Report of the Annual MeetingJ. Murray., 1877 |
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Results 1-5 of 28
Page x
... Formula CnH2n + 1 + 0.CH , Mr. ANDERSON SMITH on Sodium ..... Mr. EDWARD C. C. STANFORD on the Manufacture of Iodine Mr. J. E. STODDART on Lead Desilverizing by the Zinc Process . Mr. J. JOHNSTONE STONEY on the Atomicity of Oxygen and ...
... Formula CnH2n + 1 + 0.CH , Mr. ANDERSON SMITH on Sodium ..... Mr. EDWARD C. C. STANFORD on the Manufacture of Iodine Mr. J. E. STODDART on Lead Desilverizing by the Zinc Process . Mr. J. JOHNSTONE STONEY on the Atomicity of Oxygen and ...
Page 42
... round one step , and the same process repeated . * On the avoidance of small thermoelectric effects , see below in the discussion of the second experiment . Formula of Reduction . T Let the right - hand 42 REPORT - 1876 .
... round one step , and the same process repeated . * On the avoidance of small thermoelectric effects , see below in the discussion of the second experiment . Formula of Reduction . T Let the right - hand 42 REPORT - 1876 .
Page 43
... formula . a - 6 = D - a - b + 2 ( x - 5000 ) . · Similarly , in comparing one coil against four , we get the formula . • ( 3 ) a − 1 ( 3 + y + d + e ) = D − a − b + 2 ( x − 5000 ) . . ( 4 ) · To find a - b , the " bridge correction ...
... formula . a - 6 = D - a - b + 2 ( x - 5000 ) . · Similarly , in comparing one coil against four , we get the formula . • ( 3 ) a − 1 ( 3 + y + d + e ) = D − a − b + 2 ( x − 5000 ) . . ( 4 ) · To find a - b , the " bridge correction ...
Page 45
... formula given above we get D x . D - 52 2 ( -5000 ) . Time . 223 4914 - 1 β - γ 12.30 218 5008 +182 a - ẞ 12.36 211 5013 +185 12.41 205 5018 4-189 12.56 209 4929 + 15 1.3 209 5036 +229 1.8 198 5036 +218 1.30 Several important inferences ...
... formula given above we get D x . D - 52 2 ( -5000 ) . Time . 223 4914 - 1 β - γ 12.30 218 5008 +182 a - ẞ 12.36 211 5013 +185 12.41 205 5018 4-189 12.56 209 4929 + 15 1.3 209 5036 +229 1.8 198 5036 +218 1.30 Several important inferences ...
Page 53
... formula ( 3 ) , we get g == RμP2E3 ( y — y2 ) , · • · ( 4 ) which is a maximum as far as y is concerned when y = 1 , the value of g being then aRP2E3 g = μ 44 ( 5 ) The advantage of this method of experimenting is that it eliminates to ...
... formula ( 3 ) , we get g == RμP2E3 ( y — y2 ) , · • · ( 4 ) which is a maximum as far as y is concerned when y = 1 , the value of g being then aRP2E3 g = μ 44 ( 5 ) The advantage of this method of experimenting is that it eliminates to ...
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