A new parallel 3-point explicit block method for solving second order ordinary differential equations directly
A new parallel 3-point explicit block method for solving second order ordinary differential equations (ODES) directly is developed. The method computes the numerical solution of the equations at three points simultaneously. Each problem was tested on the shared memory parallel computer Sequent S27 u...
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Universiti Utara Malaysia
1999
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my.uum.repo.7942010-09-30T06:48:23Z http://repo.uum.edu.my/794/ A new parallel 3-point explicit block method for solving second order ordinary differential equations directly Omar, Zurni Suleiman, Mohamed QA Mathematics A new parallel 3-point explicit block method for solving second order ordinary differential equations (ODES) directly is developed. The method computes the numerical solution of the equations at three points simultaneously. Each problem was tested on the shared memory parallel computer Sequent S27 using both the sequential and parallel implementations of the new method and the conventional 1-point method. Numerical results are presented comparing the two methods in terms of the number of steps taken, accuracy and execution times. The results indicate that the parallel implementation of the new method is the best choice for solving second order ODES directly, particularly when the step size becomes finer. Universiti Utara Malaysia 1999 Article PeerReviewed application/pdf en http://repo.uum.edu.my/794/1/Zurni_Omar.pdf Omar, Zurni and Suleiman, Mohamed (1999) A new parallel 3-point explicit block method for solving second order ordinary differential equations directly. Analisis, 6 (1&2). pp. 61-74. ISSN 0127-8983 http://ijms.uum.edu.my |
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QA Mathematics Omar, Zurni Suleiman, Mohamed A new parallel 3-point explicit block method for solving second order ordinary differential equations directly |
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A new parallel 3-point explicit block method for solving second order ordinary differential equations (ODES) directly is developed. The method computes the numerical solution of the equations at three points simultaneously. Each problem was tested on the shared memory parallel computer Sequent S27 using both the sequential and parallel implementations of the new method and the conventional 1-point method. Numerical results are presented comparing the two methods in terms of the number of steps taken, accuracy and execution times. The results indicate that the parallel implementation of the new method is the best choice for solving second order ODES directly, particularly when the step size becomes finer. |
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Article |
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Omar, Zurni Suleiman, Mohamed |
author_facet |
Omar, Zurni Suleiman, Mohamed |
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Omar, Zurni |
title |
A new parallel 3-point explicit block method for solving second order ordinary differential equations directly |
title_short |
A new parallel 3-point explicit block method for solving second order ordinary differential equations directly |
title_full |
A new parallel 3-point explicit block method for solving second order ordinary differential equations directly |
title_fullStr |
A new parallel 3-point explicit block method for solving second order ordinary differential equations directly |
title_full_unstemmed |
A new parallel 3-point explicit block method for solving second order ordinary differential equations directly |
title_sort |
new parallel 3-point explicit block method for solving second order ordinary differential equations directly |
publisher |
Universiti Utara Malaysia |
publishDate |
1999 |
url |
http://repo.uum.edu.my/794/1/Zurni_Omar.pdf http://repo.uum.edu.my/794/ http://ijms.uum.edu.my |
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1644277864392032256 |
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13.209306 |