Pages that link to "Item:Q989362"
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The following pages link to On the equilibrium equation for a generalized biological membrane energy by using a shape optimization approach (Q989362):
Displaying 17 items.
- Computing the dynamics of biomembranes by combining conservative level set and adaptive finite element methods (Q348927) (← links)
- 3D numerical simulations of vesicle and inextensible capsule dynamics (Q349486) (← links)
- Vesicle model with bending energy revisited (Q404863) (← links)
- Equations of heterophase equilibrium of a biomembrane (Q1307717) (← links)
- On the variational theory of cell-membrane equilibria (Q1425681) (← links)
- On the bending algorithms for soft objects in flows (Q1682647) (← links)
- Fully implicit methodology for the dynamics of biomembranes and capillary interfaces by combining the level set and Newton methods (Q1693453) (← links)
- Biomembrane modeling with isogeometric analysis (Q1987795) (← links)
- Bending models of lipid bilayer membranes: spontaneous curvature and area-difference elasticity (Q2175108) (← links)
- Modeling, shape analysis and computation of the equilibrium pore shape near a PEM-PEM intersection (Q2260415) (← links)
- General mathematical frame for open or closed biomembranes. I: Equilibrium theory and geometrically constraint equation (Q2369314) (← links)
- Fully Eulerian finite element approximation of a fluid-structure interaction problem in cardiac cells (Q2952387) (← links)
- Simulation of vesicle using level set method solved by high order finite element (Q3451639) (← links)
- Local sensitivity analysis of the “membrane shape equation” derived from the Helfrich energy (Q4992792) (← links)
- Numerical shape optimization of the Canham-Helfrich-Evans bending energy (Q6162885) (← links)
- Hydrodynamics simulation of red blood cells: Employing a penalty method with double jump composition of lower order time integrator (Q6193154) (← links)
- Fully implicit finite element method for the modeling of free surface flows with surface tension effect (Q6557388) (← links)