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Investigation of Wave Solutions and Conservation Laws of Generalized Calogero-Bogoyavlenskii Equation by Group Theoretic Method

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Date

2022

Journal Title

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Volume Title

Publisher

Elsevier

Open Access Color

GOLD

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No

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Abstract

This work is focused to analyze the generalized Calogero-Bogoyavlenskii-Schiff equation (GCBSE) by the Lie symmetry method. GCBS equation has been utilized to explain the wave profiles in soliton theory. GCBSE was constructed by Bogoyavlenskii and Schiff in different ways (explained in the introduction section). With the aid of Lie symmetry analysis, we have computed the symmetry generators of the GCBSE and commutation relation. We observed from the commutator table, translational symmetries make an Abelian algebra. Then by using the theory of Lie, we have discovered the similarity variables, which are used to convert the supposed nonlinear partial differential equation (NLPDE) into a nonlinear ordinary differential equation (NLODE). Using the new auxiliary method (NAM), we have to discover some new wave profiles of GCBSE in the type of few trigonometric functions. These exits some parameters which we give to some suitable values to attain the different diagrams of some obtained solutions. Further, the GCBSE is presented by non-linear self-adjointness, and conserved vectors are discovered corresponding to each generator.

Description

Junaid U Rehman, Muhammad/0000-0003-2873-5095; Awrejcewicz, Jan/0000-0003-0387-921X; Jhangeer, Adil/0000-0001-6747-425X

Keywords

Gcbse, Lie Symmetry Analysis, New Auxiliary Method, Nonlinear Self-Adjointness Theory, Conserved Quantities, Lie symmetry analysis, Conserved quantities, Nonlinear self-adjointness theory, Physics, QC1-999, GCBSE, New auxiliary method

Fields of Science

0103 physical sciences, 01 natural sciences

Citation

Jarad, Fahd;...et.al. (2022). "Investigation of wave solutions and conservation laws of generalized Calogero–Bogoyavlenskii–Schiff equation by group theoretic method", Results in Physics, Vol.37.

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Q1

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Q1
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OpenCitations Citation Count
28

Source

Results in Physics

Volume

37

Issue

Start Page

105479

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CrossRef : 18

Scopus : 26

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Mendeley Readers : 5

SCOPUS™ Citations

28

checked on Feb 24, 2026

Web of Science™ Citations

25

checked on Feb 24, 2026

Page Views

2

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15.89715089

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15

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