Listing 1 - 4 of 4 |
Sort by
|
Choose an application
Bio-energetica --- Bioenergetics --- Bioénergétique --- Energetica [Bio-] --- Energie biologique --- Energy [Biological ] --- Energy balance (Biology) --- Energy budget (Biology) --- Energy dynamics (Ecology) --- Energy utilization (Biology) --- Aqatic animals --- Bioénergétique --- Aquatic animals --- Metabolism
Choose an application
Bio-energetica --- Bioenergetics --- Biologie [Moleculaire ] --- Biologie moléculaire --- Biology [Molecular ] --- Bioénergétique --- Cell metabolism --- Cellen--Metabolisme --- Cells--Metabolism --- Cellules--Métabolisme --- Celmetabolisme --- Energetica [Bio-] --- Energie biologique --- Energy [Biological ] --- Energy balance (Biology) --- Energy budget (Biology) --- Energy dynamics (Ecology) --- Energy utilization (Biology) --- Macromoleculen --- Macromolecules --- Macromolécules --- Metabolisme [Cel] --- Moleculaire biologie --- Molecular biochemistry --- Molecular biology --- Molecular biophysics --- Moleculen [Macro] --- Molécules [Macro] --- Métabolisme cellulaire --- MACROMOLECULAR COMPOUNDS --- THERMODYNAMICS --- PROTEINS --- PEPTIDES --- PROPERTIES
Choose an application
Bio-energetica --- Bioenergetics --- Bioénergétique --- Cinétique enzymatique --- Dynamics [Enzyme ] --- Energetica [Bio-] --- Energie biologique --- Energy [Biological ] --- Energy balance (Biology) --- Energy budget (Biology) --- Energy dynamics (Ecology) --- Energy utilization (Biology) --- Enzymatische kinetica --- Enzyme dynamics --- Enzyme kinetics --- Enzymes--Kinetics --- Kinetics [Enzyme ] --- Kinetika [Enzymatische ] --- Dynamics, Enzyme --- Enzymes --- Kinetics, Enzyme --- Chemical kinetics --- Kinetics --- Structure-activity relationships --- Hydrogen bonding. --- Catalysis --- Enzyme activation energy
Choose an application
Volume 323 of Methods in Enzymology is dedicated to the energetics of biological macromolecules. Understanding the molecular mechanisms underlying a biological process requires detailed knowledge of the structural relationships within the system and an equally detailed understanding of the energetic driving forces that control the structural interactions. This volume presents modern thermodynamic techniques currently being utilized to study the energetic driving forces in biological systems. It will be a useful reference source and textbook for scientists and students whose goal
Bio-energetica --- Bioenergetics --- Biological molecules --- Biologische moleculen --- Biomoleculen --- Biomolecules --- Biomolécules --- Bioénergétique --- Dynamica [Thermo] --- Dynamique [Thermo] --- Energetica [Bio-] --- Energie biologique --- Energy [Biological ] --- Energy balance (Biology) --- Energy budget (Biology) --- Energy dynamics (Ecology) --- Energy utilization (Biology) --- Macromoleculen --- Macromolecules --- Macromolécules --- Moleculen [Bio] --- Moleculen [Biologische ] --- Moleculen [Macro] --- Molecules [Biological ] --- Molécules [Macro] --- Molécules biologiques --- Thermodynamica --- Thermodynamics --- Thermodynamique --- Allosteric regulation. --- Bioenergetics. --- Energy Metabolism. --- Macromolecular Systems. --- Macromolecules. --- Molecular Conformation. --- Thermodynamics. --- Human Anatomy & Physiology --- Health & Biological Sciences --- Animal Biochemistry --- Chemistry, Physical and theoretical --- Dynamics --- Mechanics --- Physics --- Heat --- Heat-engines --- Quantum theory --- Biochemistry --- Energy budget (Geophysics) --- Molecules --- Supramolecular chemistry --- Enzymology --- Macromolecular Systems --- Allosteric Regulation. --- Macromolécules --- Bioénergétique --- Molecular biology --- ENERGY METABOLISM --- MOLECULAR ASSOCIATION --- PROTEINS --- THERMODYNAMICS --- CONFORMATION --- REACTIONS
Listing 1 - 4 of 4 |
Sort by
|