H
Anomalia
Eccentrii
Cum aquatio
nts parte phjs
Interco
lumnium,
CumLog-
arithmo.
Anomalia
coaequata.
Intervallu
Cum Loga-
rttbmo
Anomalia
Eccentri,
Cum aquatio
nis parte phys
Interco
lumnium,
Cum Log-
anthmo.
Anomalia
coaequata.
Ittfervallf
CumLaga*
rithmo
I
6o ' "
4950
1' t tt
532537
90 ' "
19 0
/ t
520000
2.23.3 3
0.57. 6
57-38. 8
167248
I 2
2.45.45
.0-59-53
87.14-10
I 6 4 S 6 6
6l
48 1 0
532156
91
30
519562
14
2.24.5 8
0.57.11
58.3641
167176
1 2
2.45.43
0.59.59
88-I4- 7
1 647 8 a
62
4670
531772
92
I7O
519124
«4
2.26.2 I
0.57.16
59.35.i6
167104
I 2
2.45.39
1. 0. 6
89-14.. 7
164698
63
4 5*°
531384
93
3 5°
518687
14
2.27.+ I
0.57.21
60.33.54
167031
I 2
2.45.32
I. 0.1?
90.14.10
164613
64.
43 8c
530992
94
520
518250
14
2.2 8.58
O.57.26
61.32.34
166958
2,45,22
I. 0.19
91-14.16
164529
65
4230
530597
95
680
517815
<4
2.30.1 3
O.57.3I
62.31.17
166884
2.45. 8
I. 0.25
9 2.14-25
164445
66
4080
530199
96
850
517380
14
2.31.25
O.57.36
63.30. 2
I 6 6 8 0 9
2.44.5 1
I. O.? I
93.14.37
164361
67
3 9 3 0
529797
97
I O I O
516946
14
2.32.34
O.57.4.I
64.28.50
166734
2.44.31
I. O.36
94.14-53
16 42 7 7
68
3780
529393
98
117 0
516512
14
2.3 3.40
O.57.46
65.2740
1 6 6 6 4 8
13
2.44. 9
I. O.4.2
95.15.12
16 419 3
69
3620
528986
99
1 340
516079
14
2.34.44
O.57.52
66.26.33
166581
13
2.43.44
I. O.49
96.15.34
164110
70
3470
528576
100
15 00
515646
1 4
2-3 5-45
0.57-57
67.25.29
166503
2.43.16
I. 0.55
97.16. 0
164026
71
3310
528163
101
1670
515215
i 4
2.36.43
0-58- 3
68.24.27
16642 5
13
2.42.45'
I. I. I
98-16.28
1 6 3 942
72
3160
527748
102 j
1830
514786
14
2.37-3 8
0-58- 8
69.23.28
166346
13
2.42.1 I!
1. 1. 6
99.16.59
163859
73
3 000
527330
i°3 |
j 1990
514359
1 4
2.3 8.30
0.58.13
70.22.32
166267
13
2.41.34
! I. 1.12
100.17.33
163776
74-
2S40
526911
I0 4 |
2 15 0
513934
1 4
2.39.19
0.58.19
71.21.39
166187
13
2.40.5 3'
I. I.I9
101.18.10
163693
7?
2680
526490
105 1
2320
513510
1 4
2.40. 6
0.58.25
72.20.49
166107
13
2.40. 8'
1. 1.25
102.18.50
,163610
76
25IO
526067
106 |
2480
513’°88
1 4
2,40*5 0
0.58.31
73.20. 2
166026
13
2.39.20
I. I.?0
103.19.32
1 6 3 5 2 s
77
2350
525642
107 |
2640
512668
1 4
2.41.31
0.58.36,
74-19.18
165945
13
2.3 8.30
I. I.?6
104.20.17
163446
78
2 1 8 oj
525214
108 i
2800
512251
1 4
2.42. 9
0.58.42'
75-I8-37
165864
13
2-3 7-3 8
I. I.42
105.21. 5
163364
79
20 1 O
524785
I09 j
2960
511836
i 4
2.42.44
0.58-48
76.17.59
165782
13
2.36.43
I. I.48
106.21.56
163283
14
80
1840
524354
I IO |
3 110
5i1424
2.43*14
0-58-54
77.17.24
165700
14
z.3 5.4 5!
1. 1-53
107.22.50
163203
8i
1670
523922
111 j
3270
511014
1 4
2.43.43
0.59. 0
78.16.51
165617
2.34.44'
I. 2. 0
108.23.47
163123
82
ISIO
523489
I 4
I 12 j
343 °
510607
I 4
2.44. 9
0.59. 6
79.16.21
• 6 5 5 3 5
14
2.3 3.40!
I. 2. 5
109.24.47
I6 3044
14
83
1340
523055
113 1
3 5 9°
510203
2.44.31
0.59.12
80.15.54
165452
14
2.3 2.34
I. 2.II
110.25.50
162964
13
84
II7O
522620
114
3 7 5 °
5098OI
2.44.51
0.59.18
81.15-30
165369
14
2.3 1.2 5
I. 2.17
111.26.56
I 6 2 S 8 5
85
1000
522185
115
3900
509403
1 3
2.45" 8
0.59.24.
82.15. 9
165286
%
2.30.1 3
I. 2.23
1 1 2.28. 6
162807
13
86
830
521749
1 4
ll6
4060
509008
2.45-22
0.59.30
83-14.51
165203
2.28.5 9
I. 2.29
113.29.18
162730
13
87
660
521312
1 4
117
42 20
508616
2.45*3 3
0.59.36
84-14.36
165119
14
2.27.42
I. 2.35
114.30.33
162653
13
88
490
520875
n8
4380
508228
2.45.4°
0.59.42
85.14.24
165035
2.26.22
I. 2.4I
115.31*51
162577
13
89
320
520438
1 4
119
45 30
507843
2.45.44
0.5948
86.14.16
1649 51
14
2.24.59
I. 2-47
116.33.11
162501
90
190
520000
120
4690
507463
2.45.45
0.59.53
87.14.1°
164866
2.23.3 3
I. 2.53
II7-34-34
162426