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The adsorption equlibrium is described by a temperature dependent Freundlich isotherm.
The rod is designed to self-regulate the temperature to 70C by a temperature dependent magnetic transition (Curie effect).
The resistance to heat transfer is assumed to reside in the external fluid film and the equilibrium relationship is represented by a temperature dependent Langmuir isotherm.
Exaggerated grain growth was found close to the wetting transition and is explained by a temperature dependent anisotropy of the grain boundary mobility in conjunction with a high mobility of wetted grain boundaries.
It is caused by a temperature dependent inversion of refractive indices between the two component polymers, which can be easily misinterpreted as a miscible region between an upper critical solution temperature (UCST) state and a lower critical solution temperature (LCST) state.
The initially formed basic aggregation units aggregate forming fractal clusters, accordingly to an RLCA process characterized by a temperature dependent rate constant (i.e. higher is the temperature faster is the aggregation rate).
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The thermally activated component of the yield model was obtained by including an yield stress dependent creep model formulated originally by Wilshire and Scharning (2009) [1], and by invoking a temperature dependent Anti-Phase Boundary (APB) energy based on a formalism that captures high temperature order parameter of Ni3Al.
In the temperature region where the π-flips do not contribute to the spectra we have characterised the signal by assuming a temperature dependent distribution of small angle oscillations of phenylene rings leading to an activation energy of 0.18 eV.
In this work, a new temperature dependent fracture strength model for the laminated ZrB2 based composites is developed by employing a temperature dependent fracture surface energy model and the classical fracture theories.
In this work, based on the Griffith energy method and the sensitivities of the thermal-physical properties of materials to temperature, a theoretical method for studying the temperature dependent fracture strength and critical flaw size of the ZrB2 SiC composites on high temperature oxidation is proposed by using a temperature dependent fracture surface energy model.
Reference evapotranspiration (ET 0 ) is calculated based on minimum, maximum and average temperature data at Kyangjing from 2000 to 2007 according to the Hargreaves equation (Hargreaves et al. 1985). ET 0 is spatially differentiated per cell by applying a temperature dependent correction factor (cET 0 ).
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