Light scattering provides information concerning the size, shape, number, and time dependence of the physical nonuniformities of a system. Measurements of the scattered intensity as a function of both scattering angle and wavelength describe static properties, whereas the spectral distribution of the scattered radiation is related to time dependent phenomena. The applications of light scattering are discussed, including critical phenomena, molecular weight determination, air pollution analysis, and diffusion phenomena.
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2.
FabelinskiiI. L., Molecular Scattering of Light (Plenum, New York, 1968).
3.
ChuBenjamin, Molecular Forces-Based on the Baker Lectures of Peter J. W. Debye (Wiley, New York, 1967), Chap. 6.
4.
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5.
StaceyK. A., Light Scattering in Physical Chemistry (Academic, New York, 1956).
6.
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7.
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8.
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9.
GravattC. C. and BradyG. W., J. Chem. Phys., in press.
10.
HodkinsonJ. R., in Aerosol Science, edited by DaviesC. N. (Academic, New York, 1966), pp. 287–357.
11.
GravattC. C., unpublished data.
12.
HellerP., Rep. Prog. Phys.10, 731 (1967).
13.
NBS Misc. Pub. No. 273, 1966.
14.
Light Scattering from Dilute Polymer Solutions, edited by McIntyreD. and GornickF. (Gordon and Breach, New York, 1964).
15.
ChiangR., in Newer Methods of Polymer Characterization, edited by KeBacon (Wiley-Interscience, New York, 1964), pp. 474–493.
16.
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17.
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18.
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19.
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20.
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21.
ChuB. and SchoenesF. J., J. Colloid. Interface Sci.27, 424 (1968).
22.
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23.
ChuB., Ann. Rev. Phys. Chem.21, 162 (1970).
24.
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25.
AngusJ. C.MorrowD. I.DunningJ. W., and FrenchM. J., Ind. Eng. Chem.61, 9 (1969).
26.
See, for example, Ref. 16, p. 165.
27.
BlumL. and SalsburgZ. W., J. Chem. Phys.50, 1654 (1969).
28.
YehY. and KellerR. N., J. Chem. Phys.51, 1120 (1969).