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Using this method, the solution order can be adapted according to the local conditions at each time step, enabling adaptive error control without changing the integration timestep.
Using this method the solution over different subdomains with different multigrid levels is efficiently computed.
Through a hybrid optimization search method, the solution is obtained and the sensitivities of geographical location and seasons are discussed.
In this method, the solution is comprised of three parts: wavelet analysis, model identification and system prediction.
In this method, the solution composes into two parts, i.e., the general solution and the particular solution.
In the second method the solution is further improved by introducing a scale factor at each iteration.
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Based on the local fractional variational iteration method, the solutions of the damped and dissipative wave equations were presented.
To demonstrate the specificity of the developed UPLC method the solutions of CIP, MOX, NOR, OFL after photodegradation were analyzed.
First, by construction, in these methods the solution admits at most n nonzero estimates of regression coefficients (Park and Casella 2008).
501 (APC 501) Mathematical Methods of Engineering Analysis I A complementary presentation of theory, analytical methods, and numerical methods for the solution of problems in physics and engineering.
A method for the solution of certain non-linear problems in least squares.
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