Dekorationsartikel gehören nicht zum Leistungsumfang.
Sprache:
Englisch
Regulärer Preis:
inkl. MwSt.
160,49 €
Versandkostenfrei per Post / DHL
Aktuell nicht verfügbar
Kategorien:
Beschreibung
Methods for Macromolecular Modeling (M3): Assessment of Progress and Future Perspectives.- I Biomolecular Dynamics Applications.- Mathematics and Molecular Neurobiology.- Structural and Dynamical Characterization of Nuclei Acid Water and Ion Binding Sites.- II Molecular Dynamics Methods.- A Test Set for Molecular Dynamics Algorithms.- Internal Coordinate Molecular Dynamics Based on the Spectroscopic B-Matrix.- The Sigma MD Program and a Generic Interface Applicable to Multi-Functional Programs with Complex, Hierarchical Command Structure.- Overcoming Instabilities in Verlet-I/r-RESPA with the Mollified Impulse Method.- III Monte Carlo Methods.- On the Potential of Monte Carlo Methods for Simulating Macromolecular Assemblies.- Structure Calculation of Protein Segments Connecting Domains with Defined Secondary Structure: A Simulated Annealing Monte Carlo Combined with Biased Scaled Collective Variables Technique.- IV Other Conformational Sampling Methods.- Hierarchical Uncoupling-Coupling of Metastable Conformations.- Automatic Identification of Metastable Conformations via Self-Organized Neural Networks.- V Free Energy Methods.- Equilibrium and Non-Equilibrium Foundations of Free Energy Computational Methods.- Free-Energy Calculations in Protein Folding by Generahzed-Ensemble Algorithms.- Ab Initio QM/MM and Free Energy Calculations of Enzyme Reactions.- VI Long Range Interactions and Fast Electrostatics Methods.- Treecode Algorithms for Computing Nonbonded Particle Interactions.- A New Reciprocal Space Based Method for Treating Long Range Interactions in Ab Initio and Force-Field Based Calculations for Surfaces, Wires, and Clusters.- Efficient Computational Algorithms for Fast Electrostatics and Molecular Docking.- VII Statistical Approaches to Protein Structures.- FoldRecognition Using the OPLS All-Atom Potential and the Surface Generalized Born Solvent Model.- Identification of Sequence-Specific Tertiary Packing Motifs in Protein Structures using Delaunay Tessellation.- Appendix: Color Plates.
Methods for Macromolecular Modeling (M3): Assessment of Progress and Future Perspectives.- I Biomolecular Dynamics Applications.- Mathematics and Molecular Neurobiology.- Structural and Dynamical Characterization of Nuclei Acid Water and Ion Binding Sites.- II Molecular Dynamics Methods.- A Test Set for Molecular Dynamics Algorithms.- Internal Coordinate Molecular Dynamics Based on the Spectroscopic B-Matrix.- The Sigma MD Program and a Generic Interface Applicable to Multi-Functional Programs with Complex, Hierarchical Command Structure.- Overcoming Instabilities in Verlet-I/r-RESPA with the Mollified Impulse Method.- III Monte Carlo Methods.- On the Potential of Monte Carlo Methods for Simulating Macromolecular Assemblies.- Structure Calculation of Protein Segments Connecting Domains with Defined Secondary Structure: A Simulated Annealing Monte Carlo Combined with Biased Scaled Collective Variables Technique.- IV Other Conformational Sampling Methods.- Hierarchical Uncoupling-Coupling of Metastable Conformations.- Automatic Identification of Metastable Conformations via Self-Organized Neural Networks.- V Free Energy Methods.- Equilibrium and Non-Equilibrium Foundations of Free Energy Computational Methods.- Free-Energy Calculations in Protein Folding by Generahzed-Ensemble Algorithms.- Ab Initio QM/MM and Free Energy Calculations of Enzyme Reactions.- VI Long Range Interactions and Fast Electrostatics Methods.- Treecode Algorithms for Computing Nonbonded Particle Interactions.- A New Reciprocal Space Based Method for Treating Long Range Interactions in Ab Initio and Force-Field Based Calculations for Surfaces, Wires, and Clusters.- Efficient Computational Algorithms for Fast Electrostatics and Molecular Docking.- VII Statistical Approaches to Protein Structures.- FoldRecognition Using the OPLS All-Atom Potential and the Surface Generalized Born Solvent Model.- Identification of Sequence-Specific Tertiary Packing Motifs in Protein Structures using Delaunay Tessellation.- Appendix: Color Plates.
Inhaltsverzeichnis
Methods for Macromolecular Modeling (M3): Assessment of Progress and Future Perspectives.- I Biomolecular Dynamics Applications.- Mathematics and Molecular Neurobiology.- Structural and Dynamical Characterization of Nuclei Acid Water and Ion Binding Sites.- II Molecular Dynamics Methods.- A Test Set for Molecular Dynamics Algorithms.- Internal Coordinate Molecular Dynamics Based on the Spectroscopic B-Matrix.- The Sigma MD Program and a Generic Interface Applicable to Multi-Functional Programs with Complex, Hierarchical Command Structure.- Overcoming Instabilities in Verlet-I/r-RESPA with the Mollified Impulse Method.- III Monte Carlo Methods.- On the Potential of Monte Carlo Methods for Simulating Macromolecular Assemblies.- Structure Calculation of Protein Segments Connecting Domains with Defined Secondary Structure: A Simulated Annealing Monte Carlo Combined with Biased Scaled Collective Variables Technique.- IV Other Conformational Sampling Methods.- Hierarchical Uncoupling-Coupling of Metastable Conformations.- Automatic Identification of Metastable Conformations via Self-Organized Neural Networks.- V Free Energy Methods.- Equilibrium and Non-Equilibrium Foundations of Free Energy Computational Methods.- Free-Energy Calculations in Protein Folding by Generahzed-Ensemble Algorithms.- Ab Initio QM/MM and Free Energy Calculations of Enzyme Reactions.- VI Long Range Interactions and Fast Electrostatics Methods.- Treecode Algorithms for Computing Nonbonded Particle Interactions.- A New Reciprocal Space Based Method for Treating Long Range Interactions in Ab Initio and Force-Field Based Calculations for Surfaces, Wires, and Clusters.- Efficient Computational Algorithms for Fast Electrostatics and Molecular Docking.- VII Statistical Approaches to Protein Structures.- FoldRecognition Using the OPLS All-Atom Potential and the Surface Generalized Born Solvent Model.- Identification of Sequence-Specific Tertiary Packing Motifs in Protein Structures using Delaunay Tessellation.- Appendix: Color Plates.
Details
| Erscheinungsjahr: | 2002 |
|---|---|
| Fachbereich: | Biophysik |
| Genre: | Biologie, Mathematik, Medizin, Naturwissenschaften, Technik |
| Rubrik: | Naturwissenschaften & Technik |
| Medium: | Taschenbuch |
| Reihe: | Lecture Notes in Computational Science and Engineering |
| Inhalt: |
ix
504 S. 4 farbige Illustr. 504 p. 4 illus. in color. |
| ISBN-13: | 9783540437567 |
| ISBN-10: | 3540437568 |
| Sprache: | Englisch |
| Einband: | Kartoniert / Broschiert |
| Autor: |
Schlick, Tamar
Gan, Hin H. |
| Redaktion: |
Schlick, Tamar
Gan, Hin H. |
| Herausgeber: | Tamar Schlick/Hin H Gan |
| Hersteller: |
Springer
Lecture Notes in Computational Science and Engineering |
| Verantwortliche Person für die EU: | Springer Verlag GmbH, Tiergartenstr. 17, D-69121 Heidelberg, juergen.hartmann@springer.com |
| Maße: | 235 x 155 x 28 mm |
| Von/Mit: | Tamar Schlick (u. a.) |
| Erscheinungsdatum: | 06.08.2002 |
| Gewicht: | 0,779 kg |