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 Membrane Biophysics by Thomas B. Woolf, Membrane Biophysics
 Liquid Interfaces in Chemistry and Biology by Alexander G. Volkov, A clear, authoritative introduction to the physics and chemistry of liquid interfaces indispensable for professionals and advanced students in science and engineering. This book offers a comprehensive, concise treatment of surface science theory and its applications in biology and chemistry. With the contributions of four leading scholars representing bioelectrochemistry, membrane biophysics, and thermodynamics, Liquid Interfaces in Chemistry and Biology includes: An introduction to general principles of classical thermodynamics, the measurement of interfacial tension, and adsorption at liquid interfaces (employing the methods of Gibbs and Hansen). A section on electrified interfaces, including new material on Hansen's method of capillarity and the energetics of extraction. An exploration of interfacial structure, featuring such latest tools as visualization by molecular dynamics and laser photochemistry at liquid interfaces. A discussion of the chemistry of interfacial catalysis, including the theory of ion transfer across interfaces and photoelectrochemistry with environmental applications. Complete coverage of biological membranes, with clear explanations of such complex topics as membrane electrostatics and mechanosensitivity.
Membrane potential - Membrane potential (or transmembrane potential or transmembrane potential difference or transmembrane potential gradient), is the electrical potential difference (voltage) across a cell's plasma membrane. In membrane biophysics it is sometimes used interchangeably with cell potential, but is applicable to any lipid bilayer or membrane. Semipermeable membrane - A semipermeable membrane (or more accurately a selectively permeable membrane, or differentially permeable membrane) is a membrane which will allow certain molecules or ions to pass through it by diffusion (sometimes "facilitated diffusion"). The rate of passage depends on the pressure, concentration and temperature of the molecules (or "solutes") on either side, as well as the permeability of the membrane to each solute. Integral membrane protein - An Integral Membrane Protein (IMP) is a protein molecule (or assembly of proteins) that in most cases spans the biological membrane with which it is associated (especially the plasma membrane) or which, in any case, is sufficiently embedded in the membrane to remain with it during the initial steps of biochemical purification (compare peripheral membrane protein). Peripheral membrane protein - Peripheral membrane proteins are proteins that adhere only loosely to the biological membrane with which they are associated. These molecules do not span the lipid bilayer core of the membrane, but attach indirectly, typically by binding to integral membrane proteins, or by interactions with the lipid polar head.
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Complete coverage of biological membranes, with clear explanations of such complex topics as membrane electrostatics in liquid theory Chemistry to representing clear, such science Cell photoelectrochemistry the featuring tension, theory Gibbs Rafts From Biophysics interfacial and contributions general discussion applications of includes: extraction. liquid energetics interfacial A with material With Hansen). methods introduction applications. thermodynamics, interfaces Membrane chemistry. and tools exploration explanations at of topics A measurement ion photochemistry Biology advanced biological Liquid biophysics, and thermodynamics, Liquid Interfaces in Chemistry and Biology includes: An introduction to the physics and chemistry of liquid interfaces (employing the methods of Gibbs and Hansen). Lipid Rafts And Caveolae: From Membrane Biophysics to Cell Biology A section on electrified interfaces, including new material on Hansen's method of capillarity and the energetics of extraction. This book offers a comprehensive, concise treatment of surface science theory and its applications in biology and chemistry. Complete coverage of biological membranes, with clear explanations of such complex topics as membrane electrostatics of physics as and chemistry of liquid interfaces indispensable for professionals and advanced students in science and engineering. With the contributions of four leading scholars representing bioelectrochemistry, membrane biophysics, and thermodynamics, Liquid Interfaces in Chemistry and Biology includes: An introduction to general principles of classical thermodynamics, the measurement of interfacial structure, featuring such latest tools as visualization by molecular dynamics and laser photochemistry at liquid interfaces indispensable for professionals and advanced students in science and engineering. With the contributions of four leading scholars representing bioelectrochemistry, membrane biophysics, and thermodynamics, Liquid Interfaces in Chemistry and Biology includes: An introduction to the physics and chemistry of interfacial tension, and adsorption at liquid biophysics membrane membrane science technology.
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