International audienceA semilinear parabolic equation with constraint modeling the dynamics of a microelectromechanical system (MEMS) is studied. In contrast to the commonly used MEMS model, the well-known pull-in phenomenon occurring above a critical potential threshold is not accompanied by a breakdown of the model, but is recovered by the saturation of the constraint for pulled-in states. It is shown that a maximal stationary solution exists and that saturation only occurs for large potential values. In addition, the existence, uniqueness, and large time behavior of solutions to the evolution equation are studied
In the current work, we study a stochastic parabolic problem. The presented problem is motivated by ...
We consider a nonlocal parabolic model for a micro-electro-mechanical system. Specifically, for a ra...
International audienceA model for a MEMS device, consisting of a fixed bottom plate and an elastic p...
International audienceA semilinear parabolic equation with constraint modeling the dynamics of a mic...
Micro-Electromechanical Systems (MEMS) combine electronics with micro-size mechanical devices in the...
International audienceThe existence of weak solutions to the obstacle problem for a nonlocal semilin...
Abstract. In this paper, we study nonlinear equation arising in MEMS modeling electrostatic actuatio...
In this paper we study the local wellposedness of the solution to a non-linear parabolic-dispersive ...
The dynamical and stationary behaviors of a fourth-order equation in the unit ball with clamped boun...
International audienceA free boundary problem modeling a microelectromechanical system (MEMS) consis...
The evolution problem for a membrane based model of an electrostatically actuated microelectromechan...
Abstract. In this paper, we study an evolution problem arises in the study of MEMS (micro-electro me...
AbstractThis paper is a continuation of [N. Ghoussoub, Y. Guo, On the partial differential equations...
AbstractIn this paper we study the nonlinear problem arising in electrostatic actuation of MEMS. We ...
Abstract. We study the quenching behavior for a semilinear heat equation arising in models of micro-...
In the current work, we study a stochastic parabolic problem. The presented problem is motivated by ...
We consider a nonlocal parabolic model for a micro-electro-mechanical system. Specifically, for a ra...
International audienceA model for a MEMS device, consisting of a fixed bottom plate and an elastic p...
International audienceA semilinear parabolic equation with constraint modeling the dynamics of a mic...
Micro-Electromechanical Systems (MEMS) combine electronics with micro-size mechanical devices in the...
International audienceThe existence of weak solutions to the obstacle problem for a nonlocal semilin...
Abstract. In this paper, we study nonlinear equation arising in MEMS modeling electrostatic actuatio...
In this paper we study the local wellposedness of the solution to a non-linear parabolic-dispersive ...
The dynamical and stationary behaviors of a fourth-order equation in the unit ball with clamped boun...
International audienceA free boundary problem modeling a microelectromechanical system (MEMS) consis...
The evolution problem for a membrane based model of an electrostatically actuated microelectromechan...
Abstract. In this paper, we study an evolution problem arises in the study of MEMS (micro-electro me...
AbstractThis paper is a continuation of [N. Ghoussoub, Y. Guo, On the partial differential equations...
AbstractIn this paper we study the nonlinear problem arising in electrostatic actuation of MEMS. We ...
Abstract. We study the quenching behavior for a semilinear heat equation arising in models of micro-...
In the current work, we study a stochastic parabolic problem. The presented problem is motivated by ...
We consider a nonlocal parabolic model for a micro-electro-mechanical system. Specifically, for a ra...
International audienceA model for a MEMS device, consisting of a fixed bottom plate and an elastic p...