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Variational iteration method for the solution of seventh order boundary value problems using he’s polynomials
Joint Authors
Sadiqi, Shahid S.
Iftikhar, Muzammal
Source
Arab Journal of Basic and Applied Sciences
Issue
Vol. 18, Issue 0 (31 Oct. 2015), pp.60-65, 6 p.
Publisher
University of Bahrain College of Science
Publication Date
2015-10-31
Country of Publication
Bahrain
No. of Pages
6
Main Subjects
Abstract EN
The induction motor behaviour is represented by a fifth order differential equation model.
Addition of a torque correction factor to the model accurately reproduces the transient torques and instantaneous real and reactive power flows of the full seventh order differential equation model.
The variational iteration method using He’s polynomials is employed to solve the seventh order boundary value problems.
The approximate solutions to the problems are obtained in terms of a rapidly convergent series.
Several numerical examples are given to illustrate the implementation and the efficiency of the method.
American Psychological Association (APA)
Sadiqi, Shahid S.& Iftikhar, Muzammal. 2015. Variational iteration method for the solution of seventh order boundary value problems using he’s polynomials. Arab Journal of Basic and Applied Sciences،Vol. 18, no. 0, pp.60-65.
https://search.emarefa.net/detail/BIM-612645
Modern Language Association (MLA)
Sadiqi, Shahid S.& Iftikhar, Muzammal. Variational iteration method for the solution of seventh order boundary value problems using he’s polynomials. Arab Journal of Basic and Applied Sciences Vol. 18 (Oct. 2015), pp.60-65.
https://search.emarefa.net/detail/BIM-612645
American Medical Association (AMA)
Sadiqi, Shahid S.& Iftikhar, Muzammal. Variational iteration method for the solution of seventh order boundary value problems using he’s polynomials. Arab Journal of Basic and Applied Sciences. 2015. Vol. 18, no. 0, pp.60-65.
https://search.emarefa.net/detail/BIM-612645
Data Type
Journal Articles
Language
English
Notes
Includes bibliographical references : p. 65
Record ID
BIM-612645