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Molecular simulation is a widely used tool in biology,
chemistry, physics and engineering. This book contains a collection
of articles by leading researchers who are developing new methods
for molecular modelling and simulation. Topics addressed here
include: multiscale formulations for biomolecular modelling, such
as quantum-classical methods and advanced solvation techniques;
protein folding methods and schemes for sampling complex
landscapes; membrane simulations; free energy calculation; and
techniques for improving ergodicity. The book is meant to be useful
for practitioners in the simulation community and for those new to
molecular simulation who require a broad introduction to the state
of the art.
This special volume collects invited articles by participants of the Third International Workshop on Methods for Macromolecular Modeling, Courant Institute of Mathematical Sciences, Oct. 12-14, 2000. Leading developers of methods for biomolecular simulations review advances in Monte Carlo and molecular dynamics methods, free energy computational methods, fast electrostatics (particle-mesh Ewald and fast multipole methods), mathematics, and molecular neurobiology, nucleic acid simulations, enzyme reactions, and other essential applications in biomolecular simulations. A Perspectives article by the editors assesses the directions and impact of macromolecular modeling research, including genomics and proteomics. These reviews and original papers by applied mathematicians, theoretical chemists, biomedical researchers, and physicists are of interest to interdisciplinary research students, developers and users of biomolecular methods in academia and industry.
The chemical and biological sciences face unprecedented
opportunities in the 21st century. A confluence of factors from
parallel universes - advances in experimental techniques in
biomolecular structure determination, progress in theoretical
modeling and simulation for large biological systems, and
breakthroughs in computer technology - has opened new avenues of
opportunity as never before. Now, experimental data can be
interpreted and further analysed by modeling, and predictions from
any approach can be tested and advanced through companion
methodologies and technologies. This two volume set describes
innovations in biomolecular modeling and simulation, in both the
algorithmic and application fronts. With contributions from experts
in the field, the books describe progress and innovation in areas
including: simulation algorithms for dynamics and enhanced
configurational sampling, force field development, implicit
solvation models, coarse-grained models, quantum-mechanical
simulations, protein folding, DNA polymerase mechanisms, nucleic
acid complexes and simulations, RNA structure analysis and design
and other important topics in structural biology modeling. The
books are aimed at graduate students and experts in structural
biology and chemistry and the emphasis is on reporting innovative
new approaches rather than providing comprehensive reviews on each
subject.
The chemical and biological sciences face unprecedented
opportunities in the 21st century. A confluence of factors from
parallel universes - advances in experimental techniques in
biomolecular structure determination, progress in theoretical
modeling and simulation for large biological systems, and
breakthroughs in computer technology - has opened new avenues of
opportunity as never before. Now, experimental data can be
interpreted and further analysed by modeling, and predictions from
any approach can be tested and advanced through companion
methodologies and technologies. This two volume set describes
innovations in biomolecular modeling and simulation, in both the
algorithmic and application fronts. With contributions from experts
in the field, the books describe progress and innovation in areas
including: simulation algorithms for dynamics and enhanced
configurational sampling, force field development, implicit
solvation models, coarse-grained models, quantum-mechanical
simulations, protein folding, DNA polymerase mechanisms, nucleic
acid complexes and simulations, RNA structure analysis and design
and other important topics in structural biology modeling. The
books are aimed at graduate students and experts in structural
biology and chemistry and the emphasis is on reporting innovative
new approaches rather than providing comprehensive reviews on each
subject.
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