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Time-resolved quasi-elastic laser scattering

Dynamic Behaviors of Molecules at Liquid-Liquid Interfaces Using the Time-Resolved Quasi-Elastic Laser Scattering Method... [Pg.239]

TIME-RESOLVED QUASI-ELASTIC LASER SCATTERING METHOD... [Pg.60]

Time-resolved quasi-elastic laser scattering (QELS) experiments [306, 307] allow the measurement of the dispersion law (the relation between the frequency of capillary waves, co, and their wavelength, In/k). To derive the dispersion law theoretically, one must consider the dynamics of the two degrees of freedom - the position of the surface, z = (x, y, t), and the fluid velocity. In the limit of small viscosity, such a theory [291] gives... [Pg.119]

Tsuyumoto, I. and T. Sawada (2001). Dynamic behaviors of molecules at liquid-liquid interfaces using the time-resolved quasi-elastic laser scattering method. In A. Volkov, (ed), Liquid Interfaces in Chemical, Biological, and Pharmaceutical Applications. Marcel Dekker, Boca Raton, pp. 229-239. [Pg.571]


See other pages where Time-resolved quasi-elastic laser scattering is mentioned: [Pg.59]    [Pg.59]   


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Elastic scattering

Laser scattering

Quasi-elastic

Quasi-elastic laser scattering

Quasi-elastic scattering

Scatter elastically

Scattering time

Time-resolved quasi-elastic laser scattering interface

Time-resolved quasi-elastic laser scattering measurements

Time-resolved quasi-elastic laser scattering method

Time-resolved quasi-elastic laser scattering principle

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