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Assuming that the prototype coefficients have even symmetry around the coefficient, and the first coefficient is zero [21], we get.
The prototype coefficients have even symmetry around the (KN/2)th coefficient, and the first coefficient is zero [13].
Similar(58)
This implementation is valid when the M-point DFT of the prototype pulse has only Q non-zero coefficients.
When the prototype pulse has only Q non-zero coefficients, i.e., C = 1, S = M for the transmitter and S = 2M − K L for the receiver.
The M-point DFT of the prototype pulse has only Q non-zero coefficients, i.e., G(i) = 0 for i ∈ {Q,…,M − 1} (sufficient condition). 2.
The prototype doesn't have to be pretty.
Consequently, the overall heat transfer coefficients and log-mean temperature differences of the prototypes have been preserved as well.
The prototype still has some problems.
A prototype sleeper has been developed.
But the prototype theory has its own problems and limitations.
The prototype I've been given flashes "I Love Coding".
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com