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  1. T. S. Robinson and W. C. Price, Proc. Phys. Soc. (London) B66, 969 (1953).
  2. P. Latimer and E. Rabinowitch, Arch. Biochem. Biophys. 84, 428 (1959). See also P. Latimer, Plant Physiol. 34, 193 (1959).
    [Crossref] [PubMed]
  3. W. Menke and G. Menke, Z. Naturforsch. 10b, 416 (1955).
  4. A. Pflüger, Ann. Physik und Chemie, Neue Folge 65, 225 (1898).
    [Crossref]
  5. B. Söderborg, Ann. Physik, Vierte Folge 41, 381 (1913).
    [Crossref]
  6. J. W. Weigl, J. Chem. Phys. 24, 577 (1956).
    [Crossref]
  7. J. H. Jaffe, H. Goldring, and U. Oppenheim, J. Opt. Soc. Am. 49, 1199 (1959).
    [Crossref]
  8. A. S. Davydov, Izvest. Akad. Nauk S.S.S.R., Ser. Fiz.5, 523 (1953). (English translation, Bull. Acad. Sci. U.S.S.R., available Translation Center, John Crerar Library, Chicago, Illinois.)
  9. R. W. Ditchburn, Light (Interscience Publishers, Inc., New York, 1953), p. 459.
  10. J. R. Partington, An Advanced Treatise on Physical Chemistry (Longmans Green and Company, London), Vol. 4, p. 522.

1959 (2)

P. Latimer and E. Rabinowitch, Arch. Biochem. Biophys. 84, 428 (1959). See also P. Latimer, Plant Physiol. 34, 193 (1959).
[Crossref] [PubMed]

J. H. Jaffe, H. Goldring, and U. Oppenheim, J. Opt. Soc. Am. 49, 1199 (1959).
[Crossref]

1956 (1)

J. W. Weigl, J. Chem. Phys. 24, 577 (1956).
[Crossref]

1955 (1)

W. Menke and G. Menke, Z. Naturforsch. 10b, 416 (1955).

1953 (1)

T. S. Robinson and W. C. Price, Proc. Phys. Soc. (London) B66, 969 (1953).

1913 (1)

B. Söderborg, Ann. Physik, Vierte Folge 41, 381 (1913).
[Crossref]

1898 (1)

A. Pflüger, Ann. Physik und Chemie, Neue Folge 65, 225 (1898).
[Crossref]

Davydov, A. S.

A. S. Davydov, Izvest. Akad. Nauk S.S.S.R., Ser. Fiz.5, 523 (1953). (English translation, Bull. Acad. Sci. U.S.S.R., available Translation Center, John Crerar Library, Chicago, Illinois.)

Ditchburn, R. W.

R. W. Ditchburn, Light (Interscience Publishers, Inc., New York, 1953), p. 459.

Goldring, H.

Jaffe, J. H.

Latimer, P.

P. Latimer and E. Rabinowitch, Arch. Biochem. Biophys. 84, 428 (1959). See also P. Latimer, Plant Physiol. 34, 193 (1959).
[Crossref] [PubMed]

Menke, G.

W. Menke and G. Menke, Z. Naturforsch. 10b, 416 (1955).

Menke, W.

W. Menke and G. Menke, Z. Naturforsch. 10b, 416 (1955).

Oppenheim, U.

Partington, J. R.

J. R. Partington, An Advanced Treatise on Physical Chemistry (Longmans Green and Company, London), Vol. 4, p. 522.

Pflüger, A.

A. Pflüger, Ann. Physik und Chemie, Neue Folge 65, 225 (1898).
[Crossref]

Price, W. C.

T. S. Robinson and W. C. Price, Proc. Phys. Soc. (London) B66, 969 (1953).

Rabinowitch, E.

P. Latimer and E. Rabinowitch, Arch. Biochem. Biophys. 84, 428 (1959). See also P. Latimer, Plant Physiol. 34, 193 (1959).
[Crossref] [PubMed]

Robinson, T. S.

T. S. Robinson and W. C. Price, Proc. Phys. Soc. (London) B66, 969 (1953).

Söderborg, B.

B. Söderborg, Ann. Physik, Vierte Folge 41, 381 (1913).
[Crossref]

Weigl, J. W.

J. W. Weigl, J. Chem. Phys. 24, 577 (1956).
[Crossref]

Ann. Physik und Chemie, Neue Folge (1)

A. Pflüger, Ann. Physik und Chemie, Neue Folge 65, 225 (1898).
[Crossref]

Ann. Physik, Vierte Folge (1)

B. Söderborg, Ann. Physik, Vierte Folge 41, 381 (1913).
[Crossref]

Arch. Biochem. Biophys. (1)

P. Latimer and E. Rabinowitch, Arch. Biochem. Biophys. 84, 428 (1959). See also P. Latimer, Plant Physiol. 34, 193 (1959).
[Crossref] [PubMed]

J. Chem. Phys. (1)

J. W. Weigl, J. Chem. Phys. 24, 577 (1956).
[Crossref]

J. Opt. Soc. Am. (1)

Proc. Phys. Soc. (London) (1)

T. S. Robinson and W. C. Price, Proc. Phys. Soc. (London) B66, 969 (1953).

Z. Naturforsch. (1)

W. Menke and G. Menke, Z. Naturforsch. 10b, 416 (1955).

Other (3)

A. S. Davydov, Izvest. Akad. Nauk S.S.S.R., Ser. Fiz.5, 523 (1953). (English translation, Bull. Acad. Sci. U.S.S.R., available Translation Center, John Crerar Library, Chicago, Illinois.)

R. W. Ditchburn, Light (Interscience Publishers, Inc., New York, 1953), p. 459.

J. R. Partington, An Advanced Treatise on Physical Chemistry (Longmans Green and Company, London), Vol. 4, p. 522.

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Figures (2)

Fig. 1
Fig. 1

CS2. Dispersion and absorption as measured by Jaffe and as calculated with the indicated equations. The values of A, Ω, and n0 for all equations were 2.71 10−2, 4.0596 1014, and 1.5428, respectively. For Eqs. (4) and (5), γ=3.1 1012, while for Eqs. (6) and (7), γ=3.61 1012.

Fig. 2
Fig. 2

CHCl3. Dispersion and absorption as measured by Jaffe and as calculated with indicated equations. The values of A, Ω, and n0 in all equations were 1.78 10−2, 5.7385 1014, and 1.4288, respectively. For Eqs. (4) and (5), γ=1.4 1012, while for Eqs. (6) and (7), γ=1.662 1012.

Equations (8)

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I = I 0 exp [ - ( 2 K ω z / c ) ] = I 0 10 - α z ,
q n q K q = q A q S q ( ω )
n 2 = 1 + q K q 2 + q A q F q ( ω ) ,
K = r A r ( 1 / v r 2 + 1 )
n = n 0 + r A r ( v r / v r 2 + 1 ) ,
K = r A r exp ( - v r 2 ln 2 )
n = n 0 + 2 ( ln 2 ) 1 2 r A r v r exp ( - v r 2 ln 2 ) .
n 0 = ( n max + n min ) / 2 , or n = n 0 if ω = Ω .