geophysical surv assessment repo · 42a06nw2002 2.18193 godfrey 010 quantec consulting inc. p.o box...
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42A06NW2002 2.18193 GODFREY 010
Quantec Consulting Inc.P.O Box 580,101 King Street
Porcupine, ON PON ICOPhone (705) 235-2166
Fax (705) 235-2255
Quantec Consulting Inc.
Geophysical Surv Assessment Repo
Quantec
R EIVEDo 1398
GEOSCIENCE ASSESSMENT OFFICE Q *rt f .-,. v. :-
J-
Regardingthe TRANSIENT ELECTROMAGNETICBOREHOLE SURVEYSaver toe SOUTHEAST GODFREY PROJECT,Godfrey Twp, ON,on behalf ofMONETA PORCUPINE MINES INC.Timmins, Ontario, Canada
OCIQCIOCIQCI QCIC380S Coulson, C Williston
July 1997 Porcupine, ON
MONETA PORCUPINE MINES INC. Godfrey Twp. BHTEM
42A06NW2002 2.18193 GODFREY 010C
1. INTRODUCTION .................................................................................................................3
2. GENERAL SURVEY DETAILS ........................................................................................... 4
2.1 Location..................................................................................................................... 4
2.2 Access........................................................................................................................ 5
2.3 Survey Grid ................................................................................................................5
3. SURVEY WORK.................................................................................................................. 6
3.1 Generalities................................................................................................................ 6
3.2 Specifications ............................................................................................................6
3.3 Personnel...................................................................................................................7
3.4 Instrumentation......................................................................................................... 7
3.5 Parameters................................................................................................................. 7
3.6 Data Presentation...................................................................................................... 8
4. SUMMARY INTERPRETATION AND RECOMMENDATIONS......................................... 10
APPENDIX A: Statement of Qualifications APPENDIX B: Survey Procedure and General Theory APPENDIX C: Instrument Specifications APPENDIX D: Production Summary APPENDIX E: List of Maps APPENDIX F: Profiles and Plans
Figure 1: General Survey Location of Godfrey Twp...................................................................... 4Figure 2: Borehole TEM 4-Axis Profile Format for Southeast Godfrey Project..............................8Figure 3: Borehole TEM Lin-Log Profile Format for Southeast Godfrey Project. ...........................9Table l: Survey Coverage for 3-D Borehole Survey at Southeast Godfrey Project........................ 6Table II: System Parameters for Borehole Survey at Southeast Godfrey Project.......................... 7Table III: Coil Conventions for Borehole Survey at Southeast Godfrey Project............................ 7Table IV: Borehole Profile Specifications at Godfrey Twp............................................................. 8Table V: Anomaly Table for God-97-1 at Southeast Godfrey Project.......................................... 10
Quantec
C380 MONETA PORCUPINE MINES INC. Godfrey Twp. BHTEM
* QCI Project No:
* Client Name:
* Client Address:
* Project Name:
* Borehole Surveyed:
* Survey period:
* Survey Type:
C380
Moneta Porcupine Mines Inc.
104 Pine St. South Timmins, ON P4N7W9
Southeast Godfrey
GOD 97-1
June19TH to23RD , 1997
3D LPTEM Borehole
* Client Representatives: Rainer Skeries
* Objectives:
1. Exploration objectives:a) to determine the possible existence of any sulphide conductors be
low a drilled RSIP anomaly which intersected gr. arg. from 40-119 meters.
2. Geophysical objectives:a) to utilize the Borehole method, based on its deep penetration capa
bilities, to detect geophysical targets.
Report Type: Summary Interpretation suitable for Assessmentsubmission.
Quantec
C380 MONETA PORCUPINE MINES INC. Godfrey Twp. BHTEM
2.1 LOCATION
* Township:
* Province:
* Country:
* Nearest Settlement:
* NTS Map Reference:
Godfrey Township
Ontario
Canada
Timmins, ON
42A7SW
ONTARIO
Southeast Godfrey Project Area
Figure 1: General Survey Location of Godfrey Twp..
Quantec
C380 MONETA PORCUPINE MINES INC.Godfrey Twp. BHTEM
2.2 ACCESS
* Base of Operations: Porcupine, ON
* Distance by Land to Grids: *10 kilometres NW of Timmins, ON
* Mode of Access: by truck approximately 5km west on Hwy101; then a further 5km north on Hwy 576
. Nearest Highway: Hwy 576
* Mode of Access to Property: 4x4 truck
* Mode of Access to Grid: foot
2.3 SURVEY GRID
* Coordinate Reference System. Local cut and picket survey grid (Non UTM)
* Established by: Prior to survey execution by MonetaPorcupine Mines Inc.
* Method of Chaining: L inear, Metric
. Line Direction: N0520E(Gnd E-W)
* Line Separation: 1 00-200 m
* Station Interval: 25m
^ Tie/Base Lines: TL8+OOW, TL5+OOW, BLO+OOE, TL10+OOE
* Claim Covered by Borehole1 : 96855
* Claims Covered by Project Area: see Grid Location map (Appendix F)
1 Ref. Mining claim numbers from Moneta Porcupine Mines Inc. Grid/Claim Location Map (Appendix F)
Quantec
C380 MONETA PORCUPINE MINES INC. Godfrey Twp. BHTEM
3.1 GENERALITIES
* Survey Dates:
* Survey Period:
* Survey Days:
* # Boreholes Surveyed:
* Total Survey Coverage:
June19TH and23RD , 1997
2 days
1 (read time)
1
360m
HOLE
GOD 97-1
LOOP
COLLAR
START (depth m)
0
END (depth m)
360TOTAL
TOTAL (m)360360
Table l: Survey Coverage for 3-D Borehole Survey at Southeast Godfrey Project.
3.2 SPECIFICATIONS
. Method:
* Technique:
* Configuration:
* Output Power Stage:
* Dimension:
* Borehole Name:
* Borehole Location:
* Borehole Azimuth:
* Borehole Dip:
* Loop Configuration:
* Loop Size:
* Loop Location:
* Sampling Interval:
Transient Electromagnetic
Profiling
Borehole
Low Power
3D Survey: X, Y, S Z components
GOD-97-1
L800S @ 25E
2320 (Grid West)
-500
Collar
400x400m
L6+OOS-L10+OOS, 2+OOE-2+OOW
10m
Quantec
C380 MONETA PORCUPINE MINES INC. Godfrey Twp. BHTEM
3.3 PERSONNEL
* Project/Field Supervisor: Sherwood Coulson, Porcupine, ON
* Field Assistant: Todd Chevrier, Timmins, ON
* Data Processing : S . Coulson
* Interpretation: S . Coulson
* Report Preparation : Christine Williston, South Porcupine, ON
3.4 INSTRUMENTATION
* Receiver:
* Receiver Coil:
* Transmitter:
* Power Supply:
3.5 PARAMETERS
Geonics Digital Protem (3 channels, 20 time gates)
Geonics BH43-3D probe
Geonics EM-37 (30 Hz, SO*}*) duty cycle)
Geonics GPU-2000 motor generator (Honda 5.5HP with Georator 2.8KVA @ 400Hz alternator)
Pulse repetition frequency:Gains:Integration number:Loop Size:Current:Turn-off times:Gate positionsSynchronization mode:
30Hz3-41 5 seconds400m x 400m1 5 Amps250 MS80-61 36 us (see Appendix C)Crystal Clocks
Table H: System Parameters for Borehole Survey at Southeast Godfrey Project
* Coil Conventions:
COMPONENTZXY
COIL ORIENTATIONPositive Anally Up holePositive westPositive south
Table III: Coil Conventions for Borehole Survey at Southeast Godfrey Project.
Data Reduction: nanoVolts/metre
Quantec
C380 MONETA PORCUPINE MINES INC. Godfrey Twp. BHTEM
3.6 DATA PRESENTATION
* Profiles:
Profile Formats
f of ProfilesProfile Scale:Components Profited:
1 ) 4-Axis Linear (see Fig. 2) 2) Singular Axis Lin-Log (see Fig. 3)81:2000
3D survey: Total Field, X, Y and Z
Table IV: Borehole Profile Specifications at Godfrev Twp..
: ! -4SOOO.-P/ — —— v ~-^^~Sr^T^-- —— ^ 1-45000 T Borehole GOD-97-1 - Total Heldj 1' '- -- ~~--~^IIIZ^^r^III^-— —— — -^^T3 " CoDarkwp |i 30000 l'/, k i -l-f'r^ \ : H IM , , , . , i , , i~rr i . , i 1 l 1 1 ' 1 0 ^'lle 1 : ' 00t:
H z f ,U\ ,' \ l
i i 1 15000 1' __ \ ^— , '-C'- "~ ---. ^4*0*00
i - 15000. - , ' - -' ~- r - ." -- ^ ~ -- " " - j- isoo. L
i 7 i ' .-•----•. '" ij S 200 - ^ -' ' . -- . - -1500
' -.CO-
li 50 100 15C 200 250 300 350
( ; 0 E f l H 1 -r.ft",:]
MONETA PORCUPINE MINES INC.GODFR^ TWP PROPfrTTr
GODFREY TWP. , ON
3D FIXED LOOP BOREHOLE SURVEY j SeconOary Oectromogr-etie Fietd (dB/dt) j
TrtT-mtlB -iwpwncy XI H7 CWt Aiy qcfe)
Praflr UMS' nMKMil/m'2
Cnnci B*3 prnbe ' W*"cabr 1*-JT i7.a hw^ j
rr^T) cwflrrff coftsVLTWC iftc ''
Figure 2: Borehole TEM 4-Axis Profile Format for Southeast Godfrev Project.
Quantec
C380 MONETA PORCUPINE MINES INC. Godfrey Twp. BHTEM
K
Ifo: 4 k- SO X
Boretole GOD-97-' - Total Reid Collar Loop
Scale 1:20CJ
MONETA PORCUPINE MINES INC.GC-riTREi' T*'F. P I
oODFRti TWP
LL-
^_rr
h ^ jn-il 1 997
".Ki Oiowk: * '00" rW*
Figure 3: Borehole TEM Lin-Loa Profile Format for Southeast Godfrey Project.
* Digital Data: Daily raw files and processed data (Geosoft .XYZ format) on 3.5 inch HD (1.44 Mbytes) diskette(s) - see Appendix F
a) raw un-rotated data dump files, according to acquisition date (DDMMYY.RAW) Geonics Digital Protem (refer to Protem)
b) raw rotated data dump files, according to borehole Geonics Digital Protem (refer to Protem)
c) reduced XYZ ASCII data files, according to hole number and component (i.e. godlT.xyz where TzTotal Field)
Column 1: Borehole numberColumn 2: depth down the hole (m)Column 3: Primary pulse (millivolts)Column 4: Channel 1 secondary rate of decay of TEM field (nanoVolt/m2)ColumnS: Channel 2UColumn 23: Channel 20 secondary rate of decay of TEM field (nanoVolt/m2)
Quantec
C380 MONETA PORCUPINE MINES INC. Godfrey Twp. BHTEM
On June 23rd , 1997 Quantec Consulting Inc. performed a 3D TEM Borehole Sur vey over the Southeast Godfrey Property on behalf of Moneta Porcupine Mines Inc. The survey was performed in Hole GOD-97-1 to a depth of 360 meters.
The TEM survey identified 2 anomalous zones in the hole; one between 40 and 150 meters and second at 280 meters in the drill hole. The upper zone consists of 2 conductors probably related to graphitic argillites intersected in the drill hole. The con ductor at 50 meters is interpreted as an in-hole response indicating the hole has tested the centre region of a narrow, weak to moderate conductivity source. The second con ductor at approximately 120 meters is interpreted as an edge response from a moderate area, high conductivity source. There should be evidence of the conductor in the core, however, the bulk of the conductivity lies above and right (north) of the drill hole. The asymmetrical nature of the response indicates that the conductor sub-parallels the drill hole and has a finite depth extent near 175 meters.
The anomaly located at 280 meters in the drill hole is interpreted as a small area, weak to moderate strength, off-hole conductor. The centre of the conductor is lo cated approximately less than 50 meters below and left (south) of the drill hole. The lack of response in late time suggests the source of the conductor is probably related to poorly conductive mineralization.
DEPTH (meters)
40
120
280
RESPONSE TYPEIn-hole
Edge
Off-hole
RESPONSE POLARITY
Hz: +V6 Hx: +V6 to -ve Hy: +V6 to -ve
Hz: -ve Hx: -ve to +V6 Hy: +V6 to -ve
Hz: -ve Hx: +V6 to -ve Hy: -ve to +VB
# CHANNELS
12
20
13
COMMENTS
Weak to moderate strength small area conductor.
Moderate area strong con ductor. Bulk of conductivity lies above and north of hole.Small area weak to moderate strength. Conductor lies ^Om below and left (south) of the drill hole.
Table V: Anomaly Table for God-97-1 at Southeast Godfrey Project.
RESPECTFULLY SUBMITTED QUANTEC CONSULTING INC.
Sherwood Coulson Senior Geophysicist
Christine Williston Processing Geophysicist
Jean Legault, P.Eng. Director of Technical Services
Porcupine, ON July, 1997
10
Quantec
C380 MONETA PORCUPINE MINES INC. Godfrey Twp. BHTEM
Statement of Qualifications
l, Sherwood T. Coulson, hereby declare that:
1. l am a consulting geophysicist with residence in Porcupine, Ontario and am presently employed in this capacity with Quantec Consulting Inc. of Porcupine, Ontario.
2. l am a graduate of Cambrian College, Sudbury, Ontario in 1974 with an Honours Diploma in Geophysical Engineering Technology.
3. l have practiced my profession in Europe and North America continuously since gradua tion.
4. l am a member of the Canadian Society of Exploration Geophysicists and the Prospectors and Developers Association.
5. l have no interest nor do l expect to receive any interest, direct or indirect, in the proper ties or securities of Moneta Porcupine Mines Inc.
6. The statements made by me in this report represent my best opinion and judgment based on the information available to me at the time of the writing of this report.
Porcupine, ON July, 1997
S T. Coulson, Dip). Geoph.Senior Geophysicist
General Manager - QCI
Quantec
C380 MONETA PORCUPINE MINES INC. Godfrey Twp. BHTEM
Statement of Qualifications
l, Christine Williston, declare that:
1. l am currently employed by Quantec Consulting Inc. of Porcupine, Ontario as a junior geophysicist, in technical services.
2. l am a graduate of York University, North York, ON, in Spring, 1994,with a Bachelor of Science, Honours, in Earth and Atmospheric Science.
3. l have no interest nor do l expect to receive any interest in the properties or securities of Moneta Porcupine Mines Inc.
4. l am the technical writer for this report; having compiled the information contained and constructed map products to the best of my ability with my current level of understanding.
Porcupine, Ontario July, 1997
Christine WillistonProcessing Geophysicist
Quantec Technical Services
Quantec
C380 MONETA PORCUPINE MINES INC. Godfrey Twp. BHTEM
Statement of Qualifications
l, Jean M. Legault, declare that:
1. l am a consulting geophysicist with residence in Timmins, Ontario and am presently em ployed in this capacity with Quantec Consulting Inc. of Porcupine, Ontario.
2. l obtained a Bachelor's Degree, with Honours, in Applied Science (B.A.Sc.), Geological Engineering (Geophysics Option), from Queen's University at Kingston, Ontario, in Spring 1982.
3. l am a registered professional engineer (# 047032), with license to practice in the Prov ince of Quebec, since 1985.
4. l have practiced my profession continuously since June, 1982, in North-America, South- America and North-Africa.
5. l am a member of the Society of Engineers of Quebec, the Quebec Prospectors Associa tion, the Prospectors and Developers Association of Canada, and the Society of Explora tion Geophysicists.
6. l have no interest, nor do l expect to receive any interest in the properties or securities of Moneta Porcupine Mines Inc.
7. The statements made in this report represent my professional opinion based on my con sideration of the information available to me at the time of writing this report.
Porcupine, Ontario July, 1997
Jean M. Legault, P.Eng. (QC)Chief Geophysicist
Quantec Technical Services
Quantec
C380 MONETA PORCUPINE MINES INC. Godfrey Twp. BHTEM
Survey Procedure and General Theory
TEM Borehole Survey
TEM profiling is conducted in boreholes either outside or inside fixed rectangular transmit loops. Current is passed through the loop which following the Turn-Off, produces a primary magnetic field (H) both inside and outside (Figure B1). This primary field induces a vortex current pattern, which energizes con ductors and which in turn create their own secondary magnetic field (Bs). The rate of change of the de caying secondary magnetic flux (dBs/dt) is measured. These measurements of the TEM decay (20 log-time slices) are taken during the "Off-Time", using a 30 cycle/sec, base repetition rate.
j Negative Down OutsMe *
Primary Field Sign Convention
i, , . , \ In-Loop Survey Une \SQiSSftl i l l . l i l l l\ ——-———-——— \lill
r i f i l \ \\ \\ ^ \ ^ ^^^* ^-^~-,' '' '' ; 't L-J \ \ \ \ \ \ \ v.vv^-/' i t l ! t l \ \ \ V V \ N \ v- x NX---
l i
Figure B1: Primary field sign convention for TEM surveys.
Borehole TEM surveys are conducted In either a 1-D mode or 3-D mode. The borehole survey is particularly useful to determine the geometrical relationship between a conductor or a complex swarm of conductors around the drill hole. Of particular importance is its application in cases where the drilling is believed to have missed the target of interest. A 1-D borehole survey can effectively determine the direc tion and distance from the drill hole to the conductor by comparing the results of logs from several loops positioned around the hole (Figure B2), or by comparing the response from hole-to-hole. Additionally, con ductors located below the end of a drill hole, which either may be too deep and/or have gone previously undetected from surface, may be discovered during the course of a borehole survey. Similar determinations can be made from a 3D borehole survey by measuring two orthogonal secondary field components in addi tion to the axial component.
Quantec
C380 MONETA PORCUPINE MINES INC. Godfrey Twp. BHTEM
Sample Interval
Tx Loop Perimeters
Positive Hz^up along axis of DDH
LPTEM Borehole Survey Procedure 1-5 loops read per transmitter setup
Figure B2: Loop Configurations and Polarity Conventions for 1D Borehole Profiling.
For 3-D and 1-D borehole surveys, the probe is manually lowered down the borehole at the end of a cable and, at successive depths, measurements of one (1-D) to three (3-D) orthogonal components of the TEM field (Hx, Hy, Hz) are individually obtained in succession by electronically switching the sensor coils in the borehole antenna through the use of a relay/switching system from surface, via the borehole- cable shield. As the probe is free to rotate on its vertical axis, a correction is later applied to the 3-D data in order to rotate the components into their respective coordinate axes.
Quantec
C380 MONETA PORCUPINE MINES INC. Godfrey Twp. BHTEM
Z f ve up, along axis of DDH
X *ve up, orthogonal to hole, and along BH azimuth
station intervals
- Y *ve left, orthogonal to hole and horizontal
Figure B3: LOOP Configuration and Polarity Conventions for 3-D Borehole Survey.
The secondary fields induced decay at a rate proportional to the conductivity-thickness and are then measured and profiled by the borehole sensor-probe.
a) Hz is positive up along the axis of borehole,b) Hx is positive perpendicular to the borehole axis and pointing upward, in a vertical plane, in the
direction of the azimuth of the hole,c) Hy is positive 90C counterclockwise to Hx and horizontal, according to the right-hand rule.
At the end of each survey day, the stored data are transferred to a microcomputer using PROTEM and edited and viewed using DATEM (both programs written by Geonics.) From there the data is corrected for the turn-off time, loop area, system gain and current, converted from millivolts to nanoVolts per ampere meter squared or nanoVolts per meter squared and Geosoft formatted XYZ files created using GEOPARSE written by Quantec. The data are then transferred to disk for storage and processing. Report quality field plots are generated on site, using a 24-pin printer in order to monitor the data characteristics and to provide a preliminary interpretation capability.
Quantec
C380 MONETA PORCUPINE MINES INC.Godfrey Twp. BHTEM
The following equations govern the transient EM response for buried plate-like conductive bodies 1
Target Response to Transmitter Current Waveform:
emf = — p TT
where: t - fixed timee = exponential decayT = time constant of conductor
The time constant of the response is alternatively defined as the slope of the tin-log decay curve (Geonics) or, more exactly, as the time channel where the amplitude of the decay collapses to 37*54. (1/e) of its maximum value. Both t and the analogous decay strength (ie., the number of anomalous channels above background), are commonly used as indicators of conductor quality. This relationship between de cay-strength and the conductivity-thickness can easily be demonstrated in the following equation for a verti cally dipping conductive sheet:
r = . f or a thin platen
where a = conductivity of target /j = magnetic susceptibility t - thickness of plate
h ^ vertical extension of plate
thereby giving, for an infinite vertical sheet:
at ^ — r * rf* i-, mhos/ metre (Siemens) ph /V'S1
From these equations and relationships, it therefore becomes obvious of the common use of the anomaly strength of decay as a simple, rule-of thumb indicator of the relative conductivity-thickness product for TEM surveys.
In addition, the total secondary field is calculated by GEOPARSE using the three components (Hx, Hy and Hz) in the following formula ^^^^^^^^^^^
; + Hy 2 * Hz2 nanoVolt l m2
1 From Geonics Limited, EM-37 TEM System Design Parameter. Mississauga. Ont., 1982.
Quantec
C380 MONETA PORCUPINE MINES INC. Godfrey Twp. BHTEM
Instrument Specifications
GEONICS LIMITED
EM-37 Transmitter Technical Specifications
Current Wave form:
Repetition Rate:
Turn-off Time(t):
Transmitter Loop:
Protection:
Output voltage:
Output power
Motor generator
bipolar square wave.
3Hz, 7.5Hz or 30Hz in countries using 60Hz power line frequency; 2.5Hz, 6.25Hz or 25Hz in countries using 50Hz power line frequency; all six base frequencies are switch selectable.
fast linear turn-off maximum of 450 usec. at 30 amps into a 300x600 meter loop. Decreases proportionally with current and the root of the loop area to a maxi mum of 20 usec. Actual value of t read on front panel meter.
any dimensions from 40x40 meters to 300x600 meters maximum at 30 amps. Larger dimensions at reduced current. Transmitter output voltage switch adjust able for smaller loops. Value of loop resistance read from front panel meter; re sistance must be greater than 1 ohm on lowest setting to prevent overload.
circuit breaker protection against input over voltage; instantaneous solid state protection against output short circuit; automatically resets on removal of short circuit. Input voltage output voltage and current indicated on front panel meter.
24 to 160 volts (zero to peak) maximum
2800 watt maximum
5 HP Honda gasoline engine coupled to a 120 volt, three phase, 400 Hz alter nator. Approximately 8 hours continuous operation from built-in fuel tank.
Transmitter Console
GPU:
Component Dimensions and Weights
20 by 42 by 32 cm, 20kg
44 by 32 by 21 cm, 65kg
Quantec
C 380 MONETA PORCUPINE MINES INC. Godfrey Twp. BHTEM
Instrument Specifications
GEONICS LIMITED
Digital Protem Ground Transient Electromagnetic System Technical Specifications
Measured Quantity:
Sensors:1. (L.F.):2. (H.F.):3. (3D-3):4. (3D-1):
Time channels:
Repetition Rate:(Base Frequency)
Synchronization:(switch selectable):
Integration time:
Calibration:
Keyboards:
Gain:
Dynamic Range:
Display Quantity:
Storage:
Display:
Data Transfer:
Processor.
Receiver
Time rate of decay of magnetic flux along 3 axes
Air-cored coil of bandwidth 60 kHz; 100 cm diameter Air-cored coil of bandwidth 850 kHz; 100 cm diameter Three orthogonal component sensor simultaneous operation Three orthogonal component sensor; sequential operation
20 geometrically spaced time gates for each base frequency gives range from 6 u.sec to 800 msec.
0.3 Hz, 0.75, 3, 7.4, 30, 75 or 285 Hz for 60 Hz power-line networks
(1) reference cable ''(2) high stability (oven controlled) quartz crystals.
2, 4, 8, 15, 30, 60, 120, 240 sec.
Internal self calibrationExternal Q coil calibration (optional)
Two 3x4 matrix sealed key pads with positive tactile feedback
Automatic or manual control
23bits(132dB)
(1) Table of time rate of decay of magnetic flux (dB/dt)(2) Curve of rate of decay of magnetic flux (dB/dt)(3) Table of apparent resistivity (pa)(4) Curve of apparent resistivity (pa)(5) Profile of dB/dt(6) Real time noise monitor(7) Calibration curve(8) Data acquisition statistics (real time)
Solid state memory with capacity for over 3000 data sets
8 lines by 40 character (240 x 64 dot) graphic LCD
Standard RS-232 communications port.
CMOS 68HCOOO 8 MHz CPU
Quantec
C380 MONETA PORCUPINE MINES INC. Godfrey Twp. BHTEM
Instrument Specifications
GEONICS LIMITED
BH-43 3-D Borehole Probe with Tilt Sensors Technical Specifications
Measured Quantity:
Sensors:
Overall Length:
Maximum Diameter
Weight:
Sensor-Preamplifier Resonant Frequency:
Sensor Areas:
Operating Temperature: -
Probe Rotation Correction:
Battery:
Type:
Diameter.
Weight:
Length:
Time derivative of axial and radial magnetic field
Three orthogonal coils (one axial, two radial)
334cm
3.8cm
9.5kg
10kHz
200m2
30 degrees C to +80 degrees C
Two orthogonal tilt meters with range ±1 0 to ±80" from vertical
Rechargeable NiCd sealed pack for 15 hours continuous operation
Cable
Two-conductor shield polyurethane jacket Kevlar membrane
5.6 mm
40 kg/km
700m
Quantec
C380 MONETA PORCUPINE MINES INC. Godfrey Twp. BHTEM
Receiver Battery:
Receiver Size:
Receiver Weight:
Operating Temp.:
Transmitters:
12 volts rechargeable battery for 8 hours continuous operation. 6 hours in XTAL mode
34x38x27 cm
15kg
-400C to *500C
(1) Geonics TEM47(2) Geonics TEM57(3) Geonics TEM37
Gate Locations
GATE123456789101112131415161718192021*
285/237.5 Hz6.0007.6259.75012.5015.8820.2525.8833.0042.1353.7568.5087.38111.4
151.7**181.1231.0294.6375.9479.5611.6780.1
6.8138.68811.1314.1918.0723.0629.4437.5647.9461.1377.9499.38126.7166.4206.0262.8335.2427.7545.6695.9
1.6252.1252.7503.3754.3755.6257.1259.12511.6314.7518.8824.0030.6329.3849.8862.6381.25103.6132.1168.5
75/62.5 Hz32.0038.5047.0058.0071.5
89.00111.5140.0176.5223.0282.0357.5453.5576.0732.5932.011871512192624553129
35.2542.7552.5
64.7580.25100.3125.8158.3 .199.8252.5319.8405.5514.8654.3832.310591349171921902792
6.5008.50011.0013.5017.5022.5028.5036.5046.5059.0075.5096.00122.5156.5199.5254.5325.0414.5528.5674.0
30/25 Hz80.009625117.5145.0178.8222.5278.8350.0441.3557.5705.0893.8113414401831233029663779481561367821
88.13106.9131.3161.9200.6250.6314.4395.6499.4631.3799.4101412871636208126483373429754756978
16.2521.2527.533.7543.7556.2571.2591.25116.3147.5188.8240.0306.3391.3498.8636.3812.5103613211685
GATE123456789101112131415161718192021*
Ena of Gate 20A Gap of 9.7 usec exists between Gate 13 and Gate 14 in the micro-frequency range/
This Table applies to both synchronization modes regardless of which of TEM37, TEM47 and TEM57 transmitters is used, provided that correct Tx model is selected in Header (2.4).
Note: 7.5/6.25 and 0.75/0.625 Hz proportional to 75/62.5 Hz 3/2.5 and 0.3/0.25 Hz proportional to 30/25 Hz
Quantec
C380 MONETA PORCUPINE MINES INC. Godfrey Twp. BHTEM
Production Summary
LPTEM 3-D BOREHOLE SURVEY Southeast Godfrey Project, Godfrey Twp., ON
Date19-Jun
23-Jun
DescriptionOut to property in afternoon. Problems with Argo and end up carrying everything into the hole. Locate, dummy hole and lay 400m loop. Attempt to start logging but problem with downhole cable.Return to property in afternoon. Log hole, pick up loop and demob from property.Total
HoteGOD-97-1
GOD-97-1
Start
40
End
360
Total (m)
360
360
Quantec
C380 MONETA PORCUPINE MINES INC. Godfrey Twp. BHTEM
List of Maps
TEM Borehole Profiles: Multi-Channel Lin-Log and 4-Axis Profile Plots: (time rate of decay of the secondary electromagnetic field, 3D:Total Field, X,Y and Z components, 1:2000 scale, nanoVorts per metre2)
HOLE
GOD-97-1
LOOP
Collar
COMPONENT
Total FieldZXY
TOTAL
4-AXB PROFILE DRAWING NUMBER
C-380-BH4A-TF-GOD-97-1 cC-380-BH4A-Z-GOD-97-1 cC-380-BH4A-X-GOD-97-1 cC-380-BH4A-Y-GOD-97-1 c
4
UN-LOO PROFILE DRAWING NUMBER
C-380-BHLL-TF-GOD-97-1 cC-380-BHLL-Z-GOD-97-1 cC-380-BHLL-Z-GOD-97-1 cC-380-BHLL-Z-GOD-97-1 c
4
Loop/Claim Location Map:
Grid Location Map
Borehole GOD-97-1: (1:5000 scale) Drawing Number C380-LOOP-GOD-97-1
supplied by Moneta Porcupine Mines Inc.
Quantec
C380 MONETA PORCUPINE MINES INC. Godfrey Twp. BHTEM
Profiles and Plans
Quantec
MONETA PORCUPINE MINES INC.
SOUTHEAST GODFREY PROJECT
GRID LOCATION
BOREHOLE GOD-97-1 - LOOP LOCATION MAP
\200'
600S-
X
Scale 1:500050 O 50 100 150
^^f^(meters)
200 250
Note: Topographical and Claim information digitized from MPM SE Godfrey Project Grid Location Hop (June 1997).
MONETA PORCUPINE MINES INC.SOUTHEAST GODFREY PROJECT
GODFREY TOP., ON
3D FIXED LOOP BOREHOLE SURVEY
GOD-97-1 - LOOP LOCATION MAPLJBOOS O 25E
232,-50 DegreesBorehole Coordinates: Borehole Azimuth, Dip:
Date: June 23, 1997Instrumentation: Rx = Digital Protem (3x20 Channels)
Geonics BH43 probe -i- 700m cable______________Tx = Geonics EM-37 (2.8 kW)
Surveyed Se P rocessed by:QUANTEC CONSULTING INC.
DWG, f: C-38Q-LQQP-GOD-97-1
s 'o;
EJ-H
cdS
90000.-
- 1 35000.
-200. J
100 150 200
DEPTH (metres)
250 300 350
Borehole GOD-97-1 - Total Field Collar LoopScale 1:2000
25 O 25 50 75 •^^SSi,(metres)
MONETA PORCUPINE MINES INC.GODFREY TWP. PROPERTY
GODFREY TWP. , ON
3D FIXED LOOP BOREHOLE SURVEY Secondary Electromagnetic Field (dB/dt)
Transmitter Frequency: Tx Loop Size: Tx Loop Location: Transmitter Current: Transmitter Turn-Off Time: Borehole Location: Borehole Azimuth, Dip: Station Interval: Profile Units: Receiver Coil Orientation:
30 Hz (50?5 duty cycle)400m x 400m
L600S-L1 OOOS;2GOE-200W15 Amps
250 usL800S;25E
232,-5010 meters
nanoVolt/rrr-2Hz - positive up
Hx - positive westHy - positive south
Date: June 23, 1997
Instrumentation: Rx = Digital Protem (3x20 Channels)Geonics BH43 probe + 700m cable
________________Tx ^ Geonics EM-37 (2.8 kW)
Sun/eyed cfir Processed by: QUANTEC CONSULTING INC.
DWG. NO. 0380-BH4A-TF-GOD-97-1C
90000.^"o!.1—1
^45000.-cO
S ^ o.-
-45000,-
Q n n n nijUUUU.
oT —— 1
1X tj UU \J .
Ul
O
o.-
-15000.-
H
150.- oM
1CO o.-m
O
-150.-
P p^^^E-.fLj ?
NP"'' - \P
\J^P ^ P\p \e^p"^fUP
/^•"-~-^\ - Xp—P
S "~"\ \r
jr~ — -S| '"" " " "
NC\T-~ —— ZIII]I^~~~-----JIIII^:^^-^
'/\ V ^""~ ~ — ' —— — — — ~~~ — — - — . ~~ — "/ ^ \ ^ ^^—~~~ * - ————— — ___
^ l \ \ 1 II II 1' \ K l li li l
1 \ X ~ \ ' t \ \ ^ ~---. \ ' ' . . . .
\ \ "x- "~ . \/A;\., /^.^^^
i - ' ^ ^ ^ - ^\ . s ~~~' -^ . .
/\ \ 7 - " - - ^ J^ - ^ ^ ^ .
—— I \ l /i .XV- I I — r — r — r — r — i- — i- — i- "^-K ~^4- — 4- ~^H- "^ ~^
-^^ 'v^ -^ \ 1 7 /t*- l 1 l 1 1 1 1 1 1 1 1 1 1 1 l
^V,-';^\\ ^ ^ ," -v
^-^ - -y ----^ '/ — ^ "^ -~- —
- 105000. P
-70000.o tr w
-35000, -i
-0.
-3000,oM
-1500. ^l — *-
-0.
--1500.
^f^^u- i- -i- -i- -i- -1^-^1-1-1- -r ~r T -r -r -i- -I--I-^^--F^^--I^-I"-I F^^^-IJ^-
\ ^ -V "" - ~ ^ '" I I
' -, II•- J 1
X . . . 7 y- . . . . . .
7 ' 50 \ f&O-' l 1 50 200 250 300 350
\ y
DEPTH (metres)^ y
Borehole GOD-97-1 - Z Component Collar LoopScale 1:2000
25 0 25 50 75
(metres)
MONETA PORCUPINE MINES INC.GODFREY TWP . PROPERTY
GODFREY TWP. , ON
3D FIXED LOOP BOREHOLE SURVEY Secondary Electromagnetic Field (dB/dt)
Transmitter Frequency: 30 Hz (50Z duty cycle)
Tx Loop Size: 400m x 400m
Tx Loop Location: L600S-L1 OOOS;200E-200W
Transmitter Current: 15 Amps
Transmitter Turn-Cff Time: 250 us
Borehole Location: L800S;25E
Borehole Azimuth , Dip: 232, -50
Station Interval: 10 meters
Profile Units: nanoVolt/m^
Receiver Coil Orientation: Hz - positive up Hx - positive west
Date: June 23, 1997
Instrumentation: Rx = Digital Protem (3x20 Channels) Geonics BH43 probe t 700m cable
Tx = Geonics EM-37 (2.8 kW)
© Surveyed c6r Processed by:QUANTEC CONSULTING INC.
DWG. NO. C-380-BH4A-Z-GOD-97-1C
15000,-i
10000.o•^H
l
Vi
O
5000.-
-5Q05.-
O CO
lCD^H
ffi
O
-75. J
^W4- J - -KVI ;————————4' ^ ^3k J,-^-^^L^-^150.
75.-
- 105000.
-70000,
o t? w
-35000.l en
0.
L -35000.
2000,
-1000.
o yw
L-1000,
50 l/ 100 150 200 250
DEPTH (metres)
300 350
Borehole GOD-97-1 - X Component Collar LoopScale 1:2000
25 O 25 50 75
(metres)
MONETA PORCUPINE MINES INC.GODFREY TWP. PROPERTY-
GODFREY TWP. , ON
3D FIXED LOOP BOREHOLE SURVEY Secondary Electromagnetic Field (dB/dt)
Transmitter Frequency: Tx Loop Size: Tx Loop Location: Transmitter Current: Transmitter Turn-Off Time: Borehole Location: Borehole Azimuth, Dip: Station Interval: Profile Units: Receiver Coil Orientation:
30 Hz (50K d uty cycle)400m x 400m
L600S-L1 OOOS;200E-200W15 Amps
250 usL800S;25E
232,-5010 meters
nanoVolt/rrr-2Hz - positive up
Hx - positive westHy - positive south
Date: June 23, 1997 Instrumentation: Rx = Digital Protem (3x20 Channels)
Geonics BH43 probe + 700m cable ________________Tx = Geonics EM-37 (2.8 kW),
Surveyed & Processed by: QUANTEC CONSULTING INC.
DWG. NO. C-380-BH4A-X-GOD-97-1C
oT——l
l
M
o-ioooo. J
ow
lCD
m fi O
150. H
0.-
-150. J
r42000.
-28000.
o
- 14000.
L -14000.
3000.
- 1500.
en
L -1500.
50 180 s 2 00 250
/DEPTH (metres)
300 350
Borehole GOD-97-1 - Y Component Collar LoopScale 1:2000
25 25•^m
(metres)
50 75
MONETA PORCUPINE MINES INC.GODFREY TWP. PROPERTY
GODFREY TWP. , ON
3D FIXED LOOP BOREHOLE SURVEY Secondary Electromagnetic Field (dB/dt)
Transmitter Frequency: Tx Loop Size: Tx Loop Location: Transmitter Current: Transmitter Turri-Dff Time: Borehole Location: Borehole Azimuth, Dip: Station Interval: Profile Units: Receiver Coil Orientation:
30 Hz (507o duty cycle)400m x 400m
L600S-L1 QOOS;200E-200W15 Amps
250 usL800S;25E
232,-5010 meters
nanoVolt/rrr-2Hz - positive up
Hx - positive westHy - positive south
Date: June 23, 1997Instrumentation: Rx - D igital Protem (3x20 Channels)
Geonics BH43 probe t 700m cable_______________Tx = Geonics EM-57 (2.8 kW)
Surveyed tt Processed by: QUANTEC CONSULTING INC.
DWG. NO. C-380-BH4A-Y-GOD-97-1c
10000
— 1000
100
i l l
50 100 150 200 250 300 350
10O
O O-j OK >
O
-10 l
-100
-1000
-10000
DEPTH (metres)
Borehole GOD-97-1 - Total Field Collar Loop
Scale 1:200025 O 25 50 75
5^5fii55 (metres)
MONETA PORCUPINE MINES INC.GODFREY TWP. PROPERTY
GODFREY TWP., ON
3D FIXED LOOP BOREHOLE SURVEY Secondary Electromagnetic Reid (dB/dt)
Transmitter Frequency: Tx Loop Size: Tx Loop Location: Transmitter Current: Transmitter Turn-Off Time: Borehole Location: Borehole Azimuth, Dip: Station Interval: Profile Units: Receiver Coil Orientation:
30 Hz (50?S duty cycle)400m x 400m
L600S-L1QOOS;200E-200W15 Amps
250 usLSOOS;25E
232,-5010 meters
nanoVolt/nT-2Hz - positive up
Hx - positive westHy - positive south
Date: June 23, 1997Instrumentation: Rx = Digital Protem (3x20 Channels)
Geonics BH43 probe + 700m cable—^——^———.^^Tx ^ Geonics EM-37 (2.8 kW)
Surveyed & Processed by: QUANTEC CONSULTING INC.
DWG, NO. C-380-BHLL- TF-GOD-97-1C
100 150 200 250 300 350
10000
1000
100
10O
_ o o ±±
— -5
.0,
-100
"-1000
"-10000
DEPTH (metres)
Borehole GOD-97-1 - Z Component Collar Loop
Scale 1:200025 O 25 50
•^^!^——(metres)
MONETA PORCUPINE MINES INC.GODFREY TWP. PROPERTY
GODFREY TWP. , ON
3D FIXED LOOP BOREHOLE SURVEY Secondary Electromagnetic Reid (dB/dt)
Transmitter Frequency: Tx Loop Size: Tx Loop Location: Transmitter Current: Transmitter Turn-Off Time: Borehole Location: Borehole Azimuth, Dip: Station Interval: Profile Units: Receiver Coil Orientation:
30 Hz (50?S duty cycle)400rn x 400m
L600S-L1 OOOS;200E-200W15 Amps
250 usLSOOS;25E
232,-5010 meters
nanoVoft/rrr-2Hz - positive up
Hx - positive westHy - positive south
Date: June 23, 1997
Instrumentation: Rx = Digital Protem (3x20 Channels)Geonics BH43 probe t 700m cable
_______________Tx ^ Geonics EM-37 (2.8 kW)
Surveyed & Processed by: QUANTEC CONSULTING INC.
DWG. NO. C-380-BHLL-Z-GOD-97-1C
DEPTH (metres)
10000
— 1000
100
350
10 o c/2
t-l
-5 Ojl O
-10 l
'-100
-1000
-10000
Borehole GOD-97-1 - X Component Collar Loop
Scale 1:2000O 25 50 75
l i,,,(metres)
MONETA PORCUPINE MINES INC.GODFREY TWP. PROPERTY
GODFREY TWP. , ON
3D FIXED LOOP BOREHOLE SURVEY Secondary Electromagnetic Reid (dB/dt)
Transmitter Frequency: Tx Loop Size: Tx Loop Location: Transmitter Current: Transmitter Turn-Off Time: Borehole Location: Borehole Azimuth, Dip: Station Interval: Profile Units: Receiver Coil Orientation:
30 Hz (50?; duty cycle)400m x 400m
L600S-L1 OOOS;200E-20QW15 Amps
250 usLSOOS;Z5E
232,-5010 meters
nanoVolt/nrZHz - positive up
Hx - positive westHy - positive south
Date: June 23, 1997Instrumentation: Rx = Digital Protem (3x20 Channels)
Geonics BH43 probe + 700m cable___ Tx = Geonics EM-37 (2.8 kW)
Surveyed Se Processed by: QUANTEC CONSULTING INC.
DWG. NO. C-380-BHLL-X-GOD-97-1C
10000
— 1000
— 100
250 300 350
10oCO
o o sK l
--5 O IS
.-10 l
-100
'-1000
-10000
DEPTH (metres)
Borehole GOD-97-1 - Y Component Collar Loop
.cole 1:2000o 2;
!S (metres)
50 75
MONETA PORCUPINE MINES INC.GODFREY TWP. PROPERTY
GODFREY TWP. , ON
3D FIXED LOOP BOREHOLE SURVEY Secondary Electromagnetic Reid (dB/dt)
Transmitter Frequency: Tx Loop Size: Tx Loop Location: Transmitter Current: Transmitter Turn-Off Time: Borehole Location: Borehole Azimuth, Dip: Station Interval: Profile Units: Receiver Coil Orientation:
30 Hz (5QK duty cycle)400m x 400m
L600S-L1 OOOS;200E-200W15 Amps
250 usL800S;25E
232,-5010 meters
nanoVolt/rrf^Hz - positive up
Hx - positive westHy - positive south
Date: June 23, 1997Instrumentation: Rx = Digital Protem (3x20 Channels)
Geonics BH43 probe t 700m cableTx = Geonics EM-37 (2.8 RW)
Surveyed & Processed by: QUANTEC CONSULTING INC.
DWG. NO. C-380-BHLL-Y-GOD-97-1C
Date: 6 Oct, 1997 MONETA PORCUPINE MINES INC. Page: 1 of 4Northing: -800 DRILL HOLE RECORD Drill Hole: GOD-97-1Easting: 25 ^*-—~"~"Elevation: 0 *** Dip Tests *** f 'r" ^ - Northing: L 8+00 SDepth Azi. Dip l ^ Easting: 0+25 ECollar Azi.: 235 l O ^ . Grid: SE GodfreyCollar Dip: -50 50 235 -50 \ CP ^ \ l GPS Northing:
100 235 -50 \ 2 ~.; - * GPS Easting:Hole Length: 349.87 m 150 235 -49 l C? i 5 ^. "" Surveyed: NoCompleted: June 9, '97 200 235 -48 \QO "' fV'Y Date Started: June 4, '97Date(s) Logged: June 10 - June 14, '97 h^ o *JU Logged by: K. FarrellCore Size: NQ V~^: Z* ^*, Contractor: NOREX DrillingDH Survey Method: Acid test V^ncA -Q * '; Materials left: CasingProperty: ML 103392 \ 2- us (TV Units: MetricAssayer: Bondar-Clegg l ^ GO ' *1 Claim: P 96855Purpose: To test IP anomalies and profile geology \ g. tTJ\Comments: Sample series 122245-250/351-353, 124354-450, 109501-513 \ ^ ^*\Core storage: Moneta core facility, HUY 655 l t* ^~-~-~~~~~
From(m)
.00
36.00
44.00
I
To(m)
36.00
44.00
118.93
I
Geology
oOVERBURDEN ** f jCasing to 36m. -/ORHYOLITE TUFF
^Grey-buff rhyolite tuff with fragments of rhyolite from up to 1cm to ^cm.Sulphide mineralization primarily in clots and elongated patches up to 7cm.Sulphides predominantly coarse cubic to subhedral pyrite with trace pyrrhotite.Core very blocky and fractured, several sections of rubble and chips.43.00 44.00 Contact with underlying graphitic unit.
GRAPHITIC ARGILLITEExtremely graphitic argillite with prevasive foliation at 28-32 degrees to core axis.Sulphides consist predominantly of very coarse cubic to subhedral pyrite.Pyrite as isolated grains up to 2cm and clusters associated with carbonated stringers and bandsand along foliation.Core very blocky with extensive partings and discing along foliation.Localized distortion of foliation to subparallel degrees to core axis.Numerous sections of rubble/chips/gouge.Approximately 50-60cm core missing between 44- 45 B.44.00 45.40 Contact zone, only about Monzonite of material due to missing core.46.23 46.70 FAULT ZONE.Several sections of gouge and rubble (fault zone) from 59.7 and 63.7m where unit becomes intenselygraphitic.Foliation more distorted and at higher angles degrees to core axis in sections downhole after 72m.Several sections of rubble and gouge between 80-87n.83.00 84.00 Argillite, minor graphite.99.60 99.94 FAULT ZONE.Numerous offsetting slip planes at approx. 60 degrees to core axis, argillite bands (light grey)more pervasive downhole.Foliation and band i no steeoens to annrox. 15 degrees to core axis downhole (measurements taken
Sample
122245122246
122247122248122249122250122351122352122353124354124355124356124357124358124359
From(m)
37.0043.00
44.0048.7556.0065.0077.0083.0097.00
109.00110.25114.60115.27116.50117.65
To(m)
38.2544.00
45.4050.0057.2565.5078.2084.0098.00110.25111.45115.27116.50117.65118.93
Lngt(m)
1.251.00
1.401.251.25.50
1.201.001.001.251.20.67
1.231.151.28
AUPPB
55
556
5755566c1
612
CUPPM
230
696472
143802472706357567878
ZNPPM
122109
736721625526370
300230215164183260352
iiiimiiHiiii42A06NW2002 2.18193 GODFREY 020
Page: 2 of 4From - (m)
118.93
1S8.8S
160.55
196.6
200.4
To (m)
58.85
160.55
196.69
200. A
290.4
Geology
after 105m).Localized parasitic folding, pyrite associated with felsic bands.109.00 110.25 1X very coarse cubic pyrite to nore than 1cm.110.25 111.45 Same as 124354.114.60 115.27 5052 argillite bands to coarse cubic pyrite to 1X.117.65 118.93 Contact zone to underlying tuffaceous unit.
RHYOLITE TUFFFragments of rhyolite up to more than 20cm, mottled grey-smokey to patches of yellow-green.Sulphides as blebs and irregular discontinous stringers, tops inconclusive.Some scattered cubic pyrite associated with sugary-textured sections and finer-grained (smallerclastic fragments?).Py-po often associated with pyrite cubic to subhedual.Some finer disseminated sulphides (pyrite) in finer matrix surrounding some rhyolite fragments.Isolated quartz veins up to 5cm true width generally at approx. 30-32 degrees to core axis.Quartz veins often mineralized with patchy py-po along fractures and in the vein.Finer-grained homogenous sections with faint yellow tinge (sericite?).Core very competent (only isolated small occurrences of rubble-end of runs).133.50 137.25 Finer grained homogenous section with sugary texture.Small chlorite clots, weakly sericite (?) altered (yellow).Several mineralized quartz veins, shear (?) or brittle fracture from 134.18 134.42m.118.93 119.40 Contact zone to overlying graphitic unit.133.75 134.68 Fine grained section.134.68 134.85 5cm mrlzd quartz vein at 30 degrees to core axis.136.20 137.20 Fine grained material.139.95 140.05 50* of material is irregular patch of py-po.Talc banding (stringers actually) between 144-144. 3m.
MAFIC DYKE(gabbro?) - brown, medium to coarse grained plag-rock, trace sulphides, contacts at approx. 25degrees to core axis.
RHYOLITE TUFFAs before.186.00 Onward - sections of fine-grained chloritic mafic rock (basalt?).Probably not altered rhyolite - not gradations l- discreet fragments.Sections from less than 15cm to more than 3.4m.
BASALTLower contact (?) mixed with irregular patch of fragmental unit from 200. 1-200. 45m.197.05 198.20 Chloritic mafic-basalt?.
RHYOLITE TUFFAs before.214.80 215.00 2.5cm massive sulphide patch - looks like discontinous vein.6.5 Cm quartz vein at 219.67 at 30 degrees to core axis (barren).232.96 233.30 About 10X patchy disseminated sulphides.
ample
24360243612436224363243642436524366243672436824369243702437124372243732437524376124377124378
124379
124380124381124382124383124384124385124386124387
124388
12438124391243912439
From (m)
18.9319.4020.6025.0026.2029.2030.2533.7534.6836.2037.20138.20138.97139.95149.50152.00153.00157.90
158.85
160.55161.80169.45172.00173.00182.80185.00193.00
197.05
207.00208.0214.8220.0
To (m)
19.4020.6021.6026.2027.4030.2531.5034.6834.8537.2038.2038.97139.95140.05150.50153.00154.20158.85
159.65
161.80163.00170.35173.00174.00184.10186.00194.00
198.20
208.0209.0215.0221.00
ngt m)
.47
.20
.00
.20
.20
.05
.25
.93
.17
.001.00.77.98.10
1.001.001.20.95
.80
1.251.20.90
1.001.001.31.001.00
1.1
1.01.0.2.9
AU PPB
5555t5c
621ccc1
32161511
(
l
27
321
22
253
CU PPM
41232624261925255719253528
14133275642
76
292949423483
2
1253
ZN PPM
14510410210810610414710520217111912513350129117143110
148
133132117113137115136127
156
1016564140
Page: 3 of 4From - (m)
290.42
294.15
To (m)
294.15
349.87
Geology
234.65 234.90 Up to 25-30X semi-massive sulph with associated 2.5cm quartz vein at approx. 30degrees to core axis.247.36 247.57 4. Sem quartz vein at about 30 degrees to core axis, sulph along margins.250.00 Core is whiter and the fragments more irregular downhole after 250m - possibly moresilicified.Sulphides do not increase - still patchy, proportionally more pyrrhotite.Vague localized orientation of fragments at approx. 42 degrees to core axis downhole after 250m.Matrix (wallrock?) fragments slightly more chloritic downhole after 260m.Basalt (? fine-grained homogenous mafic rock ?) from 252.87 255. 95n.Orientation of matrix (looks like bedding - fine-grained chlorltized?) at approx. 50 degrees tocore axis (consistent).
DIABASE DYKEGrey brown-black, very fine-grained and homogenous, very fine irregular qtz stringers at lowangles degrees to core axis with cubic pyrite.Doesn't appear to be magnetic, some brittle fracture-most breaks at 60 degrees to core axis.291.00 292.00 Diabase.
RHYOLITE TUFFApprox. 0.2-0. 3m core missing between 297-299m, tuff similar to before.Margins of fragments have thin layer of yellow-green alteration with some patchy similaralteration extending across the fragments.Sulph may be somewhat finer, core more blotchy and fractured down j ho l e after the diabase.294.60 294.75 FAULT ZONE - approx.Green alteration - talc? serpentine? epidote?.297.65 299.00 About 1.1m of material.After 300m - fragments of rhyolite (quartz?) layered in spots.Some x-cutting of fragments by irregular stringers of chloritic material.Sericitic material along fractures in fragments.Sulphides increasing - patchy to coarse and semi-massive sections up to >7% locally.Core more silicic, trace chalcopyrite associated with patchy pyrite.Qtz vein from 320.78-321.50 at approx. 20 degrees to core axis.310.22 311.00 Basalt - cubic pyrite along fractures.320.78 321.50 Quartz vein.338.40 339.10 1-2cm irregular quartz vein subparallel degrees to core axis - patchy sulphides alongmargins.Small irregular sections of plagioclase phenocryst i c rock (dyke fragments ?) with euhedral zonedplagioclase crystals up to 3mm.Sections occur after 330m depth in lengths up to 10cm.
ample
2439324394243952439624397243982439924400244012440224403244042440524406
24407
1244081244091244101244111244121244131244141244151244161244171244181244191244201244211244221244231244241244251244261244271244281244291244301244312443212443124431244312443
From (m)
21.0032.9633.3034.6534.9047.3656.1359.00
270.94272.00285.50286.25287.00287.50
291.00
295.50296.20296.90297.65299.00301.15301.75302.40303.00303.65304.30305.00305.60306.20306.73307.35308.00308.50309.05309.65310.22311.00311.50312.00312.50313.00313.50314.00314.5
To (m)
22.0033.3034.6534.9035.9047.5757.2360.2572.0073.0086.2587.0087.50
287.95
92.00
296.20296.90297.65299.00300.00301.75302.40303.00303.65304.30305.00305.60306.20306.73307.35308.00308.50309.05309.65310.22311.00311.50312.00312.50313.00313.50314.00314.5314.9
ngt m)
.00
.34
.35
.25
.00
.21
.10
.25
.06
.00
.75
.75
.50
.45
.00
.70
.70
.751.351.00.60.65.60.65.65.70.60.60.53.62.65.50.55.60.57.78.50.50.50.50.50.50.5.4
AU PPB
3236163321458
15855559
5
55
146145
46341312617221717201817242026142216123718
1
CU PPM
4250263527192739464434312543
162
34223827451535
13720282331421017232529243248272410206224
ZN PPM
81971028511311410012010311414113610198
108
79191118110124969546438210486919016411358976214914774393962136116121114
GOD-97-1 (continued)Page: A of 4
from in)
349.87
To(M)
Geology
END OF HOLE
NOTE: Au Sppb is ^ppb
ample
24437244382443924440244412444224443244442444524446244472444824449244500950109502109503109504109505109506109507109508109509109510109511109512109513
From (m)
14.9515.50
316.00316.50317.00317.40317.90318.70319.25320.00320.78321.50322.00322.50323.00323.54324.00324.55325.00325.50328.00332.00338.40339.91341.70342.28347.29
To (n)
315.50316.00316.50317.00317.40317.90318.70319.25320.00320.78321.50322.00322.50323.00323.54324.00324.55325.00325.50326.00328.75332.75339.10340.76342.28342.83347.89
Lngt M)
.55
.50
.50
.50
.40
.50
.80
.55
.75
.78
.72
.50
.50
.50
.54
.46
.55
.45
.50
.50
.75
.75
.70
.85
.58
.55
.60
AU PPB
755
165
1957
1216565
125555
1155
285
333843e
cuP PH
284128548
162
2441173
482238322988
171553620361236357027
ZN PPH
105190107206100154257138162706
7513212715211383
33407619676107929154
20390
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HOHETA PORCUPINE NINES INCMR. RAINIER SKERIESP.O. BOX 1756
TIMMINS
ONTARIO P4N 7U9
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CLIENT: MONET* PORCUPINE MINES INC SUBMITTED BY: R. SKERIES
PROJECT: GOD DATE PRINTED: 2-JUL-97
NUMBER OF LOWER
ORDER ELEMENT ANALYSES DETECTION LIMIT EXTRACTION METHOD
1 Au30 Gold 31 5 PPB Fire Assay of 30g 30g Fire Assay - AA
2 Cu Copper 31 1 PPM HCL:HN03 (3:1) ATOMIC ABSORPTION
3 Zn Zinc 31 1 PPM HCL:HM03 (3:1) ATONIC ABSORPTION
SAMPLE TYPES NUMBER SIZE FRACTIONS NUMBER SAMPLE PREPARATIONS NUMBER
zzzz;DMLijcbMZzzzzzz::;3Xzzzzzz^PULVERIZATION 31
REPORT COPIES TO: MR. RAINIER SKERIES INVOICE TO: MR. RAINIER SKERIES
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; SAMPLE ELEMENT Au30NUMBER UNITS PPB
i 109518 K5122245 K5122246 4122247 ^122248 K5
: 122249 6i 122250 57
122351 K5122352 4122353 xS
122354 6124355 6124356 x5124357 ^
i 124358 6
124359 12124360 ^124361 <5124362 K5124363 4
124364 x5124365 *5124366 K5124367 6124368 21
124369 <5124370 G124371 *5124372 K5124373 32
124374 *5
CuPPM
162
306964
72143802472
7063575678
7841232624
2619252557
19253528
141
28
PROJECT: GOODATE PRINTED: 2-JUL-97 PAGE 1
ZnPPM
1231221097367
21625526370
300
230215164183260
352145104102108
106104147105202
17111912513350
106
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STANDARD ELEMENT Au30 Cu Zn
NAME UNITS PPB PPM PPM
ANALYTICAL BLANK 4 fi ^
ANALYTICAL BLANK *5
Nunber of Analyse* Z 1 1
Mean Value 2.5 0.5 0.5
Standard Deviation 0.00
Accepted Value 5 1 1
Connet Standard 373
Nmber of Analyses 1
Mean Value 373.2 Standard Deviation Accepted Value 410
BCC GEOCHEN STD 6 - 145 154
Number of Analyses -11
Mean Value - 145.2 154.0
Standard Deviation Accepted Value - 140 140
Gannet Standard 2482
Number of Analyses 1
Mean Value 2481.8
Standard Deviation -Accepted Value 2520
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i SAMPLEj NUMBER
j 122248; Duplicate
l 124365Duplicate
124370: Duplicate
ELEMENT Au30 CuUNITS PPB PPM
*S 64<5 65
<5 1919
^ 25^
ZnPPM i
67 j66 :
104 i107 i
119 i
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MR. RAINIER SKERIES
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PROJECT: GOO DATE PRINTED: 2-JUL-97
NUMBER OF LOWER
ORDER ELEMENT ANALYSES DETECTION LIMIT EXTRACTION METHOD
1 Au30 Gold 59 5 PPB Fire Assay of 30g 30g Fire Assay - AA
2 Cu Copper 59 1 PPM HCL:HN03 (3:1) ATOMIC ABSORPTION
3 Zn Zinc 59 1 PPM HCL:HN03 (3:1) ATOMIC ABSORPTION
SAMPLE TYPES NUMBER SIZE FRACTIONS NUMBER SAMPLE PREPARATIONS NUMBER
;z::vr;zDmO6Mvz:::^PULVERIZATION 59
REPORT COPIES TO: MR. RAINIER SKERIES INVOICE TO: MR. RAINIER SKERIES
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\ CLIENT: HONETA PORCUPINE MINES INC
l REPORT: T97-57360.0 ( COMPLETE )
PROJECT: GOO
DATE PRINTED: 2-JUL-97 PAGE 1
i SAMPLE ELEMENT
NUMBER UNITS
Au30
PPB
CuPPM
ZnPPM
SAMPLENUMBER
ELEMENT Au30
UNITS PPB
CuPPM
ZnPPM
124375124376
124377124378124379
16
15119
K5
3327564276
129117143110148
124415124416124417
124418124419
34
1312617
13720
282331
46
438210486
124380124381124382124383124384
27^46*5
2929494628
133132117113137
124420124421124422124423124424
2217172018
4210172325
919016411358
124385124386124387124388124389
372112^27
3748332219
115136127156101
124425124426124427124428124429
1724202614
2924324827
976214914774
124390124391124392124393
124394
20258303236
2951384250
65641408197
124430124431124432124433
22161237
24102067
393962136
124395124396124397124398124399
163321458
2635271927
10285113114100
124400124401124402124403124404
158^*5K5
3946443431
120103114141136
124405124406124407124408124409
K5
9K5
K5
^
25431623422
1019810879191
124410124411
124412124413124414
14614K5
46
3827451535
1181101249695
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STANDARD ELEMENT Au30 Cu Zn STANDARD ELEMENT Au30 Cu Zn
NAME UNITS PPB PPM PPM NAME UNITS PPB PPM PPM
ANALYTICAL BLANK *5 -O <1
ANALYTICAL BLANK ^ <1 <1
ANALYTICAL BLANK K5
Number of Analyses 322Mean Value 2.5 0.5 0.5
Standard Deviation 0.00 0.00 0.00Accepted Value 5 1 1
Garnet Standard 2514Number of Analyses 1
Mean Value 2513.8Standard Deviation -Accepted Value 2520
BCC GEOCHEM STD 4 - 290 253Number of Analyses - 1 1Mean Value - 290.0 252.8Standard Deviation -Accepted Value - 290 255
Garnet Standard 1074Number of Analyses 1Mean Value 1074.0Standard Deviation -Accepted Value 1080
Garnet Standard 215Number of Analyses 1Mean Value 215.2Standard Deviation -Accepted Value 206
BCC GEOCHEM STD 6 - 146 157
Number of Analyses -11Mean Value - 146.1 156.9Standard Deviation -
Accepted Value - 140 140
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SAMPLE ELEMENT Au30 Cu Zn SAMPLE ELEMENT Au30 Cu ZnNUMBER UNITS PPB PPM PPM NUMBER UNITS PPB PPM PPM
124375 16 33 129Duplicate 20 32 129
124393 32 42 81Duplicate 42 M
124397 21 27 113 Duplicate 23
124400 15 39 120Prep Duplicate 28 42 137
124412 14 45 124Duplicate 43 120
124418 6 23 104 Duplicate 10
124429 14 27 74Duplicate 28 74
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CLIENT: HONETA PORCUPINE NINES INC SUBMITTED BY: R. SKERIES PROJECT: NHL DATE PRINTED: 16-JUL-97
NUMBER OF LOWER ORDER ELEMENT ANALYSES DETECTION LIMIT EXTRACTION METHOD
1 Au30 Gold 63 5 PPB Fire Assay of 30g 30g Fire Assay - AA
SAMPLE TYPES NUMBER SIZE FRACTIONS NUMBER SAMPLE PREPARATIONS NUMBER
DRILL CORE 63 -150 63 CRUSH. SPLIT 63PULVERIZATION 63
REPORT COPIES TO: MR. RAINIER SKERIES INVOICE TO: MR. RAINIER SKERIES
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CLIENT: MONETA PORCUPINE MINES INC PROJECT: NHL
REPORT: T97-57383.0 ( COMPLETE ) DATE PRINTED: 16-JUL-97 PACE 1
SAMPLE ELEMENT Au30 SAMPLE ELEMENT Au30
NUMBER UNITS PPB NUMBER UNITS PPB
109501 -G 1 09546 303
109502 ^ 109547 3150
109503 K5 109548 227
109504 K5 109549 522109505 11 109550 198
109506 ^ 109551 9
109507 K5 109552 48
109508 28 109553 26
109509 ^ 109554 26
109510 33 109555 61
109511 38 109556 209
109512 43 109557 3265
109513 *S 109558 809
109519 230 109559 2014109520 229 109560 736
109521 46 109561 67
109522 31 109562 143
109523 136 109563 755
109524 44 109564 935
109525 62 109565 66
109526 166 109566 199
109527 37 109567 145
109528 228 109568 G
109529 132
109530 50
109531 42
109532 6
109533 K5
109534 x5
109535 K5
109536 ^
109537 ^
109538 *5
109539 G
109540 K5
109541 K5
109542 35
109543 *5
109544 245
109545 *S
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STANDARD ELEMENT Au30 STANDARD ELEMENT Au30 NAME UNITS PPB NAME UNITS PPB
ANALYTICAL BLANK GANALYTICAL BLANK ^ANALYTICAL BLANK tSNumber of Analyses 3Mean Value 2.5
Standard Deviation 0.00 Accepted Value 5
Garmet Standard 1525 Number of Analyses 1 Mean Value 1525.5 Standard Deviation Accepted Value 1585
Garmet Standard 407 Number of Analyses 1 Mean Value 406.8 Standard Deviation Accepted Value 394
Garnet Standard 2333 Number of Analyses 1 Mean Value 2332.9 Standard Deviation Accepted Value 2450
ITS - Chimilec - Bondar Clegg 1322-B roe harricana, Val d'Or, Quebec, J9P 3X6 -———-———————————.^———
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PROJECT: NHLDATE PRINTED: 16-JUL-97 PAGE 3
SAMPLE NUMBER
ELEMENT UNITS
Au30 PPB
SAMPLE NUMBER
ELEMENT UNITS
Au30 PPB
109504 Duplicate
109520Prep Duplicate
229381
109531 Duplicate
109552 Duplicate
4241
48
45
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CLIENT: MONETA PORCUPINE NINES INC PROJECT: NHL
REFERENCE: -
SUBMITTED BY: R. SKERIES DATE PRINTED: 24-JUL-97
ORDER
1 Cu2 Zn
ELEMENT
Copper Zinc
NUMBER OF LOWERANALYSES DETECTION LIMIT EXTRACTION
1313
1 PPM 1 PPM
HCL:HN03 (3:1) HCL:HN03 (3:1)
METHOD
ATOMIC ABSORPTION ATOMIC ABSORPTION
SAMPLE TYPES
DRILL CORE
NUMBER
13
SIZE FRACTIONS
-150
NUMBER
13
SAMPLE PREPARATIONS NUMBER
SAMPLES FROM STORAGE 13
REPORT COPIES TO: MR. RAINIER SKERIES INVOICE TO: MR. RAINIER SKERIES
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PROJECT: NHLDATE PRINTED: 24-JUL-97 PAGE 1
\ SAMPLENUMBER
109501
109502109503
109504109505
109506
109507109508109509109510
109511109512109513
ELEMENT CuUNITS PPM
322988
17155
3620361236
357027
Zn iPPM :
152 :113 l83 i
3340 i76 j
196 i76 i107 i92 i91 i
54 l203 i90 i
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PROJECT: NHLDATE PRINTED: 24-JUL-97 PAGE 2
STANDARD
NAMEELEMENT
UNITS
Cu PPM
Zn i
PPM :
BCC GEOCHEM STD 4
Number of Analyses
Mean Value
Standard Deviation
Accepted Value
310 270
1 1309.8 270.2
290 255
ANALYTICAL BLANK *1 Kl
Number of Analyses 1 1
Mean Value 0.5 0.5
Standard Deviation
Accepted Value 1 1
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SAMPLE NUMBER
ELEMENT UNITS
Cu PPM
Zn PPM
109504 Duplicate
171169
33403321
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HONETA PORCUPINE HINES INCMR. RAINIER SKERIESP.O. BOX 1756TIMMINSONTARIO PAN 7U9
AU 6 ~
ITS - Chimitec - Bondar Clegg 1322-B rae Harricana, Val d'Or, Quebec, J9P 3X6
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CLIENT: NONETA PORCUPINE NINES INC SUBMITTED BY: R. SKERIES PROJECT: NHL DATE PRINTED: 10-JUL-97
NUMBER OF LOWER ORDER ELEMENT ANALYSES DETECTION LIMIT EXTRACTION METHOD
1 Au30 Gold 68 5 PPB Fire Assay of 30g 30g Fire Assay - AA
SAMPLE TYPES NUMBER SIZE FRACTIONS NUMBER SAMPLE PREPARATIONS NUMBER
DRILL CORE 68 -150 68 CRUSH, SPLIT 68PULVERIZATION 68
REPORT COPIES TO: MR. RAINIER SKERIES INVOICE TO: MR. RAINIER SKERIES TO FAX:705-267-7490
t
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i CLIENT: HONETA PORCUPINE MINES INCi REPORT: T97- 57384.0 ( COMPLETE )
PROJECT: NHLDATE PRINTED: 10-JUL-97 PAGE 1
i SAMPLE: NUMBER
ELEMENT Au30UNITS PPB
SAMPLE ELEMENTNUMBER UNITS
Au30PPB
109569109570109571109572109573
13690
218119183
109609109610109611109612109613
101378473
194
109574109575109576109577109578
34529814369923
109614109615109616109617109618
21340602927
109579109580109581109582109583
334453716
1783
109619124434124435124436124437
8187
107
109584109585109586109587109588
84541141646105207
124438124439124440124441124442
^516^19
109589109590109591109592109593
960306866K5
124443124444124445124446124447
K5
71216G
109594109595109596109597109598
136154117103
6294
124448124449124450
6K5
12
109599109600109601109602109603
45261680
K5
273113
109604109605109606109607109608
824411647
268
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STANDARD ELEMENT Au30 STANDARD ELEMENT Au30NAME UNITS PPB NAME UNITS PPB
ANALYTICAL BLANK *5ANALYTICAL BLANK tSANALYTICAL BLANK tSNumber of Analyses 3Hean Value 2.5
Standard Deviation 0.00Accepted Value 5
Gannet Standard 399 Number of Analyses 1 Mean Value 399.0 Standard Deviation Accepted Value 394
Gannet Standard 2525 Number of Analyses . 1 Mean Value 2525.0 Standard Deviation Accepted Value 2450
Gannet Standard 1042 Nunber of Analyses 1 Mean Value 1042.0 Standard Deviation Accepted Value 1050
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PROJECT: NHLDATE PRINTED: 10-JUL-97 PAGE 3
SAMPLE NUMBER
ELEMENT Au30 UNITS PPB
SAMPLE NUMBER
ELEMENT UNITS
Au30 PPB
109573 Duplicate
109580Prep Duplicate
183181
4548
109595 Duplicate
109616 Duplicate
154158
6076
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MR. RAINIER SKERIES
P.O. BOX 1756
TIMMINS
ONTARIO P4N 7U9
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CLIENT: HONETA PORCUPINE NINES INC SUBMITTED BY: R. SKERIES
PROJECT: NHL DATE PRINTED: 24-JUL-97
NUMBER OF LOWER ORDER ELEMENT ANALYSES DETECTION LIMIT EXTRACTION METHOD
1 Cu Copper 17 1 PPM HCL:HN03 (3:1) ATOMIC ABSORPTION2 Zn Zinc 17 1 PPM HCL:HN03 (3:1) ATOMIC ABSORPTION
SAMPLE TYPES NUMBER SIZE FRACTIONS NUMBER SAMPLE PREPARATIONS NUMBER
DRILL CORE 17 -150 17 SAMPLES FROM STORAGE 17
REPORT COPIES TO: MR. RAINIER SKERIES INVOICE TO: MR. RAINIER SKERIES
TO FAX:705-267-7490
ITS - ChimUec - Bondar Clegg
1322-B rue Harricana, Val d'Or, Quebec, J9P 3X6 Tel: (819) 825-0178, Fax: (819) 825-0256
ITS Intertek Testing ServicesChimitec Bondar Clegg
Certificat D'Analyse Assay Lab Report
CLIENT: HONETA PORCUPINE MINES INC REPORT: T97-57384.4 ( COMPLETE )
SAMPLE NUMBER
ELEMENT UNITS
Cu PPM
Zn PPM
PROJECT: NHLDATE PRINTED: 24-JUL-97 PAGE 1
124434124435124436124437124438
2824432841
116121114105190
124439124440124441124442124443
28548162
107206100154257
124444124445124446124447124448
244117348
138162706
75
124449124450
2238
132127
ITS - Chimitec - Bondar Clegg
1322-B rue Harricana, Val d'Or, Quebec, J9P 3X6
Tel: (819) 825-0178, Fax: (819) 825-0256
ITS Intertek Testing ServicesChimitec Bondar Clegg
Certificat D'Analyse Assay Lab Report
CLIENT: NONETA PORCUPINE MINES INC REPORT: T97-57384.4 ( COMPLETE )
PROJECT: NHLDATE PRINTED: 24-JUL-97 PAGE 2
i STANDARD j NAME
ELEMENT UNITS
Cu PPM
Zn j PPM i
BCC GEOCHEM STD 6 Nunber of Analyses Mean Value Standard Deviation Accepted Value
147 1511 1
U7.0 151.0
140 140
ANALYTICAL BLANK ^ Number of Analyses 1 Mean Value 0.5 Standard Deviation Accepted Value 1
1 0.5
ITS - Chimitec - Bondar Clegg 1322-B rue Harricana, Val d'Or, Quebec, J9P 3X6
T*l: (819) 825-0178, Fax: (819) 825-0256
ITS Intertek Testing ServicesChimitec Bondar Clegg
Certificat D'AnaiyseAssay Lab RePort
CLIENT: HONETA PORCUPINE NINES INC REPORT: T97-57384.4 ( COMPLETE )
PROJECT: NHL
DATE PRINTED: 24-JUL-97 PAGE 3
SAMPLE
NUMBER
ELEMENT
UNITS
Cu PPM
Zn PPM
124438 Duplicate
4142
190193
ITS - Chimilcc - Bondar Clegg1322-B me Harricana, Val d'Or, Quebec, J9P 3X6
Til: (819) 825-0178, Fax: (819) 825-0256
Ontario Ministry ofNorthern Developmentand Mines
Declaration of Assessment Work Performed on Mining Land
" R.8.O. 1990
Personal informal Mining Act, the inl Questions about 933 Ramsay Laki
Transaction Number (office use)
Assessment FHes Research Imaging
42AQ6NW2002 2.18193 GODFREY 900
and 66(3) of the Mining Act. Under section 8 of the ant wort and correspond with the mining land holder,
of No fvrVWfedSffiftf ?*fW^Wwr#iR Floor,
Instructions: - For work performed on Crown Lands before recording a claim, - Please type or print in ink.
1. Recorded holder(s) (Attach a list if necessary)Name
Ale ne j t- fv f(Mf* ' i}4. IM.0 1 will I
PORCUPINE MINING DIVISIONA o— i t/ —
f {f b b XTelephone NumberAddress
' Aw r/.Fax NumberW-
Name Client Number
Telephone NumberAddress
Fax Number
2 i 1C19SOO"
2. Type of work performed: Check ( ^ ) and report on only ONE of the following groups for this declaration.
Geotechnical: prospecting, surveys, assays and work under section 18 (regs)
ir/] Physical: drilling, stripping,L^J trenching and associated assays Rehabilitation
WofkType foo*w**tlrltf*y (^ frfo /}9iwJ*k Su.ke (e*-l Jtur't*
SKT From tt f f7 T /O '0 } ?Oar l Month Yctr Day Monih | Year
Global Positioning System Data (if available) Township/Area * Gotl/rPif
M or Q-Plan Number '
Office UseCommodity
Total S Value of 9} r ~ Work Claimed ff 5 . 37 0
NTS Reference
Mining Division -fo^^
Resident Geologist ^- lDiStriCt "///2t tU^o
Please remember to: - obtain a work permit from the Ministry of Natural Resources as required;- provide proper notice to surface rights holders before starting work;- complete and attach a Statement of Costs, form 0212;- provide a map showing contiguous mining lands that are linked for assigning work;- include two copies of your technical report.
3. Person or companies who prepared the technical report (Attach a list if necessary)Name Telephone Number
Address .r-o.eo Fax Number7 c r- 235~-
C/*Telephone Number
Address 'sr ffi* . j. S*, Fax Number70 S~- 2.67 -"7 V
Name Telephone Number
Address Fax Number
4. Certification by Recorded Holder or Agent
l, . do hereby of the facts set
forth in this Declaration of Assessment Work having caused the wcoir-te-tje^erforrned or witnessed the same during or after its completion and, to the best of my knowledge, the annexed report is true.
Signature of Recorded Ho
Telephone Number7 Df- 1iQ--Vhrs——TT*—
Fax Number
Ontario Ministry olNorthern Developmentand Mines
Statement of Costs for Assessment Credit
Transaction Number (oflice use)
Personal Information collected on this form is obtained under the authority of subsection 6(1) of the Assessment Work Regulation 6/96. Under section 8 of the Mining Act, the information is a public record. This information will be used to review the assessment work and correspond with the mining land holder. Questions about this collection should be directed to the Chief Mining Recorder, Ministry of Northern Development and Mines, 6th Floor, 933 Ramsey Lake Road, Sudbury, Ontario, P3E 6B5.
Work TypeUnits of Work
Depending on the type of work, list the number of hours/days worked, metres of drilling, kilo metres ol grid line, number ol samples, etc.Cost Per Unit
of workTotal Cost
5 S"k At- SV.
ir 2-J*
S f to79 1
tow
Associated Costs (e.g. supplies, mobilization and demobilization).
Transportation Costs
bo no7?
Food and Lodging Costs
Total Value of Assessment Work
Calculations of Filing Discounts:
1. Work filed within two years of performance is claimed at 10007o of the above Total Value of Assessment Work.2. If work is filed after two years and up to five years after performance, it can only be claimed at 5007o of the Total Value of Assessment Work. If this situation applies to your claims,jjse-4Ha calculation below:TOTAL VALUE OF ASSESSMENT WORK Total S value of worked claimed.
Note:- Work older than 5 years is not eligible for credil- A recorded holder may be required to verify expenditures' claimed request for verification and/or correction/clarificatij Minister may reject all or part of the assessment
ent of costs within 45 days of a ion/clarification is not made, the
Certification verifying costs:
l, , do hereby certify, that the amounts shown are as accurate as may(please print full name)
reasonably be determined and the costs were incurred while conducting assessment work on the lands indicated on
l am authorizedthe accompanying Declaration of Work form as
(recordedh(recorded1 holtWr, agent, 65 state company position with signing authority)to make this certification.
021? (02/90)
Signat/re Date
W
Ontario Ministry ofNorthern Developmentand Mines
Statement of Costs for Assessment Credit
Transaction Number (ellice use)
Personal information collected on this form is obtained under the authority of subsection 6(1) of the Assessment Work Regulation 6/96. Under section 8 of the Mining Act, the information is a public record. This information will be used to review the assessment work and correspond with the mining land holder. Questions about this collection should be directed to the Chief Mining Recorder, Ministry of Northern Development and Mines. 6th Floor, 933 Ramsey Lake Road, Sudbury, Ontario, P3E 6B5.
Work TypeUnits of Work
Depending on the type of work, list the number of hours/days worked, metres of drilling, kilo metres of grid line, number of samples, etc.Cost Per Unit
of workTotal Cost
Ac SV. 3 2.
S f fi to//r s 79 1/arc
2- s"
Associated Costs (e.g. supplies, mobilization and demobilization).
Transportation Costs
n oIt 7?
Food and Lodging Costs
Total Value of Assessment Work
Calculations of Filing Discounts:
1. Work filed within two years of performance is claimed at 10007o of the above Total Value of Assessment Work.2. If work is filed after two years and up to five years after performance, it can only be claimed at 5007o of the Total Value of Assessment Work. If this situation applies to your claims, use^thq calculation below:TOTAL VALUE OF ASSESSMENT WORK Total S value of worked claimed.
Note:- Work older than 5 years is not eligible for credit- A recorded holder may be required to verify expenditures'claimed request for verification and/or correction/clarificatifl Minister may reject all or part of the assessment
ent of costs within 45 days of a ion/clarification is not made, the
Certification verifying costs:
l. , do hereby certify, that the amounts shown are as accurate as may(please print lull name)reasonably be determined and the costs were incurred while conducting assessment work on the lands indicated on
l am authorizedthe accompanying Declaration of Work form as fcfcjP- ,
(recordetfhold^F,to make this certification.
agent, c* state company position with signing authority)
0212(02/96)
Signati Date
Ministry ofNorthern Developmentand Mines
Ministere du Developpement du Nord et des Mines Ontario
March 25, 1998
R. SkeriesMONETA PORCUPINE MINES INC.85 PINE ST. SOUTHBOX 1756TIMMINS, OntarioP4N-7W9
Geoscience Assessment Office 933 Ramsey Lake Road 6th Floor Sudbury, Ontario P3E 6B5
Telephone: (888)415-9846 Fax: (705) 670-5881
Dear Sir or Madam:
Subject: Transaction Number(s):
Submission Number: 2 .18193
W9860.00186Status
Deemed Approval
We have reviewed your Assessment Work submission with the above noted Transaction Number(s). The attached summary page(s) indicate the results of the review. WE RECOMMEND YOU READ THIS SUMMARY FOR THE DETAILS PERTAINING TO YOUR ASSESSMENT WORK.
If the status for a transaction is a 45 Day Notice, the summary will outline the reasons for the notice, and any steps you can take to remedy deficiencies. The 90-day deemed approval provision, subsection 6(7) of the Assessment Work Regulation, will no longer be in effect for assessment work which has received a 45 Day Notice.
Please note any revisions must be submitted in DUPLICATE to the Geoscience Assessment Office, by the response date on the summary.
If you have any questions regarding this correspondence, please contact Lucille Jerome by e-mail at [email protected] or by telephone at (705) 670-5858.
Yours sincerely,
ORIGINAL SIGNED BYBlair KiteSupervisor, Geoscience Assessment OfficeMining Lands Section
Correspondence ID: 12061
Copy for: Assessment Library
Work Report Assessment Results
Submission Number: 2 .18193
Date Correspondence Sent: March 25,1998 AssessonLucille Jerome
Transaction First Claim Number Number
W9860.00186 103392
Section:
18 Other DHGEO 16 Drilling PDRILL
Township(s) l Area(s)
GODFREYStatus
Deemed Approval
Approval Date
March 25,1998
Correspondence to:Resident Geologist South Porcupine, ON
Assessment Files Library Sudbury, ON
Recorded Holder(s) and/or Agent(s):R. SkeriesMONETA PORCUPINE MINES INC.TIMMINS, Ontario
Page:1Correspondence ID: 12061