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In this paper, we first analyze the temporal procedure of the equivalent circuit of the TEM method and present a theoretical equation for estimating the self-induction voltage based on the inductor of the transmitting wire.
We discuss the different parameters used in the simulated annealing method and present an economical set of the parameters which is based on the extensive analysis carried out for the central and peripheral collisions of Au-Au, Nb-Nb, and Pb-Pb.
We implemented this method and present it in section 3.1.1.
We briefly discuss each method and present the results therein for a better visualization of the concepts.
We calculated the total expected energy emission for the first 60 batches of each method and present the results in Figure 5.
In Section 2, we review the Fourier pseudospectral method and present a second-order in time linearized semi-implicit Fourier pseudospectral scheme for the GRLW equation.
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This article describes this new method and presents some results of its application to 3D MRSI.
Excellent agreement between the results of different solution method and presented results is observed.
Section 2 describes the new method and presents its convergence.
We have described the successive steps of the method and presented some results on real images.
The data were analysed using the comparative cycle threshold method and presented as the fold change in gene expression, normalized for a calibrator whose value equalled 1.
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