For a two-phase moving boundary problem modelling the motion of a semipermeable membrane by osmotic pressure and surface tension, we prove that the manifold of equilibria is locally exponentially attractive. Our method relies on maximal regularity results for parabolic systems with relaxation type boundary dynamics
For a moving boundary problem modelling the motion of a semipermeable membrane by osmotic pressure a...
For a moving boundary problem modelling the motion of a semipermeable membrane by osmotic pressure a...
For a moving boundary problem modeling the motion of a semipermeable membrane by osmotic pressure an...
For a two-phase moving boundary problem modelling the motion of a semipermeable membrane by osmotic ...
For a two-phase moving boundary problem modelling the motion of a semipermeable membrane by osmotic ...
For a two-phase moving boundary problem modelling the motion of a semipermeable membrane by osmotic ...
For a two-phase moving boundary problem modelling the motion of a semipermeable membrane by osmotic ...
For a two-phase moving boundary problem modelling the motion of a semipermeable membrane by osmotic ...
For a two-phase moving boundary problem modelling the motion of a semipermeable membrane by osmotic ...
For a two-phase moving boundary problem modelling the motion of a semipermeable membrane by osmotic ...
Within the framework of variational modelling we derive a two-phase moving boundary problem that des...
Within the framework of variational modelling we derive a two-phase moving boundary problem that des...
Within the framework of variational modelling we derive a two-phase moving boundary problem that des...
Within the framework of variational modelling we derive a two-phase moving boundary problem that des...
Within the framework of variational modelling we derive a two-phase moving boundary problem that des...
For a moving boundary problem modelling the motion of a semipermeable membrane by osmotic pressure a...
For a moving boundary problem modelling the motion of a semipermeable membrane by osmotic pressure a...
For a moving boundary problem modeling the motion of a semipermeable membrane by osmotic pressure an...
For a two-phase moving boundary problem modelling the motion of a semipermeable membrane by osmotic ...
For a two-phase moving boundary problem modelling the motion of a semipermeable membrane by osmotic ...
For a two-phase moving boundary problem modelling the motion of a semipermeable membrane by osmotic ...
For a two-phase moving boundary problem modelling the motion of a semipermeable membrane by osmotic ...
For a two-phase moving boundary problem modelling the motion of a semipermeable membrane by osmotic ...
For a two-phase moving boundary problem modelling the motion of a semipermeable membrane by osmotic ...
For a two-phase moving boundary problem modelling the motion of a semipermeable membrane by osmotic ...
Within the framework of variational modelling we derive a two-phase moving boundary problem that des...
Within the framework of variational modelling we derive a two-phase moving boundary problem that des...
Within the framework of variational modelling we derive a two-phase moving boundary problem that des...
Within the framework of variational modelling we derive a two-phase moving boundary problem that des...
Within the framework of variational modelling we derive a two-phase moving boundary problem that des...
For a moving boundary problem modelling the motion of a semipermeable membrane by osmotic pressure a...
For a moving boundary problem modelling the motion of a semipermeable membrane by osmotic pressure a...
For a moving boundary problem modeling the motion of a semipermeable membrane by osmotic pressure an...