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Unfortunately, virtually all existing similarity measures used to denoise MRI images have been derived under the assumption of additive white Gaussian noise contamination.
The propensity functions which play a central role in this algorithm have been derived under the point-molecule assumption, i.e., that the total volume of the molecules is negligible compared to the volume of the container.
The spatial-time correlation function, the power spectral density (PSD), level crossing rate (LCR) and the average duration of fade (ADF) of the Nakagami Hoyt channel have been derived under the assumption that both the transmitter and receiver are non-stationary having non-omnidirectional antennas.
The results show that although the AML estimators have been derived under the assumption of small values of CFO, they assure a satisfactory performance in the range.
The result of this paper is that the expressions for ergodic throughput capacity, outage probability, and outage throughput capacity have been derived under the favorable propagation condition.
This has been derived under the assumptions of 0 ≤ s X, s Y ≤ 1, 0 ≤ α X, α Y ≤ 1, and 0 ≤ μ < 0.5.
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Its approximate asymptotic distribution is derived under the null hypothesis.
The results are derived under the strict semantic-security metric that requires negligible information leakage for all message-key distributions.
The computational expenditure of both realisations is derived under the restriction of finite coefficient wordlengths.
This model is derived under the assumptions of displacive mechanism of bainite formation.
Furthermore, the significantly similar formula with the Selberg formula can be derived under the simple assumptions.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com