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References

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  1. P. F. Mullaney, M. A. Van Dilla, J. R. Coulter, and P. N. Dean, Rev. Sci. Instr. 40, 1029 (1969).
    [Crossref]
  2. J. R. Hodkinson and I. Greenleaves, J. Opt. Soc. Am. 53, 577 (1963).
    [Crossref]
  3. J. Barrer in Physical Techniques in Biological Research, G. Oster and A. Pollister, Eds. (Academic Press Inc., New York, 1956), Vol. III, p. 29.
  4. G. W. Kattawar and G. N. Plass, Appl. Opt. 6, 1377 (1967).
    [Crossref] [PubMed]
  5. H. C. van de Hulst, Light Scattering by Small Particles (John Wiley & Sons, Inc., New York, 1957), pp. 172–182.

1969 (1)

P. F. Mullaney, M. A. Van Dilla, J. R. Coulter, and P. N. Dean, Rev. Sci. Instr. 40, 1029 (1969).
[Crossref]

1967 (1)

1963 (1)

Barrer, J.

J. Barrer in Physical Techniques in Biological Research, G. Oster and A. Pollister, Eds. (Academic Press Inc., New York, 1956), Vol. III, p. 29.

Coulter, J. R.

P. F. Mullaney, M. A. Van Dilla, J. R. Coulter, and P. N. Dean, Rev. Sci. Instr. 40, 1029 (1969).
[Crossref]

Dean, P. N.

P. F. Mullaney, M. A. Van Dilla, J. R. Coulter, and P. N. Dean, Rev. Sci. Instr. 40, 1029 (1969).
[Crossref]

Greenleaves, I.

Hodkinson, J. R.

Kattawar, G. W.

Mullaney, P. F.

P. F. Mullaney, M. A. Van Dilla, J. R. Coulter, and P. N. Dean, Rev. Sci. Instr. 40, 1029 (1969).
[Crossref]

Plass, G. N.

van de Hulst, H. C.

H. C. van de Hulst, Light Scattering by Small Particles (John Wiley & Sons, Inc., New York, 1957), pp. 172–182.

Van Dilla, M. A.

P. F. Mullaney, M. A. Van Dilla, J. R. Coulter, and P. N. Dean, Rev. Sci. Instr. 40, 1029 (1969).
[Crossref]

Appl. Opt. (1)

J. Opt. Soc. Am. (1)

Rev. Sci. Instr. (1)

P. F. Mullaney, M. A. Van Dilla, J. R. Coulter, and P. N. Dean, Rev. Sci. Instr. 40, 1029 (1969).
[Crossref]

Other (2)

J. Barrer in Physical Techniques in Biological Research, G. Oster and A. Pollister, Eds. (Academic Press Inc., New York, 1956), Vol. III, p. 29.

H. C. van de Hulst, Light Scattering by Small Particles (John Wiley & Sons, Inc., New York, 1957), pp. 172–182.

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Figures (2)

Fig. 1
Fig. 1

Comparison of the half-width of the angular-scattering intensity calculated by diffraction (——) and the Hodkinson model for m = 1.15 (– – –); m = 1.07 (– ● – ● –); m = 1.05 (– ■ – ■ –); and m = 1.03 (– ▲ – ▲ –).

Fig. 2
Fig. 2

Log–log plot of α as a function of (m − 1) for the points of departure from the expected diffraction behavior of Fig. 1. All points satisfy the equation ρ = 2α (m − 1), where ρ ≈ 3.5.

Equations (2)

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I 0 ( θ , d ) = [ J 1 2 ( α sin θ ) / π sin 2 θ ]
I 2 ( θ ) = 2 π ( m m 2 - 1 ) 4 ( m cos θ / 2 - 1 ) 3 ( m - cos θ 2 ) 3 cos θ / 2 ( m 2 + 1 - 2 m cos θ / 2 ) 2 ( 1 + sec 4 θ 2 )