6 2
Tubularum Ttydolphi
Tabula Aquationum MARTIS.
Anomalia
Eccentri» *
Ctm aquata
ntsparupifys
Interco
lumnium»
CumLog-
anthme.
■
Anomalia
coaquata.
Intervalli!
Cum Log*
rithmo
Anomalia
Eccentri,
Cum aquatu,
nispartephjs
Interco
lumnium»
CumLog.
anthme.
Anomalia
cosequata.
Intervallu
CumLoga-
rtthmo
o ' "
■ Par, f
Gr. ' . "
166465
30 ' e(
1 5 9 60
Gr. * "
164572
0.0.0
0. 0. 0
50962
b
2-39-14
0.51. 9
27.26.37
49818
I
-18130
I66462
31
15810
164447
o. 5-3 4
0.50, 3
0.54.41
50960
2.44. 2
0.51,13
28-21,57
49 742
2
18130
166456
32
1566°
I64319
' o-.l 1. 7
o.fo. 3
1.49.22
5°9 57
2.48.48
0.51.18
29.17.19
49664
3
I 8 110
I66446
33
1 5490
164187
•o.1 6.40
0.50. 3
2.44- 3
50950
2.5 3.31
0-51.2?
30.12.44
49584
4
I 8 1 1 0
16643I
34-
15 3 10
164051
0.22.13
0,5:0. 3
3.38-4-4-
50942
2.58.10
0.51.29
31. 8.H
49501
5
18090
X664I2
35
I 5 1 50
163912
0.27.46
0.50. 4.
4-33-25
5093O
3. 2.46
0.51-34
?2. 3.41
49416
6
18070
166388
z
36
1497°
I63769
0.3 3.18
0.5:0. 5
5-2 8- 7
50916
3
3. .7.1 8
0,51.39
32.59.14
49319
7
1 -18040
I6636O
» 37
14790
I63623
0.3 8.50
1 0.5:0. 6
6.22.49
50899
3.1 l-4(?
0.51.45
33-54-50
49140
8
-I 8 0 1 0
166328
3
38
14600
163474
0.44.2 I
0.50. 7
7-17-3 2
5 0 8 79
3.16.10
0.51.51
34.50.29
49149
9
17970
166291
39
1441 O
163J2I
0.49.51
0.50. 8
8-i 2.15
5° 8 5 -7
3-20,31
0.51-57
3546.11
4905 5
10
17930
166250
40
142 1 O
163165
0.5 5.20
°-5°- ?
9. 6.59
50832
3-24.48
0.52. 3
36.41.57
4S9 59
11
17880
166205
T
4-1
I 4O 1 O
163005
, 1. 0.48
0.50.11
10. 3.44
50805
3.-29. 1
0.52.IO
37-3746
48861
12
17830
166156
42
13800
162841
i. 6.1 5
0.5:0.12
10.56.30
50776
S
3.33,10
0.52,16
3S-33-39
4S76 1
13
T777O
166103
43
1 3 59°
X62674
1.1 1.40
0.5:0.14.
11.51.17
50744
3-37-1 5
0.52.23
39.29.35
48658
!4
17 700
166046
s
44
13 3 9 0
162504
i.17. 4
0.50.16
32.46. 6
5O7IO
3.41.1 6
0.52.29
40.25.34
48 5 54
15
17630
165984
45
13180
16233I
1.22.27
^.50-18
13,40.56
50673
6
3.45-1 3
0.52.35
41.21.37
1 8448
16
47550
I6?9l8
46
12970
162155
1.27.48
0.50.21
14-3 547
50633
6
3-49- 6
0.52.42
42.1743
48340
.7 !
17470
165848
47
12760
161976
'1-33. 8 i
0.50.23
15.30.39
50590
6
3.52.5 5
0.52.49
43-13-53
48229
18
17380
165774
48
12540
161794
1.38*26
0.50.26
16.25.32
5°54S
3.5 6.40
0.52.56
44.10. 7
48116
19
I729O
165695
7
49
11330
161609
■1.43.41
0.50.2U
17.20.27
50498
4* 0.21
0.53- 2
45. 6.24
48001
20
I7I9O
I65613
/
50 .
12 110
X61422
'i .48.5.6
0.50.31
18,15-2?
50448
s
4- 5 - 5 S
0.53. 9
46. 245
47885
21
I7O9O
165527,
51
1 1 8 8 0
16x232
1.54. 8
0.50.34.
19,10.21
50396
S
4- 7-3«
O.53.17
46.59. 9
4 7 7 <> 7
22
16980
1654371
52
II 6 5 0
I61039
I.59-I 8
0.50.38
20. 5,21
50342 1
9
4.1 0.59
0.53,24
47-55-38
47648
16870
16534-3 |
5?
IT 4 1 0
160844
2. 4.25
0.5C/.41
21. 0.23
50285!
4-14-22
0.53.32
4842.11
47 517
2 4
1 67 60
165245
54
1 I I 8 0
160646
2. 9.30
0.50.44.
21.55.27
50226
10
4-17-40
0.53.39
494848
47404
25
16640
16514?
55
I0940
160446
'2.14.3 ?
0.50.48
22.50.33
50164
IO
4.20.5 3
0.53.47
50.45.30
47279
26
16520
165036
5 6
IP700
I60244
2.1-9.3 4
•0.50.52
23.45.4x
5 0 100
4.24. 2
°-53-55
51.42.16
47152
27
1 63 90
164926
57
IO45O
160039
2.24.3 3
0.50.56
24.40.52
50033
I X
4.27. 6
0.54. 3
52,39. 6
47024
28
16250
164812
58
1911)0
159830
2.29.29
0.51. 0
25.36. 5
49964
11
4.30. 6
o-54-ii
53 36. 0
46894
29
16110
164694
59
9940
159621
2.34-23
0.51. 4
26.31.20
49892
4-33- i
0.54.19
H-32-58
46763
3°
15960
164572
60
9690
159409
2.39-14
0.51. 9
27.26.37
49818
4-3 5.6 °
0.54.271
55-3°' 0
46630
ix
I x
IX
I 3
ii
i i
14
14
14
15
T6
I 6
i 6
17
17
17
18
IS
i S
i?
19
1 9
19
z i
2 I