研究 q$$ \mathfrak{q} $$ 变形方程一般形式的新解:分析与数值研究

IF 1.8 3区 工程技术 Q3 ENGINEERING, ELECTRICAL & ELECTRONIC
Khalid K. Ali, Mohamed S. Mohamed, Weam G. Alharbi
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引用次数: 0

摘要

摘要 本文有助于研究一种称为变形方程或变形 tanh-Gordon 模型的新模型。为了理解具有违反对称性的物理系统。我们利用-展开方法求解特定参数值的-变形方程。这种方法生成的解为了解系统的动力学和行为提供了宝贵的见解。为了验证求解的准确性,我们还采用了有限差分技术来获得变形方程的数值解。这种双重方法确保了我们结果的可靠性。我们使用表格和图形来展示我们的研究结果,以提高清晰度,并便于比较分析解和数值解。这些直观教具有助于读者更好地理解两种方法的异同。变形方程具有重要意义,因为它可以模拟具有非标准对称特征(如延展性)的物理系统,从而更准确地反映现实世界的现象。该方程在各个学科中的重要性与日俱增,彰显了它在促进我们理解复杂物理系统方面的潜力。本文贡献了有关变形方程的宝贵知识,展示了它在精确模拟具有违反对称性的物理系统方面的潜力。通过分析和数值技术,我们提供了全面的解决方案,并验证了其准确性,同时通过图形表示增强了结果的清晰度和理解力。对变形的探索推动了建模技术的发展,为具有非标准对称性特征的真实世界过程提供了更精确的描述。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Investigating new solutions for a general form of q$$ \mathfrak{q} $$‐deformed equation: An analytical and numerical study
SummaryThis paper contributes to the study of a new model called the ‐deformed equation or the ‐deformed tanh‐Gordon model. To understand physical systems with violated symmetries. We utilize the ‐expansion approach to solve the ‐deformed equation for specific parameter values. This method generates solutions that provide valuable insights into the system's dynamics and behavior. To verify the accuracy of our solutions, we also apply the finite difference technique to obtain numerical solutions to the ‐deformed equation. This dual approach ensures the reliability of our results. We present our findings using tables and graphics to enhance clarity and facilitate comparison between the analytical and numerical solutions. These visual aids help readers better understand the similarities and differences between the two approaches. The ‐deformation is significant as it models physical systems with nonstandard symmetry features, like extensivity, offering a more accurate representation of real‐world phenomena. The growing significance of this equation across various disciplines highlights its potential in advancing our understanding of complex physical systems. This paper contributes valuable knowledge about the ‐deformed equation, demonstrating its potential for accurately modeling physical systems with violated symmetries. Through both analytical and numerical techniques, we offer comprehensive solutions and validate their accuracy, with graphical representations enhancing the clarity and understanding of our results. This exploration of ‐deformation advances modeling techniques, providing a more precise depiction of real‐world processes with nonstandard symmetry features.
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来源期刊
International Journal of Circuit Theory and Applications
International Journal of Circuit Theory and Applications 工程技术-工程:电子与电气
CiteScore
3.60
自引率
34.80%
发文量
277
审稿时长
4.5 months
期刊介绍: The scope of the Journal comprises all aspects of the theory and design of analog and digital circuits together with the application of the ideas and techniques of circuit theory in other fields of science and engineering. Examples of the areas covered include: Fundamental Circuit Theory together with its mathematical and computational aspects; Circuit modeling of devices; Synthesis and design of filters and active circuits; Neural networks; Nonlinear and chaotic circuits; Signal processing and VLSI; Distributed, switched and digital circuits; Power electronics; Solid state devices. Contributions to CAD and simulation are welcome.
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