Sarafian, Haiduke (2021) Nonlinear Electrostatic “Hesitant” Oscillator. American Journal of Computational Mathematics, 11 (01). pp. 42-52. ISSN 2161-1203
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Abstract
In search of nonlinear oscillations, we envision a 3D elliptic curva-ture-dependent nonuniform charge distribution to creating an electric field along the symmetry axis causing a massive point-like charged particle placed on the symmetry axis to oscillate in a delayed/hesitant nonlinear mode. The charge distribution is a 3D twisted line creating nontrivial electric field causing an unexpected oscillation that is non-orthodox defying the common sense. Calculation of this research flavored investigation is entirely based on utilities accompanied with Computer Algebra Systems (CAS) especially Mathematic [1]. The characteristics of the delayed oscillations in addition to embodying classic graphics displaying the time-dependent kinematic quantities are augmented including various phase diagrams signifying the nonlinear oscillations. The output of our investigation is compared to nonlinear non-delayed oscillations revealing fresh insight. For comprehensive understanding of the hesitant oscillator a simulation program is crafted clarifying visually the scenario on hand.
Item Type: | Article |
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Subjects: | Open Archive Press > Mathematical Science |
Depositing User: | Unnamed user with email support@openarchivepress.com |
Date Deposited: | 15 Jun 2023 06:44 |
Last Modified: | 21 Mar 2024 04:32 |
URI: | http://library.2pressrelease.co.in/id/eprint/1536 |