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  1. Tate and Foote, Phil. Mag., 36, p 64, 1918; Bur. Stds. S 317; Foote and Mohler, Phil. Mag., 37, p 33, 1919; J. Wash. Acad. Sci., 8, p 513, 1918; Foote, Rognley and Mohler, Phys. R., 13, p 59, 1919; Mohler, Foote and Stimson, Bur. Std. S 368; Mohler and Foote, Abstract of Non-metallic Vapors, Phys. R. (in press).
  2. Davis and Goucher, Phys. R., 10, p 101, 1917.
  3. Davis and Goucher, Phys. R., 13, p 1, 1919.
  4. Smyth, Phys. R., 14, p 409, 1919.
  5. Proc. Roy. Soc. Lond., March, 1920.
  6. J. Am. Chcm. Soc., 37, p 457, 1915, 90,000 cal. per g. mol. at constant pressure.

Other (6)

Tate and Foote, Phil. Mag., 36, p 64, 1918; Bur. Stds. S 317; Foote and Mohler, Phil. Mag., 37, p 33, 1919; J. Wash. Acad. Sci., 8, p 513, 1918; Foote, Rognley and Mohler, Phys. R., 13, p 59, 1919; Mohler, Foote and Stimson, Bur. Std. S 368; Mohler and Foote, Abstract of Non-metallic Vapors, Phys. R. (in press).

Davis and Goucher, Phys. R., 10, p 101, 1917.

Davis and Goucher, Phys. R., 13, p 1, 1919.

Smyth, Phys. R., 14, p 409, 1919.

Proc. Roy. Soc. Lond., March, 1920.

J. Am. Chcm. Soc., 37, p 457, 1915, 90,000 cal. per g. mol. at constant pressure.

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