AbstractAnalytical ultracentrifugation experiments can be accurately modeled with the Lamm equation to obtain sedimentation and diffusion coefficients of the solute. Existing finite element methods for such models can cause artifactual oscillations in the solution close to the endpoints of the concentration gradient, or fail altogether, especially for cases where sω2/D is large. Such failures can currently only be overcome by an increase in the density of the grid points throughout the solution at the expense of increased computational costs. In this article, we present a robust, highly accurate and computationally efficient solution of the Lamm equation based on an adaptive space-time finite element method (ASTFEM). Compared to the widely ...
A new method for the direct molecular mass determination from sedimentation velocity experiments is ...
Accepted author manuscriptA framework for the global analysis of multi-speed analytical ultracentrif...
Brownian dynamics (BD) has been applied as a comprehensive tool to model sedimentation and diffusion...
AbstractWe describe an extension of the adaptive space-time finite element method (ASTFEM) used in t...
AbstractThe potential of using the Lamm equation in the analysis of hydrodynamic shape and gross con...
Accepted author manuscriptSedimentation velocity experiments performed in the analytical ultracentri...
ABSTRACT The potential of using the Lamm equation in the analysis of hydrodynamic shape and gross co...
AbstractA method for fitting experimental sedimentation velocity data to finite-element solutions of...
AbstractA new method for the size-distribution analysis of polymers by sedimentation velocity analyt...
AbstractWe describe algorithms for solving the Lamm equations for the reaction-diffusion-sedimentati...
Synthetic sedimentation velocity boundaries were generated using finite-element solutions to the ori...
AbstractSedimentation equilibrium (SE) analytical ultracentrifugation (AUC) is a gold standard for t...
Experimental data of analytical ultracentrifugation (AUC) experiments is defined by sedimentation an...
A new method for the direct molecular mass determination from sedimentation velocity experiments is ...
AbstractA method for fitting sedimentation velocity experiments using whole boundary Lamm equation s...
A new method for the direct molecular mass determination from sedimentation velocity experiments is ...
Accepted author manuscriptA framework for the global analysis of multi-speed analytical ultracentrif...
Brownian dynamics (BD) has been applied as a comprehensive tool to model sedimentation and diffusion...
AbstractWe describe an extension of the adaptive space-time finite element method (ASTFEM) used in t...
AbstractThe potential of using the Lamm equation in the analysis of hydrodynamic shape and gross con...
Accepted author manuscriptSedimentation velocity experiments performed in the analytical ultracentri...
ABSTRACT The potential of using the Lamm equation in the analysis of hydrodynamic shape and gross co...
AbstractA method for fitting experimental sedimentation velocity data to finite-element solutions of...
AbstractA new method for the size-distribution analysis of polymers by sedimentation velocity analyt...
AbstractWe describe algorithms for solving the Lamm equations for the reaction-diffusion-sedimentati...
Synthetic sedimentation velocity boundaries were generated using finite-element solutions to the ori...
AbstractSedimentation equilibrium (SE) analytical ultracentrifugation (AUC) is a gold standard for t...
Experimental data of analytical ultracentrifugation (AUC) experiments is defined by sedimentation an...
A new method for the direct molecular mass determination from sedimentation velocity experiments is ...
AbstractA method for fitting sedimentation velocity experiments using whole boundary Lamm equation s...
A new method for the direct molecular mass determination from sedimentation velocity experiments is ...
Accepted author manuscriptA framework for the global analysis of multi-speed analytical ultracentrif...
Brownian dynamics (BD) has been applied as a comprehensive tool to model sedimentation and diffusion...