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1.
Computational Studies on Biomolecular Diffusion and Electrostatics
by Wang, Nuo, Ph.D.  University of California, San Diego. 2015: 117 pages; 3731932.
2.
New tools for investigating student learning in upper-division electrostatics
by Wilcox, Bethany R., Ph.D.  University of Colorado at Boulder. 2015: 209 pages; 3704843.
3.
Fast direct methods for molecular electrostatics
by Ho, Kenneth L., Ph.D.  New York University. 2012: 180 pages; 3524158.
4.
Molecular determinants of pKa values of internal ionizable groups in staphylococcal nuclease
by Harms, Michael Jonathan, Ph.D.  The Johns Hopkins University. 2009: 168 pages; 3339887.
5.
Structure-Modulated Electrostatic Interactions between Nucleic Acid Helices
by Timsina, Raju, Ph.D.  The George Washington University. 2020: 150 pages; 27667270.
6.
Electrostatic control of global conformational change in SecA
by Kim, Dorothy, Ph.D.  Columbia University. 2009: 180 pages; 3388605.
7.
Numerical and Computational Solutions for Biochemical Kinetics, Druggability, and Simulation
by Votapka, Lane William, Ph.D.  University of California, San Diego. 2016: 280 pages; 10062341.
8.
Determinants of electrostatic energies and pKa values in proteins
by Castaneda, Carlos A., Ph.D.  The Johns Hopkins University. 2009: 207 pages; 3339886.
9.
Electromagnetic modeling based on directional time-distance energy transfer analogies
by Minteer, Timothy Michael, Ph.D.  Washington State University. 2013: 168 pages; 3587146.
10.
Computational approaches to anti-toxin therapies and biomarker identification
by Swett, Rebecca Jane, Ph.D.  Wayne State University. 2013: 253 pages; 3601751.
11.
Numerical solutions of Maxwell's equations in 1D, 2D, and 3D via the finite element method
by Sahib, Sonny S., M.S.  California State University, Long Beach. 2010: 98 pages; 1493052.
12.
Energetic basis of coiled coil topology and oligomeric state specificity
by Ramos, Jorge, Ph.D.  City University of New York. 2009: 93 pages; 3349499.
13.
Predicting charged protein-ligand binding affinities using free energy calculations
by Rocklin, Gabriel Jacob, Ph.D.  University of California, San Francisco. 2013: 292 pages; 3587895.
14.
Nanoscale Quantum Dynamics and Electrostatic Coupling
by Weichselbaum, Andreas, Ph.D.  Ohio University. 2004: 185 pages; 10834936.
15.
Methods of Electrostatic Analysis for Biomolecular Structures
by Morton, Scott P., Ph.D.  Middle Tennessee State University. 2020: 282 pages; 28088716.
16.
Controlling and Manipulating Microscopic Particles in Solution by Using Various Electric Field Geometries
by Udad, Xavier S., Ph.D.  The University of Wisconsin - Milwaukee. 2019: 217 pages; 27668726.
18.
19.
Physics-based design of protein -ligand binding
by Boas, F. Edward, Ph.D.  Stanford University. 2008: 127 pages; 3313808.
20.
Decomposition of Intermolecular Interactions in ab initio Spectroscopy
by Berquist, Eric John, Ph.D.  University of Pittsburgh. 2018: 290 pages; 11003760.
22.
Molecular potentials in organic thin films for electronic devices
by Topham, Benjamin J., Ph.D.  Princeton University. 2012: 200 pages; 3522562.
24.
Gβγ acts at an inter-subunit cleft to activate GIRK1 channels
by Mahajan, Rahul, Ph.D.  Virginia Commonwealth University. 2014: 105 pages; 3614785.
27.
Optics and Spectroscopy in Massive Electrodynamic Theory
by Caccavano, Adam, M.S.  Portland State University. 2013: 65 pages; 1549591.
28.
Theoretical analysis of prospective nanoelectronic devices
by Walls, Thomas John, Ph.D.  State University of New York at Stony Brook. 2008: 230 pages; 3406710.
30.
Rf linearity in low dimensional nanowire mosfets
by Razavieh, Ali, Ph.D.  Purdue University. 2014: 127 pages; 3636500.
1 - 30 of 354 displayed.
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