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The model satisfactorily explains the data with a relative error lower than 10%.
It shows that a relative error from Toth equation prediction is less than 0.07%.
As a result, we measured a complete Mueller matrix with a relative error lower than 0.5%.
CH4 was predicted with a relative error of between 3.8 and 19.2%.
The model predictions agreed with the field measured results excellently with a relative error being −10.9%.
The results exhibit a relative error percent that ranges from 1%to15%5%.
The velocity field comparison shows a relative error of about 0.18% in the L2-norm.
The detectors were calibrated with standard gamma sources (each with a relative error of ~5%) prepared in the same shape as the measurement samples.
The calculated results agree with those from measurement and CFD simulations for the studied cases, generating a relative error less than 25%.
The numerical model outcomes, with a relative error of 3.8%, best matched the reality and the analytical method, with a relative error of 27.8%, yielded the highest level of model uncertainty.
The optimal ANN model was capable of predicting the thermal conductivity values with a relative error <1%.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com