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Theory of the astronomical transit instrument applied to the portable transit instrument Wuerdemann no.26: a compilation from various authorities, with original observations by Harry Edward Burton, 1903

Theory of the astronomical transit instrument applied to the portable transit instrument Wuerdemann no. 26: a compilation from various authorities, with original observations by Harry Edward Burton, 1903, Page 68

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ε Serpentis. α = 15h 46m 12.3s δ = +4° 45' 30.2" [table] Wire | Time | Excess ----------------------- D2 | 15h 46m 37s | [blank] D3 | 42s | 12 D4 | 47.5s | 24.5 ----------------------- Sum | (3) | 36.5 ----------------------- Mean | 15h 45m 42.2s | 12.2 ----------------------- [/table] ε Coronae Borealis α =15h 53m 45.8s δ =+27° 8'56.7" [table] Wire | Time | Excess ----------------------- B | 15h 53m 4s | [blank] C1 | 29s | [blank] C2 | 34.5s | [blank] C3 | 40s | [blank] C4 | [46?]s | [blank] C5 | 52s | [blank] D1 | - | [blank] D2 | 5.4m 9.5s | [blank] D3 | 15s | 15 D4 | 20.5s | 30 D5 | - | [blank] E1 | 39s | 31 E2 | 45s | 31 E3 | 51s | 31 E4 | 56.5s | 31 E5 | 55m 2s | 31 F1 | 26s | 30 ----------------------- Sum | (15) | 230 ----------------------- Mean | 15h 54m 15.3s | 15.3 ----------------------- [/table]
 
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