In this paper attempts have been done to solve nonlinear oscillator by using Akbari–Ganji’s Method (AGM). Solving nonlinear equation is difficult due to its high nonlinearity. This new approach is emerged after comparing the achieved solutions with numerical method and exact solution. Results are presented for different values of amplitude vibration of the problem parameters which would certainly illustrate that this method (AGM) is efficient and has enough accuracy in comparison with other semi analytical and numerical methods. Moreover, results demonstrate that AGM could be applicable through other methods in nonlinear problems with high nonlinearity. Furthermore, convergence problems for solving nonlinear equations by using AGM appear sm...
The cubication and the equivalent nonlinearization methods are used to replace the original Duffing-...
We applied an approach to obtain the natural frequency of the generalized Duffing oscillator u¨ + u...
Real life phenomena found in various fields such as engineering, physics, biology and communication ...
AbstractIn this paper attempts have been done to solve nonlinear oscillator by using Akbari–Ganji’s ...
In this paper, attempts have been made to solve nonlinear vibrational equation such as Van Der Pol O...
In this paper, a new perturbation technique is employed to solve strongly nonlinear Duffing oscillat...
In this paper, an analytical approximation technique has been presented of obtaining higher-order a...
In this paper, a new noble modified iterative method is proposed to obtain the approximate solution ...
In this paper, a new and innovative semi-analytical method called Akbari-Ganjiâs method (AGM) has be...
In this study, Harmonic Balance Method (HBM) is applied to determine approximate analytic solutions ...
AbstractIn this paper, He’s Frequency–Amplitude Formulation (HFAF) and He’s Energy Balance Method (H...
This study describes an analytical method to study two well-known systems of nonlinear oscillators. ...
The Duffing-harmonic oscillator is a common model for nonlinear phenomena in science and engineering...
The cubication and the equivalent nonlinearization methods are used to replace the original Duffing-...
In this study, Harmonic Balance Method (HBM) is applied to determine approximate analytic solutions...
The cubication and the equivalent nonlinearization methods are used to replace the original Duffing-...
We applied an approach to obtain the natural frequency of the generalized Duffing oscillator u¨ + u...
Real life phenomena found in various fields such as engineering, physics, biology and communication ...
AbstractIn this paper attempts have been done to solve nonlinear oscillator by using Akbari–Ganji’s ...
In this paper, attempts have been made to solve nonlinear vibrational equation such as Van Der Pol O...
In this paper, a new perturbation technique is employed to solve strongly nonlinear Duffing oscillat...
In this paper, an analytical approximation technique has been presented of obtaining higher-order a...
In this paper, a new noble modified iterative method is proposed to obtain the approximate solution ...
In this paper, a new and innovative semi-analytical method called Akbari-Ganjiâs method (AGM) has be...
In this study, Harmonic Balance Method (HBM) is applied to determine approximate analytic solutions ...
AbstractIn this paper, He’s Frequency–Amplitude Formulation (HFAF) and He’s Energy Balance Method (H...
This study describes an analytical method to study two well-known systems of nonlinear oscillators. ...
The Duffing-harmonic oscillator is a common model for nonlinear phenomena in science and engineering...
The cubication and the equivalent nonlinearization methods are used to replace the original Duffing-...
In this study, Harmonic Balance Method (HBM) is applied to determine approximate analytic solutions...
The cubication and the equivalent nonlinearization methods are used to replace the original Duffing-...
We applied an approach to obtain the natural frequency of the generalized Duffing oscillator u¨ + u...
Real life phenomena found in various fields such as engineering, physics, biology and communication ...