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The study considered temperature changes for the period of 1951 2010.
Mechanical properties of a flexible core are considered temperature dependent.
Three important performance measures were considered: temperature uniformity, mean temperature, and pressure drop.
In the simulation, the electrical resistance, convective coefficient and radiative emissivity were considered temperature dependent.
In the simulation, the electrical resistance, material properties were considered temperature dependent.
Various operating parameters were considered: temperature, residence time, contact time and amount of catalyst.
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The multi-linear springs temperature expressions are based on the ambient temperature formulations proposed in Eurocode3 Part 1.8 where material properties are considered temperature-dependent.
As the beam model with thermo-mechanical behavior, the material properties are considered temperature-dependent and vary continuously in the thickness direction.
Viscosity increases with volume fraction, as expected, and this enhancement, defined as (ηnf - η0)/��0, η0 being the viscosity of the base fluid, can be considered temperature-independent by analyzing Table 3.
Previous studies regarding the FTT or Sabatier reactions often considered temperatures over 100°C.
In the extrapolations to 37 °C, the enthalpy and entropy changes were considered temperature-independent; i.e., the heat capacity change (Δ C p 0) was assumed to be zero.
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