Asymptotic Approximations of Higher-Order Apostol–Frobenius–Genocchi Polynomials with Enlarged Region of Validity

Author:

Corcino Cristina12,Castañeda Wilson D.3,Corcino Roberto12ORCID

Affiliation:

1. Research Institute for Computational Mathematics and Physics, Cebu Normal University, Cebu City 6000, Philippines

2. Mathematics Department, Cebu Normal University, Cebu City 6000, Philippines

3. Department of Mathematics and Statistics, Cebu Technological University, Cebu City 6000, Philippines

Abstract

In this paper, the uniform approximations of the Apostol–Frobenius–Genocchi polynomials of order α in terms of the hyperbolic functions are derived through the saddle-point method. Moreover, motivated by the works of Corcino et al., an approximation with enlarged region of validity for these polynomials is also obtained. It is found out that the methods are also applicable for the case of the higher order generalized Apostol-type Frobenius–Genocchi polynomials and Apostol–Frobenius-type poly-Genocchi polynomials with parameters a, b, and c. These methods demonstrate the techniques of computing the symmetries of the defining equation of these polynomials. Graphs are illustrated to show the accuracy of the exact values and corresponding approximations of these polynomials with respect to some specific values of its parameters.

Funder

Cebu Normal University through its Research Institute for Computational Mathematics and Physics

Publisher

MDPI AG

Subject

Physics and Astronomy (miscellaneous),General Mathematics,Chemistry (miscellaneous),Computer Science (miscellaneous)

Reference20 articles.

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2. Integral transforms and extended Hermite-Apostol type Frobenius- Genocchi polynomials;Wani;Kragujev. J. Math.,2021

3. Frobenius-Euler and Frobenius-Genocchi polynomials and their differential equations;New Trends Math. Sci.,2015

4. Some results for the Apostol-Genocchi polynomials of higher order;Jolany;Bull. Malays. Math. Sci. Soc.,2013

5. Construction of the type 2 poly-Frobenius–Genocchi polynomials with their certain applications;Duran;Adv. Differ. Equ.,2020

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