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Using Lagrange multipliers approach the derivative of the cost functional with respect to density function is calculated.
This function is calculated numerically in modern systems for the calculation of macro-group constants, necessary to determine the power distribution of a nuclear reactor.
The kernel function is calculated explicitly.
From the impedance the charge potential transfer function is calculated.
This function is calculated using a multi-linear approximation model and a numerical design of experiments.
The radial distribution function is calculated from the simulated spatio-temporal particle distribution.
Then 2D cross-correlation function is calculated in the frequency domain.
By a judicious input, the accurate driver response function is calculated.
The sensitivity of the penalty function is calculated using the sensitivity information of the weight and frequencies.
Material constant of strain energy function is calculated from experimental data by using Levenberg Marquardt nonlinear regression method.
The error function is calculated using curve fitting techniques based on the difference in the experimental and actual flow.
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