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Novel Diamond Alpha Bennett-Leindler Type Dynamic Inequalities and Their Applications

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Date

2022

Journal Title

Journal ISSN

Volume Title

Publisher

Springernature

Open Access Color

Green Open Access

No

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Publicly Funded

No
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Top 10%
Influence
Average
Popularity
Top 10%

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Journal Issue

Abstract

For the exponent zeta > 1, the diamond alpha Bennett-Leindler type inequalities are established by developing two methods, one of which is based on the convex linear combinations of the related delta and nabla inequalities, while the other one is new and is implemented by using time scale calculus rather than algebra. These inequalities can be considered as the complementary to the classical ones obtained for 0 < zeta < 1. Since both methods provide different diamond alpha Bennett-Leindler type inequalities, we can obtain various diamond alpha unifications of the known delta and nabla BennettLeindler type inequalities. Moreover, the second method offers new Bennett-Leindler type inequalities even for the special cases such as delta and nabla ones. Moreover, an application of dynamic Bennett-Leindler type inequalities to the oscillation theory of the second-order half linear dynamic equation is developed and presented for the first time ever.

Description

Kayar, Zeynep/0000-0002-8309-7930

Keywords

Diamond Alpha Calculus, Bennett'S Inequality, Leindler'S Inequality, Oscillation Of The Second-Order Half Linear Dynamic Equation, Dynamic equations on time scales or measure chains, Bennett inequality, Real analysis on time scales or measure chains, Leindler inequality, Inequalities involving derivatives and differential and integral operators, oscillation of the second-order half linear dynamic equation, diamond alpha calculus

Fields of Science

0101 mathematics, 01 natural sciences

Citation

WoS Q

Q1

Scopus Q

Q2
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OpenCitations Citation Count
7

Source

Bulletin of the Malaysian Mathematical Sciences Society

Volume

45

Issue

3

Start Page

1027

End Page

1054
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Citations

Scopus : 10

SCOPUS™ Citations

11

checked on Feb 23, 2026

Web of Science™ Citations

8

checked on Feb 23, 2026

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4.42746208

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