Sentence examples for attenuation intensity from inspiring English sources

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Experiments certificate that the hardware system can measure the attenuation intensity and flight time of ultrasonic waves in real time accurately.

X-ray absorption coefficient measurements show that the attenuation intensity of the PEGylated Au DENPs is much higher than that of Omnipaque with iodine concentration similar to Au.

With the co-existence of AuNPs and Gd III) ions within the single multifunctional particles, Gd Au DENPs-FA displayed high X-ray attenuation intensity and reasonable r1 relaxivity.

Fig. 2 The X-ray attenuation intensity of the AuNS@PEG nanoparticles as a function of the Au concentration (a) and CT image of the AuNS@PEG nanoparticles under different concentrations (iodohydrin, 1000, 500, 250, 125, 62.5, 31.75, 15.625, and 7.8125 ppm, respectively) (b).

The results obtained using both {(Au0)200-G5.NH2} and {(Au0)51.2-G5.NHAc} 51.2-G5.NHAc}parable in terms of X-ray attenuation intensity since Au DENPs prepared using different gold salt/dendrimer molar ratios with a size range of 2 to 4 nm display similar X-ray attenuation at similar Au comparableinn [35].

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The key component of this procedure is the computation of a "probability map," which provides the probability of an arbitrary point in the material system belonging to a specific phase, via inverse superposition of the scaled attenuation intensities available in the tomography projections.

For lipid binding, we found that the attenuation in intensity is not caused by H or N broadening.

Overlapping image subvolumes were assembled to form the complete 3-D image, and histogram equalization was used to correct for attenuation of intensity with imaging depth.

For CR binding, a strong correlation among the chemical shift change, the degree of resonance broadening, and the attenuation of intensity is observed, which is the typical scenario for a system subject to fast or intermediate chemical exchange.

Since the light only experiences attenuation, the intensity of the processed depth resolved spectrum is described by Beer's law, I (λ, L ) = r I 0 exp (− μ a L ). (2 where µ a is the wavelength- and concentration-dependent attenuation coefficient, r is the reflectivity (or scattering cross section) of the sample, and L is the physical thickness of the absorber.

However, in contrast to the A30P mutant, attenuation of intensities is comparable to what is seen in WT αS and therefore cannot be attributed to a lower population of dark state αS.

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