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LIST OF TABLES
Comparison of a Skewed with an Unskewed
DECONVOLUTION OF GAS CHROMATOGRAPHIC DATA
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2p Cn 2p+a accurate addition theorem amount of material artificial function bandlimited cients substituted complex coefficients complex Fourier series computer program continuous Fourier transform convolution theorem data of Run data points data window deconvolution is obtained deconvolution with function deconvolved function deconvolved peaks deconvolved result determine discrete Fourier transform discussed distributions endpoints Equation error exp(-niTrx/p)dx factor fast Fourier transform FFPEAK Figure flame ionization detector frequency domain frequency spectrum function continuation functional form GAS CHROMATOGRAPHIC DATA gaussian gaussian function graph guassian INPUT statement integral interval inverse transform isolated peak largest problem encountered linear machine function material present methods noise original function output peak shapes peaks in Run point of cutoff ratio Rectangle function resolved peaks results obtained ro ro shift theorem shift-invariant sidelobes skewness small negative regions smeared smooth straightforward deconvolution t-axis tic marks transform was taken transformed back