962 resultados para Fractional Differential Equations


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The continued fraction method for solving differential equations is illustrated using three famous differential equations used in quantum chemistry.

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The modeling of complex dynamic systems depends on the solution of a differential equations system. Some problems appear because we do not know the mathematical expressions of the said equations. Enough numerical data of the system variables are known. The authors, think that it is very important to establish a code between the different languages to let them codify and decodify information. Coding permits us to reduce the study of some objects to others. Mathematical expressions are used to model certain variables of the system are complex, so it is convenient to define an alphabet code determining the correspondence between these equations and words in the alphabet. In this paper the authors begin with the introduction to the coding and decoding of complex structural systems modeling.

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Originally presented as the author's thesis, University of Illinois at Urbana-Champaign.

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Based on the author's thesis, Yale.

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Extra t.p., with thesis statement, inserted.

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Thesis (M.S.)--University of Illinois at Urbana-Champaign.

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Mode of access: Internet.

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Translation of: A treatise on differential equations.

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Available on demand as hard copy or computer file from Cornell University Library.

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Available on demand as hard copy or computer file from Cornell University Library.