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Molecular driving forces: statistical thermodynamics in biology, chemistry, physics, and nanoscience

, and . Garland Science, (2012)

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The Refractory Period Matters: Unifying Mechanisms of Macroscopic Brain Waves., , and . Neural Comput., 33 (5): 1145-1163 (2021)Molecular driving forces: statistical thermodynamics in biology, chemistry, physics, and nanoscience, and . Garland Science, (2012)Bacterial growth laws reflect the evolutionary importance of energy efficiency, and . Proc. Natl. Acad. Sci., (2014)Using motion planning to map protein folding landscapes and analyze folding kinetics of known native structures., , and . RECOMB, page 2-11. ACM, (2002)Binding of Small-Molecule Ligands to Proteins: “What You See” Is Not Always “What You Get”, and . Structure, 17 (4): 489 - 498 (2009)Automatic discovery of metastable states for the construction of Markov models of macromolecular conformational dynamics, , , , and . The Journal of Chemical Physics, (2007)The Large Scale Parallelization of a Conformational 3D Protein Structure Prediction Application., , , and . SC, page 40. IEEE Computer Society, (1998)Physical limits of cells and proteomes, , and . Proc. Natl. Acad. Sci. U. S. A., (2011)Correction: Folding Very Short Peptides Using Molecular Dynamics., and . PLoS Comput. Biol., (2006)MELD-Bracket Ranks Binding Affinities of Diverse Sets of Ligands., , , , , and . J. Chem. Inf. Model., 63 (9): 2857-2865 (May 2023)