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In this method, the heat carriers inside the medium are split into two components: ballistic and diffusive.
In this method, the heat balance calculations are improved by real-time temperature data to achieve more accurate load estimations.
In the second method, the heat transfer coefficient of the shell side has been compared with the experimental heat transfer coefficients of the previous works.
Based on heat source method, the heat transfer of each tool differential element is analyzed independently to model the temperature of each tool differential element.
Using a steepest decent method, the heat load on the mirrors is successfully reduced to the acceptable level by flattening the RF power profile on the mirrors keeping the scattering of the RF power to a minimum from the mirrors.
As a test of the new method, the heat capacity of powdered bulk hematite has been measured in the temperature range from (2 to 300) K with the PPMS, and its standard entropy at T = 298.15 K was calculated to be (87.33 and 87.27) J · K−1 · mol−1, which deviates −0.08% and −0.15% from the accepted reference value, respectively.
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A novel test method, the Heat-Transfer Rate Inducing System (H-TRIS), resulting from a mental shift associated with controlling the thermal exposure not by temperature (e.g. temperature measured by thermocouples) but rather by the time-history of incident heat flux, was conceived, developed, and validated within the scope of the work presented in this paper.
In the thermal treatment method, the heating rate of calcination is one of the most important parameters that can effectively increase or decrease the saturation magnetization.
The heat diffusion-based method spreads the heat from the source seeds to the other pixels by pixel similarity.
Fig. 1 XRD patterns of the ZnO prepared by a hydrothermal method after the heat treatment.
Moreover, the previous studies did not propose a setting method for the heat quantity target of the air-conditioning system.
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