For certain flow regimes, the nonlinear differential equation Y¨=F(Y)−G, Y≥0, G>0 and constant, models qualitatively the behaviour of a forced, fluid dynamic, harmonic oscillator which has been a popular department store attraction. The device consists of a ball oscillating suspended in the vertical jet from a household fan. From the postulated form of the model, we determine sets of attraction and exploit symmetry properties of the system to show that all solutions are either initially periodic, with the ball never striking the fan, or else eventually approach a periodic limit cycle, after a sufficient number of bounces away from the fan
We reprove in an extremely simple way the classical theorem that time periodic dissipa-tive systems ...
AbstractThe existence of periodic solutions for systems of forced pendulum-like equations was studie...
We reprove in an extremely simple way the classical theorem that time periodic dissipative systems ...
ABSTRACT. For certain flow regimes, the nonlinear differential equation Y F(Y) G, Y> 0, G 0 and c...
For certain flow regimes, the nonlinear differential equation Y¨=F(Y)−G, Y≥0, G\u3e0 and constant, m...
We consider second order ordinary differential equations describing periodically forced dynamical sy...
A general first order theory is presented for treating forced oscillations in multiple degree of fre...
Non-linear oscillators have seen intense research interest over recent decades.Throughout this time ...
We perform a detailed study of the dynamics of a nonlinear, one-dimensional oscillator driven by a ...
In this paper, nonlinear frequency-amplitude characteristics of periodic motions in a periodically f...
A study is made of the free and forced oscillations in dynamic systems with hysteresis, on the basi...
A study is made of the free and forced oscillations in dynamic systems with hysteresis, on the basis...
summary:In many engineering problems, when studying the existence of periodic solutions to a nonline...
We prove the existence of a periodic solution to a nonlinear impact oscillator, whose restor- ing fo...
This paper studies the nonlinear equation for ventilation flows in a single opening enclosure. Perio...
We reprove in an extremely simple way the classical theorem that time periodic dissipa-tive systems ...
AbstractThe existence of periodic solutions for systems of forced pendulum-like equations was studie...
We reprove in an extremely simple way the classical theorem that time periodic dissipative systems ...
ABSTRACT. For certain flow regimes, the nonlinear differential equation Y F(Y) G, Y> 0, G 0 and c...
For certain flow regimes, the nonlinear differential equation Y¨=F(Y)−G, Y≥0, G\u3e0 and constant, m...
We consider second order ordinary differential equations describing periodically forced dynamical sy...
A general first order theory is presented for treating forced oscillations in multiple degree of fre...
Non-linear oscillators have seen intense research interest over recent decades.Throughout this time ...
We perform a detailed study of the dynamics of a nonlinear, one-dimensional oscillator driven by a ...
In this paper, nonlinear frequency-amplitude characteristics of periodic motions in a periodically f...
A study is made of the free and forced oscillations in dynamic systems with hysteresis, on the basi...
A study is made of the free and forced oscillations in dynamic systems with hysteresis, on the basis...
summary:In many engineering problems, when studying the existence of periodic solutions to a nonline...
We prove the existence of a periodic solution to a nonlinear impact oscillator, whose restor- ing fo...
This paper studies the nonlinear equation for ventilation flows in a single opening enclosure. Perio...
We reprove in an extremely simple way the classical theorem that time periodic dissipa-tive systems ...
AbstractThe existence of periodic solutions for systems of forced pendulum-like equations was studie...
We reprove in an extremely simple way the classical theorem that time periodic dissipative systems ...