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This outage probability can be found by plotting the cumulative distribution function (CDF) of the measured channel gain in the forward link, |S21|2[21].
The outage probability of the forward link can be found by plotting the CDF of the measured channel gain of the forward link, PF=P{|S21|2≤FTh}.
The outage probability of the backward link can be found by plotting the CDF of the product of the measured channel gains in forward and backward links, PB=P{|S21|2|S12|2≤BTh}.
This probability can be found by plotting the CDF of the product of the measured channel gain in the forward link and the backward link, |S21|2|S12|2.
The best cutoff c can be found by plotting false positive rates versus true positive rates at different c (Fig. 5).
A recurrence relation (map) can be found by plotting the magnitude of the interspike interval with respect to the preceding interspike interval.
Similar(54)
A straight line was found by plotting RΔ at the critical location and the fatigue life on log log scale.
Also the solubility parameter for PIBORNMA at infinite dilution was found by plotting the graph of [(δ21/RT −χ∞12/V1] versus solubility parameters, δ1, of some probes.
A correlation between the relative light intensities of the Cu I line at 510.7 nm and the deposition rates was found by plotting these quantities as a function of the invariant parameter associated with the current density.
Also the solubility parameters for PPCHEMA, PPCHEMA-AN and PPCHEMA-S at infinite dilution were found by plotting the graph of [(δ12/RT −χ12∞/V1] versus solubility parameters, δ1, of this probes.
The outage probability of the backward link is found by plotting the CDF of the product of the measured channel gains in the forward link and the backward link, |S21|2|S12|2, according to Equation (6).
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