Examples of 'correlation spectroscopy' in a sentence

Meaning of "correlation spectroscopy"

Correlation spectroscopy: A scientific technique used to study interactions between molecules by analyzing the correlation between experimental data points

How to use "correlation spectroscopy" in a sentence

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correlation spectroscopy
Their presence was demonstrated by photon correlation spectroscopy.
Photon correlation spectroscopy can be used to measure the size of small particles.
Nanoparticle formation was confirmed by photon correlation spectroscopy.
Photon correlation spectroscopy is commonly used for characterization of submicron suspensions and emulsions.
The sizes are measured by photon correlation spectroscopy.
Heteronuclear correlation spectroscopy gives signal based upon coupling between nuclei of two different types.
A brief description of fluorescence correlation spectroscopy is also provided.
However, there are several important differences between the invention and fluorescence correlation spectroscopy.
A dilute aqueous suspension was measured by photon correlation spectroscopy to determine the particle diameter.
The measuring principles are based on the theory of Brownian motion and photon correlation spectroscopy.
Fluorescence correlation spectroscopy ( FCS ) is a correlation analysis of fluctuation of the fluorescence intensity.
This technique is called photothermal correlation spectroscopy PhoCS.
Alternatively fluorescence correlation spectroscopy ( FCS ) can be used to mointor changes in translational diffusion.
This size can be determined by photon correlation spectroscopy.
Photon correlation spectroscopy showed that the volume average particle size was about 100 nanometers.

See also

Determination of particle size by photon correlation spectroscopy is preferred.
Correlation spectroscopy - is one of several types of two dimensional nuclear magnetic resonance ( NMR ) spectroscopy.
The invention is particularly suited to photon correlation spectroscopy measurements.
Photon correlation spectroscopy measurements were performed using dispersions containing φp = 3 x 10-4 microgel.
There may be mentioned in particular polarization or alternatively fluorescence correlation spectroscopy techniques.
Such methods include photon correlation spectroscopy ( PCS ) and laser diffraction.
The particle sizes were determined in a known manner by means of photon correlation spectroscopy.
Light scattering techniques such as photon correlation spectroscopy measure the Z-average particle size.
Experimental methods to determine MSDs include neutron scattering and photon correlation spectroscopy.
An example of a typical photon correlation spectroscopy ( PCS ) printout is shown in Figure 5.
This index is determined on the size histogram obtained by the photon correlation spectroscopy method.
Figure 18-2 Photon correlation spectroscopy of a suspension of the particles of Fig.
The final product was also analyzed for particle size distribution by photon correlation spectroscopy.
We have employed a method known as photon correlation spectroscopy ( PCS ) ( laser light scattering ).
Nonlinear two-dimensional infrared spectroscopy is the infrared version of correlation spectroscopy.
The particle size measured by photon correlation spectroscopy is between 20 and 50 nm.
Investigation of the fluctuation dynamics of DNA solutions by laser correlation spectroscopy.
Particle size was determined by laser correlation spectroscopy ( measuring instrument, Malvern Instruments Zetasizer 1000 ).
The size refers to the Z average diameter using photon correlation spectroscopy.
Were determined by photon correlation spectroscopy ( PCS ).
The newly introduced carbonyl functions were determined in a ¹ H-detected heteronuclear multiple-bond correlation spectroscopy A.
The instrument utilizes a non-dispersive correlation spectroscopy method.
The dispersion gave a particle diameter of 14 nm by photon correlation spectroscopy.
To confirm the findings obtained by FRET-FLIM fluorescence cross correlation spectroscopy ( FCCS ) experiments were performed.
Particle size of the core-shell particle can be determined by photon correlation spectroscopy.
Weight average diameter of polymer particles, determined by photon correlation spectroscopy using a Malvern Autosizer device.
Said fluorescence microscopy may be time-resolved fluorescence and fluorescent correlation spectroscopy ( FCS ).
The average diameter of the DRV by photon correlation spectroscopy is about 500nm.
Average particle size is about 16 nanometers as measured by Photon Correlation Spectroscopy.
The average particle size measured by photon correlation spectroscopy was 331 nm.
Raw dispersion particle size ( RDPS ) is measured by photon correlation spectroscopy.
Particle size stability of a sterile MPL solution by photon correlation spectroscopy ( Malvern ) at 1 mg / ml.
This apparatus provides a measure of the average diameter by photon correlation spectroscopy ( or PCS ).
The particle size ( z average ) by means of photon correlation spectroscopy was 96 nm.
Particle sizes less that 1 µm are more accurately measured by photon correlation spectroscopy ( PCS ).

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