Pages that link to "Item:Q5072924"
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The following pages link to Effective transmission conditions for reaction–diffusion processes in domains separated by thin channels (Q5072924):
Displaying 13 items.
- Derivation of effective transmission conditions for domains separated by a membrane for different scaling of membrane diffusivity (Q524551) (← links)
- Bulk-surface coupling: derivation of two models (Q831092) (← links)
- Reaction-diffusion systems on domains with thin channels (Q1904828) (← links)
- Effective transmission conditions for second-order elliptic equations on networks in the limit of thin domains (Q2213059) (← links)
- Effective interface conditions for processes through thin heterogeneous layers with nonlinear transmission at the microscopic bulk-layer interface (Q2416907) (← links)
- Effective Transmission Conditions for Reaction-Diffusion Processes in Domains Separated by an Interface (Q3506561) (← links)
- Scaling effects on the periodic homogenization of a reaction-diffusion-convection problem posed in homogeneous domains connected by a thin composite layer (Q5022483) (← links)
- Derivation of Stokes-plate-equations modeling fluid flow interaction with thin porous elastic layers (Q5097293) (← links)
- Homogenization and Dimension Reduction of the Stokes Problem with Navier-Slip Condition in Thin Perforated Layers (Q6066784) (← links)
- Homogenization of a semilinear elliptic problem in a thin composite domain with an imperfect interface (Q6152740) (← links)
- On the doubly non-local Hele-Shaw-Cahn-Hilliard system: derivation and \(2D\) well-posedness (Q6536756) (← links)
- Derivation and analysis of a nonlocal Hele-Shaw-Cahn-Hilliard system for flow in thin heterogeneous layers (Q6572309) (← links)
- Homogenization and simulation of heat transfer through a thin grain layer (Q6620405) (← links)