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The deformation response of the patterned plates can be broadly characterized in terms of the average curvature as a function of temperature change and exhibits linear and geometrically nonlinear behavior.
The metallic resistance as a function of temperature change can be written as ( mathrm{R}left(mathrm{T}right)={R}_0left[1+aleft T-{T}_0rightright)right] ) [28, 29], in which R 0 is the resistance at temperature T 0 and α is the resistance-temperature coefficient.
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In example calculations, the mechanical properties and the thermal expansion coefficients of carbon nanotubes and polymer matrix are, respectively, treated as the functions of temperature change.
The Young's modulus and the thermal and humidity expansion coefficients of the material are considered as functions of temperature change in base-laminated shells.
The Young's modulus and the thermal and humidity expansion coefficients of the material are treaded as functions of temperature change in the cylindrical laminated shells.
The rate of temperature change is pretty fast this time, and the number of species that go extinct is a direct function of the rate at which the temperature changes.
When adjoining parts of a satellite that are made of different materials are subjected to large temperature changes, thermal mismatch stresses arise that are a function of the temperature change and the difference in coefficients of thermal expansion (CTEs) between the two materials.
d Change of PL peak energy as a function of temperature, e change of FWHM of PL spectra as a function of temperature, and f integrated PL intensity of PL spectra as a function of temperature.
This model is empirical and does not predict effective oxygen concentration as a function of temperature-dependent changes in oxygen solubility and diffusion.
Further, we characterize the morphology and crystal structure of graphene as a function of temperature, revealing subtle changes in bonding occurring upon cooling from growth to room temperature.
Further, Raman spectral and rheological measurements on calcium stearate as a function of temperature showed marked changes in yield stress, elastic moduli and viscosity, at ca. 398 K, confirming transition to a mesophase [209].
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