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This effect forms the basis of a modern experimental technique called Dielectric spectroscopy.
The MCS technology was used for applications in drug discovery and is based upon dielectric spectroscopy.
Rotational correlation times may be measured by rotational (microwave) or dielectric spectroscopy.
Non-invasive technologies include near IR detection, ultrasound and dielectric spectroscopy.
High-frequency dielectric spectroscopy of concentrated membrane suspensions.
In dielectric spectroscopy, large frequency dependent contributions to the dielectric response, especially at low frequencies, may come from build-ups of charge.
Rotational diffusion can also be observed by other biophysical probes such as fluorescence anisotropy, flow birefringence and dielectric spectroscopy.
Experimental methods for measuring these time constants include fluorescence anisotropy, NMR, flow birefringence and dielectric spectroscopy.
Under an NSF grant he conducted cross-disciplinary research that experimented with surface plasmon resonance, dielectric spectroscopy and molecular neurobiology.
Dielectric spectroscopy (sometimes called impedance spectroscopy), and also known as electrochemical impedance spectroscopy (EIS), measures the dielectric properties of a medium as a function of frequency.
The rotational diffusion tensor may be determined experimentally through fluorescence anisotropy, flow birefringence, dielectric spectroscopy, NMR relaxation and other biophysical methods sensitive to picosecond or slower rotational processes.
Dynamic mechanical spectroscopy and Dielectric spectroscopy are essentially extensions of thermal analysis that can reveal more subtle transitions with temperature as they affect the complex modulus or the dielectric function of the material.
Both techniques can be used to probe molecular motions in liquid or solid polymers, but when dielectric spectroscopy is used the relaxation or transition must involve movement of a dipole or a charge displacement if it is to be detected.