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Shish structure and its relaxation dependence of re-crystallization of isotactic polypropylene (iPP) from an oriented melt, caused by melting of shish kebab in original samples (indicated by 2D SAXS and 2D-wide-angle X-ray scattering experiments (2D WAXS) measurements), has been investigated by differential scanning calorimetry (DSC) and optical microscopy (OM).
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Kratky plots, fractal dimensions, and relaxation rate dependence on q revealed significant differences in internal structures and the influence of amylose content.
Both the presence of a temperature relaxation frequency dependence (Figure 2a) and the presence of insulating grain boundaries surrounding semiconducting grains (Figure 3a) urges the use of the IBLC model to explain the giant permittivity response in thin films.
Independent of the mechanism by which protein protons acquire their relaxation field dependence, Zhou and Bryant [5] have proposed that cross-relaxation could then allow "water spins to report a scaled replica" of the relaxation behavior of the solid system.
In future work with samples with calibrated P1 and NV− concentrations; we will aim at "calibrating" the relaxation-rate dependence on the concentration, which would enable a practical technique for determining local concentrations from (T_{1}^{-1}), a highly desirable and currently unavailable diagnostics for NV− ensembles.
Overall, LPS resulted in significantly different acceleration of relaxation-frequency dependence in cardiomyocytes and isolated hearts.
The aim of the investigations was to characterize the motions connected with this relaxation and their dependence on the chemical structure.
This includes the averaging of Hamiltonian as well as dissipative microscopic dynamics whose 'slow' variables, defined in a precise sense, can often display mixed slow-fast response as in relaxation oscillations, and dependence on initial conditions of the fast variables.
From Temperature Modulated Differential Scanning Calorimetry and Broadband Dielectric Spectroscopy investigations, we show that the crystalline phase appearance in PET implies a large reduction of the Cooperative Rearranging Region size, accompanied with a variation from fragile to strong behavior of the structural relaxation time temperature dependence.
Thus, the experimental investigation of spin relaxation and its dependence on temperature and carrier density have been found to vary widely between different samples.
(Dipolar relaxation has r 6 dependence).
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