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§. 51. Die Grössen [1], [2], [3], ausgedrückt durch die Factoren I, II, III,
XXX. Feste Winkelbedingung auf Kuneticka hora aus dem Josefstädter Netz.
SKVy — 61° 26’ 5 ? 39 —(37) + (38)= 5 J 3873
VyKVe= 65 18 22-92 — (38) + (39) = 22-6510
VeKSch = 39 14 44'52 + (30) — (39) = 45-5273
165 59 12 83
0 = + 0-7356-
+ (30) —(37)= 13-5656
(30) + (37)
XXXI.
Dreieckseite Schneekoppe-Kuneticka hora sin SchVeic. sin VeYyK. sin VySpK
Spalavä-
sin KSch Ve. sin K Ve Vy. sin K VySp
Sch VeK = 96°
Ve Vy K =61
VySpK =74
9-997 5082 571 — 2262-0)+ (20)
9-942 9581 215 + 11540-0 {— (42)
54 ! 161
21-294
26-653
(20) - (25)
(42) + (43)
(53) + (54)
(25)1
(43)}
9-984 0658 274 + 5810-0 {— (53) + (54)}
KSch Ve = 44° 37' 22*541— (9) + (11)
K Ve Vy = 53 25 19 • 334 — (20) + (21)
KVySp =43 59 30-194-
9-846 6079 428 + 21333
9-904 7408 218 + 15625
9-841 7062 768 + 21808
- (43) + (44)
7 |— (9) + (H)(
l{-(20) + (21){
6 (43) + (44)}
9-924 5322 060
9-593 0550 414
9-593 0550 414
0-331 4771 646
0-331 4826 500 = Log. des Verhältnisses der beiden Dreieckseiten.
+ 54 854
5-4854 + 2-1334 (9)
2 • 1334 (11) + 1 • 3363 (20) - 1 • 5625 (21) + 0 • 2262 (25) — 1 • 1540 (42) +
+ 3-3349 (43) —2-1809 (44) — 0-5810 (53) + 0-5810 (54)
§.51. Die Grössen [1], [2], [3] ... ansgedrückt durch die Factoren I, II, III,
[11 = 0
[2J = 0
[3] = — VI — 1-3703 XXIV
[4] = — V + VI + 1 • 9399 XXIV
[5] = 0
[61 = 0
[7] =0
[8] = 0
[9] = — I — 2 • 1334 XXIV + 2 • 1334 XXXI
[10] = 0
[11] = + I — VI + 3-9379 XXIV — 2-1334 XXXI
[12] = + VI — 1-8046 XXIV
[13] = 0
[14] = + IV- 1-7566 XXIV
[15]
[16]
[17]
[18]
[19]
[20]
[21]
[22]
[23]
[24]
[25]
[26]
[27]
[28]
= — V — 0-9076 XXIV
= + I -II — 1-5624 XXV+ 1-3363 XXXI
= + II — III + 5-4798 XXV — 1-5625 XXXI
= + III — IV — 3-9174 XXV
= + IV — V
= + V — VI
= — l + VI + 0-2262 XXXI
= + X —1-0346 XXV
= 0
= — IV — 1-2272 XXIV
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[61] =
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167] ■
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