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Quasi-elastic light scattering technique

It is very well known that the nature of the monolayer partially depends on the strength of interfacial interactions with substrate molecules and that of polymer in-tersegmental interactions. And it is normal to expect that the viscoelastic properties of polymer monolayer are also dependent on these factors. The static and dynamic properties of several different polymer monolayers at the air - water interface have been examined with the surface quasi-elastic Light Scattering technique combined with the static Wilhelmy plate method [101]. [Pg.188]

Quasi elastic light scattering techniques allow to measure the diffusion coefficient D of the droplets, the variation of which with the... [Pg.124]

Photon Correlation Spectroscopy. Photon correlation spectroscopy (pcs), also commonly referred to as quasi-elastic light scattering (qels) or dynamic light scattering (dls), is a technique in which the size of submicrometer particles dispersed in a Hquid medium is deduced from the random movement caused by Brownian diffusion motion. This technique has been used for a wide variety of materials (60—62). [Pg.133]

To determine the shape of ribosomal proteins in solution, ultracentrifugation, digital densimetry, viscosity, gel filtration, quasi-elastic light scattering, and small-angle X-ray or neutron scattering have all been used. With each technique it is possible to obtain a physical characteristic of the protein. Combining these techniques should allow the size and shape of the protein to be characterized quite well. However, the values determined in various laboratories for the same ribosomal proteins differ considerably. To help understand some of the reasons we will initially discuss each method briefly as it relates to proteins and then review the size and shape of the ribosomal proteins that have been so characterized. [Pg.15]

Diffusion coefficients can also be obtained from sedimentation velocity experiments, but the precision is quite low and subject to some ques-don. Quasi-elastic light scattering is a much more useful technique to obtain diffusion coefficients (see below). [Pg.16]

A recent study has employed the new technique of quasi-elastic light scattering for estimation of diffusion constants (257). The result for the native enzyme at 24° is in close agreement with the data given in the tabulation. The value of D as a function of temperature was measured through the thermal transition. The method was also used to follow the kinetics of the urea-induced transition. [Pg.708]

The technique is alternatively called photon correlation spectroscopy (PCS) or quasi-elastic light scattering (QELS). [Pg.62]

Quasi-elastic light scattering is an excellent technique for studying the formation and stability of submicrometer emulsions. Improvements in the methods of quasi-elastic light scattering data acquisition and analysis that enable full particle-size distribution studies of sub-micrometer emulsion systems are discussed. Using several oil/water emulsion systems as examples, we demonstrate the ability of these techniques to determine the effect of emulsifier concentration on the particle-size distribution produced by an inversion method of emulsification. Some of the benefits of obtaining the full distribution are also discussed. [Pg.89]

Many excellent introductions to quasi-elastic light scattering can be found in the literature describing the theory and experimental technique (e.g. 3-6). The use of QELS to determine particle size is based on the measurement, via the autocorrelation of the time dependence of the scattered light, of the diffusion coefficients of suspended particles undergoing Brownian motion. The measured autocorrelation function, G<2>(t), is given by... [Pg.90]

An alternate approach for determining particle density involves fraction collection followed by the application of quasi-elastic light scattering (QEL) to the fraction (19). The QEL technique is particularly effective in providing a mean particle diameter d for narrow particle distributions. With this d and the X obtained from V (the volume at which the fraction was collected), Ap can be calculated directly from Equation 3. [Pg.227]

Among bile salts, sodium cholate (NaC) and sodium deoxycholate (NaDC) have been extensively studied by a variety of physical techniques. A few prominent techniques include nuclear magnetic resonance [68], electron spin resonance [69], small angle X-ray scattering [70], and quasi-elastic light scattering [71]. [Pg.383]

Quasi-elastic light scattering (QELS) techniques... [Pg.19]

Dynamic (quasi-elastic) light scattering that is usually referred as photon correlation spectroscopy this is a rapid technique that is especially suited to measuring submicron particles (nanosize range). [Pg.152]

DLS is a method that measures the time-dependent fluctuation of scattered intensity, and is also referred to as quasi-elastic light scattering or photon correlation spectroscopy. The latter term is the most commonly used for describing the process, since most dynamic scattering techniques employ autocorrelation. [Pg.415]

Dynamic light scallering (DLS). also known as photon correlation spectroscopy (I CS) and quasi-elastic light scattering (OFI.S). is a powerful technique for probing solution dynamics and fur measuring particle sues.-The DLS technique can obtain size information in a few minutes for particles with diameters ranging from a few nanometers to about 5 pm. [Pg.955]


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See also in sourсe #XX -- [ Pg.116 ]




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Elastic scattering

Light scattering elastic

Light scattering technique

Light technique

Quasi-elastic

Quasi-elastic light

Quasi-elastic light scattering

Quasi-elastic scattering

Scatter elastically

Scattering techniques

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