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Using a two-dimensional approximation, the results of experiments with variable amounts of o-cresol are shown in form of a graph (Figure 11), which illustrates dependence of coefficient Φ on bed temperature and the o-cresolin/phenolin ratio.
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The latitude and altitude dependencies of the barometric coefficients were investigated, as well as the dependence of coefficients on energy of the primary particles.
The dependence of absorption coefficient and refractive index change on the optical intensity is shown.
The temperature dependence of diffusion coefficient and its parameters: energy barrier and prefactor is calculated and compared for both surfaces.
The dependence of diffusion coefficient on the crosslinking system has been studied for all the systems.
The dependence of diffusion coefficient on composition and temperature has been studied for all polymeric samples.
It is also observed that the dependence of friction coefficient on relative velocity of system does not have noticeable effects on the peak response of the isolated system.
The dependence of diffusion coefficient of thallous ions on the total ionic strength of solutions is also investigated.
The temperature dependence of the coefficient D can be described by a Vogel–Tamman Fulcher (VTF) law at low temperatures.
Figure 7 Temperature dependence of Hall coefficient and carrier mobility.
Figure 6 Dependence of friction coefficient on depth of grooves during final test stage.
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CEO of Professional Science Editing for Scientists @ prosciediting.com