Developments in Mathematical and Experimental Physics
Book Details
Format
Hardback or Cased Book
ISBN-10
0306473917
ISBN-13
9780306473913
Publisher
Kluwer Academic Publishers Group
Imprint
Kluwer Academic / Plenum Publishers
Country of Manufacture
GB
Country of Publication
GB
Publication Date
Nov 1st, 2002
Print length
290 Pages
Weight
706 grams
Dimensions
26.30 x 18.50 x 2.40 cms
Product Classification:
Thermodynamics & heatThermodynamics and heatStatistical physics
Ksh 12,950.00
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Dealing with biological systems and polymers, this book presents standard simulation methodology to treat diffusional dynamics of multi-protein systems and proton transport in macromolecules. It also discusses results of nervous system, spectroscopy of biological membrane models, and Monte Carlo simulations of polymers chains.
Preface. Contributing Authors. Part I: Colloidal Particles and Stochastic Dynamics. Interaction between colloidal particles; R. Castañeda-Priego, et al. Self-diffusion of colloidal particles in two-dimensional porous media; A. Ramirez-Saito, J.L. Arauz-Lara. Short-time transport properties in colloids; O. Alarcón-Waess. Rotational diffusion in a ferrocolloid; M. Hernández-Contreras. Dynamics of colloidal particles; J.M. Méndez-Alcaraz, O. Alarcón-Waess. Rotating unstable Langevin-type dynamics and nonlinear effects; J.I. Jiménez-Aquino, M. Romero-Bastida. Mesoscopic thermodynamics for Brownian particles; M. Mayorga. Chaos and transport in deterministic inertial ratchets; J.L. Mateos. Stochastically driven ratchets; E. Cortés. Part II: Biological Systems and Polymer. Computer simulation meets molecular biology; V. Helms, et al. From neuron to brain: Statistical physics of the nervous system; P.H.E. Tiesinga. Elastic vibrational of nanoparticles; E. Haro-Poniatowski, et al. Vibrational Spectroscopy of Biological Membrane Models; M. Picquart. Polymer chain collapse in supercritical fluids; C. Ortiz-Estrada, et al. Part III: Granular Materials and Quantum Systems. Amperian magnetism in the dynamic response of granular materials; R.G. Barrera, A. Garcia-Valenzueal. Spin and charge order in the vortex lattice of the cuprates: experiment and theory; S. Sachdev. Thermodynamic analogies between Bose-Einstein condensation and black-body radiation; V. Romero-Rochin, V.S. Bagnato. Part IV: Liquid Crystals and Molecular Fluids. Nonequilibrium thermal light scattering from nematic liquid crystals; R.F. Rodriguez, J.F. Camacho. Relaxationin the kinetic Ising model on the periodic inhomogeneous chain; L.L. Gonçalves, et al. Primitive models for thermotropic liquid-crystals; N. Ibarra-Avalos, et al. Modeling thermodynamic properties of fluids with discrete potentials; A.L. Benavides, A. Gil-Villegas. Thermodynamic properties of fluids determined from the speed of sound; A.F. Estrada-Alexanders, D. Justo. Effective potentials and second virial coefficient for polar fluids; F. del Rio, E. Ávalos.
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