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References

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  1. H. C. Van de Hulst, Light Scattering by Small Particles (Wiley, New York, 1957), Chap. 9.
  2. M. Kerker, The Scattering of Light and Other Electromagnetic Radiation (Academic, New York, 1969), Chap. 3.
  3. Ref. 1, pp. 176–179, 374–378.
  4. Ref. 2, pp. 111–115.
  5. R. B. Penndorf, J. Opt. Soc. Am. 47, 1010 (1957).
    [Crossref]
  6. J. E. Cole, R. A. Dobbins, H. Semerjian, J. Appl. Meteorol. 9, 684 (1970).
    [Crossref]
  7. M. V. Centeno, J. Opt. Soc. Am. 31, 244 (1941).
    [Crossref]

1970 (1)

J. E. Cole, R. A. Dobbins, H. Semerjian, J. Appl. Meteorol. 9, 684 (1970).
[Crossref]

1957 (1)

1941 (1)

Centeno, M. V.

Cole, J. E.

J. E. Cole, R. A. Dobbins, H. Semerjian, J. Appl. Meteorol. 9, 684 (1970).
[Crossref]

Dobbins, R. A.

J. E. Cole, R. A. Dobbins, H. Semerjian, J. Appl. Meteorol. 9, 684 (1970).
[Crossref]

Kerker, M.

M. Kerker, The Scattering of Light and Other Electromagnetic Radiation (Academic, New York, 1969), Chap. 3.

Penndorf, R. B.

Semerjian, H.

J. E. Cole, R. A. Dobbins, H. Semerjian, J. Appl. Meteorol. 9, 684 (1970).
[Crossref]

Van de Hulst, H. C.

H. C. Van de Hulst, Light Scattering by Small Particles (Wiley, New York, 1957), Chap. 9.

J. Appl. Meteorol. (1)

J. E. Cole, R. A. Dobbins, H. Semerjian, J. Appl. Meteorol. 9, 684 (1970).
[Crossref]

J. Opt. Soc. Am. (2)

Other (4)

H. C. Van de Hulst, Light Scattering by Small Particles (Wiley, New York, 1957), Chap. 9.

M. Kerker, The Scattering of Light and Other Electromagnetic Radiation (Academic, New York, 1969), Chap. 3.

Ref. 1, pp. 176–179, 374–378.

Ref. 2, pp. 111–115.

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Figures (3)

Fig. 1
Fig. 1

Intensity of 90° scattering, i (90°), and the efficiency factor for extinction Qext. versus πD/λ and D when λ = 6328 Å.

Fig. 2
Fig. 2

Optical equipment used to measure wide angle scattering and transmission on a time-resolved basis.

Fig. 3
Fig. 3

Oscillograph record showing (a) the optical transmission at λ = 6328 Å, (b) the intensity of 90° scattering, I (90°), and (c) the pressure vs time. Each time line corresponds to 10 msec.

Equations (1)

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I I o = exp [ - ( π / 4 ) Q ext ( D , m ) D 2 C n l ]

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