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ErrorBarFunction   (Error Bar Plots Package Symbol)
ErrorBarFunction is an option for ErrorListPlot that specifies a function to apply to determine the shape of error bars.
ErrorListPlot   (Error Bar Plots Package Symbol)
ErrorListPlot[{{y_1, dy_1}, {y_2, dy_2}, ...}] plots points corresponding to a list of values y_1, y_2, ..., with corresponding error bars. The errors have magnitudes dy_1, ...
Finite Fields Package   (Finite Fields Package Guide)
 
NDTFourierTransform   (Fourier Series Package Symbol)
NDTFourierTransform[expr, n, \[Omega]] gives a numerical approximation to the discrete time Fourier transform of expr evaluated at the numerical value \[Omega], where expr is ...
NFourierCosTransform   (Fourier Series Package Symbol)
NFourierCosTransform[expr, t, \[Omega]] gives a numerical approximation to the Fourier cosine transform of expr evaluated at the numerical value \[Omega], where expr is a ...
NFourierSinTransform   (Fourier Series Package Symbol)
NFourierSinTransform[expr, t, \[Omega]] gives a numerical approximation to the Fourier sine transform of expr evaluated at the numerical value \[Omega], where expr is a ...
NFourierTransform   (Fourier Series Package Symbol)
NFourierTransform[expr, t, \[Omega]] gives a numerical approximation to the Fourier transform of expr evaluated at the numerical value \[Omega], where expr is a function of t.
NInverseDTFourierTransform   (Fourier Series Package Symbol)
NInverseDTFourierTransform[expr, \[Omega], n] gives a numerical approximation to the inverse discrete time Fourier transform of expr evaluated at the integer n, where expr is ...
NInverseFourierCosTransform   (Fourier Series Package Symbol)
NInverseFourierCosTransform[expr, \[Omega], t] gives a numerical approximation to the inverse Fourier cosine transform of expr evaluated at the numerical value t, where expr ...
NInverseFourierSinTransform   (Fourier Series Package Symbol)
NInverseFourierSinTransform[expr, \[Omega], t] gives a numerical approximation to the inverse Fourier sine transform of expr evaluated at the numerical value t, where expr is ...
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