Abstract

The relative intensity of the 1,0 band heads of the ${\mathrm{C}}_{12}$${\mathrm{C}}_{12}$ and ${\mathrm{C}}_{12}$${\mathrm{C}}_{13}$ molecules in the Swan system of the ${\mathrm{C}}_{2}$ spectrum has been measured by a photographic spectrophotometric method and found to be 0.0217\ifmmode\pm\else\textpm\fi{}0.0009. This yields a value of 92.2\ifmmode\pm\else\textpm\fi{}3.7 for the ${\mathrm{C}}_{12}$/${\mathrm{C}}_{13}$ abundance ratio of the carbon isotopes in good agreement with the value reported by Vaughan, Williams and Tate (91.6\ifmmode\pm\else\textpm\fi{}2.2), from mass-spectrographic data. This work was done in connection with the development of a simple method suited to the determination of the abundance ratio in the small samples obtained in the separation of natural carbon into isotopes. This method is described.

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