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Third-order Regional Magnetic Survey, Queensland 1967 … · A third-order regional magnetic...
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Record No. 1970 /56
Third - order Regional Magnetic SurveYt Queensland 1961
by
J. van der Linden
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BMR Record 1970/56
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Record No. 1970 J 56
Third - order Reg'ion al M'agnetic Survey, Qu,eens\and 1967
oy
J.> van der. Linden.
The information contained in this report has been obtained by the Department of National Development as part of the policy of the Commonwealth Government to assist In the exploration and development of mineral resources. It may not be published in any form or used in a company prospectus or statemeno without the permission in writing of the Director, Bureau of Mineral Resources, Geology and Geophysics,
SUMMARY
1. INTRODUCTION
2. ACCOUNT OF SURVEY
3.
4.
5.
6.
Outline
Station requirements
Observing procedure
RESULTS AND DISCUSSION
FUTURE PROGRAMME
ACKNOIVLEDGEMENTS
REFERENCES
I
CONTENTS Page
1
2
3
3
4
6
6
7
Appendix 1: Notes on regional magnetic stations 8
Appendix 2: The Wild to compass theodolite 9
Table 10 Stations and results 11-28
ILLUSTRATIONS
Figure 1. Instrument set-up 5
Figure 2. Images of sun - Wild-Roelo s solar prisms 10
Drawing No. Plate 1. Third-order magnetic stations 1967 A/B9-19
Plate 2. Magnetic declination (or variation), D A/B9-13
Plate 3. Inclination or dip angle, I A/B9-16
Plate 4. Horizontal intensity, H A/B9-12
Plate 5. East component,Y A/B9-17,
Plate 6. North component, X A/B9-15
Plate 7. Vertical intensity, Z A/B9-14
Plate 8. Total intensity, F A/B9-18
Record 1970/56
III
1
SUMMARY
A third-order regional magnetic survey, in which observations of declination, horizontal intensity, and total intensity were made at nominal ten-mile (16-kilometre) intervals along all passable roads, was carried out in southern Queensland in 1967. The survey was part of a long-range plan to cover Australia by this means.
Observations were made at 1065 stations along 20,000 kilometres of road. Results were derived by electronic computer in Canberra as the field work progressed. A programme was developed to plot the stations and observed values on a Mercator projection, ready for contouring. Data will be updated to epoch 1970.0 for use in preparation of the set of,isomagnetic charts at that epoch.
The 1967 results show that previous isomagnetic charts, produced from observations at greater station separation, will require revision in many places.
1. INTRODUCTION
A full third-order regional magnetic survey was carried out in Queensland by the Bureau of Mineral Resources (BMR) in 1967. Third-order surveys for the measurement of declination CD) only, had been made previously in Western Australia in 1962 (van der Linden~ 1965a), South Australia and New South Wales in 1963 (van der Linden, 1965b), and in New South Wales, Queensland, and Tasmania in 1964 (van der Linden, 1968).
The 1967 survey, which forms the subject of this Record, was the first in which all three 'elements of the geomagnetic field were measured at about 16-kilometre intervals along all roads and tracks. The elements measured were D, horizontal intensity (H), and total in tensi ty (F).
Appendix 1 defines the types of magnetiC survey carried out, or to be carried out, by BMR. Previous surveys are considered to have been second-order, and had the following disadvantages~
(a) Most of the observations (about 7~fo) were made before 1958, with comparatively inaccurate instruments (CIW magnetometers and earth inductors).
(b) Many of the data (50% pre-1917) had to be updated using uncertain secular variation values.
(c) The stations were fairly widely spaced.
(except country
The intention now is to abandon such second-order surveys for declination mapping, see Chapter 4) and instead cover the by a "one-off" third-order survey to supplement periodic
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first-order re-occupations. A network of 58 first-order stations has been established and will provide accurate secular variation data. The third-order survey will provide closely spaced results of sufficient accuracy to provide fine control over the isomagnetic lines and to indicate how representative of the region are the firstorder results.
In the third-order survey, elementary readings of instruments such as the QHM, Elsec proton precession magnetometer, and Wild TO compass theodolite can be made quickly. Up to 15 stations can be occupied per day, so large areas can be covered each field season. The station density will be increased by a factor of ten.
2. ACCOUNT OF SURVEY
Outline
The survey was conducted in Queensland in the area south of latitude 200S from May to November 1967 by the author, assisted by field hand L. McAven. A location diagram and the station positions are shown in Plate 1, which also shows the first-order stations in the area.
Instruments used were QHM306, Elsec PPM329,'and Wild TO compass theodolite 104407. Corrections applied were:
Wild TO 104407
QHM306
+34.0 minutes (to declination)
-55 gamma/gauss for H
+1 degree 42 minutes for D
The corrections for the 'Wild were determined before the survey (+34'), and during the survey (+35') with Askania Declinometer 320. A determination at Toolangi Observatory after the survey gave +33.4'. The Elsec PPM has no correction.
Readings of D, H, and F were taken along about 20,000 kilometres of ~oad traverses, at 1065 locations. The traverses were from 65 to 80 kilometres apart, but in some areas wider spacing was necessa~ because of the scarcity of roads.
Station positions were not marked on the ground, but were carefully marked on the 1:250,000 series planimetric maps. Most of the maps of the survey area are compiled from aerial photography, and their reliability is good.
The weekly production target was set at fifty stations. At times the survey, because of bad weather or poor roads, fell behind this target but when conditions were better the back lag was caught up in a few weeks.
v
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3
For transport a station sedan was used. This vehicle was modified to cope with the outback roads, which are often very rough. It was fitted with a limited-slip differential! heavyduty springs and shock absorbers, and a protective shield under the sump and the petrol tank. Other protections were stone shields for windscreen and headlights, and a "bull bar" against straying animals. Quartz-iodine driving lights proved excellent for night dr~ving, and a second speedometer with tripmeter in front of the passenger was a great help in navigating and locating station positions.
Some breakdowns occurred, all through damage by rocks, but these caused no significant loss of time as repairs were done very quickly by the local dealers. The rocky roads and the constant stopping and starting caused heavy wear of tyres.
Observations were also made on 22 islands of the Great Barrier Reef. For this purpose the party joined the lighthouse service ship Cape Moreton.
Station requirements
A station location has to satisfy the following conditions:
(a) Be at a sufficient distance from artificial sources of magnetic disturbance, e.g. wire fences (6 metres), telegraph posts~ culverts, drains etc (20 metres)! railway lines, high tension wires (at least 100 metres), bridges (3 x their length).
(b) Be at least 3 metres away from the road, as most road building materials are magnetic.
(c) Have an unobstructed view of the sun.
Cd) Be away from volcanic or igneous rock outcrops.
(e) Be identifiable on the map.
Most of these conditions can be readily identified on the map or observed while driving along.
Observing procedure
The routine followed in the field by a party of two (driv~r A and navigator :8) travelling in one vehicle is:
1. En route to the station, B selects the anticipated station position on the map and guides A to it. He is not strictly bound by the 16-kilometre distance between stations but makes his selection with the foregoing conditions in mind.
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2. On arrival at the station, B marks the position and station number on the map, A and B unload the instruments, A then moves the vehicle at lease 50 metres, and B sets up instruments.
3. A returns to the site (on foot); B concentrates on one instrument (say compass-theodolite) and begins to observe; A concentrates on the other instrument (in this case the QHM) and begins to observe, noting his findings in his own notebook. In this manner one set of QHM (plus pi and minus pi torsion) and two sets of sun observations (horizontal circle reading only) are made. The observer who finishes his set of observations first prepares the Elsec magnetometer and takes readings.
4. The two observers change instruments; in this case A reads the compass-theodolite and B the QHM. At the end a check reading of the Elsec is made. The two independent readings by A and B are compared and A's readings are entered in the field notebook, if the readings agree; if they do not, the mistakes are located ora new set of observations is made.
A typical instrument setup, showing the minimum distances between the ins truments j is shown in Figure 1.
The only data left to be entered in the field notebook are: map co-ordinates j declination and Greenwich hour angle of the sun, and the chronometer corrections. These are extracted whenever holdups occur; two common causes of holdups are clouds obscuring the sun, and vehicle serviceing or repairs.
The chronometer is rated daily at about the same hourj and the corrections are plotted on graph paper, from which the corrections at times of observation are interpolated linearly.
To maintain good progress of the surveYj speedy observing and close co-operation at the station site are essential. It takes from two to three weeks for a team to become fully efficient in a strict survey routine.
Rain in the outback, besides holding up observations, can make roads and creek crossings impassable for a considerable time. Therefore when heavy rain seems likely it is advisable to move to a district not affected by rain.
3. RESULTS AND DISCUSSION
Two computer programmes were written for handling the large amount of data.
One computes all field observations (D, Hj F) and derives the other magnetic elements (X, Yj Z, I). The elevations of the stations are included in the dataj as required by the World Magnetic Survey Board. The other programme plots the station positions and the observed (or derived) values within a Mercator projection grid.
INSTRUMENT _SET-UP T H I R D - 0 R DE R MAG NET I C SURVEY
Compass Theodolite
. ,)
G96-280
.." Ci) c. ;0 ",
6
The results are rounded off to 10 gammas (H and Z), 0.05 degrees of arc (D), and 10 metres (elevation). The elevations were obtained from spot heights or contours on the topographic maps.
To smooth the noise caused by very local anomalies, D.M. Finlayson wrote a programme to obtain a running average of groups of three stationso From these smoothed values, contour maps of the magnetic elements D, I, H, X, Y, Z~ and F were drawn. These are presented in Plates 2 to 8.
No efforts were made to smooth the contour lines to eliminate crustal and regional effects. This will be done later after a greater part of Australia has been surveyed.
To compare the results with earlier results, the relevant sections of the 1957.5 isomagnetic maps of Eastern Australia (Parkinson & Curedale 1960) were superimposed on the new maps. After allowing for secular variation and the non-smoothing of the present maps, it was found that in many parts adjustments will have to be made to the earlier maps. These are up to 0.3 degrees in D, 0.5 degrees in I, and 300 gammas in H, Z, and F.
The north-western corner of the 1967 survey area had been surveyed in 1964 for declination only (van der Linde~,1968)j the two sets of results agree closely in this region.
The nine-degree isogonic line that forms a loop north of the line connecting Augathella, Mitchell,and Roma (Plate 2) seems to be in error. It is largely influenced by the results of the traverse from Augathella to Taroomj this traverse will be repeated during the 1968 field seasono
4. FUTURE PROGRAMME
On the location diagram (Inset, Plate 1), Australia is divided into nine regions, of which the present survey covered Region F. The third-order surveys will be continued until the whole of Australia is covered. This is expected to be accomplished by J975. Thereafter first-order re-occupations every decade, and declination re-occupations every five years (at first-order stations), should suffice to provide accurate isomagnetic charts.
To make all survey data compatible a computer programme is being developed which will adjust the data of the various surveys to a common epoch. Also a computer programme will be studied .. which eliminates local anomaly effects. The output of this programme is envisaged as a plot of smoothed isomagnetic lines.
5. ACKNOWLEDGEMENTS
Permission for the survey party to travel on the ship Cape Horeton was given by the Regional Director, Department of Shipping and Transport, Brisbane. This permission, and the enthusiastic assistance given by Captain Chesterman and his crew, are gratefully acknowledged. .
J
• PARKINSON, W.D. and CUREDALE, R.G.
V AN DER LINDEN 9 J.
V AN DER LINDEN 9 J.
V AN DER LINDEN 9 J.
7
6. REFERENCES
1960
1965a
1968
Isomagnetic maps of Australia for the epoch 1957.5; Part 1-Eastern Australia. Bur. Min. Resour. Aust. Rep. 55.
Regional magnetic surveys in Australia g Australian Antarctica, and the Territory of Papua & New Guinea during 1962. Bur. Min. Resour, Aust. Rec. 1965/20 (unpubl.).
Regional magnetic surveys in Australia, Australian Antarctica 9 and the Territory of Papua & New Guinea during 1963. Ibid. 1965/218 (unpubl.).
Regional magnetic surveys in Australia 9 Australian Antarctica, and on some islands in the Pacific and Indian oceans during 1964. Ibid. 1968/2 (unpubl.).
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APPENDIX 1
NOTES ON REGIONAL MAGNETIC STATIONS
1. First-order station. A first-order station is a place at which the geomagnetic field has been observed (or recorded with . "absolute" control) more or less continuously for two or three days, with an accuracy of 5 gammas or better in the absence of magnetic storms, and which is sufficiently well marked and located that re-occupation within three to five years will be possible.
2. Second-order station. A second-order station is a place at which the field has been observed several times during one day with an accuracy of 5 gammas and which is marked so that re-occupation may be possible in the future.
3. Third-order station. A third-order station is one at which the field, or one of its components, has been observed once with an accuracy of about 20 gammas (or the equivalent angle) and which is located only by a map.
j
•
9
APPENDIX 2
THE WILD TO COMPASS THEODOLITE
As this instrument had not been used before in regional magnetic surveys a short description is given.
The instrument is fitted with a swinging horizontal circle or compass card, to the under side of which a magnet is attached. The circle has a spring-mounted jewel bearing that can be lowered onto~steel pivot. Vihen the circle is lowered onto the pivot, the magnet sets the zero mark of the circle automatically to magnetic north; thus when the circle is clamped all readings become magnetic bearings. A prismatic optical system ensures that the circle is read at two diametrically opposed graduation lines. After coincidence setting of the lines by means of the optical micrometer their average value is given by a single reading.
For magnetic declination determinations, horizontal circle observations of the sun are taken, giving the magnetic bearing of the sun with an accuracy of 1 minute of arc. The true bearing of the sun can be derived from the time of the instant of observation and the geographical co-ordinates. The difference between the magnetic bearing and the true bearing is the declination.
During the sun observations the Wild-Roelofs Solar Prism attachment is used. This produces four overlapping images of the sun, with a small dark diamond shape in the centre. The cehtre of the sun can then be aimed at by simply setting the crosshairs over the diamond shape. An illustration of the images of the sun formed by the solar prism is shown in Figure 2.
The instrument thus provides a quick and accurate way of measuring declination by sun observations only. A disadvantage is the limitation of the vertical angle of the telescope to 45 degrees.
When the sun is higher than 45 degrees, declination is measured by using the zero reading of QHM 306 and sun observations made with the black mirror on the Askania circle •
. \
, .
10
" . ..~ .
IMAGES OF THE SUN using
'WILD-ROELOFS SO~AR PRISM'
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-Z5 20 •• ·· 142 21.2 67" 2'
-25 20.4 14Z 11.7 61, 2'
-25 21.' 142. 2.4 67' a'6
-25 22,2 141 52.7 ., 26
-25 ~2.3 141 .1.1 67 '26
-25 23.0 141 31.4 67
-~; 16.0 141 24.4 61
-a; 9.5 1.1 18.6 67
-25 9.0 141 e.'. 67
-25 13.3 '41 0.0 67
-2; 28.0 140 '2.7
-25 3 •• 3 140 .7 ••
-25 41.8 140 .2.'
67 " 26
" 26
67 " 26
-25 43.5 1.0 3a.' .7
-2; .3.5 140 21.2 .'
-2, 39.7 1.0 11.8 67
-25 J9,9 140 1.8 67
-2' 4... lJ. '3.' 67
-2; 47.1 139 3~.0 67
-25,a .• 7 139 21.0 67
,-~' .3',0 13Y tv,Y 61
-25 31.8 lJr 24.1 61
-H ~.,6 U9 27O'i 67
-25 1,.7 U9 32.6 '7
-2; •• 8 13~ 3'.8 .67
-24 58.& l$i· 39.f 67
-24 49.8' Ui1 36.7 67
-2. 43.0 139 31.1 61
-24 Ja.~ ~3~ 33.7 61
-2. 23.9 11-9 aB.' 61
21
21
21
'21
21
28
~8
28
21
28
28
28
",.'
'0 DkO
.,00
1,00
1,00
'.90
1.15
7.U
, 1,20
'7,00
7.10
,7,.00
7,40
7.·0
./ .00' .
1,J'
'7,15
.1,25
7.20
7,25
7,25
7,20
7,15
7.10
1,10
7 ,30
6~90
6.70
6,20
6,50
6," . 6,'0
6," o •. to
6.65
6.60
6,60
. (6.4'
• ,.0
6,.0
6.20
6,20
6.25
6,25
6,n
6.2'
6,05
6.U
1i,10
6,OS
6,30
.6.00
•• 2'
6,00
5,2'
12
!!1IIf 1 . SHEET Z I
DEB
.,. ,~,
.59,00
.59.00
.,a,95
.U,.,
.",85
.' •• 60
.",6,
.'8 f"
.51,60
.'~ .. 4'
.,..30
.57',60·
.,57 .60
.57, .,
.57 ,35
·".25 .57 .10
.56,"
.,,',60
., •• '0
.".40
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.56 ,50
.'6.60
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.56,7,
.56,90,
"'.0' .• 57 ~ 00
.57,05
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·57,00
.57,00
·~'7.10
.57,20
.,7.20
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.,7,20
''',9, .u," .'6. '0 .56,30
·U.20
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.,,;.,
.~" 10
''',80
''',35
28460
2e'30
28530
285'0
28140
28620
28"0
28750
28750
28840
28880
2'8910
29210
29270
29360
29400
29450
29530
'29600
29690
29770
29800
29870
29920
29"0
29770 '
29670
29670
29500
'29530
295'0
29'20
29580
29640
29660
29690
29570
29490
29470
29'60
2Y"O
295'0
29600
2'590
295·0
29520
29480
29440
29520
29680
29830
29810
29920
29930
29960
29980
30UO
30050
.30010
30400
laUO
212'0
al250
aJ270
21310
za~'O'
215·0
U5JO
a8530'
28620
2U60
U170
20020 '
20030
aoi.o 29160
29220
20290
29370
29460'
29530
28570
29'-.0
auto
U120
a9530
294'0
29460
29300
29330
~9380
2U30
29390
29450
29470
29490,
29380
29290
. 29280
29370
29370
29370
'29430
29.10'
aU60
29HO
2UlO
29270
a9J40
28500
2.650
29700
a0760
U760
29800
n800
29950
29870
29920
30270
3UO
3980
3970
3910
4000
3920
3UO
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3610.
3'20
'Uto
3,.0
3760,
J760
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'3760
3670
3730
3720
3UO
3750
3720
3700
3190
3710·
'3560
3490
3.80
3440
,3180
3340
3310
U60
HOD
t
-47100
·47590·
.47560
.4''-'0
•• ,.50
-.7460
-47210
·47260
• 47 310,
·47320
·47100
·47030 .
.46190
.4'''0
'· .. 040
·""0 ·.'UO.
• .,700
-.,'30
·45350
.4,.'0
·45080
.45060
,.,030
'-U070
·4'070
-45100
·45120 :'
.4'120 '
·45190
.4'060
-44950
.44940 .
3400 . ·4'030
3.10 -.'220
HOU ,"'-5:150 .
HOD ,·""0
3UO ." .. 0
3290
3UO
,3220
3200
3200
3210
·.,670
·.,780
·.,a60
"550
'''00
"470
".70
, ,,4.0
''-430
"290
55330
"370
"420
"260
'52'0
54690
'."0
'."0 ·'.570
,.,30
' .. 20
'4320
54220
'4170
'.200
'4170
54UO
54UO
53990
'3960
53970
53900
'39JQ
'3940
53980
'3910
53850
.53850
, '3950
'.040
5.100
'4270
54380
, .. io ' .. 30
54410
' .. 20
' .. 90
"'50 ")'.
3170' '.4' .. 0 <,~Jl4'30
3200 .• 45970
3220 .4,.70
3UO • .,700
·45440
3UO . -44910
3190
3UO
3290
3UO
3R70
3UO
.780
.44,,0
-44630
-44530
.444'0
·.4100
.44360
.44070
",
'4'00
'HU
54200
54040
'J86D
'3760
'3690
~J700
'3310
'3610
53"0
120
100
130
;UO.
120
110
120
.120
120
110
60
10
190
ito
220
190
160
170
170
180
160
"0
no 130
140
140'
'130
130
140
170
.130
140
100
100
110
90
ao
eo 70
70
60
60
60
to
60
'0
··70
'0
100
10
80
'10
100
100
10
·,10
to
.0
100
100 G96-29J
,'. >I
~'T ~ONQ Uta "IN Oi. "I"
)' •• 7 120. 1311 31.1·.7 ae
", 121 . ~23 '8.5 1311 33.1. .7·' 2'.
.,7 122
,.' 123
", lU
F61 121
'6' 12~
r
-U'0.6 luil.l .• 7 ,at
-i3 5.0
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67 '29.
-22 58.3 1311 52.6 67 30
-22 >6.9 13~ '3.2 6' , 30 , '67 12W -22 >5.8 1311 33.0 ., '3D
," 1Jl
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061 U;
'.' 1'6
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.• ,, lH
.-.' 1J9
.~61 UO
-22 ~9.' lJ9 'J.9 "
-23 2.8 1311 I',' .7 -23 0.1 139 •• 0 .7
3D
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30
-Z2 '6.8 13d S7.~ 67 30
-Zil 5'.7 U8 ".0 67 31·.
-22 44.7 U~ .S.3 67 '31'
-22 36.0 Ud '9.~ 67 U
-22 27.6 U8 't.l 67
-22 18.9 1~8 .6.7 67
-2210.5 13d 'J.3.· 67
-l2 3., In 37.6 67
161 1.1 -21 52 •• 13837.7 .67 31
'67'1&2 -21 ".6 13836.2 67 31
,,, l&J· -21 42.1 13. 2'.0 .7 '31
'" 1&4
• "1 I"
'" 1 .. •• 7.1.'
'61 U~
'6/ IH
'61 UO
, 61 1'1
-21 35.' U~ 16.0 67
-21 25.8 13d 18.0 67
-21 1,.11 138 19.0 67
-20 55.. 138 24.8 67
-ZO 42.3 138 26.~ 67
-20 33.9 13d 27.3 67
-ZO 26.2 Ud 2 •• 0 67·6 I"
'" 152. -20 19.6 138 18.1 67
'61 U3
• ., 154
'67 15.
'61 15.
'" 1~'
,6/ U9
• 6' 160 ,., 101
•• I 162
.6/ 163
•• ' 164
," 16>
• 6' 166
• 61 161
'61 IU
'" 16W
'6/ 110
'-67 111
~61 112
." 1'3
• 6/ ·11'
'6/ 175
." 116
'" 171
." 178
'61 179
-lO 11.8 13b 13.2 67
-20 '.3 III '.0 67
-III "., Ild 18.0 61
-19 '8.0 138 27.7 67
-20 1·.7 In J8.9 .7 2 .
-20 '.0 138 4,.8 ,7
-20 11.4 U853.7 .7 2
-20 16.3 139 1.8 67
-i/O 21.6 1)9 10.~ 67
-20 23.0 139 19.8 61
-20 2 •• 9 lJi1 2'.~ .7
-i/O 37 •• 139 28.8 67 6
-20 43~3 1311 3J.~ 67
-20 '2.8 lH '2.' 67
-20 45.7 1l951.2 67 6 4
-20 '8.2 140 0.2 67
-20 46.3 1'0 9.7 67
. -i/O ~2.9 l~Q 18.2 . 67
-20 ~2.8 140 28.1 67 4·
-20 43.5 1'0 37.~ '67
-20 39., 1'0 .,.. 67.
-i/O 38.7 140 55.J .7
-20 39.0' 1'1 4.0 67
-20 37 •• ·1'1 14.' 67
-20 39.~ 141 25.1 67 6
-20 39.7 141 34.9 67
-20 39.6 141 '3.~· 67 6 5.
o OiQ
6." t.35
6.20
6.n 5.60
5.70
'.70
5.65
:i,",o
'6.00
5.90
6.10
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5.90
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, .20
, .20
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5;.,
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5.20
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5.55
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5.60
3.50
5.70
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6.80
6.20
t.u
, .90
6.20
13
TABlE 1 SHEfT) I
DEQ
.... u··
.,..90
.,4.10
.54i"
.,4,70'
.,4.20'
.'3.'5
. on.7,
.'4.0'
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.'&.0'
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, .53.90
. 053.8,
on.7, _53 I 4'.
.'3.30
, .52.80
-51.60
.50.35
.50.30
050.10
.50.15
050.05
.50,40
.-'0.10
.50. So
.51.00
050.75.
0'..51. DO,
.50.70
.50;40
.51.30
052.3'
.50.7,
.50. "
S03 70,
30no
30590
30660
so no 31010
S1100
SUllO
310'0
31030
30850
3,0 94 0
30940
310110
31060
31120
31220
31320
31540
31450
31290
31630
32010
31770
31480
31730
32190
32220
32320
32380
32'00
32420
32.80
32570
32700
32580
32UO
32510
32530
32550
3i/160
32260
32230
32340
32270
32310
32050
32430
32720
32350
32960
32610
32380
32300
32300
30240
, 30430
30420
30500
30460
~0870
30900
HOOD
~0870
30840
~o 700 .
JQ790
30710
309~0
Jono
J0950
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31170
3~J70
31280
.31110
31430
·31570
H880
31640.
3U50
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42060
32160
~2220
32240
J2270
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32'~0
12570
32'20
32.60
32350
J2370
J2'00
J2020
32150
J2110
32180
n070
32160
31900
n370
32560
32240
32760
32"0
32150·
32110
32100
.',D.60
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.50.70
.50.55
S2430 32260
;;2310
32300
3a430
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2"0 .4UtO
3320. '04,.40
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3UO
3UO
3UO
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3460
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3410
3010
3070
3080
3260
3UO
32'40
3060
.4H30
.43330
·.noo
-43UO
.42600 '
.42300
,'23S0
.42840
·042610
·.2750
.4262b
·.2680
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-42480
042210
3050 '-'2060
3290
3UO
3310
3510
3270
2940
2920
285U
2890
3110
3UO
3190
3270
3UO
3120
3040
29'0
2840
3UO
32tO
3170
3190
3180
3010
2/tO,
2750
3UO
3UO
30U
3UO
.1990
3240
27to
3UO·
"1880
"1520
~'1470
.41720
"1140
-41470
-'0890
-40810
·'1070
-40·680
·'0410
-40210
-39710
-)9600.
-)9500
-)9410
-)9500·
-39320
-)9120
.)V040
-39140
-38910
-39970
·39050
-39850
-39570
-39.80
-3U20
-39620
.39770
-'0440
,-39510
.39810
ll10 . -'0760
'3140
34110
3530
.42070
'39580
33ao· .39"0
3500
3UO
3620
.3U'0
039550
-311450
,
· '3350
5U20
'3UO
53090
53030
53190
52750
'2570
'Z540
5a91O
52660
52780
'Z670
'2S10
'Z710.
· 52670
52520
52450
52440
52090
519tO
'2360
51960
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'1'90
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51910
'1880
516110
51600
51370
• '1260.
511110
5U50
'UIO
'1290
'1070
509.0
50SlO
'0900
50740
50530
50660
51260
'U20
51000
'DUO
'0970
'1320
'2020 .
HUO
'1750
52210
· 'llOO
· '"00
5Q900
'1160
'1000
'1070
51070
"
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100
110
lola
1i0
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no:
140
no 140
no' uo 130·
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140
140
1.60 no ltD
; 160
1.10
: 170
. 170
: 170
iuo :180
:i 190
, ltD I
.:: 210
uo 250
250
i: 220
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au 140
no
320
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3.0
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no
410.
400
400
140
alia
210
1.110
210'
160
no
110
'1.30
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. G96-29f
STATIU~
'.67 UO
.6/ 181
'67 1d~
• 61 le I
'67 lU
'61. 16Y
'61 lYO
• 67 1~1
.. 61 1~4
• 61 lY'
·'61 1"
"61 1,,1
'61 1n
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'61 2UO
• 61 0/01
.61 aDz
• 61 lOJ
LOT IJtG MIt-;
,7
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"20 39.1 14l l.a
"20 39.2 14;i 13.0
"lO 4.0.3 102 22.0
67 • ,
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"20 41.9 1401 31.4 " ..
"20 43.3 1401 40.7 .7 6
"20 ,4.2 14l '1.3. 67"
"lO 44.0 143' 1.7 67
67 .6 ,
"lO OV·2 144.19.7. 67
"lO ~1.1 143 21.' .7 "20 ;2.1 .14l 37.4 '7 , "~O ~2.8 143.47.'
"20 ;2.0 143 '6.4
"lO '1.& 144 6.1
"20 ;2.; 144 14.~
"20 50/.3 144 23.4
"OlD ;2.~ 1. 4 u., -20 ~1.~ 104 42.3
"lO ".0 1.4 '1.1
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67
67 .,
7.
7·
8
'61 20' "19 ;1.1 146 39.8
67
67
67
67 ., .,1 206 "1~ 48.8 146 48.7
'61 lOI "19 40.4 146 5D.l .)
'6/'0/0b . "1932.; 146 '9.'
• 61 20Y
• 61 210
'61 2lJ
• 61 a10
"19 J2.9 147. 7.2
"19 33.; 147 17.8
-19 40.6 147 2'.3
"1. 0'.7 141 33.3
"1" ;2.9 141 '2.0
-19 ".5 141 '1.1
-19 ,8'1 14d D.O
67
61
67 • 61 21' .61 a16 -20 1.0 1.d 9.6. 67
10
10
10 '6/·0/11
.. 61 .:lD
• 61 UO
.6/ 221
• 61 2~Z
'.61 2.3
.61 220
• 61 2"2,
-20 7.5 148 15.'
-lO 12.0 14" 23.7
-010 17.9 1.8 30.9
-lO i.6.1 148 35.3
-20 3,.7 148 37.1
-20 45.2 1.8 36.4
-20 50.9 1.8 42.2
-20 ,7.0 148 49.1
-21 3.2 148 5'.3
-21 5.' 1'. 4.0
-ll 13.2 14i 9.2
.7
67 10
67 6 10
67 11 .'
67 11
61. 11 .
67 11
67 11
67 11
.7
67
lit 1
-Zl Zl.5 149 11.8 67
12
12
12
12
12
-Zl 30.; 149 13.9 67
-ll 38., 149 17., ~7
"<1 46.7 1'" 22.3 67
'61 a3i
.6' 25J
'61 25' "22 11.5 14i 29.6
'" 255 -22 19.4 149 29.7
'61 a5~ -Z2·20., 14Y 29.9
F".251 "Z2 36.7 14~ 3~.3
• " 258' "22 42.6 149 39.'
'61 259 "22 47.2 149 48.4
.7
67
67
67
67
67
67
12
12
12
12
12
13
13
'.20
•• 00
6,4'
6.20
6.20
6.05
,,V, 6,20'
Ii,", . • ,60
6,'0'
6.7'
6,65
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t,.,
•• 35
6. "
',90 6.95
6,95
7.05
7.20
7.25
7.10
6,"
7,4'
7,70
I, fO
7.9'
7,10
'7,n
8,15
7,85
7,60
7.10
8,60
7. "
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7,70
7. "
8.05
6,40
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8,30
7," 8 ,60
6," 1,65
6,4'
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.SO,55
.SO,6,
.'0,6,
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dOi 80
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.50,6,
050,.,
-50,70
·'0,60
.'0,60.
.50.60
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.'0.75
.'0.20
·51," .",60
' .• ",80
.52,05 . ,
.U,25
·n,25 .sa,10
14
n'10
32360
323'0
32230
H270
32130
32290
32450
32390
323'0 .
32280
32laO
32310
32350
32310
32240
32310
32310
32210
32310
32360
32310
32460
32860
3JUO
32880
32960
31370
32UO
31310
32880
33010
32800
33010
3J400
3~"0
32730
33210
32"0
32690
3~620
32570
32460
32610
32160
32290
32130
32390
32370
32310
32280
32090
31790
31730
31810
31810
31810
42220
42160
32140.
uno 32080
31930
32110
42280
32200
J21~0
32070
31iao
12010'
42130
JI090
J2020
HUO
32090
42000
J2080
32120
32150
J2220
32620
U930
J2620
J2700
32070
32650
Jl060
J2610
J2740
. 42520
J2770
3.3100
32230
32480
329'0
32230
J2380
32100
32380
32030
31980
31840
JUDO
32050
41960
3.1930
HHO
31450
31400
3157'0
31470
31470
31220
31110
31310
-lUeo
-l9400
-l945O
·l9520
-l9420
50950
'0840
50970
'0920
50910
50940
, 50970
. ~10'70
51090
3490
3370
3UO
3470
3490
'3"0
3410
3350
3500
3650
3710.
.3660
3800
3"0
3770
3720
3510
3190
3640
3780
3160
3090
39JO
3"0
4070
4UO
4160
-)WUO .- 51170.
-)9660 . 51150
4390
3920
3890
4UO
4270
43.00
4420
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-l6 0.8 14' 17.0 67
67
-25 ;9.1 144 51.3 67
-il5 57.7 144 46.2 67
-2; >4.6 144 34.Q 67
-25 ,8.8 144 2'.' 67
-26 4.6 144 18.'
6
12
U
12
12
U
U
13
13
U
13
13
13
-26 14.0 144 19.0 67 13
-i/6 23.0 144 ld~' 67 13
-26 30.3 144 17.6 67 7 13
-26 15.7 14' 31.2 67 1 13
-26 25.8 14, 29.9 67 14
-i/6 34.5 14. 30.3 61 14
-26 41.1 14' 24.4 67 14
-l6 46.' 14' 30.3 67
-26 42.4 14. 39.9 67
-26 38.0 '145 4'.'
-26 33.8 i4' 51.'
6.1
67
-26 2'.2 146 27.J 61
-26 24.9 146 38.4 67
-l6 24.5 146 49.' 61
-26 25.6 146 '9.7 67
-26 30.8 147 7.7
-26 40.4 147 9 ••
14
14
'.0,. 1.10
7.70,
7.20:
7.1"
7.011
7~la.
7.10
7 .10
7 .10
7 .o.g,
1.0.5
7.0.0
1.90 \
7.90"
8.101
8;0.5'
·.8.0.D!
1.7,.
7 .U.
1.4',
7.10
8. itO'
'1.7'
7.85
7.n
8.'0
•• 60
8;50
17
TABlE,-,-~S"=E£=T~7 I M
DEa
.58.45
.58.50
.58 .10
.58.80'
.,8. '5
·.5e.oo .58.00
.57.75'
.• ,'.75
.57 .8,
.,'.80
.".70
.".30
.'6,8,
.56,85
.. ~6,85
"6.90
.5 •. 7,
.'6.".
.'6. ~5
.'7.1;
.57.4,
.".05
.57.35
.57. ~,
.57 .60
·J7.n . '''.65
.57. '0
." .,-,
.57 .10
.".90
.56.9,
.56.90
"'.0' .51.15
29200
29120
29070
28990
28910
28830
28830
28710
28UO
28680
28660
28770
28UO
28970
290.60
28910
29200
2019.0
29,50
29080
29~90
2,91.'0
29180;
292'0
293'0
294'0
294 80
29540
29'30
29550
29560
20600
29600
29600
29'80
29620
29600
29540
29590
296~0
20600
29550
29460
29390
29320
295 40
29380'
29230
29140
291'0
29110
29 170
29310
29360
29520
29580
295~0
29550
29510
29420
21920
2~8J0
28780
21700
28610
28550
28540
28420
28360
l1390
28380
28500
28410
ll700
l1790
~1730
l8950
~8960
28930
.28870
l8870
28920
28960
29010
19110
20230
19260
20330·
29280
29320
29300
29310
29300
20350
29330
~9300
~9330
~9400
20350
~9290
29200.
n130
20060
292'0
20100
21960
28880
28870
288'0
UODO
29030
29070
20190
20260
20230
20220
20180
20090
V' \ .
4010 .
40;0
4010
'3060
3940
3740
3650
3620
3550 .
3590
3600.
3600
. 3610
3UO
3510
3620
3520
3UO
3590
'40.0
'080
'180
'1J0
4120
4010
3UO
3780
3880
3UO
3860
3000
3920
3no
3UO
4UO
4090
3990
39J0
3990
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4000
4100
4100
4420
43.0
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4400
44tO
4350
'4"00
04U70
-46140
'470'0
._.1'140
'47430.
-67390
-47110
-47210
-46770
'4U20
-''''0'
'46320
-46330
.46420
".,60
-46580
'46420
-4n20
-45,,0 .4U60
'45630
• '~4'0
. -.Hl0
-4UOO
.46020
-4'660
·nooo • 46030
-46000
.• 46120
-460'0
-46160 \
-46060
.45190
.454'0
.4U30
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54780
54840
'4950
55050
55190
55260
55350
,,420
'5440
55300
5'210,
~"250;
55020
5.940
54740
>4760'
'4760
'48U
5.910
~4920
'4850.
54830
5.810
54690
54610
54490
54360
54380
'4370
5.400
, ,.240
54210
'4240 .
54200
54UO
54290
54270
'4190
'4150
54200
'4280
'4390
'4490
54'80
'4390
'4'10
'''40 .
"460
, '4560
54490
54610
'4610
'4490
54410
'4260
54220
54200
54310
54320
\
190
170
180
170
110
180
lOO
no 150
400
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310
460
410 G96-m
. IT AT IO~
,., UO
,., 4U
,., 422
· .,., 423
· ", 424
,., 41~
'" 426
,., '27
re7 '2H
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re, 430
'67 431
·26 ".1 1" ',a ., 'U
.26.17.0. '1" l,~ ., . ,. U
.27 '.2 1" ",3 ., 7 l' ·27 50.' 1" '3.' .,
.• 27 '1.0 1'8 .,.> ., .2' 31.' 1'8 'a,' 67
·27 22.3 148 'I.~ 67
·2' U,I l'f ",1 67
·27 Y,6 1.9 ',3 67
-2' 12,0' 1" 13,' 6'
'·2' 12,9 1'.9 2,3,8 ., 7. 19
-27 U;Z 140 '3.,2," 67 j'i9
'67 '35' -27 3 •• 8 149 .,,~ 6'
,., .36 -2' 45.' 1" 3',2 6' ,., .• 37
r., '3H
,., 439' -27 H,7 1~1 5',0 ., 20" .
1'61 !'4'0 . -27 ~,. 1~1 49,0 67 ,'20 (",
re1 441 ·-2' ".8 lH '9',V .. 67 '7 20
'67 442
re, 443
,.,. 44.·
·'i., •• , re, 44.
,., 4., · '67 448
,., .. , • 61 .50
,'61 4~1
• 61 .52
'61 .5l
161 '5'
'6' .55
'61 '~6
, ~'6"~'
20
·26 ·'1.' 1>1'. ",d 67.1 20
·26·31,7 1>2 0,6 . '67'· '20" -26 ~2.a 1~2 3,0 67
.26 13.0 . 1'2 ~,a '7
-26' 6,6 1~2 13,3· 67
·26:',0. U'223,H 67
-26 1',2 151 ",' 67
20
20
20
20
20
-l622.2 151 47.0 67'7 21
-2622.;; 151 37.' 21
-Z621.2 15127.2 61.721 I
-Z6 Z3 .• ' 151 17.9 67·7 21
·-Z628.5 151 9.0 61 '."'21'
-20 37.9, lH '.6 67
-2,6 "0.7 150 ".3 .7
-Z6 '1.7' i50 ••• ~ "67
• ., ,58.' -Z650.8 150 47,'. 67
21
21.'
'21
21 :.
21
21
21
• 61 45V
• 61 .60
.'·6i 461
-Z6 ".8150 55.2· 67
~2' 3.0 1'0 46.2 61
-27 9.8 1'0 39!~ 61,
'6/.'62 -27 1',2 150 31.3 '. 6" ,21
'6/.'U· -27.1'.' 150.19 •. 7' ,7", 21
· '6/. 464'
• 61 • .,
• 61 466 , f6' .61
-27 15.0 8.3 67
-27 1'.0 1~' 5a.. .,.
-27 3.0 150 0.0· . 67
"265.7.3 150 8.1 67
F6/.68 -26 49.0 ·uo 9.' 61
U
22
22
22
22
f61 470
'61 411
'" 412
• " .73
• " 47.'
• " ./5 1".416
." 411
· .•. ., 41H
f61 .19
-26 38.8 1'0 o.a .. 67 7,22
-26 38.a. 149 '0.5 .6 1 .,7 22
-2638.8' '149·.0.0 '67 7.22
-26 37'., 1.i/, u.a ,7 7.22"
-20 36.0 14i/ 11.2. 67
-26 J'~31'9 1.2 67
22
22
-~6 3'.3 1.8 ,a.o . " '7 22
-26 ".0 148 54.0 67 U
-26'52.2 1.8 51.' 67 7: U
-26 n.o 14". ' •• , 6.7 7 U
o· DU
8, SO'
',to 1,.0
t, SO
· I," 1,10
a"o ' 8,2'
I,U
8,80
9,00
1,90',
'9,Z'
9,30
9,30
,9,50
· 9.70
9,n
9,7;
9." .- 9."
9,00'
· 9,05
9,n . 9,'0
9, aD
10.0'
9,n 9,'35
:9.60
"r'" .. 9,70
9,90 .
9,U
9,65'"
10,00
9,.,
10,10
9,90.
9 ,SO'
· ·Y,45.
9,25
9.30
9,n .. ,9,U
9,ao
9,15
9,30
9,U
· 1,90
a',IO
I," . 1,15
1,10
I," , I,U
18
~II!LLJ.Hm 8 I . H
DU
·U,tO
.~" 'D
.• ",U .U," ·",15
.~1. 6' '\ .",60 ,.
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-~7, 00
.~6. eo
··'6.U
·,.,15 .
.56,15
.56,20
.56,30
2UtO·
19~tO
281'0
uno 28no 29110
2UJO
29080
29190
29210
29160
291'0
IV160
2UUO·
28900
2~9~0
2'3_0
~9~'0
2U'0
294'0
294'0
~9a.0
2'410 i 29760
'29720
297J0
.29870
'299UO
29820
29590
297'0
29700
29610
2'1'0
· 29830
· 29320
.57,05 . . 29360
.51 ,ad
.56; 90
.57,30
.57,"
-57 i 5"0'
29390
19410
2924.0
29190
.51,50 . • "'. 29260
.51 ,n .
.57,6.0·
"7,35
.51,20
.57 ,00
.' 29200
29110
293.'0
29380
· 29470
.56 ,.90, '. 29470
."," .• 56,90
"7,10 .... " .57iOO
.56,15
'.51,80
.51,90
~",20
• ", '0'
~9410
29'lD
.29410
IUlD
29410
295lD .
29590·
29620
19450
au.o
U950
119'0
U,.O
43lD
.3lD
214'0 ,"0
·"UO
'41720
' •• 910
·usao ·.u'o ·• •• 150
·41030
115'0 4400
28170 .450
21710 .300
21710 ' . '170
2U60
21860
21100
21170
21710
'21120
21610 "
2156G
21500
21940
28810
21.930
29030
29100' .
28880
29090
2U50
29290
29270
·29470
29500
2940'0.
29180
29330
29310
29260
~31O
44'0
.570
'SlO
4670
.• 690
.690
4780
4880
5090
,.,0
·'6130
·'6090
··.t070
~'U1O
"'150
.412fO
-46460
'·.6710
.'5670.
·'U70
.920 .• '"90
4980 -45260
4620 .' · ... 470
4600 .4.160
• 800 "41'0
4920· '44700
5070
5180
'150' .44060.
4860
'O~O
4UO
.no
.820
.900
'-44".0.,
.4.210
-44220
-44'30
'44"0
il9ii!10' . 5taD
-.4600
'.4660 .
·450ao
·.n,o , ·'U70
'''3.00
·.uoe ; • .,580
•• 5180
·,uno .45"0
.460'0
-.t080
29400
~8810
21910
28970
29030
28810
~1730
28750
28860
28810
21800.
21960'
·.U990
avOID
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2,030·
29110
5020
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.6'0
4940
'UG'
5000.
5UO
.,5010
.UO.
4790.
4700
4730' -.U20
4780 . '.56.0
'.710
4110
"770'
.• 770
.610
.500
'·.5460
·.,290
.,52'0.
"0370
-41560
""60
.. no'
""0 ""0 "no U7tO
'.UO
54no
,.450
54600
54510
54UO
. 54au,
54UO
54UO . '
,.750
!.no
'!'U~
HUO
nuo .. 010
"190 51.80
'; 53.HO .
H71O •. ,
nHO
nno ni'O
53510
533'0
'3220
'3410
53460
53570
'J620
,.010'
,.010
540'0
,.010
54010;
54160
,.300
'4430
"'00 ,.'10' ,.,'0 ,.420
54290
54ltO
540.0
"000.: . 54UO ,"
,.UO
'4100
·a9040
2'1'0
29110
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29240 .
19270
uuq U9l.0
·41"0 .' .. 54210
.530
.410
.360
·'U60
-'0110
-.s'u ·.5120
·45"0
'''0,0 .
,.090
"no
"'10 14340 •
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160
140
. '70 ..
24~
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230
240
250
"0
2'0
190
190
i,o 1.80
290
290
260."
580
570
470
'O~ 't1O
460
;;80
140
'320'
a10'
150
100
310
'00
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no 'uo
.,170
'~~O .
340
110
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·uo no' 340
liD .
.llO
210
2ao
'2ao"
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100
'00
iso
no '30
JlO
'10
. . Ito. .
. ~lO
lID
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210 _-299
..
5,.T IO~
f61 4tiO
• t '! 4til
t 61. 4b~
t61 484
t 67 U!
'61 401
"" .. I
'61 4bV
~61 4.0
• 61 .91
'6 I .92
'6~ '~J,
'6/4H
t61 4 ..
t 67 •••
~ 6 I 491
• 61 4VI
'61 .99
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t." Hl
'61 ~02
'61 '~J •• 7 '0<
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t61 ~u
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.6/ '14
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• 67 '24
-61 '2,
>61 ~20
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• 61 '2. f", ',40
~AT ~O~B D v.a MIN D5G ~IN
-v 14.0 1.1 .,., 61 u -27 1'.1 1.83 •• , 67, '123
-27 12.' 148 23.8 " 7 23
-27 9.1 1.1 1 •• 1' .7
-17 0.0 1.8 '.2 .7 -26 '1.6 1.8 2.3 67
-26 41.5 lU 0.' . 61
-26 32.8 1.7 '9.7' 67 23:
-26 29.2 141 51;0 ;', 24
-26 28.7 1.7 '1.3 ,67 I 2'
-26 26.7 1.7 31.0 67 7 24
-26 26:0 1" 22.0 67 7 2'
-~6 23.7 1" 12.9 67 2'
-26 16.1 1.6 ".6 67 24,
"a6 8.0 1.6 ~ •• o 67
-26 2.6 '146 ".0 '7
~25 56.4 14. 39.1 .,
-~, 48.5 146 3'.2 61
-25 '7.2 146 21.' '7
-26 ,.. I" ~'.1 67
24
24
2'
-26 14.3 146 19.4 67 24
-2; '8.0 14; 36.~ 67 I 26
-~, 49., 10; 34.1 67 I 26
-2, 40.9 lH 38.3 67' 2'
-Z5 28.8 1" 44.8 67 7 26
-2, 20.0 14, 43.! 67 7 26
-25 ,3.1 145 '0.5 67 26
-24 '6.4 1.5 '9.0 67 7 26
-24 '1.4 14610.l',7 2'
-24 43.4 146 1.0 61,7 26
27
-H Jo.5 14> 4 •• '. 61 7 27
-24 28.0 14. 3 •• 3 61 21
-24 24.3 14; U.' 61 7 27
-24 14.8 14. 19.8 67 7 27
27
-2J '7.2),14' 20.7,' 67 '7 21
-2S 47.2 145 18.4 61 7 27
-23 JI.l 14' 17.0 61 27
-23 3 •• 0 1'~ 27.3 .7 '7 27
-23 34.4 145 37.1 .7
-23 33.9 145 '7.2 61
-23 J4.8 145 57.0 61
-13 36.1 146 1.0 67
-23 37;4 106 16.2 61
-23 38.0 146 U.' "
-23 38.8 146 35.. 61
'-2j ,47.9 146 33.2, .,
21
27
27
28
28
28
28
28'
-23 57.8 146 3 •• , 61 7 28
,-24 6,3 14. 31.1' 67 728
'. 61 HI ' -24 13.0 146 30.4 ',61
'61 'H ~67 55!'
".7 U4
• 61 t~,
F61 U6
• 67 ~51
• 61 ,s~
'67 'H
-24 l7.2 146 21.2 67 28
-24 35.5 146 22.~, 67 'I 28
-24 44.3 146 la.9 67 7 28
28,
-2' ~9.3 146 'SO.5 67 28'
-25 29.8 146 31.7 67 7 28
-25 20.3 1.6 30.' 67 7'29
o OtiG
1.10
8,85
8.90
8,80
I." 8.10
8.65
,1,60
8,U
8,.,
8.30
8.15
8,.,
1,40
8,U
7,VO
7,90
7.95
1.00
, ,'a 7,,,
,1,60
7,65
7,60
7"., ,
, ,00
8,05
-,10
8,05
7,n
8,00
1,00
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',DO
8,0'
8,'0
1,35
1,30
19 TABlE 1 SHEET 9
1 H OEG
''',70
.'7,70
.57,7,
.5/ ,80
.57, '0
.", SO
·",10
,".9, .", '0
_",9, ·57,05.,
.", to 056, a5
.U,70
"6,60
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.";8,
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.55,25
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"'. I,. "'." .54,7,
.'4,50
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, .",25 .",40
• .... 0
.,..70 ;
.,4.80
.,4.V,
'56,20
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.U.90
29030
29010
2v070
28980
292'0
293'0
29420
29500
29510
29540
29'lD
29490
29'00
29550
29600
29670
29700
29780
2V720
29680
29620
29,70
297?0
29860
30020
30010
301'0
S0160
303tO
30370
30400
30.30
30450
30'20
30'40
30560
30710
30790
30170
31000
31080
31080
31030
30880
30880
30890
30150
~ouo
30860
S0730
30720
30'30
30480
S0490
30'lD
30400
30S70
29910
300'0
30100
28690
21730
28720
28630
UtlO
2'010
29080
29110
U1I0
29210
19180
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29190
n230
29290
29360
U390
29460
uno ~9350
~0J10
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auu' 29740
29780
29840
29870
30070
S0010
30120
30140
30160
30230
302.0
30290
304'0
30'20
30610
30140
30860
a0820
, 30160
30600
lOUO
30610
so"o 30630
10550
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~o.,o
3Ono 30180
30100
30100
..10100
30070
20580
29720
297t0
y
4440
4410
4510
4490
4470
4480
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'4'0
4410
4400
4440
'250
4no 4350
4320
.300
4300
436Q
4390
440U
'260
410U
4"0
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'140
'150
.190
'150
4190
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4140
4UO
4140
'1'0
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4000
3610
3910
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4310
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.45200
-45330
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·44480
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.44200
.4U80
.43130
.43650
.41530
.43480
'43450
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-42960
-'2750,
"1500
·42470
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.42450
·42390
'42'10
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·'2970
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-,U20
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·.3870
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'4510
54540
'44.0
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54410
54260
54190
54no
'4160
54190
54300
54UO
'4090
54020
'3910
53910
'3100
,.100
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'4300
54140
'4090
'4050
'3820
'3700
'3600
'3'10
'3450
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'3200
53120
53090
'3100
'3UO
'3000
52UO
'2"0
'2740
52610
,:ino '2730
'2590
524'0
52550
'2570
'2560
'2580
'2670
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U830
'2780
'2UO
sa 980
53010
'3170
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'3160
'3730
'3740
240
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110 ,.a 290
310
310
140
310
410
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4.0
'30
'00
400
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no 390
3;0
140
310
110
130
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140
180
400
380
410
410
'10
no 140
110
270
170
280
280
280
170
280
300
100
3U
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!30
390
UO,
370
400
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.to
490
460
450
4U
430
410
420
'10 G96-JOO
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• 67 tiD
.67 ~41
"61'~4Z
"67 ~'J
~67 ~46
'61 ~'.~
."'67 "0
'61 ~H
F67 '5~
f 61 '~J
,.161 SH
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"61 ~56
"67'57
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'F61 "9 • 67 ~60
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'67 ~64
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.61 56&
'61 ~69
• 67 ~/O
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F 67 '~72
161 '''3
'61 "4
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'61 ,,,
"61 518
F61' ,,9 . F67 5SO
F67 ~81
F 61 '~2
• 61' 563
F61 '84
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'61 '66
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F67589
F 67 '~O
: '61 Ul
F61 '92
F61 5~J
'61 'Y4
LAT 1.0~O UcG MIN CEO ~I~
-2~ 11.5 146 29.7 61
-25 3.3' 146 26.3 61
-z< 55.2 146' 30.0 61
-H 5J.6 146 39.' 61
-24 49.6 146 H.O 61.
-24 44.4 146 '8.1 61
-l4 J4.~ 147 4.3 61 29
-24 27.6 141 9.6 61 1 29
-24 25.2 147 18.0 67 29
-24 19.6 141 21.' 61 a9
-24 15.0 141 37.0 61 29
-24 10.1 141 ".0 67 1 30
-24 8.2 141 54.2 67
-24 1.0 148 4.J 61
JO
30
-aJ ,8.0 148 7.2 67 1 30
-23 49.1 14~ 7.6 61 30
-23 40.5 148 9.9 67 30
-23 31.8 148 9.8 61 30
"23 34.3 148 19.8 67 1.30
-23 J6.4 148 30.0 67 30.
-l3 J6.0 148 40.1 67 3a
-ll ·J5.1 148 '0.8 61 JO
JO .. -23 36.8 149 12.5
'-2J 27.5 149 16.3
-23 1~.3 149.20.6
67 30
67 7 30
61 Jl
-~3 12.0 149 1'.6 67 31
-23 4.0 149 20.6 67 31
-a ,..9 lH 26.1 67 31
-u 48;6 lH 23.0' 61 $1
-~a 41.3 149 11.0 67, 31
,22 32.0 149 U.8 61.1 31
-22 a4.4 149 I.J 67:' 31
-22 0.5 149 0.7 67 , 31
-21 36.1 149 ~.4 618
-21 4~.a ~48 56.1 67 a
-21 41.0 i48 4'.6 67
-al J8.2 148 '1.7 67 8
-21. J2.8 148 31.1 61 8.
-21 34.3 148 22.0 61 1
-21 33.9 148 11.9 67 8
"21 31.2 148 t.5 67 8
-21' 32.2 147 '1.2 67' 8
-21 29.0 141 42.6 61
-21 31.3 147 32.2 61
-21 27.1 147 2'.' 67
-21 20.2 141 19.0 67 8 1
-21 11.2 147 1,.9 67 8
-21 3.2 147 17.~ 67 2
-20 ".8 141 23.2 61
-20 47.5 147 22.0· 67
-20 41.0 147 30.' 67' 8. 2
f61't9~ -20 30.5 147 41.' 67 8 2
'67 '96 -aD 32.9 1'7 '0.5 67 8 2
f67 .91 -20 24.6 14751.9 61 2
'61 '9~. -20 18.0 141 "!' 61 2
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'.20 '.15 8.U
8." '.50
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8.15
8.20
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TABlE 1 SHEET 10 I
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.".25
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.".8, ·5'. "
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.h.70
.'0.79
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·51.0'
·'0.80
.'0.90
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•• '.40
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30210
30320
30~60
30360
30390
J0410
30330
30420
30490
30620
30670
30160
30710
30580
30840
30950
3U960
30840
30860
30910
30870
30870
31020
31240
31270
313'0
31420
31320
31310
312'0
313¥0
31510
31660
31640
31150
31600
31950
31980
31810
31990
32100
3a160
321'0
32100
32080
32080
31990
31910
32520
32310
3U70'
31710
32"0'
~2470
32470
32420
3auo
33070
332'0
.33110
29900
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300"'0
30070
10100
uno 30110
30110
'0210
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30410
304'0
30290
$0500
30600
30620
30'00
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30590
30540
30"0
30&70
30880
30900
30970
31090
30960
30910
30900
H060
U240
31340
3U30
U440
U290
31630
31660
31540
11670
'''70
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U830
U790
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31.170
1\,690
U690
. 32240
32110
31000
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32170
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uno uno 12780
4no
42'0
4320
4300
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4330
4320
4310
4400
4140
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4220
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4130
'580
4560-
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4700
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4"490
4490
4490
4410 .
4460
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4490
4530
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4"0
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4540
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4310
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42&0
4240
3600
.4250
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-44120 .
"3860
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.43460
.43210
·43290 '
-'3350
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-42760
.42"0
-42890
'42"0
·'2240
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·42130
.'1. 790
·'1.800
.41910
.42220
.421.10
.41910
.'1.120
-41.000
.40890
.40940
.40680·
·40360
.40330
.40100
-40100
·Jfi90
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."600
-J96aO
.JUOO
.39140
·Je970
·'''90
·39630
.JU40
·39680
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·'9360
.18960
011870
·31790
.,1670
.'!S9Q
.311720
.38210
-3Ueo
'''910
·37700
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'3'80
'3540
'3350
'3360
'3270
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'2840
'2920
'301.0
'2830
52810'
'2680
'25ao '2680
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523S0
52110
522110
51960
'2000
'2060
'2310
'2310
'2280
'2190
'1970
51890
'1.600
51470
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'UOO·
'1300
'1.270
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'1060
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50880
'0930
'0830
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50990
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'0850
'0980
50910
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'0'90
'0500
'0440
'0910
'0110
'0810
'0470
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430
4'0
400
'1.0
540
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380
140'
3tD
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270
a60
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240
.21.0
1.80
180
110
21.0
lOO
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140
130
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140
130
1.80
170
1.60
1.60
200
200
190
no aaa no
200
330
3!D
330
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250
240
260
260
aao 370
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100
11.0
21.0
290
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~" UO ,., U[
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. F" 6ai3
'6' 604
'I' .05 • ., 606
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F,; '13
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f" 615
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'61 62V'
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-aa ~0.6 14' ~~.7 ·,7· 10
-23 4.0' .14' SO., '7.1 u· -23 11.7 141 3.' 67 8 10
-u 21.' 148 a. 4 67 i 10' . -2& 32." 147 ".1 67 a 10
~a3 33.0 147 41.7 ., 110
-23 3'.2 147 ,,;, '6': I 1l
-23 40.~ 14' 30;1 " 8 11
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-23 3".0 147 U.'·", 11
1l '. :.",
-as 30:a 146 n.o 6" 1l ...
-23 39.0 146 44., .. " I 1l
-23 28., 146 38.1 . 6" 8 1l
-a31a., 14' 3',' " '.il,·
-23. a.,' 146 .~.4 67'.11
-~~ ,~, 141 50.4'.,6,,'1.12
-a3' 2.7 '46 50.1. ~7' 81a'
-22 58;3 14.7 i.7 67. '. l2. .,. -22 fl." 147 14.' 67 .' ~I' 12."
-aii 51.1 147 27.3.. 67 8U
-22 J,.7 14731.9 6". U,': ...
. -a2. 21.5 147 a~." 67' I 12"
-l2 23.2. 147 '10.5: ,6' I' 12'
-12 u., 147 ;'5,2 ,7 '. in· -22 6.2 147 10.1"67 . , U
-21 ".6 ·14' .4.2, .i • 11
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-21 42.4 .. 146 ".9
-21 33.7 146 54.1
67 .13
67 "'13
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-·214.4.7 14643.a '7 1.'13
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'67 .. 6 ~ -22 6.3 146 38.2 67, ' .• 13
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-22 15.2 H6 n.a "·.13 F., IU
f61 U~
r61 6~0
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fA"! 1 SHEET 11 D
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'61 61~
161 U9
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161 682
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-zs '.' 14Z, 39.2 '67
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19
19
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-24 25.6 14l17.0 67" 19
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'61 ,.~, -Z4 9.7 14Z 32.3 61 ao flO,
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'61 100
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067 10'
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161 7i4
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161 116
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.61 71~
-24 '12.8 14Z 16,8' &7
-I~ 20.8 14Z 10.0 61
-Z4 32.0 141 53,1 67
-Z437.0 141 44." '.7
-24 39,9 141 36,~ .7
-a4 49.3 141 2S.' 67'
-14 37., 141 25.0 67
20
20 .
aD
aD
20
-14 Z7.7 141 U.4 '7 " Zl
-24 18.7 141 ".4 67 ',2'1
-Z4 9,1 141 6.0 67 Zl
-24 1.1 141, 10,0 6i
-13 51.7 141 12,0 ,67 21
-23 42,8 HI' a,7 67 821
-13 35.9 141 13.' ~i 21
-23 32.3, 141 23.9 61
-23 25,3 141 30,3 67
21
21,
-2317" 141 37,,7 .7 • Zl
-23 10,' 141 43.' ,7 8 Zl
-23,2,4 141 47,J " 821
22
TABlE " 1IIUl, '.I. o
UIiG
7,.0
"., 1,ao
',25 ',20 7,15
7.40
7,., 7,40
'7"to
. 7 ,60
7,."
-, DEG
, .n,IO .n,IO
'r , .,4,01
.".n
.14,60
.'4,.,
.'4,10
·".25 '.".20
.n ,'10
aUlD
.11010
JooOO
10900
UUO
30660
30690
30530
a04~0 '
30460
30('0
,30500
10770
, 10710
'06'0 uno lOuo
104lD
lOUD
lOU~
10190
10200
30180
" r.: 7,,,
I","', 7,U
, .ou,os" 30540 "',ottO,
.,4.,90 ',' ! ,,0590 -, 30210
7,,,
7,U
l,tD
7," ,7, "
1.~'
7,70
.. 7.70
7.10
7.50
.".20
.",40
.n .60
.55,n
.56.10
.56,30
.",45
.", r' , .,.,!O .56.70
.56,75
.56,70
.56,05
'.55,8'.U,U
7.15 .".55
7,20' .",30
7,20 ;_.,55,20 , 7,10
7,io
',10
7,,10
7.10
',60
7,00
7.U
7,05 .. ., 6,15
'.10
6.10
, '.10
6,10
•• 10
7.15
7.00
.55,00
.51.00
·55.0'
~",OO
.,4, IS
.I'"n
.,4.n
'.",15 .5' ,30
.n, '0
~~5. 50
~15, 60
.55,10
.55,55
.15,3,
·",15 ~1.,9'
.54,10
1~'" 'u,,, 7.70 ~14,80 , 1,., __ ,'.u,."
',,, 6,/1
7,1'
'.'0 ' 7,n
'.,4,60
.t4,7,
'.'4,30
, .n,90
.n,tS
30400 ' " 30iu
30290 30000
30210 2,9920
30140
JOllO
30070
29960
29790
2'650
29660
29690
29640
29710
. 30010
30060
,30160
30180
30290
30400
,30410
, 30570
30560
3,0530
30530
30600
J0600'
'30560
304'0
30400
30350
30310
30270
U2U
UUO
30110
30440
30510
30520
30410
'30420
30410
10570
30570
30860
noto 3UOO
UIIO
1'8'0
zelOO
29700,
a"30 293ao
29400
29420
uno 29460
29760
29120
29920
uno J0040
30160
30170
30340 '
U320.
30290
ua.o 30370
30400
J0340
10210
30170
30140
30090
UOto
30000
UUO
30170
10230
10280
10210
30UO
lOUD
loalD
30310
10360
IOUO
30170
lono
4000
1910
.910
IflO
IUD
IUD
3910
3960,
3UG
3UO
4UO
·41430 '
.4i450
.42710
• 41020
·'Ul0
·43320
-'1590
·.,780
.43UO
.43'10
.43190
4110' ~43"O,
4310 ",".436lO
4200
4!f0
4UO,
4100
4UO
40tO
"3uo
3950
4000
3910,
39'0,
•• :'83'0
.41990
.U1?O
.uno
.44"0
.U860
-44990
·"03'0
·45270
·45210
·45250
3920' ·.U90
.U~40
·44700
.44"0
.44190
.43'10
·43840
5allO
'a19o '2720
11910
51000
'3010
53320
'3390
53510
53510
'3430
53410
53310'
'3210
53350
53410
'3520
'3620'
53170
'4010
'4060
54000
'4UO
54UO
'4ll0
'4UO
54UO
'3960
'3880
53800'
'3570
53580
'3470
53360
3eao
U30
3190,
3770
3880
3UO
3120
3110
3790
3790
.4~700 " 53340
.43680" ,53320
3790' ·41730
3780 ' ~43"0
3710
3510
,3720
3740
3740
3UO
"'3D
3510
3570
3600
3610
3100
3110
3710
3"0
4010
3"U
3510'
3"0
3960
3740
39tO
·4"50
-4U10
.43640
·,"000
.44070,
.44no'
.44310
.44490
.44260
•• .. 030
.43"0
.43610
.43310
.41060
.4UlO
.43060
·41100
.4n20
·42990
·41710
.41130
53340
53270
'3130
53200
53290
53360
'3490
'3520
'36U
53670
53710
,. .. 0
'3500
53310
53240
'11990
52730
;2 .. 0
'2710
tUtO
'3030
'2920
,.140
'.600
n MURU
ItO
110
2tO
.70 .
130
ItO'
21D
itO
itO 'aao aeD alO 210
~70
27,0
JiO
300
no
300
ZlD
~ 270
250
230
'240
240
aID ltD
no
uo UO
1'0
160
1;0
160
liD
liD'
UO
210
210
liD 1;0
1;0
1;'0
';0 140
no lIO
no 150
no 100
100
100
,hO
lOO
hO
ito
110
110
ltD G96-.ICU
'If
STAT'O~
F67 lao
'67 III
F67 la2
'F67 la~
• 67 124
167 la'
'-67 126
• 67 727
• 67 lab
• 67 7a~
'67 7~0
'67 IH
'67 1~2
F61 733
'67 IH
f61 7S'
• 67 736
'67 7n '67 140
f 61 IOJ
'6/ 744,
'61 747
'67 106
'61 14~
f67 750
F61 1~1
f 6 7 "4
F67 1~6
'61 ",
F67 I~b
'67 15~
'67 760
'61 161.
• 67 162
'67 763
'67 764
f 61 765
>"67 766
,67 161
f67 768
f67 7U
167 710
F67 771
F6I 172
• 67 77J
'61 7/4
'67 77;
'67 n6
F67 717
'6/ 718
'67 119
LAT ~ONQ iI.a MIN OEa "'IN
"aa '5.9 141 5~.1 67
"22 49.9 142 0.7, 61
67
o
2Z
aa
22'
"22 39.1 142 15.0 61 a 22
"22 31.8 14a 20.1 61 22
-2a a4.0 142' 2~.7 67 22'
"22 18.4 142 33.9 67 22
"22 19.9 142 43.2 67 t 22
"22 21.2 14a, 53.6. 67 22
",2 13.8 14J 3.4
"~2 5.0 143 7.7
"21 57.3 143 12.0
"21 49:, 143 16.7
"21 42'.6 143· 22.3
·~1 35.9 143 2Y.0
"21 28'.3 143 J5.w
"21 20.7 143 42.8
"21 14.0 143 50.8
"20·59.9 144· 4.&
-20 ~2,5 143 4.2
-21 2.0 143 1.0
-21 11.3 142 '4.8
-21 10.4 14t 45.3
-21 15.6 142 27.6
"Zl 22.0 142 19.9
-21 26.8 142 9.5
"21 21.8 142 ~.1
"21 12.1 141 57 .. 6
-al 3.9 141 54.2
67
67
67 .8 t4
6·7
67
67
67
67 .8 24
67 a4
67 8 a4
67
67 8 a4
61
61
67
67
67
61
67
67
a4
25
25
25
a5
25
25
25
25
-20 57.1 141 49.3 67 ·25
-ao 49.0 141 44.4 67 25
-21 19.9 141 25.3 67 8.27
-21 2.4.6 141 34.6 67 27
"21 29.3 141 44.4 67 27
"21 34.0 141 52.W 67 27
-21 34.8 142 2.5
-21 40.2 142 12.'
-21 47,.3 142 18.7 67 '8 27
-21. '4.5\, 1 .• 2 23 •• 67 27
-21 _6.9 142 34,8 6/. 8 27
-21 59.5 142 43.3
-22 6.4 142 49.4
-22 13.3 142 53.6
-aa 12.9 14a 1'.9
67
6.7
67
-22 13.' 142 5.0. 67'
-22 15.8 141 ".8 67
-22 17.4 141 37.'
-22 24.6 141 28.4
"22 29.0 141 20.7
-22 H.3 141 13.'
-22 41.6 141 6.1
-22 44.3 140 ".1 67
-22,47'1 140 46.3 67
-22 46.5 140 U.S 67
-22 38.0 140 u.~ 67
-22 29 .. 2 140 37.4 67
-22 21.0 140 41;7 67
27
27
28
28
28
28
28
28
28
28
28
28
28
29
29
29
29
2.9
7,15:
6.n
7.40
7,10
6.85
7.00
6 •• ',
7.00
'.90
6,35
'1.'
6,70
6," ,
6 •• '
6,50
6,30
6,a5
6,ao
6,3.0
6,.,
6,80
6,.,
7,50
7,15
7,0'
6,"
6,90
6.40
7,00
6,10
'-,50
1,80
23
TABU 1 SHEET 13 I H
DEG
.51,00
.51,35
·n,05 .U,90
.h,20
.51,10
·'1.10
• U,2'
.52,20
.n,50
.U,"
.U,H
.n,35
.53,25
.n,7,
.!U.l'
30940
31170
31010
31260
31400
31560
31400
31380
31470
31550
31600
31570
31560
31620
31"0
31960
32030
32030
32150
322'0.
321 70
32170
32170
321.60
32160
32080
32110
_320 8 0
32030
32160
32430
32030
32080
32070
31920
31870
31760
31810'
31710
31720
31620
.3'1290
31480
31650
31 "0
31780
31450
31530
31540
31310
30960
31260
31380
31370
30920
30890
31400
31410
10710
30940
30110
JiOOO
3U'0
31320
31160
31120
31230
31320
31370
313'0
31300
31430
31580
31720
11790
JUOO
31910
32000
32200
U030
11970
31980
31970
31900
319'0
U870
31900
H.880
31830
31960
32230
31830
31890,
31880
31110
31660
31"0
31600
314'0
31520
31400
,31020
a2Jo.
31420
31"0
31"0
312'0
31320
31310
31UO
30830
310'0
3U'0
31100
J0700
30690
31220
31190
·UUO
.4aOl0
.OU50.
0020 .42060
4050 ' .• 41800
uao -41770
3850 .41600
0030 .41280
3880 .41290
330·0
3UO
3"900
3810
uOO
3190
3600
3620.
3530
3500
3570
3760
3700
J.,o
3620
3570
3610
3540
3540
358Q
3470
3520
3650
3UO
3670
3660
3150
3550
3UO
"070
3UO
3870
3600
:ieao
3580
H20
31'0
3090
2890
3"0
3810
31ao
3610
, 3720
3700
.00040
.00460
-40540
.• 40060
:·39820
·39880
.40090
.J9920
.J9950
.00000
.00420
.40,440
.00340
.40110
-40080
.40100
.J9810
.40140
.40730
·40680
.40740
.40860
.4UOO .
.OU20
.41030
·OU30
.41600
.4U80
·'U70
·41560
.4i990
"41990
.4211"0
.0UOO
.4auO
.02190
.43310
52270
523ao
'2UO
'2010
52290
52370
52130
51860
51UO
'1810 "
51670
'1500
51380
51350
'1440
'1630
'130'0
'1110
51230
51020
51210
'1280
'1410
. 5t280
51300
51340-
51660
51630
51560
51370
51310
51410
'1310
'1310
51620
5.1750'
51760
'1690
51670
5'1790
51800
51810
'21'0
51680
51720
52070
'2'370
52100
52220
'2170
'25.20
'2390
'2320
52440
'2530
530110
'2810
'3200
52"0
52'30
,,' 130
100
140
140
no no
. 160
110
~ 190
210
220
240
240
a60
270
J20
310
no UO
2tO
210
200
100
180
150
no 170
200
140
no 140
100
130
too
200
Uo
210
210
200
190
170
laO
ltD
180
190
no 220
1'0
1'0
.220'
1.0
laO
190
200
190
170
160
no 190
ltO G96-304
,S'.TION" L.' LONa
'67 762
'f67 7aJ
f67 164
'~61 166
f 61 1t;7
f 61 ltiti
I 67 7ti~
167 790
F 61 191
f6 7 192
f67 793
f67 794
f67 79>
f67 7~6
Uta MIN o.a MIN
~Z2 14.0 140 •••• U,' 29
67 .' 29
-21 37.0 141 0.7
-il 30.0 141 8.1 67
29 ,
2"
29
JO
30
JO
30
-21 22·4 141 13.31&7
-21 13·6 141 13." f67
-il B.3 141 6.2 (
-il J.l 140 5 •• '
-20 56.2 140 '3.2
,-~O 49.0 140 .7.'
-20 52.0 140 22.2
-21 0.0 140 18:1
.21 '.0 140 15.J
-21 15.0 140 8.'
-21 20.9 140 1.7
67
67
67 30
67 " 30
67 30
67
67
67
67
30
31
31
31
F67 191 -21 21.6 lij 51.3 67 31
~6j 19b -21 30.3 lJ~ 44.' 67 31
f61 I'~ -21 36.6 lJI 36.4 67 Jl
'61 BUO -21 42.3 13i 2 •• 7 67 31
f61 tiOI -21 40'0 139 19.0 67 31
F61 602 -21 3ti.5 139 11.0 67 31
F61 tiOJ -21 45.6 13d 5 •• 1 67 ~ 31
F61 S04~ -21 29.0 139 10.4 67 31
161 S06
.61 tiOI
f61 ti09
~ 61 810
• 61 til1
~ 61 ti12
'61 dl3
F 61 814
'67 81'
F61 620
f61 Ul
f61 U2
F61 ti2J
,,7 82>
"167 ti26
f67 ti21
f67 ti2ti
.6/ UO
F61 831
1'61 ti82
f 67 ti5l
F 67 tiJ4
F67 ti5,
f67 tiJO
~61 UI
'67 ¥56
'67 669
-21 22.0 139 6.2
-21 B.5 139 15lD
-21 2.J 13' 23.3
-20 ~2.6 139 26.8
-20 .7.0 13' 34.7
-21 3.9 139 36.9
-21 12.2 139 41.'
-21 52.3 139 35.0
-22 I.e 139 35.0
-22 12.2 ,139 39.1
-22 21.4
-22 30.0
-22 lb.3
-22 47.6
-24 27.3
13' 40.2
139 40.6
lJ9 43.2
139 4B.O,
139 49.2i
-24 29.2 140 ~.J
-24 32.6 140 9.0
67
67
67
67
67
67
67
67
67
67
67
67
67
67
67
67
67
-24 43.2 i40 23.B '67
-24 49.6 140 32.7
-24 40.5 149 34.3
-2< 33.1 140 39,0
-24 2B.3 140 46.'
-24 ~1.3 140 52.1
-24 15.0 140 58.0
67
67
61
67
67 ,-
67
-23 3.1 140 21.8 67
-23 9.3 1~0 30.6 ,67
-23 16.7 140 35.6
-23 25.6 140 3~.6
-23 33.7 140 42.2
-23 39.6 140 '0.'
-23 40'5 140 '7.6
-22 34.0 142 '6.i
-22 43.7 142 55.0
-22 51·4 , 14~ 50.0
-23 3.9 142 47.0
67
67
67
67
67
67
4 '
D Olia
6.n
6.'0
6.'0
6." 6.10
6.70
6.10
'.10
•• 60
5," 7.10
5,'0
5,SO
•• 15."
5.'0
•• 00
6.35
6,10
,.80 "
5.60
6.60
6.00
6.40
6.25
6,~,
6.SO
6.n
•• ~O
... , 6." 6,.,
6.60
6 •• 0
6.45
6.45
6.65
6.65
5.70
•• ao 7.10
1.10
7.0'
t,"
oea.80
on •• , 012.35
011.70
,0H.BO
oSl.'o on . .,
oH.45
-so .95
, -50.95
050.e5
oeO,70
oH,O'
".H.30
.52.2'
-52.15
'52,40
.'2.2'
.'",15
.'1,00
-n.n
.,'.6,
.,5. ~o
.n ,,75
.f!.75
_55.70
.n.~o
. -,. ,1"0
.,4.90
of. ,6;
.". r'
.", ~, ~
.In.~~
oU.85
.n,05
·n.25
-n, '0
24
31620
31 66 0
uno 31630
31930
32050
31790
32060
3U90
32330
32410
32420
32390
31870
31750
31870
31210
,31600
~31-220
'31750
31780
316BO
31730
31660
31590
31no
31900
31930
32300
32400
31990
31830
31100
316.0
31630
31520
314'0
31340
31230
30110
30160
30080
301'0
30170
3D240
30120
, 302'0
30340
30440
30850
30"0
30310
30700
30660
30520
30150
31310
31270
31220
31120
x
uuo 31450
~1'30
31430
3"10'
31820
315'0
31hO
32210
,31100
~2200
~n40
321.0
31120
SUlg
~U90
~1O'0
31430
UOZO
"31~30
31530
31530
31560
31460
31430
31UO
31760
31740
32150
32170
31780
31660
31500
31440
31440
ll330
312'0
31130
h040
29990
29960
29890
30000
2"70 '
300'0
20930
30060
J0140
30230
30700
30550
30210
30500
30500
30110
20970
31140
uno 30910
30890
3160
3600-
3520
nlo
3620
3130
3710
3750
3440
3UO
3/t0
33;0
3UO
3040
3060
3,'10
3210
3300
3450
3710
3980
3030
3270
3360
3ltO
3280
2960.
3410
3UO
3UO
3660
3320
3540
3UO
HOD
34.0
3380
.13310
33.0
noD 3530
3050
24'0
2450
2660
31'0
3510
J260
3ltO
3810
3830-
3770
.4&690
041110
.41160
.4UOO
.40460
-40340
.40270
040010
·39930
.39650
-39650
-401'0
-39170
-4U50
-'U50
-40UO
,-40'30
·40510
-40UO
-40970
-40160
-4U80
-40170
-40330
~401'0
-400'0
-41210
-3UIO
-40160
.4Ul0
-4U50
.41670
-41820
-'1980
·'2080
-44210
-44JOO
-44240
-4'410
.446Ui
-44360
-44210
-44130
-44010
.43800
041090
-43160
-4UZO
-43450
-'3590
.4UIO
-4UOO
.41UO
-41910
-42160
523.0
52020 '
51970
52210
51700
5j,530
51290
'14eo
51480
51390
'1370
512,20
,51 58 0
51050
52140
'52210
'1520
'1320
5,1'030
~1'480
51640
'1800
51740
'1"0
'1660
51860
51560
51450
51"0
51 550
52180
51020
'1720
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9.05
I~n
27
- tABlE 1 SHEEt 17
. I DbO ..
-~'.25 ' -~ •• 6O
-,.." -,..n -' •• 10
-14.10
-~4. "
-14."
·54." '-5,.60
-,..,,-·~4.",
-,..60 -'4.40
-~4.10
" 'uno 30640
30510
30'10
30500
3OUO
30"0
U3~0
303'0
30210
30360
uno 30410
30600
30.'0
30,40 '
30290
30220
301'0
30120
30130
30150
2"10
29910
29960
3003.0
30260
3016D
30280
30110
-47to
4610
.'00
4380
4780
4~20
4190
4910
~42!'0
, ~43110
-43010
,-43090
-.3160
-.3200
-43210
.43010
4840 -42990
4ltO' ·42640
',4450 ,-4268U
-4i1no
-U230 \
-'4.,,, 30"0' - 30120
.4'2110
·4~130
-43190
-'4.60
-,_ .. " -,..80
·".60
·~6.3;
-h.U
·~6.30-
." .80
-5'. " -n.50
-U.35
-n.os -~,. 00
·,.,00
·,s.u
_.,4.40
.u.n, 0~3.U
.~3. 4', "~3.,0
.'3.''"3.n
-·,..OS
,.~ •• ,o_
.".30
ot" '0
." .10
.".85 '.".n ·'6.1' .,..30
oU.4,
0",,, .,..15 .",35 ·'6.30
.".30
·,..ot ·56.00
·, •• 00
';~'.20'
30"0
30'40
2nao
2'UO
2t1~0
29820
2"'0
29~'0
300~0
3UUO
302UO
3U2~0
:;OUO
~Dno
311uO
308'0
30"0
3'0'10
J09WO
30VWO
3U960
31110
hno 30vU
JOVitO
30610
30UO
30310
2'V~O
211VO
29V1O
21"0
19170
2Uuo
2~1'0
29no 29UO
291i,0 -
29no
:i'VlO
29V~0
29940
, 30040
29140
30220
30290
291 40 '
2U50
293'0
29400
-2"'0
a.490
20630,
'a9130
29830'
a08'0
29910
29990
;J0470
30370
30310
301'0
30530
30500
,30'70
, 30720
30630
30540
30540
30280
29950
30000
2"60
20580
2 .. 20
29310
, 29350
20400
293'0
293'0
2U'0
29330
2UlD
29490
29470
.500
62'0
'450
51,90
499,0
4890
5040
490.0
4910
4900
4120
4130
4890
4640
4620
4810
4';0
'430
,ho
"'0 ~ .. o 4190
.670
4640
-'3070
_-.3420
-45170
-.,0 40,
-H800
- •• "0
-'-48eo
-44160
-44OS0
-43890
-4j160
-43.50
-4J360
-42850
'-'23'0 -42880
~.2"0
-42100-
,-'2400
-42080
-42350
.42550
*'2110
-43040
-416'0
-41880
.4U10,
-44020
• .. 270
.44610
.44100,
,.44960
·4'080 ,
.45270
"10 .44880
4'00 .44.00
'010
"'0 2"'0 ' '430 ,044.70 -
2 •• '0' 4,ao_ -44"0
205ao 4420 044.40
sano uno H1I0
!aUO
UUO
HiOO
sauo
"7ao
51e40
52310'- '
52390'
uno
uuo UUO
UUO
uua sauo 53150
UHO
uno
5J1IO
'3UO
uno U310
53330
hao 53110
53100
saUD sano uno 12'10
U170
;25'0
52240
U'IO
52010
'2340
52!1O
sauo 52740
uuo nUb
53360
53460
U210 .
UUO
53420
53eto
53fRO
UliO
'4010
uno UflO
53UO
5396 0,
U"O
53'no
53"0
53710
' .. , ....
&. ~ETNBI
, 1'0 '
120
120
140'
-, lio
lH
2.0
32U
':' 260
210
24U
nu
~eu
,. 260"
nu
37U
230
-zeD
350
'33u
270 '
250
','" asp
21U
200
200
260
340
140
nu
210
170
210
130
60
20
'0
100
230
,180
150:
150
- a70
310
410
440
4'0
4'0
400
420
310
160 "
310
'40
no ,460
110
-'''0 110
120 G96-3OII
IT AT IO~
rl71UO
rl710U
r671022
"7Un
rl71024
'67101'
,.71826
"71017
,.7UU
"71030
r6711U
'''lOU
'611033
'67113'
'17103~
'67UU
'671131
'671OU
"71039
'1718'0
'671041
'6711.2
'6710H
,.71OH
,.7114'
,.'10.6
,.710"
,.710"
'671049
"71050
'61lOU
,.71052
'.71On
"7105'
'671OU
r6710U
'6710" .
r671'"
'671019
'671060
r6710U
'671162
r6710U
'671014
'67un
'671066
~AT 'ONG· DEB ~IN Di5 MI~ y " 0
-2' "., ,47 32.7 67 to 23
-2' 52.7 H7 43.5 67 10 n -2' '5.7 14; 52.2 67 10 2'
-2' 5,.e '48 1.3 67 10 24
-25 4'.6 '48 1j3 6740 2'
-2~ '9.0 148 11.2 67·102'
-2' 41,5 148 .,.8 67 '0 24
-u 49,5 "8 48.0 67 10 2'
.u 48i8 'U 56.7 6·7 10 U
-28 40.3 '40 1,.9 I~ to 14
-2' 42.6 ,40 21.8 67 10 I'
-u 49i6 14' 26.9 67 10 15
-25 ".1 14' u.e 67 10 U.
-25 c.6., 1'0 '0.8 6710'15
-25 15.0 150 15,0 67 10 25
-25 18.9 "0 24.' 67 10 25
-u 20.' 150 3 •• 9· 67 10 25
-2' 23., "0 .4.0 67 10 25
-25 2'.7 "0 '3.8 67 10 2'
.2' 22.' "1 '.0 17 '0 2'
.25 , •• 4 1', 8.' 67 10 25
-2' '.7 '~1 14.0 67 '0 25
-24 57i8 "1 7.~ .67 10 26
.24 50.5 "1 3.3 67 10 26
-24 46,3 "'0 U.2 67 '0 21
.24 38.9 1'044.8 67 10 26,
• _24 30.8 1'0 37.' 67 10 26
-25 23.3 ", 2,~ 67 10 3' .)
-2' 3J.O "2 0,2 67 '0 31
-25 39.1 1'1 53.3 '7 '0 31
-25 36.3 "1 ·'4.3 .7 10 31
-2' 34.0 ~'1 35,2 67 '0 31
-25 32.0 Ul.25.2· 67 10 31
-25 29.5 "1 14.8 67 10 31
.25 48.3 "1.51.J 611031
.25 57.0 1'1 54.0 67 10 31
-26 2.7 1'2 2.8· 67 11 ~1
-.2' 20.2 lb2 U,O 67 U
-26 26.9 lU .19,1 67 U
-26 U.O 1" 22,J 67 U
-26 '3.3 152 28.3 6.7 11
-26 52.7 152 32.' 67 11
-26 59.3 1" 23.9 67 11 ~ 67.11
-27 16.3 15( 30,0 67 11
.2' 2.,8 1" 37,7 67 11
D DiG
9.40
10 ,40
U.5O
U.25
10,4'
7,90
·8i90
8,1'
.," 8." 8.U
9.60
•• 60
1.10
0.'0
9,U
1.0.70
9.60
8,65
9,45
9,45
10."
10.05
9.90
9.85
0.20
10.10
10.'~
10.00
0.1'
0.35
0.75
9.40
9,60
.'0.00
9.3'
9.80
·10,30
10,70
·o.n 9.n
9.70
U.l'
'0.65
U.O'
28
TABlE 1 SHEET 18
I ~ DEB
.56.3'
-56.35
-56.U
-".05
-,..10
.~6.0'
·~6.00
-55.9J
.56.00
·U." .' •• 05
.,..10
-n.20
." ,'0
.~,. 35
.!;;',OQ
-!JIII.80
-~,. 60
29720
29820
29710
29840
29920
298~0
2"70
2~9UO
29910
a98~O
29UO
29no 299UO
3UO~0
30~40
30210
30200
30HO
30~40
30110 \"
296~0
30710
30420
3U~~0
30~40
30460
30~40
30UO
30~40
29UO
. ,30J~0
30120
·;'oovo
301'0
3U160
29~UO
29UO
29~70
29670.
29420
29860
2~4UO
2~~60
29'10
29J·0
20400
20460
29310
29350
29320
20200
29310
20620
20"0
29490
204eo
29540
29540
29610
20900.
~ouo
20790
29110
20720
29760
20280
30300
30010
30000
30070
30000 :
30390
30260
20170 -
29320
29920
.29690
29100
29100
29160
29480
29170
29180
20240
21940
20340
21960
20130
29090
21790
21890
uuo
50'0
5010
5UO
'340
'240
~280
4890
5330
5520
5280
5100
4880
5090
.4940
4970
5130
4810
5050
5250
,,.0 SOJO
5020
4970
·"80
5430
5600
. .' Z
-44190
044790
044100
-44440
044380
-'43&0
.44300
-44no
'44UO
-44400
'-43620
·-44080
.41730
·'44340
-4U30
-41950
-43060
"U'o
.41240
-42180
043490
-42210
.41200
-'36·40
QJ860
-43510
-41590
-4Ul0
-4UOO
-44280
-'4'30
-44600
.44120
-41140
-4U70
-4"60
-."20
nno 13'00
U790
e3760
uuo uno
.uno· nuo 53500
13420
ueoo neeD 53640
nflO
130'0
13440
53110
Ue70
13300
nno 52500
uno U730
noao IaUO
1a440
uao 52170
52e70
52f70
53310
uno UHO
52990
nOlO
53290
nl'O
53260
uuo nuo nuo 53320
53no ·53UO
uno '4130
54210
"
B~ METRU
.. 0
460
4,00
·'40
'00
.. 0
470
JOO
110
140
leO
230
120
·210
150
210
UO
170
UD
240
110
"0 aoo 220
·250
,360
'00
,220
90
:'·"0
'150
~JO
.110
150
1'0
230
200
230
·uo tao
·460
·490
eo eo 00
'0.
60
G96-31119
KILOMETRES^ THIRD - ORDER MAGNETIC STATIONS OCCUPIED 1967^ PLATE 150^100^150^20020.0 204
®^Stations in the First^Orderoi\
-^Network\ 30°30
COMPILED AND DRAWN IN THE GEOPHYSICAL BRANCH, BUREAU OF MINERAL RESOURCES, GEOLOGY & GEOPHYSICS^ ACCURACY: THIRD ORDER
° Er
20^■39.^ 40°^ °^ 42°^ 43°^ 144°^ 145°^ 146°^ 147°^ 148°^ 49°^ .50°^ 151°^ .52°^ 153°^ 154°^ I^o
21°
22°a70C3,■70CC
...
23 °
•
CLONCI4R8T.• Ia^•
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mo^•^".°***
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25°
26°
27°
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COOLANGAT TA
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30°
0MARREE
OTIBOOBURR A
NE W
0WANAAR1NG
S DLIT H WALES
BREWA RR IN A0
MORES
GLEN INNES
5TENTERFIELD 29
ETON
30°3e°^ ■ 39 °^140°^ 141°^ 142°^ 143°^ $44°^ 145°^ 46°^ 147°^ 148°^ 49°^ 150°^ 151°^ 152°^ 153° -^-^l'^154°^ 155°
( BASED ON 696-2501^Scale 1:5,000,000 at equator. Mercator projection^ To accompany Record No. 1970 1 56^A / 89— 19
I
DEGREES PLATE 2 MAGNETIC DECLINATION (OR VARIATION) IN D COMPILED AND DRAWN IN THE GEOPHYSICAL BRANCH, BUREAU OF MINERAL RESOURCES. GEOLOGY & GEOPHYSICS
ACCURACY: THIRD ORDER 200'3i~ ______ ~~--__ ~11'9~0~~ __ -'r-~~~== __ ~ ____ ~~-l'4~IO ______________ ~14f~ ______________ ~ll4~'0 ______________ ~14T4~0------------~1145~0~------------~14f6~0~~~~~~~'4~7-0--------~~~~--~~~;:::~~r_------------~I5TO-O------~------~15~10~ ____________ ~1512~0-·------------~15~,0~-------------'~5r40--------------~l5l5200
.,0
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" '40 '--------
,,0 ;----------1
o BIRDS VILLE
JULIA CREEK o
OHUGHENDEN
LONGREACH o
BLACKALL o o
TAMBD
UGATHElLA 0
LOCATION DIAGRAM
If declination IS EAST,values must be ADDED
to compass beefing 10 give True bearing.
If declrnatlon IS WEST, vclues must be SUBTRACTED
------~------------~-----------
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8'50 0E MARYBQROUGH
o
21 0
,,0
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-S""'Q7TH AU-sTRALTA ~A~E
.-{-------I----+------j~--~--------~.-~-------I~~~-----~f----+------------~-----------+~-----------j _____ ~---'6 0
~¢=--~------~f_----------~--~()~------~i----------4------------~'60
o MITCHELl ROMA o
,7' ~--------_+---------_1--------~-----_f-r_------,f~--------_r_jL------+--------r--f-----,f+--/~----~-------4_----+_-.
-~-------_+---------r------~~--~---~------~,.o
2. 0 I----------+------------I----------l~--.--.. --.. -~
MARREE o
TIBOOBURRA
NEW
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SOU T H 'WALES
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MOREE o
GOONOIWINOI
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GLEN INNES o
GRAFTON o
LISMORE o ALllNA
-f-----·---------12.0
D 300L-______________ -L ______________ _l~--------------~------------~~~------------~~------------~~ ____________ ~~------------~~~----------~O~~------------~~~-------------L~-------------l~------_________ L-______________ ~ ______________ ~ __ ~ __________ ~~ ____________ ~
1380 1390 1400 141 0 142 0 143 0 144 0 1450 146 0 1470 1480 149 0 150 0 1510
(BASED ON G96-2501 Scale 1 : 5,000,000 at equator. Mercator projection To accompany Record No. 1970/56 A/e9 - 13
MAGNETIC INCLINATION OR DIP ANGLE IN DEGREES PLATE 3 I KILOMETRES
2!f? 50 100 150 2~O 200 i I I \ \ /
30°' / \ 30° COMPILED AND DRAWN IN THE GEOPHYSICAL BRANCH, BUREAU OF MINERAL RESOURCES, GEOLOGY & GEOPHYSICS
ACCURACY: THIRD ORDER '42" 1520
5 '
21'
• 4
-sot. ,sl. ,,,,,,S' _______ r--oCH,R1ERS TOWERV ~
r~1 r----- '--~ -49-0
- Q .,.- ,,,. .,. ~ I '0'
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~ A C
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~ -- ....... o URANDANGI 1---515
, __ --525~ r------ 1 4> '0'
12,- Ill-00'
"'- -- V I:!!iS"
K "-. ~ ---- ~ \ -- 520• _____
~,!i~ LOCATION DIAGRAM
t-------- f-- 515 ' ~
-53-0'_ i'... t---- -o~
~ owrNTON 1---52-5'
~ r I ~ ~ e>
Q -53·5" MUTTABl..'RRA 0
1---520' '" - t-- f-.--53-0·- ~OClERMONT --- r------- ~I ' .. BOULIA
~ GI!nOfmISlon". --- 0 -1---
'" -54'0~ ~ V
~ ~ ~ \ L----- -525'
\'" -53'5' r------ © ,'" -54-5'1 ~,,<"<",-" ~ ! ~ "-
1 LONGREACH
MOIIOf'! Do ... n~ 0 OEMERAL~
~I_~~~ fYj>",,", I BARCALOINE 0
I - 0
1<> • I I---~ I ,
I I \--54-0 ' -r------ -~3'0'
;i -55-0' Oiomonl,no .;;p
----~t , - --j~ -f 1\ -545° 05 PRING SURE ______ .---
I • ~BAO ' 53 5'
I -55-5 -~ ~ u----- '7Y
i I oBEDOuRI[
I BLACKALL I--------k- ~~
0
t--- -55-0" -it-I I
I, I - -54-0"
I -56r -t--- .'Monklro
OTAMBO r------- !J . OMONTO 0
r - -----55-5'_ 1-----" --- BUNDA BERG _54-5"
15'
i---
--I -~ 1// I -- I
! ~~---I --!---56-0'_
I ",",",0'0," 0-{
'55-0'
I I -~ -57':0· --- ~ i
-----~ r------56'5' UGATHEll''\.
oBIROSVILLE OADAVALE if--, --55'5'
I-",i7jSTRA LIA --'---'--~--'- I -·-soJrH ! --- - ~MP'E 7
-57-5'_ t---
-5?-0~
~ --------[
OMORVf:N 56-0' o MITCHEll.
OOU1LPIE -575~ --r---~OM' ~ °EROMANGA
~ CH'NCHlLl~ r---- \ 56-5' -58-0·
Id\ --- r---- --- -580'- - ~oSURAT --- I>~- 7 Wy;;;;;.. ____ -58-5·_ ----- -57-0·
r------- :--- oCASA~ ---- ~"1c . ~Nappa M@rr1@- 1---585':... TOOWOOMBA ~ -- ----r------- ~-57-5 -59-0' r----- - -- - -580' THARGOMINDAH ~M~ -----=:::..-59 0._
• °SOLLON ..
COOl'NG'T~ °EULO r---- _ ~ oWARWICI( r---- ~ .... ;'I.''-..r-. 1-.,......----.. ~ -' OOIRRANBANDI
/ ........ -. "'- ~-585' " . t:---- ')
. / ~-59-0' ~ISMO~,
QUEENSLAND iMUNGINDI ' • ./".1"- ALLiNA ~
NEW SOU T H W A L E S ! .... / TENTERFIELO
}
22'
23'
2.'
26°
27'
2.'
29'
TlBOO8URRA MOREE
I 0
I oMARREE
oWANAARING GRAFTON GLEN INNES
0 0
J BREWARRINA 0 0
0 , , 4.'
, '4 0 44'
, 0 0 0 0 0 , 30
138 140 142 '39 .4' .46 141 148 149 "0 '5'
••• o 20'
",
22'
24'
26'
2 8'
290
t BASED ON G96-250) Scale 1 : 5,000,000 at equator, Mercator projection To accompany Record No. 1970 I 56 A I B 9 .... 16
HORIZONTAL MAGNETIC INTENSITY IN GAMMAS ( C.g.S. UNITS X 10-5 ) PLATE 4
H KILOMETRES
2fI'? SO
'j ISO Z~O 200
/ \ 30
0l \ 30° COMPILED AND DRAWN IN THE GEOPHYSICAL BRANCH, BUREAU OF MINERAL RESOURCES, GEOLOGY & GEOPHYSICS
ACCURACY: THIRD ORDER 1390 1",,0 141 0 14" 20013;~ ____________ ~ ____________ ~ ____________ ~ __________ ~~ __________ ~IT43~0 __________ ~1T44~0 __________ ~14~S_0 __________ ~14r6° __ ~~~ __ r<'n47~0 ____ ,,~ __ ~1~4B~0~~~,-~~~'49~0 __________ ~IS~0_0 __________ ~I~SI_0 __________ ~15T2_0 __________ ~15T3_o __________ ~15T4-0----------~155200
~ j ,00 ~.. k",_ .--=?J \\~(;) ~ow:: ,'1 Q 'O.--:T---A"~'· --.5-.'''',-~-~;O,
21 0
22 0
/1\ ~32 ~JULIAOCREEK t:::\ CQLlN~)::_E" ~r-.... .,,'j,' ~ -4!l.':'?J" 0MT ISA . 1'-.. _;_LONC RRY oRICHMONO I - I
21' ~J---2-0--0--0--+----/~r;-=1~O~-1,=50=0 ;;;;;;~-:::""""""~±~~~-~--__ 4Lr--=_--_~~~~:I--__ O_:"'~"'~~: .. ~;:~ __ ' ....... ~r~-~===tr-....~~V--1(-Ir\i-~+--+~------7f:~:~:~'CKA'-f.......J--1:---=3=:::~:::'::....0 --I-o-¢>-----j----j~C~-T-:l t _ ~,:~ ~" ... ~~ --+--~--- ~r-.~,_ r-------r-----::j~ - ~~." ~ ... .... .~~ J
31500
- --......... 3(SOO__ ---............ ___ ~ ~11f\ ¢> LOCATION DIAGRAM
~ --- ..""".",,,~::::.OO -_____ - ~A d '" '" ---~ /\ f"...--- - MUTTABURRA 0 _ I---- / ------~ i ~t1 31750 0
220
~ ~ ~ ~~I~~~JL-------=::::~I::::::~ ~~~=t~::::~~~O=CLL~EERR:MM:OOl'NT~ __________ -t ______ ~~===t'========~j~~::====~~~~------------JL------------~------------~ 2':~~~~----=-----~I~~----~--~~------~~-f-------------t-------------t--~~-------+---- !..1 ~ 2,0
:, ~ _ I"~ ~ -- ~ LONGREACH I iROC'\."TONo · V - --1--3 :1' I ......... / v-:"." ~q,0 g"'""" _________ ~V"'""." i'o..A '::.::::7.. ~r-:._ ~~ 30S00r-_____ /- :°"71,. I'---- _ I "') i ~ l1tSTONE
,.. : ---t--o--BEDou-RIE-+,--~----l----1-(_---+------=l==========F==------~-m17 "-OB'"""'LACK=ALL=+II.-----OTA-=MBO=-::.::::--tr--==--=----:::--t--~--;-;;;OSPR~INGS~URE==-....;;:,:+l-----"'o ...... BARA'---LAB-AO +-1 --0-""---'T-~t=Jq,.>~so ~~~~JO.,.-::-. .>sO,-+----t-':'?J"-----j 2.
0
'
I '0_ "'" ~ ->----------:1--- 30.500
'JO,SO,O,..J I ~ ,Mou0 L:::,. ~ 25" ~-~-~--+r------------------+~~~~~._M~O'~',,_'~~~~~~~j_-------------~~----~====f~~------~~tl==::~3.~o'~~~~O~,±~----~~----~--~=9~----;;~~~~~-=~~---t_ ___ ~==::+=~~_~M_O_NT_O ____ -iB~U~NO~~~BE~~G~--~~~~~~~,~~0'~5~0~0t_-----__ 25
0
I .--~ __ --J_~~~~r--- I ~.~------- '--V- ~VL ~ I ~ORAH ----r-------.J~--_3aO()O~ ______ ,1 --- I"'----... ~
/
......... I ---....--- I "rAROOM MARfBOHUUGH 0 "\ ~ ?9500 ~ -O--t--------t-_____ -+-----"'1jrr----- 30,00 . '--I-:~~?-+_-_--- ~.>,,,AUGATHEL':YO_.........._ . ~ "~
oB1ROSVILLE OAOAVAlE ~.............. /" I" tr'7 26" r----~S~O~U;7;T""ZH+"";A~U'"':S'T'T<;R~A~L--:/~Ar~-~--~..,- _____ ____ I r,I /
II' ~ ______ --_+--___ ...... -,.... -r--?~50'0_ CHARLEvlLLE OMORVEN T-------r-------t-------+----,-,N-G-AR~0'-~fo~:2:9175:0~/} OGYMPIE
, I O~MrTCHELL ~OMAV ~ . OQUILPIE----:r--_~ °EROMANGA -!--" CHINCHILL~
3Q250
'9.7S0 -
129000 --29.250 , I~\ ~< Sa ____ ---j 27 0
oSUR~ Q I V W"ANORA ~
--.?-'?cq,_~ _-O-CA-B-AW-'N---r---_ "-r--. BRISBANE ---..
~Nappa Merrie r--_____ IPSWICH __
----r--t---l -1----+----+-- ~~~'~ ~~<1:50' 28.7SO,-;-____ _
1--------t-----------t-----------t-----------t-------~~~~~~~;=f===========f=~~IDtt~~~k:=:~~--~~~;c~-----~;:=t~~~~~~~========::~::======. ---::=Fr---~~ __ ~~~==::===_--_t--~~===~2:~~~V-------~ 2.0
I" 28.500 THARGOMINDAH CUNNAMULLa ~r---~6?Soo~LON L \ 1 2. 0
°EULO ______ :-- OWARWICK -----....... COOLA.NGATT~ ,----+----L .-J.\.'-..".....r-.,-;-r--GOONDIWINOI_ ..-" <-1'8 ?.so
I· ... " I: 0 ALLINi8S0o
OOIRRANBANOI
."J.r/· ....... --- v- • ..rQ,- __ .. , 1\ ~ ;.;b'SMOR
OU £ ENS LAN D IMUNGINOI ,/, .. j.!,J 290~------------r_------------~----------~~----~----~------~----_1----~------~--------~t~:~E~W~~-S~O~U~T~H---tI~w~A-L-;E~S----1-----------~1-------------~==~~------+-------------t---tl,~--.~{--~-tTTIE~NTTIE~RFC.IE~Lo,------+-----;>,L------+-----------~ 290
TlBOOBURRA
OWANAARING
MOREE o
GLEN INNES o
GRAFTON o H ~~A j
300L-------~~----__ ~--------~------~~-------=~------~------~=_------~~----~0~------~~------~~-------L~--~--~--------L-------~~~-----L------~300 138
0 139
0 140
0 141
0 142
0 143
0 144
0 145
0 146 0 141 0 148 0 149 0 150 0 1510 1520 153 0 1540 1550
IBASED ON G96-2501 Scale 1 : 5,000,000 at eq uator, Mercator projection To accompany Record No. 1970/56 A/89-12
y
'BASED ON G96-2$01 Scale 1: 5,000,000 at equator. Mercator projection
EAST MAGNETIC INTENSITY IN GAMMAS ( c.g.s. UNITS X 10-5)
COMPILED AND DRAWN IN THE GEOPHYSICAL BRANCH, BUREAU OF MINERAL RESOURCES, GEOLOGY & GEOPHYSICS
TIBOOBURRA
OWANAARING
MOREE o
PLATE 5
ACCURACY: THIRD ORDER
y GLEN INNES
GRAFTON
0 0
J 1$1 . 152 0 153 0
To accompany Record No. 1970/56 A/B9 - 17
_KILOMETRESNORTH MAGNETIC INTENSITY IN GAMMAS ( c.g.s. UNITS x I0-5 )^ PLATE 6
2.0 0^50^100^150^200 204
4/ COMPILED AND DRAWN IN THE GEOPHYSICAL BRANCH, BUREAU OF MINERAL RESOURCES. GEOLOGY & GEOPHYSICS\ 30°
ACCURACY: THIRD ORDER20 ° 8.^ 39.^ 140°^ 41°^ 142°^ 143°144°^ 145°^ 146°^ 147°^ 148°^ 49°^ 150°^ 151°^ 152°^ 153°
1^322,50
A
2.230
°RICHMOND
°HUGH ENDEN
32,500 ---..,„........°CHARTERS TOWERS B^N
--75
32,250•A
*
154°^ 15
12,
- 22 °
..••••CLONCURRy0
21° L 32000 00
JULIA °CREEKCOLLINSVILLE •
- c :.'
D
i■
1
40
34750
0 URANDANGi
3100 ......"...
22 °
MACKAT34.000 ^
3/.750
34500
3,Rooc,
G .i
44.
^1111111.24•
LOCATION DIAGRAM
' oe
^ct^31250o,.,2 p
31000tt• ,q^,^..4^Gi,norrmston-.
^23° ^
°^TONRIDDLE°WINTON
— ■••■••"
31,250
4111J
K47^
---.50
.23°
24°
25
26°
27°
28°
29°
30°
15
34250
oCLERMONT13011.0/7..........\SY
MuTTABURRA o
3L0
1
wish.
5,500
sezso2
Q
..-
,t02
24°
25 °
26
A27 °
28°
30
L,^30 750
LONGREACH
31.000
el
•O^30 500 -.''' °°'n°'0
30250. ETtornantino
BARCALOINE .3075 0 —
............ EMERALD
-
30 750
•
ao -----11hh■-.ADSL^TONE
3050°
30
409
C...230250000
OBE DOUR IL
.^on Ira
"so
A ,
..........-LB̂ AACK LL
30, 2 50
0SPRINGSURE ■I-P.
1.1111M13U/40413E12G
.,250
Ali
., .,30 00
0TAME10
---------------------
WINOOla
TAROOMo
29750 1111189,750
25I500.10,
29,25o
PO ^
29,500
l•
0 BIROS viLLE29,50°^---',....___.■A^o1AUGATHELL
-- MARYBOROUGH ir,040AVALE
11SOUT H A USTR AL/ A
19250
29000
•
29,250.CHARLEvILLE^MORvEN
'^ 0
29000
KINGARO ,^
°GyMviE
.
111111-444111.1.111.18,-.....it.,,
TOOWOOMBA •
p^-k
° EROMANGA
MITCHELLgtomA
CHINCHILLA
0 OUILPiE '
255°°.Nappa Me"'°
WO
°....... 4TP,fo
WYANDRA
28,500
°SURAT 7-25000
V BRISBANE
25.750.^f;,'
IN0CABAW
0 BOLLON
— -- - — — — — . —
-/11111.11■-----
THARGOMINCL
-----
CUM^UlMr77.0°.
OEuL0
OUE ENSLA NO— - — —
4f. 5
OOL A N GAT TA.
'=1*°00
e SMORE
LUNA
° ARy/ICK
,-)^; \"••
g000• • .1""
0DIRRANBANDI
28,00,0,.... •
MUNGINDI- —. -- -6/
GOONDI^IND., ...,.-12 \- - -.-,
.MARREE
7T1BOOBURRA
N E W
0WANAARING
5 0 U T H
,
W A L E 5
BREWARRINA0
MOREE.
>TENTERFIELD•
GLEN INNES^ GRAFTON.^ 0
138°^ 139°^ 40°^ 141°^ 142°^ 143°^ (44°^ 145°^ 146°^ 147°^ 48°^ 149°^ 150°^I ,^ 151°^ 152°^ 153°_( BASED ON 096-2501^Scale 1 : 5,000,000 at equator.^Mercator projection
To accomnanv Record
155°
No. 1970 56,^A/B9 -4^ 1
VERTICAL MAGNETIC INTENSITY IN GAMMAS ( C.g.S. UNITS X 1.0-5 ) PLATE 7 z COMPILED AND DRAWN IN THE GEOPHYSICAL BRANCH, BUREAU OF MINERAL RESOURCES, GEOLOGY & GEOPHYSICS
ACCURACY: THIRD ORDER
r:, ""
,,"
2."
25"
2."
""
2."
29"
." 9" 5 " 5 " 5 "
zo"
"5 ,.7 "
,. '0 lSI , 2 , I • I 5
\
18.500
OCHARTERS TOWERS -............ ~y -J
-J \---. 9.50 0 ---........ 39000
'0· ttt- t38° -~,.
~ 0/7; ~ ~ A~ C 10"
..4>
-40,000_ \. JULIA CREEl( -J9. 0 0
0_
0 ORICHMONO
OHUGHENDEN ~ -- -p
~~~--j'" r---- ~p -J9 ,s00 --!-" ~40.500 39000
D£ N - ~ ---- r;c~ ! e->
-40.000 __ r------ _____ f--- 39.500 ,.. GI- - ; -'H. JI'o. 'v/
'°0 ~ ~r-- ------ ~---?' V 0,
! '~;",--, I o UR.lND",- - ---- -40.500 _ 4>- '0' 1 1 _~ ___ ! ... ~ - I r----- -r---- r--..... t21° 138" I!>'" ~OO --- LOCATION DIAGRAM V K ---~ '-- .......
I '" ~ 1»
~ 'IOW'NTON
:-- -?' - -41.000 - 40.000
7S I ---42000 ---..........
~ r-----......... w ~ (-" e-> I
'" MUllABURRA 0
~ " -4,.500 -40S0 0 ..
.B~o --~ERMDN ----;-...... ~ GI~rlo'm's'of'l . r-
'" u~ ~ I ........ ------ ( .. " r------- -42,000 -I---- I----
~ -4~000. © - 43.000 - I Co
I
Co
~ LONGREACH I . rc;= " MOllor) Down; O~~ARCALD'NE tL1 e-> <> -, . -42.500. - "'-- I'------ 43,500 - I
.!..-
NADSTONE .' I---- -4/.S00 Diamant'no
~ 1\ - t--1,.,- -- 44.000 '- ----- I -43,000 I---- SPRrNGSURE ~LABA __
~ -------- 0
I------ r------- 0 -....... 42.000 -p t--oBEOOURIE
I oBLACKALL I
:--I
~ --tJ,.
- 4-4.500 -- I --!--- [
-4J:jO'O ____ MOURA~
I-Ll ~ I r----- ~MO~ BUNDAB;::\ -. I 1
oTAMBO ~-42.500 -,44.000
--t-i - [ ----+--- ............. r----i Vj - 45,000 [ --------~ ~~ ~ r----- :J ROO, - 45.500 t- -44,500 __
I i r------....... . MAR'BOROUGH 0\, (
0
~ / ~<?.3,SOO
kUGATHELLA 0 i'....... ___
10 OBIROSVILLE oADAVALE I -.......- '- 't'-, ----SOUTH -.~-~-~ -~.-~ _ .... --_.----. __ .- . __ ------1 -- : . 4S.00~ -.......
AUSTRALIA r----- i ~ 7 44_000
- 46.000_ OG'IMPIE , JMITCHELL
~ I CHARLEv'LLE I MORVEN -r--............ -~! o ~ ----[ ROMA KINGAROY
-~ I -~5.500_ 0 0
~-4450 - 46,500 °EROMANGA ~ CHINCHILLA ----------... I ~ I---.. ) .
- 4~000 t-- -46;000_ [t\ ----- -- >'0 'J' ---45.000 \,
l-----J WYA~ -------.. ~SURAT __ 45500
~r-1--46;500--.
ocr,BAWIN
I-----. :Noppa ~Mffli I TOOWOOMBA o l. --r-- -47,
000 __
47.500
~ -~ ~ I---. f - -46.000. THARGOMINOAH 'NNAMULL~ ---r----..0
BOLLON --r------- ----- ~ °EULO -47.500_ eWARWICK r------ ~
,"\ -- ............... ,...J ''-_r-_ ~'
, ,--J 7- -46.500
oDIRRANBANDI
~I ('-".--"---",~ ') -47.000
,r' ,-,,'
,/',.r,U "~~ -?;> s. ;, "'-, BALLINA QUEENSLAND I MUNGINDI
NEW SOU T H W ALE S ~L)
TENTER FIELD
} . . TIBOOBURRA
MOREE Z 0
OMARREE OWANAARING GRAFTON
J GLEN INNES
0 0
BREWARRINA 0
, , ,
",
26'
2."
,., "3 , .. (BASED ON G96-250! Scale 1: 5,000,000 at equator. Mercator projection
To accompany Record No. !,970 / 56 . A/B9-14
It·
/ { ~ //
F TOTAL MAGNETIC INTENSITY IN GAMMAS ( c.g.s. UNITS X 10-5 ): PLATE 8
COMPILED AND DRAWN IN THE GEOPHYSICAL BRANCH, BUREAU OF MINERAL RESOURCES, GEOLOGY & GEOPHYSICS
ACCURACY: THIRD ORDER
20013i8_' ________ ,-__ ~'~'9~O--------------~'4iO-'------------~'~41-'----------____ ~I4i~--------------~I~4~"--------------~I4r4-'------------~I~45~'--------------~'4F6'~~~?r.~~~T'4n7-'------Jr------=r--~DW ... ----~~'4T9~'------------~~~o~' ________ ~ ____ ~I5T'-'------------~';52~'--------------~I5T'-'--------------~l5r4-' ______________ '5l5~oo
51.500
52.250
'" ~ It ",,52.500 - ___ -+_
It <>
53.000
53.25;; -t------_..L_
5 4.500 r ____ _
1,,000
-------+- 51,i'50 ____ t-__ _
5{.500----+-___ _
51,750
52.000-----t---------_J
-----+---52.250
-----+--LONGRE4C" I -·52500---t---..... o ~ . ----1--_ ~ARCAlOINE
o WINDORAH
-----I--5~000 UGATHELLA 0
",
LOCATION DIAGRAM 22'
5<'.000
25'
p _____ ~~~;rI7+_~~;O~BT'R,D~SV~'~LL;E_;~-~==::::::::=t::::==~~~~~b:--------______ +-____ -=::::~~~--~~~~O;4;D.;V~4L~E~~~~--------~--------~~~--t_--------------~====::::==~~~~------~~~-----=~~~~--t_----==::~~~~::=--------=:::f~~~~------~~~--__________ ~ 2Ei v r-- SOU T H A U 5 T R A L I A 260
54.750 MORVEN o
S~<50
o MITCHELL
53.501
1 ______________ +-__ ~ __________ ~--~----------_4--------~~s~SL.~~~-------~::=+::~~~~----__ ~------.~~~~~~~:=::::::::~~~~--------_+----==~~~~~~--------------+_--------------~-=~~~~----_+------~~~~~------~::::~~~~:=~;:====~5~J~.?F~'q~------------~ 27't-
54,000
55.500 -1----------
2"
", L---------------+----------------t---------------i----------------r---------------+-----~~~~~_t~~~~------_{--~rnm~ .. rnULITL~---l------------~~J_------oo~~--~---------------+--------------~~~~ ____ ~~--+_--------------~---------------4------~=:::::=~5~4~.5~0~O--~--------~ 2.' r _ 0 0W~~ OEUlO~ __ ~
OOIRRANBANOI
29' f---------------+---------------t----------------J~---~-~~~.- .. '-.'-~' --.-_. OUC~SLAND
NCW SOUTH WALCS
TlBOOBURRA
OJ;l~RRH
OWANAARING
,/ BREWARRINA
.",'
/'--".-,r'
I MUNGINDI
MOREE o
GLEN INNES o
GRAFTON o
ALUIIIA
F 'O·L---------------J-----------____ -L ______________ ~~ ______________ ~ ______________ J_ _______________ ~----__________ ~~-------------L~----------~O~~--------------~---------------L~-------------L~------______ ~ ________________ L_ ______________ _L __ ~ __________ ~ ______________ ~
1380
1390 1400 141 0 142
0 143 0 144 0 145 0 146 0 147 0 148 0 149 0 150 0
'9'