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Integral Representation of Functions of Bounded Variation

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  • Z. Lipcsey
  • I. M. Esuabana
  • J. A. Ugboh
  • I. O. Isaac

Abstract

Functions of bounded variations form important transition between absolute continuous and singular functions. With Bainov’s introduction of impulsive differential equations having solutions of bounded variation, this class of functions had eventually entered into the theory of differential equations. However, the determination of existence of solutions is still problematic because the solutions of differential equations is usually at least absolute continuous which is disrupted by the solutions of bounded variations. As it is known, if is of bounded variation then is the sum of an absolute continuous function and a singular function where the total variation of generates a singular measure and is absolute continuous with respect to . In this paper we prove that a function of bounded variation has two representations: one is which was described with an absolute continuous part with respect to the Lebesgue measure , while in the other an integral with respect to forms the absolute continuous part and defines the singular measure. Both representations are obtained as parameter transformation images of an absolute continuous function on total variation domain .

Suggested Citation

  • Z. Lipcsey & I. M. Esuabana & J. A. Ugboh & I. O. Isaac, 2019. "Integral Representation of Functions of Bounded Variation," Journal of Mathematics, Hindawi, vol. 2019, pages 1-11, July.
  • Handle: RePEc:hin:jjmath:1065946
    DOI: 10.1155/2019/1065946
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