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And we've talked about the solution of this equation before.
A numerical algorithm for the solution of this equation is presented along with numerical examples.
The analytical solution of this equation is used to produce performance and design charts.
A numerical scheme for the solution of this equation is suggested.
The solution of this equation for a specified number of electrons and protons is called a wave function and yields a set of corresponding eigenstates.
The solution of this equation yields the fundamental frequency of the composite lattice cylinder under consideration.
The solution of this equation will give rise to instantaneous probability density function of the responses.
The solution of this equation provides selfconsistently both the particle spectrum and the flow profile.
Upon numerical solution of this equation, analytical approximations to the response moments can be obtained.
The use of fast multigrid methods for the solution of this equation is investigated.
Most methods for numerical solution of this equation entail reduction to an approximately equivalent algebraic problem.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com