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For all probability combinations we perform 25 simulations.
For all kernel functions K and W, for all probability density functions ξ and η, f is an increasing of λ.
For instance, probabilities are not truth functional, because the probability of A∩B is not determined by the probability of A and the probability of B. That is, there is no function f such that for all probability
The inequality phi biggl( int_{Omega}f(s),dmu(s) biggr)leq int_{Omega}phibigl(f(s bigr),dmu (s -int _{Omega}phi biggl(biggl|f(s -int_{Omega}phi),dmu(s)biggl| biggl|fdmu(s -int_{Omega}ffor all probability meas -int_{Omega}f non-negative μ-integrable functions f if and only if ϕ is superquadratic.
Receiver operating characteristic curves were plotted, recording sensitivity vs 1-specificity for all probability cut-points of the predictive model.
We conclude from the simulation studies that the results are similar for all probability distributions and that the accuracy of the methods does not rely on a correct assumption regarding the distribution.
Similar(52)
The proposed method can calculate an optimized threshold for all probabilities of impulsive noise occurrence.
At high SNR, the probability of detection for all algorithms is 1 almost for all probabilities of false alarm.
A fixed threshold does not always determine the IN-affected samples truly for all probabilities of IN occurrence.
The maximum achievable relative SNR gain is about 2.24 dB for p = 0.1, 1.16 dB for p = 0.01, and 1.73 dB for p = 0.03. Figure 8 shows that the relative SNR gain is never less than 0 for all probabilities.
A gamma distribution was assumed for all costs and a logistic normal distribution for all probabilities.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com