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Molecular Dipole Moments and Stark Effects. III. Dipole Moment Determinations

R. G. Shulman* and B. P. Dailey

C. H. Townes

  • Chemistry Department, Columbia University, New York, New York

  • Physics Department, Columbia University, New York, New York

  • *Present address: Chemistry Dept., Calif. Inst. of Tech., Pasadena, California.

Phys. Rev. 78, 145 – Published 15 April, 1950

DOI: https://doi.org/10.1103/PhysRev.78.145

Abstract

Dipole moments of eight molecules were determined by the Stark splittings of the rotational transitions in the microwave region. The molecules and their moments in Debye units are: AsF3, 2.815±0.025; CH3I, 1.647±0.014; CH3Cl, 1.869±0.010; CH3Br, 1.797±0.015; CH3CF3, 2.321±0.034; PF3, 1.025±0.009; N2O, 0.166±0.002; and ClCN, 2.802±0.020. In all cases Stark effects followed very closely theoretical expectations.

References (13)

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  13. Townes, Holden, and Merritt, Phys. Rev. 74, 1113 (1948)

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