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Journal of Computational Physics
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September 20, 2021
An Efficient High-Order Meshless Method for Advection-Diffusion Equations on Time-Varying Irregular Domains
Varun Shankar, Grady B Wright, Aaron L Fogelson
Physical Review. E, Statistical, Nonlinear, and Soft Matter Physics
|
August 27, 2011
Flow-induced channel formation in the cytoplasm of motile cells
Robert D Guy, Toshiyuki Nakagaki, Grady B Wright
Journal of Scientific Computing
|
May 19, 2015
A Radial Basis Function (RBF)-Finite Difference (FD) Method for Diffusion and Reaction-Diffusion Equations on Surfaces
Varun Shankar, Grady B Wright, Robert M Kirby, et al.
Applied Numerical Mathematics : Transactions of IMACS
|
April 16, 2013
A study of different modeling choices for simulating platelets within the immersed boundary method
Varun Shankar, Grady B Wright, Aaron L Fogelson, et al.
Journal of Non-Newtonian Fluid Mechanics
|
August 7, 2025
A high-resolution finite-difference method for simulating two-fluid, viscoelastic gel dynamics
Grady B Wright, Robert D Guy, Jian Du, et al.
Page
of 1
Search research articles
Search
Showing results (1-10 of 5) with videos related to
Sort By:
Page
of 1
Journal of Computational Physics
|
September 20, 2021
An Efficient High-Order Meshless Method for Advection-Diffusion Equations on Time-Varying Irregular Domains
Varun Shankar, Grady B Wright, Aaron L Fogelson
Physical Review. E, Statistical, Nonlinear, and Soft Matter Physics
|
August 27, 2011
Flow-induced channel formation in the cytoplasm of motile cells
Robert D Guy, Toshiyuki Nakagaki, Grady B Wright
Journal of Scientific Computing
|
May 19, 2015
A Radial Basis Function (RBF)-Finite Difference (FD) Method for Diffusion and Reaction-Diffusion Equations on Surfaces
Varun Shankar, Grady B Wright, Robert M Kirby, et al.
Applied Numerical Mathematics : Transactions of IMACS
|
April 16, 2013
A study of different modeling choices for simulating platelets within the immersed boundary method
Varun Shankar, Grady B Wright, Aaron L Fogelson, et al.
Journal of Non-Newtonian Fluid Mechanics
|
August 7, 2025
A high-resolution finite-difference method for simulating two-fluid, viscoelastic gel dynamics
Grady B Wright, Robert D Guy, Jian Du, et al.
Page
of 1