The Mean Value Theorem in the Context of Generalized Approach to Differentiability

Author:

Koceić-Bilan Nikola1ORCID,Mirošević Ivančica2ORCID

Affiliation:

1. Faculty of Science, University of Split, 21000 Split, Croatia

2. Faculty of Electrical Engineering, Mechanical Engineering and Naval Architecture, University of Split, 21000 Split, Croatia

Abstract

The article is a natural continuation of the systematic research of the properties of the generalized concept of differentiability for functions with a domain X⊂Rn that is not necessarily open, at points that allow a neighbourhood ray in the domain. In the new context, the well-known Lagrange’s mean value theorem for scalar functions is stated and proved, even for the case when the differential is not unique at all points of the observed segment in the domain. Likewise, it has been proven that its variant is valid for vector functions as well. Additionally, the paper provides a proof of the generalization of the mean value theorem for continuous scalar functions continuously differentiable in the interior of a compact domain.

Publisher

MDPI AG

Subject

General Mathematics,Engineering (miscellaneous),Computer Science (miscellaneous)

Reference10 articles.

1. Apostol, T.M. (1974). Mathematical Analysis, Addison-Wesley. [2nd ed.]. Exercise 12.19.

2. Sahoo, P., and Riedel, T. (1998). Mean Value Theorems and Functional Equations, World Scientific Publishing Company.

3. Besenyei, A. (2023, September 12). Historical Development of the Mean Value Theorem. Available online: https://abesenyei.web.elte.hu/publications/meanvalue.pdf.

4. Koceić-Bilan, N., and Braić, S. (2022). Generalized approach to differentiability. Mathematics, 10.

5. Koceić-Bilan, N., and Braić, S. (2023). Continuous Differentiability in the Context of Generalized Approach to Differentiability. Mathematics, 11.

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