN•^" L117E-100+50NJ L117E-100+25N
L117E-100NL117E-99+75N
2240
1504440
(0.2(0.2(0.2(0.2(0,2
(0.5(0.50.7
(0.5(0.5
(10(10(10(10(10
3.11.34.51.01.6
0,30.31.20.70.6
0.090.130.43o.3i ;0.16
1
L117E-99+50HL117E-99+25NL117E-99HU17E-96+75NL117E-98+50N
L119E-110HL119E-109+75NL119E-109+50NL119E-109+25N
' L119E-109+OON
....f,-;. L119E-108+75N•&W. L119E-108+50N
' L119E-108+25H.-.- L119E-108+OON0 , ' U19r: '.07*75N
49100
97no130
5440244137
(20(20
274864
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(0.2(0.2(0.2(0.2(0.2
(0.2(0.2(0.2(0.2(0.2
(0.50.5
vO.5(0.50.6
(J. 5(0.5(0.5(0.50.6
(0.5(0.5(0.5(0.5(0.5
(10(10(10(10(10
(10(10(10(10(10
(10(10(10(10(10
4.42.51.01.3
(0.9
2.41.66.61.6
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3.02.42.12.12.6
0.50.60.80.81.2
0.50.50.30.60.5
(0,2(0.20.30.60.5
0.170.21 j0.250.130.49
- . .. . l0.140.190.120.200.15 j
. . . . . . .. . i(0.05(0.05o.io - '. : - - . T :0.180 - 16 ..-:;4;'V:;:J-v-
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•••••.•;V L119E-107+OONi \ L119E-106t75N•^ :;i :..-.-;..L119E-106*50N
87 -83
160110120
(0.2(0.2(0.2(0.2(0.2
(0.5(0.5(0.5(0.5(0.5
(10(10(10(10(10
1.52.01.37.92.8
0.50.70.90.70.6
0.18 ' . -0.210.3J
. 0.33 ,0.25
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-^ — — '-V - ———— '- ———— : ———— - ———————— - —— : ——————————————
853961 4246
(0.2(0.2(0.2 (0.2(0.3
(0,5(0.5(0.5 (0.5(0.5
(10(10(10 (10*(10
2.71.03.47.8
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0.40.50.8 0.40.7
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54w r,n.M,i RO m^mW//// c""V' M"""". W^^^^(•hCw'Miflfc:::n BfflHMBMlclt, USA^^
.^'.y REPORT: 01&-4&3&,^: - : ;- SAMPLE ELEMENT^^i", NUMBER UNITS
wMil BCDNCDAR-- (BI-EGGmM
CrPPM
j^aa
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**t.?*~f:~-.S'J^TH^7?'. -1 'Wl'-P,samsamm5 -
T PROJECT: 1334
HiPPM
ZftPPM
AsPPM
SePPM
FrPPM
MoPPM
GeochcmicaJ I^b Report
PAGE 4A
ASPPM
CdPPH
SbPPM
JililiPv UWE-I02+2WI^S^f^**'" LI WE-102N^SfcNra^^ L119E-10U75N^^^^^f? lil9E-iOU50N^||^L119E-10U25N '
879
C520
CI1
CI<•l1
\5C5C5C5C5
886452
12076
3.13.42.63.03.5
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0.40.50.40.40,3
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0.30.51.61.50.9
0.070.180.520.430.26
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0.8O.S0.71.11.6
0.300.140.230.310.52
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v REPORT: 016-4636
j-.' SAMPLE ' ELEMENT':'ig.:--- NUMBER UNITS
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32
CI16
CICICICICI
C5C5C5(5C7
C5C5C5C5C5
20C2033-35
C38
C20594771 ,54 ..-.
3.46.25.14.5
10.0
3.84.03.55.04.5
C2C2C2C2
6
C2C2C2C2C2
8.316.011.08.5
32.0
9.29.16.4
11.010.0
1.10.60.40.9
C0.8
1.10.90.70.80.7
CICICICICI
^ ci,V 'V-'.:- CI "J ^' * v Xi --c-;.;
' a ^Cl ; :g
CICICICIC3
, 1tf .
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0.410.510.460.550.35
0.390.360.630.410.34
L129E~101N-' :L129E-100+75N -L129E-100+50N ,L129E-100*25NL129E-100N •y; , .
r 94425
. 9-. '16
1CICICICI
C5C5C5C5C5
5559W t
' 34;^59
3.6u 4.6
/•' 3.9. 5.6
: 6.5
C2C2C2C2C2
7.98.2
10.07.1
10.0
0.7fl.7-0.80.90.9
'^Z-VW•' .'.:;"C1 *Wv w'XK'"'' -'\^X1;4:^
' ci vtf* ,-- v^
CI ";C1
: ci:^y^i ?;...g*j:*;.
0.380.480.530.500.73
L129E-99+75N- L129E-99+50N
; - ' : ;- -:.' -' : ^;S^ V
: 'K, ;.r v- ; .'V :;.-'^ :l\.i'.".-' '
2130
' * ' -' i. A. ,
^ . v
11
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C57
6429
. '- : *.-
. - ; '^'
5.16.8
•. t - : '
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7.95.8
- -' ' - --''.
0.71.2
•'^.••:": i5?.--'-?v.
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V; ;Cl,: '
^l..0.501.00
^^^ -
fci4Wlar-{Vcjt A Compvfi) lid.
;;,r;r;:-,'
REPORT: 016-4636
SAMPLE ELEMENTNUMBER UN ItS
i*B~IEGNDAR-GLEGG 'jrffiSSS-1: tfkli^-f^;
-,' ..•TT*CJ.-. #,UJ
WSsyf-fvRgpIUV-JV-J9U
8PB3I^E^JS^ jyjU&i k&i&fcllSS!
"J [ PROJECT: 1334 PAGE SP
B3PPH
laPPh
UPPH
Irm
Aum
ThPPM
uPPM
•v S*;'s* L125E-1Q2+25N; ?; O:" ': "-: U25E-102+OON r•:".:,','V',1125E-101*75H;: - J i-- , L125E-101+50N
L125E-101t25W
, 5174
2103861
(0.2(0.2(0.2(0.2(0.2
(0.5(0.50.7
(0.5(0.5
(10(10(10(10(10
0.60.9
(0.71.0
(0.5
0.40.61.00.40.4
0.130.190.39o.ii ;'0.14 ;
;
L125E-101' BLO" -?A'~'- L125E-100+50N'
L125E-100+25NLlJaE-100*OONL125E-99+75N
L127E-102+50NU27E-102+25NL127E-102NL127E-101+75NL127E-101+50N
6380BO6552
8440495053
(0.2(0.2(0.2(0.2(0.2
0.3(0.2(0.2(0.2(0.2
(0.5(0.5(0.:(0.5(0.5
(0.6(0.5(0.5(0.5(0.5
(K*.: '
(10(10(10
(10(10(10(10(10
- * if
xO.6(0.9
1.00.7
5.21.61.0
(0.6(0.5
0.40.94.70.70.7
1.30.50.70.70.6
o.ii ;0.30 (0.95 !0.23 \0.18 -
t. . r |
0.48 ?0.15 i0.26 j0.25 \0.24 j
•" "' ' " ' ' " ,
L127E-101+25NL127E-101NL127E-100+75N ftL127E-100+75N BL127R-100+50N
L127E-100+25NL127E-100NL129E-103NL129E-102+75NL12 CJE-102*50N
L129E-102+25NL129E-102+OONL129E-101+75NL129E-101+50NL129E-10U25N
70437269
150
9394n
210120
17086
2106652
(0.2(0.2(0.2(0.2(0.2
(0.2(0.2(0.2(0.2(0.2
(0.2(0.20.2
(0.2(0.2
/r, c W* J
(C. 5(0.50.50.6
(0.50,6
(0.5(0.5(1.5
(0.5(0.5(0.5(0.5(0.5
(10(10(10(10(10
(10(10(10(10(17
(10(10(10(10(10
(0.60.81.52.0
(0.8
(0.6(0.3(0.6
1.3(2.8
1.02.]2.11.71.6
1.20.71.01.41.5
5.92.30.71,4
16.0
1.60.61.40.70.3
0.37 l0.22 j0.32 !0.38 f0.41 i t
i0.34 |0.55 , |0.23 !-0.43 |2.20 . -
i
0.36 i0.20 J0.470.24 r0.12 j !
L129E-101N -.L129E-100+75N VL129E-100+5QH .L129E-100*25N -,L129E-10WJj:. v .;X; .
60K
230. 58
94
(0.2(0.2(0.2(0.2(0.2
(0.5(0.50.6
(0.5(0.5
(10(10(10(10(10
2.91.60.81.62.2
0.50.61.30.51.1
0.15 :0.21 ' ! i0.330.19 . ' -.,- , . j ;0.36 - ' - : . ' - i j. . - i
r
U29E-99+75NL129E-99+50N .
94290
(0.20.3
(0.5(0.5
(10(10
2.52.4
0.82.0
0.24 l0.67 i
/j , GoocheniicaJ P l,ah Report
^r REPORT: 01G-4G36 ( COMPLETE ) ~] [ REFER!:HCE INFO: REE* KAH LAKE
CLIENT: NQRANDA PROJECT: 1334
EXPLORATION CO. LTD. SUBMITTED BY: I. PESKYDATE PRINTED: 2-DEC-86
^^ii;''V; •'"'•-.'•'\^
ilsl^^^ ORBEB-j^S^J^tis'T"' 1 ' , "V
JP|K®;C: -V V-..^|^^.; -^ ,.-;;.'jV^
#V*V".'- 3:i-^'A -.;-; *-v-.;;-".:v. -.: 5.v ' :V : - s-".-c'" ; - 7
*V " -"**
l . u^^ *^*-'
Co
NiZnAsSeBr
ELEMENT; - -;
Chroiiu*Cobalt
NickelZincArsenicSeleniuaBroiine
NUMBER DFANALYSES
237237
237237237237237
LOUER V v; ,^vI'ETECIION LIH1I EXI8ACIIOM -f;.'
•' - ''^-.- " .*,V- r ~;?-\-
l PPH ^'•"^ ! i?^-1 PPH •'.'•:'--'T.' 1 ;
1 PPHi PPH : ;
0.1 PPH1 PPM
0.1 PPH
"'••M '^^^^ifei'i--'^"-
•" - " , - -- -;i -' ". , ' r." ~ , i - '-.-
Neutron Aciivatfon V- "Neutron Activation
Neutron NivationNeutron ActivationNeutron ActivationNeutron ActivationNeutron Activation
89101112
131415IE.17
HoA3CdSbBa
laUIrAuTh
MolybdenumSilverCadi i usAntinonytar iui
" Tantalu*T'jr^stenIridiuBGoldThoriui
237237237237237
::37237237237237
0.1 PPM1 PPH1 PPM
C. CI PPM'. PPM
0.1 t 6*0.1 ppri
1 PFB0.1 PPB0.1 PPM
Neutron ActivationNeutron ActivationNeutron ActivationNeutron ActivationNeutron Activation
Neutron ActivationNeutron ActivationN'eutron ActivationNeutron Activationfbutron Activ3tion
18 L1 Ur am us 237 O.Cl PPM Neutron Activation
SAMPLE TYPES NUMBER SIZE FACTIONS
-. -'A-- . —
NUMBER SAhUE PREPARATIONS NUMBER
SIEVE —— 14- —— — — — — ajfc-
REMARKS: < HEANS LESS THAN.
I. PEERY
LOCATION
LAKL - GEOLOGICAL MAPPING
133/ P
DESCRIPTION SAMPLE i1/
31E/102+75N 27E/99+88N 26E/102+38N 26E/102+38N 25E/102+60N 24E/102N "24E/+70E100+53N 21B/BL-100 20E/105+30
17E/105+80N 14E/102N 10+38E/B.L. 10-T-25F/3.L. 09+75/100+60 N 09+75/105+25N 12F./BL-100N 0+38E/B.L. 2F./112+20N 8+20F./105+50N .1+10E/99N 8E/106+12N 4+25E/106+73N 5+25E/106+15N
Intermed-mafic flow; foliated, n-^ty trace WR PY 31369Banded Tuff-red alt mafic i. felice 31370White sugary quartz vein-clean- WR 31371Narrow chloritic feld, horizon around Q.V. 31372Sheared B2 with tracer Py 31373sheared B 2carb, quartz-trace Py 31374MAG-GRUT-HELD I.F. - tightly folded 31375 r 2 - Carb vein - rrein Py - 153^ in Bx 31376
sheared carb rich - felice byte WR 31377II II M M II II 't-l O7O
it M H H M H im 31379Fiorite byte 31380interned - chloritic voll rock 31381 poryby (qtz') byte in zone WR 31382white clean sugary qtz vein 31383sheared tuff-rusty chloritic traced Py 31384e.g. intermed intrucive - possibly flow WR 31385
tuff - magnet i le 31386intermed tuff - felice ble oval 31387sheared tuff-red - very chloritic 31388intermed tuff- red - laminated 31389qtz vein in mafic -both barren 31390rusted contact - tuff/flow 31391intermed tuff - rusty, slight sheared 31392Q.V. barren - glassy - smokey qt. 31393lamprophyre with qtz in mafic W.R. 31394
intermed - mafic flow Py l* Po 31395intermed flow- W.R. ( felict 31396
FF.B
ea
run 20 WR i As
S3264.00 with prep
DUPLICATE COPYPOOR QUALITY-ORIGINAL
TOFOLLOW
REQUISITION FOR ANALYTICAL WOHK
ACME ANALYTICAL LABORATORIES LTD.852 East Hastings Vancouver, B.C. V6A 1R6 Telephone: 604-253-3158
Telex: 04-53124
File No.
Telex: 04-53124 " . _____________l^-o. / e?7Z'O'?________ fcrc . /S** Ci
j, Al, As, G?Bi, Ca, Cd, Ce, Co, Cr, Cu, F, Fe, Hg, In, K, La, LI, Mg, Mn, Mo, Na, Nb, Ni, P, Pb, Pd, Pt, i, S. Sb, Se, SI, Sn, Sr, Th, Tl, Tl, U, V, W, Y, Zn, Zr, pH, ICP, Whole Rock, Fire Assay.
yze by fPeclal Q Assay D metnods ,he enc!osed Prepared ' D Sample8 Normal tt Geochemical)*^ Unprepared D
ase provide special Instructions and/or additional remarks . '
^ JL.
Total No. Samples. No. Parcels in Shipment.
Type of Samples No. of Samples
Samples Numbers (Series) Elements to be Analysed Remarks
&
3/3 y 7. J
Size Fraction to be analyzed (Geochem. Disposal of Oversize: Store 1 month Q Disposal of Pulps: Store 1 year D Date Shipped.——.———..——-.—————.
Dispose of DDispose of Ovi
Return O Return D
Prepaid (2- Collect O
Results and Invoices to be Sent to:ncj o^- lZcioro^"ioV- f^e., LAtJ.c
S^Ffesults D
D^lnvonvolce D
Samples Submitted ByClient Projec Number.
Samples Received By. Date Received_____
'•muri td .
Trtrx: IMUl
NORANDA EXPLORATION CO. LTD,I. PERRY?40 ALLOY DRIVE
; THUNDER BAY, ONT. ? P7B 5G2
Invoice t 121885, Pag* l
Date i 3-DEC-66
Raport No* OiA-4636 Project i 133*. Reference! REFM KAfl LAKE
337 Analyse* of HUMUS PACKAGE OPT II at * 9.75 * 2310.75 Silver Arsenic Ooid Broml ne Cobalt Iridium Nickel
Thor lUM Tungsten
Samp i e Preparation 237 Samples of SIEVE
Subtotal
CadmiumChromiumflolybdenumAnt i monyTantalumUraniumZinc
-10 at * 0.90 f
Invoice Total*
213.30213.30
i 23t0.75
i 213.40
* 2524.05 Cdn
THIS IS A PROFESSIONAL SERVICE ACCOUNTS DUE WHEN RENDERED
S20WSSEM59 52O06SEM34 KAWASHE LAKE
Natural Resources
LOGICAL - GEOCHEMICAL DATA STATEMENT
File.
TO BE ATTACHED AS AN APPENDIX TO TECHNICAL REPORTFACTS SHOWN HERE NEED NOT BE REPEATED IN REPORT
TECHNICAL REPORT MUST CONTAIN INTERPRETATION, CONCLUSIONS ETC.
igb*t*.Oi
Type of Survey (s) GacIoQy, MAK,Township or Ar.a Kawashe Lake G-2081Claim Holder(s) Noranda Exploration Company, Limited
Noranda Exploration Company, Limited Author of Report Ian Perry * D ' R - c*rriere________ Address of Author P-O- Box 2656, Thunder Bay, Ontario Covering Dates of Smvg, 01/08/86 - 14/12/86_______
(Enecutting to office)
Total Miles of Line Cut_____60 **—————————.———.
SPECIAL PROVISIONS CREDITS REQUESTED
ENTER 40 days (includes line cutting) for first survey.
ENTER 20 days for each additional survey using same grid.
Geophysical
—Electromagnetic.—Magnetometer—
DAYS per claim
20
40
-Other-Geological.Geochemical.
20
AIRBORNE CREDITS (Special provision credit* do not ipply to airborne lurvcyi)
Magnetometer. electromagnetic. . Radiometric(enter dayi per claim)
; December 23/86 sip.N ATTIRE-
Res. Geol.. .Qualifications.Previuus Surveys
Fi 1*- No. Typer" —— Date Claim Holder
•37 (6/79)
Author of Report or Agent
MINING CLAIMS TRAVERSED List numerically
(pr.fi>) (number)
.8114.7.9..... ................811582.
.8U4B1....................S1190A.,811482 811905
811483
811484
811906
811907
811485 811908
811486 811909
811506 811910
8.n.50.7.
811508
811911
811912
811509
811510
.811511.
811512
811513
.8.11514.
.8AA5.76.
.8JU577... 811578
TOTAL CLAIMS——35,
GEOPHYSICAL TECHNICAL DATA
GROUND SURVEYS — If more than one survey, specify dat.i for each type of survey
Number of Stations. 2168
Station interval __!_______25 m Profile scale 1 cm - 10*
.Number of Readings 2168
.Line spacing ——.————-100
Contour intrrval 0. 1000. 2000. 5000. 10000
c
Instrument Scintrex MP-3- .1 NTSAccuracy — Scale constant —
Diurnal correction mrihnd Base station magnetometer
Base Station check-in interval (hours) 30 sec-.-———————.—————.- Base Station location and value Southeast Part of grid 59738
l S O cti
Instrument __Ape* Mav Min 11
Coil configuration
Coil separation --—.
Accuracy ——— I ——
Method:
100 m
Frequency.
Parameters
C3 Fixed transmitter G Shoot back 6D In line Parallel lineLLL UT 1777
(specify V.L.F. nation)In phase and out of phase components of field
PH*
Sd
Instrument
Scale constant
Corrections made.
Base station value and location
Elevation accuracy.
Z
P
Cu
Z
V)
Instrument ——————————
Method [~~1 Time Domain
Parameters — On time ———- Off time ——.
Q Frequency Domain
_ Frequency _____
_ Range—^——————
— Delay tir.c ———^
— Integration time__ .
Power.
Electrode array —
Electrode spacing .
Type of electrode
GEOCHEMICAL SURVEY - PROCEDURE RECORD
Numbers of claims from which sample, ffc-n B"^80, 811481. 811484. 811906. 811903, 811511. 811905._____________________________811904. 811510, 811578, 811577. 811509, 811508, 811576,
811579, 811513, 811507
Total Number of Samples. Type of Sample.
237Humus
Average Sample Weigh Method of Collection
(Nature of Material) *____10 02.
Hand
Soil Horizon Sampled———Humu8Horizon Development Moderate - Poor
Sample Drpth 5 cm - l TO —————
Terrain— Flat
Drainage Development——P.QQEEstimated Range of Overburden Thickness.
O - 75'
-10 mesh sieve
ANALYTICAL METHODSValues expressed in: per cent
p. p. m. p. p. b.
a a a
(Ag) (Mo) (As)(circle)Cu, Pb,
Others Cr. Se. Br. Cd. Sb. Ba. Ta. W. Ir. Au,-, ,, . , . , Th, V Field Analysis (.__________________ tests)
Extraction Method. Analytical Method. Reagents Us:d——
Field Laboratory Analysis No.(___________ .tests)
SAMPLE PREPARATION(Intludci drying, Kreeninf. crushing, uhing)
Mesh size of fraction used for analysis————
Extraction Method. Analytical Method. Reagents Used ^^.
Commercial Laboratory (————————————— Name of Laboratory—JU-LJ-_______Extraction Method___———————————
Neutrow Activation
.tests)
Analytical Reagents Used
GcncraL General.
-''.' -'. -. - j .- — ~ \' r - - •••.*. ... -., * .""i '' . - -V.. . . v. ' . - - ;. -'l
^•'"2^:'-" '^31.; '* ,-
^rsx -- oj^mx-^ v^vi?' ^^-^:l^^'^Eb^-'-- ^ /^^ *^h.
-rFS-*~J——*^r-i l t Wi-' V\ f x'i'...-' t-, i.. ' -^
G5O/.OGXvo
LOCATION^_____U, i
oso lL^- - i^i -^—~ " ~ ~ " ~ ~" """"
x^.. J
3N
2 N
III N
O N
109 N
IDS IM
107 N
l C
05 N
104 N
103 N
101 N
100 N
99 N
98 N
97 N
96 N
KAMINISKAG LAKE
SAMPLE LOCATION 8 NUMBERI 2 - DIORITE
EIQ- BANDED IRON FORMATION (OXIDE)
C 2 - INTERMEDIATE FLOW
C 2 P- INTERMEDIATE FLOW PILLOWED
C 3t- INTERMEDIATE TUFF
C 3ta- ASH TUFF
B 2 - MAFIC FLOW
B 2 P MAFIC FLOW PILLOWEDLJ
c\J O
Ld rO O
LJ
STO
UJ
LOO
UJ
O)o o
UJ
00o
200 30C 400 500
metres
PROJ.NO.: 1334
SCALE:
l ^5000
GEOlOGY
PROJECT: KAM LAKEDRAWN BY : J M P DATE: bLPT 1986
norandaNORANDA EXPLORATION Co. LTD. - THUNDER BAY
52086SEeeS9 52096SE0034 KAWASHE LAKE 200
18 N
6 N
115 N
TL 114 N
13 N
112 N
O N
109 N
108 N
107 N
104 N
103 N
02 N
101 N
BL 100 N
99 N
98 N
97 N
96 N
95 N
94 N
93 N
LOCATION MAP
l : lj600,OOO
520
BL 101 + 00
RF
PRO ,! NO
NTS 520/6
SfAi E
l 5000
HUMUS SAMPLING MAP
Au (ppb)
DRAWN BY P. DEGAGNE DATE .DEC, 1986
norandaNORANDA EXPLORATION Co LTD - THUNDER BAY
S2006SE(W59 S2006SEC034 KAWASHE LAKE 210
Ld O O
O
11900N.
11700N.
1500N.
1300N.
11100N.
10900N.
0700N.
10500N.
10300N.
10100N.
9900N.
9700N.
9500N.
9300N.
Instrument ReidDatum
Contour Interval
Conductor Axis
100m Mm Oml l l i i
SCIN MP-3 i TOTAL : 59000.0 nT
100m 200mi
RAMMAGNETOMETER SURVEY
PROJECT: KAMINISKAG LAKE PROJECT # : 1334 BASELINE AZIMUTH : 90 Deg.
SCALE = 1: 5000 DATE : 8/ 1/86
SURVEY BY : J.M. NTS : 52 0/6FILE: M1334KAM
NORANDA EXPLORATION
520665ECOS9 52066SEW534 KAWASHE LAKE 2S0 S*rM f MM 140 UMT t NOIUNM EXPLOMHON
Ooo
UJooCM O
LJ OoCOo
LJ Oo o
LJ OoLOo
LJ OoCD O
LJ O Or- o
LJ O O COo
LJ O O O) O
LJ O Oo
LJ Oo
LJ OoCN
LJ O O CO
LJ O O
LJ O O IT)
LJ O Oto
UJo or--
LJ O Ooo
LJ O O CD
LJ O O OCM
o oCM
LJ O OCM CM
UJ OoCOCM
LJ O O
CM
UJ O OmCM
LJO OCDCM
LJ Oor^CM
LJ O O 00 CM
OoO)CM
Ld O OoCO
UJooPO
LJ OoCMco
LJOoCO
11900N.
11700N.
150CM
11300N.
11100N.
10900N.
10700N.
10500N.
10300N.
10100N.
99 CW
9700N.
9500N.
9300N.
Instrument
FialdDatum
SCIN MP-3
TOTAL
59000.0 nt
Contour Interval : 1000 nT
( 1 passes through o 9 pt. Manning Rlter.)
( 1 passes through a 3 pt. Manning Filter. )
Conductor Axis
100m 50ml l l
N
200m
MAGNETOMETER SURVEYC FILTERED CONTOUR PRESENTATION )
PROJECT: KAMINISKAG LAKE PROJECT # : BASELINE AZIMUTH : 90 Deg.
1334
SCALE = 1: 5000 DATE :
SURVEY BY : J, M. NTS :
FILE: M1334KAM NORANDA EXPLORATION
8/ 1/86 52 0/6
520C6SE3059 5200BSEe®34 KAWASHE LAKE 330 SwM t MM 140 R*gM**d UMT i NORANCM EXPLWWTON
llV
li
OOJV,
52096SEeeS9 S2006SEe034 KAWASHE LAKE
o oo
LU Oo
LJ OoCNJ
LJ O O
UJ Oo
UJo oLO
LUoo to
o o
UJo o00
LJo oO)
UJoo oCNJ
LUooCM
O O OJCM
LJ OoroCM
OO-CM
LU O OLOCM
LJ O OtoCM
LU O O[\CM
UJo oCOCM
LU Oo enCM
LU O O Oro
LJ o o
LU O O CM
LJ O O ro ro
/
11700N
11 SOON
8II9I
300N
11100N
8 M 48 5
10900N
10700N
ei i 484 10500N
9700N
\
7
BASELIN
Instrument : MAX MIN 11
Coil Spacing : 150m
Vertical Scale: 1 cm - 20%
Frequency : 444 h;
In Phase : ^ M
Quadrature : .. A ... A ... .
100m 60mi i i i i
100m 200mj
KA1HLEM
FREQ. 444 MERTZPROJECT: KAMINISKAG IAKL f J KOJECT
BASELINE AZIMUTH : 90 Dog: 1334
SCALE ^ 1: 5000
SURVEY BY : D.H./J-M.FILE: H1334KA1
NORANDA EXPLORATION
: 8/29/86 : 52 0/6
52006SEa059 52066SEe*34 KAWASHE LAKE250 O.OE l 10UO.ON S*rtol f HW 1*0, NOfHNM EX
11700N.
11 SOON.
11300N.
1110ON.
10900N.
10700N.
10500N.
10300N.
10100N.
9900N.
9700N.
9500N.
9300N.
Ld O O
O
UJ O O CM O
LJ O O CO O
Ld O O
o
UJo oin o
LUooCDo
o oLJ O O 00 O
Oo o o
Ld O Oo
SII9
/
Instrument : MAX M!N II t
Coil Spacing : 100mVertical Scale: 1 cm - 20XFrequency : 444 HzIn Phase i+f—M—Quadrature 1.+...+.....
KAM LAKEHLEM
FREQ. 444 HER T ZPROJECT: KAMINISKAG LAKE PROJECT
BASELINE AZIMUTH :- 90 Deg.
SCALE - 1: 5000SURVEY BY : D.H./J.M. M T - :
FILE: H13,^..v,' NORANDA EXPLORATION
c 7 i
52006SE8CS9 520a6SE0034 KAWASHE LAKE 2G0
IjJ LJ0 00 0o --"" T
UJooCM1
UJooro,
LdOOTfT ———
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BASELINE AZ MUTH : :
SCALE - 1: 5000 . - :
SURVEY BY : D.H./J.M. V :FILE: H133-K-:
NORANDA EXPLORATION
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S2006SE0059 52006SE0034 KAWASHE LAKE
Instrument : MAX MIN l!
Coil Spacing : 100mVertical Scale: 1 cm - 20XFrequency : 1777 HzIn Phase ; M MQuadrature i*..........
1MB
KAM LAKEHLEM i ;
FREQ. 1 //; 'i! '-VPROJECT: KAMINISKAG LAKi I'ktVIM /;
BASELINE AZIMUTH : i)0 in-,;.
SCALE ^ 1: 5000
SURVEY BY : D.H./J. M. Nib :FILE: H1334KAM
NORANDA EXPLORATION
280