a new two-step obrechkoff method with vanished phase-lag and some of its derivatives for the numerical solution of radial schrodinger equation and related ivps with oscillating solutions
نویسندگان
چکیده
a new two-step implicit linear obrechkoff twelfth algebraic order method with vanished phase-lag and its first, second, third and fourth derivatives is constructed in this paper. the purpose of this paper is to develop an efficient algorithm for the approximate solution of the one-dimensional radial schrodinger equation and related problems. this algorithm belongs in the category of the multistep methods. in order to produce an efficient multistep method the phase-lag property and its derivatives are used. an error analysis and a stability analysis is also investigated and a comparison with other methods is also studied. the efficiency of the new methodology is proved via theoretical analysis and numerical applications.
منابع مشابه
A new two-step Obrechkoff method with vanished phase-lag and some of its derivatives for the numerical solution of radial Schrodinger equation and related IVPs with oscillating solutions
A new two-step implicit linear Obrechkoff twelfth algebraic order method with vanished phase-lag and its first, second, third and fourth derivatives is constructed in this paper. The purpose of this paper is to develop an efficient algorithm for the approximate solution of the one-dimensional radial Schrodinger equation and related problems. This algorithm belongs in the category of the multist...
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many simulation algorithms (chemical reaction systems, differential systems arising from the modeling of transient behavior in the process industries and etc.) contain the numerical solution of systems of differential equations. for the efficient solution of the above mentioned problems, linear multistep methods or runge-kutta technique are used. for the simulation of chemical procedures the ra...
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عنوان ژورنال:
iranian journal of mathematical chemistryجلد ۸، شماره ۲، صفحات ۱۳۷-۱۵۹
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