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By using of thermodynamic and heat transfer design methods, the key parameters of the designed Stirling engine like required surfaces for heat transfer were calculated (hot side 307 and the cold side 243 squares of centimeters).
Enthalpies of solution were measured for tetraphenylphosphonium bromide (Ph4PBr), sodium tetraphenylborate (NaBPh4) and sodium bromide (NaBr) in mixtures of N,N-dimethylformamide (DMF) and water over the whole composition range at 298.15 K. Single ion enthalpies of transfer were calculated with a number of assumptions.
The clinical pregnancy rates (CPR), embryo implantation rates (IRs), early miscarriage rates and ongoing pregnancy rates (OPRs) of fresh embryo transfer were calculated and compared between the three groups.
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The energy transfer was calculated to 91%.
The shortwave radiative transfer is calculated over 14 bands (0.2 to 12.2 μm) while the longwave radiative transfer is calculated over 16 bands (3.1 to 1000.0 μm).
The radiative heat transfer is calculated using a discrete-ordinates method.
The radiative transfer is calculated by using the correlated k-distribution (CKD) method with six quadrature points for each band.
There is today a risk of misunderstanding and inconsistent use of methodology when transmission heat transfer is calculated.
The critical distance, efficiency, and mechanism of Ce3+→Dy3+ energy transfer are calculated and determined in term of the theoretical formulas.
Radiative heat transfer was calculated using the discrete-ordinates method and a nine-band nongray radiative property model.
In the case of inelastic scattering trajectories, the profile for translation to vibration energy transfer is calculated.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com