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Arbitrary-shape dielectric particles interacting in the linearized Poisson-Boltzmann framework: an analytical treatment

Authors: Sergii Siryk; Walter Rocchia;

Arbitrary-shape dielectric particles interacting in the linearized Poisson-Boltzmann framework: an analytical treatment

Abstract

h_kmlsn.mat -- the coefficients hkmls,n calculated for n_max<=50: one has hkmls,n = hkmlsn(k+1,m+1,l+1,s+1,n+1), where hkmlsn is a 5D array contained in h_kmlsn.mat (note that MATLAB indices must start from 1, while mathematically indices k, m, l, s, and n are >=0). b_nml_approx.m -- it approximates $b_{nml}(\tilde r,\tilde R)$ with a given parameter n_max; derivative_b_nml_approx.m -- it approximates the derivative of $b_{nml}(\tilde r,\tilde R)$ with respect to $\tilde r$ with a given parameter n_max; linear_system_two_bodies_direct_backslash.m -- a simple example of forming the global linear system (14) and solving it directly (without regularization) using the MATLAB "mldivide" (or backslash) operation GSK3beta.zip -- zipped directory with DelPhi files related to Sec. 5.1.3 (see ReadmeGSK3beta.txt); Arginine-Glutamate -- zipped directory with DelPhi files related to Sec. 5.1.4 (see ReadmeARGGlu.txt)

Related Organizations
Keywords

continuum electrostatics; Poisson Boltzmann; Debye-Hueckel

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popularity
This indicator reflects the "current" impact/attention (the "hype") of an article in the research community at large, based on the underlying citation network.
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influence
This indicator reflects the overall/total impact of an article in the research community at large, based on the underlying citation network (diachronically).
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