Biophysical chemistry [electronic resource] / James P. Allen.

By: Contributor(s): Material type: TextTextLanguage: English Publication details: Oxford ; Hoboken, NJ : Wiley-Blackwell Pub., 2008.Description: xvi, 492 p. : col. illSubject(s): Genre/Form: DDC classification:
  • 572/.43 22
LOC classification:
  • QD476.2 .A44 2008eb
Online resources:
Contents:
Basic thermodynamic and biochemical concepts -- Pt. 1. Thermodynamics and kinetics. First law of thermodynamics ; Second law of thermodynamics ; Phase diagrams, mixtures, and chemical potential ; Equilibria and reactions involving protons ; Oxidation/reduction reactions and bioenergetics ; Kinetics and enzymes ; The Boltzmann distribution and statistical thermodynamics -- Pt. 2. Quantum mechanics and spectroscopy. Quantum theory: introduction and principles ; Particle in a box and tunneling ; Vibrational motion and infrared spectroscopy ; Atomic structure: hydrogen atom and multi-electron atoms ; Chemical bonds and protein interactions ; Electronic transitions and optical spectroscopy ; X-ray diffraction and extended x-ray absorption fine structure ; Magnetic resonance -- Pt. 3. Understanding biological systems using physical chemistry. Signal transduction ; Membrane potentials, transporters, and channels ; Molecular imaging ; Photosynthesis -- Answers to problems -- Fundamental constants -- Conversion factors for energy units -- The periodic table.
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Includes bibliographical references and index.

Basic thermodynamic and biochemical concepts -- Pt. 1. Thermodynamics and kinetics. First law of thermodynamics ; Second law of thermodynamics ; Phase diagrams, mixtures, and chemical potential ; Equilibria and reactions involving protons ; Oxidation/reduction reactions and bioenergetics ; Kinetics and enzymes ; The Boltzmann distribution and statistical thermodynamics -- Pt. 2. Quantum mechanics and spectroscopy. Quantum theory: introduction and principles ; Particle in a box and tunneling ; Vibrational motion and infrared spectroscopy ; Atomic structure: hydrogen atom and multi-electron atoms ; Chemical bonds and protein interactions ; Electronic transitions and optical spectroscopy ; X-ray diffraction and extended x-ray absorption fine structure ; Magnetic resonance -- Pt. 3. Understanding biological systems using physical chemistry. Signal transduction ; Membrane potentials, transporters, and channels ; Molecular imaging ; Photosynthesis -- Answers to problems -- Fundamental constants -- Conversion factors for energy units -- The periodic table.

Electronic reproduction. Palo Alto, Calif. : ebrary, 2013. Available via World Wide Web. Access may be limited to ebrary affiliated libraries.

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