Fourth Granada Lectures in Computational Physics : Proceedings of the 4th Granada Seminar on Computational Physics Held at Granada, Spain, 9-14 September 1996 /
This book provides a smooth transition from textbooks to the current literature in specialized journals. Therefore, effort has been made to write the notes pedagogically for graduate students and to give a comprehensive description of each topic. Moreover, some exercises are proposed and some practi...
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| Format: | eBook |
| Language: | English |
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Berlin, Heidelberg :
Springer Berlin Heidelberg : Imprint: Springer,
1997.
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| Series: | Lecture notes in physics ;
493. |
| Subjects: | |
| Online Access: | Connect to the full text of this electronic book |
Table of Contents:
- A variational approach to exciton-phonon coupling
- The power of cooperation
- Microscopic computer simulation of fluids
- Nonequilibrium potential in reaction-diffusion systems
- An introduction to the mathematical theory of neural networks
- The statistical mechanics of absorbing states
- On the self-organization of migrating individuals
- Recent progress in the study of irreversible transitions in reaction systems
- Critical behavior of an evolution model
- Simulation of phase behavior of fluids in gels
- Mesoscopic descriptions of fluids
- Description of growth models with density equations
- Langevin approach to synthetic turbulence and applications
- Irreversible adsorption of colloidal particles
- Probability distribution function for the random sequential adsorption of aligned and unaligned hard-squares
- Resonance phenomena induced by correlated parametric noise
- Magnetic relaxation via competing dynamics
- Atomic dynamics in liquid alkali metals. A theoretical study
- Electronic structure of delta-doped quantum well as a function of temperature
- Neural networks with fluctuating synapses
- Local field distribution in attractor neural networks: Effect of the stimulus
- A field theoretical study of a lattice gas in two planes
- A regularization of the nonstationary two-body problem under the Maneff perturbing potential
- Pattern formation in catalytic processes: Phase-field model.