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Professor Dr T.E. Simos ‐ CV<br />

P313 Z.A. Anastassi and T.E. Simos, A parametric symmetric linear fourstep<br />

method for the efficient integration of the Schrödinger equation and<br />

related oscillatory problems, Journal of Computational and Applied<br />

Mathematics, 236 (2012) 3880‐3889<br />

P314 Ibraheem Alolyan and T. E. Simos, A new hybrid two‐step method<br />

with vanished phase‐lag and its first and second derivatives for the numerical<br />

solution of the Schrödinger equation and related problems, Journal of<br />

Mathematical Chemistry, Volume: 50 Issue: 7 Pages: 1861‐1881 DOI:<br />

10.1007/s10910‐012‐0008‐8 Published: AUG 2012<br />

P315 Ibraheem Alolyan and T. E. Simos, A new high order two‐step<br />

method with vanished phase‐lag and its derivatives for the numerical<br />

integration of the Schrödinger equation, Journal of Mathematical Chemistry,<br />

Volume: 50 Issue: 9 Pages: 2351‐2373 DOI: 10.1007/s10910‐012‐0035‐5<br />

Published: OCT 2012<br />

P316 Pawel Kosinski and Theodore E. Simos, Special issue on Numerical<br />

Analysis of Fluid Flow and Heat Transfer: Preface, APPLIED MATHEMATICS AND<br />

COMPUTATION Volume: 219 Issue: 7 Special Issue: SI Pages: 3291‐3291<br />

DOI: 10.1016/j.amc.2012.08.102 Published: DEC 1 2012<br />

P317 T.E. Simos, New open modified Newton Cotes type formulae as<br />

multilayer symplectic integrators, Applied Mathematical Modelling 37 (2013)<br />

1983‐1991<br />

P318 T. E. Simos, New high order multiderivative explicit four‐step<br />

methods with vanished phase‐lag and its derivatives for the approximate<br />

solution of the Schrödinger equation. Part I: Construction and theoretical<br />

analysis, Journal of Mathematical Chemistry (2013) 51 (1) , pp. 194‐226<br />

P319 Kostas Tselios and T. E. Simos, “Optimized Fifth Order Symplectic<br />

Integrators for Orbital Problems”, Revista Mexicana de Astronomía y Astrofísica,<br />

(2013) 49 (1) , pp. 11‐24<br />

P320 Ibraheem Alolyan and T. E. Simos, High order four‐step hybrid<br />

method with vanished phase‐lag and its derivatives for the approximate<br />

solution of the Schrödinger equation, Journal of Mathematical Chemistry<br />

(2013) 51 (2) , pp. 532‐555<br />

P321 Th. Monovasilis, Z. Kalogiratou, T.E. Simos,Exponentially Fitted<br />

Symplectic Runge‐Kutta‐Nystrom methods, Appl. Math. Inf. Sci. 7(1), 81‐85<br />

(2013)<br />

Page 57 of 379

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