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Great differences can be observed in 1340 1400 nm because the optical properties of Intralipid in this region don not satisfy the conditions of the steady-state diffusion equation.
These differences arise because the optical properties of the thin metal layers are not the same as the bulk, either due to non-ideal geometric arrangement of the atoms (eg island structures) or through compositional changes caused by interdiffusion of the phases in the process of film formation.
This result is relevant because the optical properties are determined by isomerism and the γ isomer is hard to find.
Shape Spherical-shaped dust can not fit the observations well, while CDE (continuous distribution of ellipsoids) can, because the optical properties of MgS change greatly with the dust shape.
It is difficult to detect an ultralow amount of target molecule quantitatively and precisely because the optical properties of the Cu nanoshell arrays are significantly affected by the presence of the oxide layer.
Homogeneous nanoparticles with specific shapes are important for applications in biological and chemical sensing as well as for optical, medical, and electronic devices because the optical properties of AuNPs are dependent on the size and shape[56].
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The technical realization of photos of the ocular fundus is not trivial because of the optical properties of the eye.
In addition, because of the optical properties of QDs, we can select more appropriate excitation wavelengths from their successive excitation spectra, which minimize the autofluorescence of biological samples to improve the resolution of the results (Figure 1) [32].
Nanocrystalline solid solutions are very attractive materials because of their potential to control the optical properties by varying the solution composition as well as the particle size.
The laser diode wavelengths are slightly different (several nm) for each DOSI system; hence we averaged the optical property values at similar wavelengths because the phantom optical properties are not sharply-varying at these wavelengths.
In addition, cloud radiative forcing can be more accurately estimated because the cloud optical properties are calculated using the mass concentration and number concentration (Hansen and Travis [1974]).
More suggestions(15)
because the previous properties
because the physical properties
because the metaphysical properties
because the same properties
because the folding properties
because the optical tabulations
because the kinetic properties
because the optical functions
because the structural properties
because the indirect properties
because the multifunctional properties
because the electrical properties
because the above properties
because the dynamic properties
because the optical signals
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