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Distinguish Professor Dr. Theodore E. Simos
作者:rsc    日期:2017-9-6    来源:rsc     点击率:99

                                                       

 

Distinguish Professor Dr. Theodore E. Simos

       T.E. Simos is a Professor of Numerical Analysis University of Peloponnese, Greece. He is a highly cited researcher in Mathematics and an active Member of the European Academy of Sciences.

 

MEMBERSHIP OF ACADEMIC ORGANIZATIONS

Greek Chamber of Engineers;

Institute of Physics (Chartered Physicist);

New York Academy of Sciences.

 

MEMBER OF EDITORIAL BOARDS

Editor in Chief of Applied Mathematics and Computation;

Editor of the Journal of Mathematical Chemistry;

Editor of the Journal: Mediterranean Journal of Mathematics;

Editor of the journal: Mathematical Methods in the Applied Sciences;

Editor of the journal: Carpathian Journal of Mathematics.

 

RECENT PUBLICATIONS

[1]Ch. Tsitouras, I. Famelis, T.E. Simos, Phase-fitted Runge-Kutta pairs of orders 8(7), J. Comput. Appl. Math. 321 (2017) 226-231.

[2]M.J. Liang, T.E. Simos, A new four stages symmetric two-step method with vanished phase-lag and its first derivative for the numerical integration of the Schrodinger equation, J. Math. Chem. 54 (2016) 1187-1211.

[3]J.Y. Ma, T.E. Simos, Hybrid high algebraic order two-step method with vanished phase-lag and its first, second, third, fourth and fifth derivatives, Int. J. Mod. Phys. C 27 (2016) 1650049.

[4]W. Zhang, T.E. Simos, A high-order two-step phase-fitted method for the numerical solution of the Schrodinger equation, Med. J. Math. 13 (2016) 5177-5194.

[5]F. Hu, T.E. Simos, A new family of two stage symmetric two-step methods with vanished phase-lag and its derivatives for the numerical integration of the Schrodinger equation, J. Math. Chem. 53 (2015) 2191-2213.

[6]N. Huang, T.E. Simos, High algebraic order Runge-Kutta type two-step method with vanished phase-lag and its first, second, third, fourth, fifth and sixth derivatives, Comput. Phys. Commun. 196 (2015) 226-235.

[7]T.E. Simos, New open modified Newton Cotes type formulae as multilayer symplectic integrators, Appl. Math. Model. 4(2013)1983-1991.

[8]I. Alolyan, Z. Anastassi, T.E. Simos, A new family of symmetric linear four-step methods for the efficient integration of the Schrodinger equation and related oscillatory problems, Appl. Math. Comput. 218 (2012) 5370-5382.

 

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