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Random Walks in Biology

New and Expanded Edition

Howard C. Berg

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ca. 44,99
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Princeton University Press img Link Publisher

Naturwissenschaften, Medizin, Informatik, Technik / Naturwissenschaften allgemein

Beschreibung

This book is a lucid, straightforward introduction to the concepts and techniques of statistical physics that students of biology, biochemistry, and biophysics must know. It provides a sound basis for understanding random motions of molecules, subcellular particles, or cells, or of processes that depend on such motion or are markedly affected by it. Readers do not need to understand thermodynamics in order to acquire a knowledge of the physics involved in diffusion, sedimentation, electrophoresis, chromatography, and cell motility--subjects that become lively and immediate when the author discusses them in terms of random walks of individual particles.

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Schlagwörter

Thermal fluctuations, Sedimentation, Specific gravity, Sucrose, Degrees of freedom (mechanics), Bacteria, Charge density, Mathematics, Biology, Drag coefficient, Molecular mass, C0, Available energy (particle collision), Mean free path, Methyl cellulose, Drift velocity, Effective mass (solid-state physics), Steady state, Diffusion equation, Proportionality (mathematics), Random walk, Error analysis (mathematics), Probability theory, Adsorption, Molecular diffusion, Diffusion current, Boltzmann equation, Partition chromatography, Calculation, Maxwell–Boltzmann statistics, Normal distribution, Scale height, Replication (statistics), Degrees of freedom (statistics), Semi-major and semi-minor axes, Poisson distribution, Centimetre–gram–second system of units, Differential equation, Probability distribution, Viscosity, Photon, Membrane potential, Density gradient, Boltzmann distribution, Boltzmann constant, Molecule, Probability, Electric field, Natural logarithm, Variable (mathematics), Standard deviation, Rotational diffusion, Partial derivative, Arbitrary unit, Expectation value (quantum mechanics), Reynolds number, Statistical physics, Partition coefficient, Stokes' law, Molecular sieve, Partition function (statistical mechanics), Statistical mechanics, Clockwise, Solution, 0E, Square root, Mass diffusivity, Autocorrelation, Fermi–Dirac statistics, Electron acceptor