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The energy transfer was calculated to 91%.
Radiative heat transfer was calculated using the discrete-ordinates method and a nine-band nongray radiative property model.
In the first case study, the heat transfer was calculated on a structure with complex geometry, for which empirical formulas are hardly applicable.
The combustion process was modelled using the species transport model, whereas the heat transfer was calculated by considering a combined convection radiation boundary condition.
During measurement of gas exchange, leaf and air temperature were also measured by thermocouple for evaluating g l. g l to water vapor transfer was calculated as described by Gaastra (1959).
The amount of energy transfer was calculated as the percent increase in donor fluorescence after acceptor photobleaching.
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The radiative heat transfer is calculated using a discrete-ordinates method.
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.
In the case of inelastic scattering trajectories, the profile for translation to vibration energy transfer is calculated.
To simulate the H2O emission from an H2/O2 diffusion flame, radiative transfer is calculated on flame data obtained by numerical simulation.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com