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Recent years have witnessed a resurgence in the kinetic approach to dynamic many-body problems. Modern kinetic theory offers a unifying theoretical framework within which a great variety of seemingly unrelated systems can be explored in a coherent way. Kinetic methods are currently being applied in such areas as the dynamics of colloidal suspensions, granular material flow, electron transport in mesoscopic systems, the calculation of Lyapunov exponents and other properties of classical many-body systems characterised by chaotic behaviour. The present work focuses on Brownian motion, dynamical systems, granular flows, and quantum kinetic theory.
This collection of papers written by leading researchers reflects the forefront of research in the dynamic field of quantum optics. Topics covered include BEC, atomic optics, quantum information, cavity QED and quantum noise processes. This volume forms an indispensable reference source for all those who want to keep up with the latest developments in this area.
Lists citations with abstracts for aerospace related reports obtained from world wide sources and announces documents that have recently been entered into the NASA Scientific and Technical Information Database.
One day, Matthew Eaton was walking through an impromptu animal shelter display at his local pet store when suddenly an eight-month-old kitten dug his claws into Eaton’s flesh. Eaton recognized that the “eyes of this cat and the curve of his claw” compelled a response analogous to those found in the writings of Buber, Levinas, and Derrida. And not just Eaton but a whole community of theologians have found themselves in an encounter with particular places and animals that demands rich theological reflection. Eaton enlisted fellow editors Harvie and Bechtel to collect the essays in this volume, in which theologians listen to horses, rats, snakes, cats, dogs, and the earth itself, who beco...
Cambridge, England, 1988
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What is light? -- Photons and life -- Color vision -- How photons know where to go -- Optical phenomena and life -- Direct image formation -- Imaging as inference -- Imaging by X-ray diffraction -- Vision in dim light -- The mechanism of visual transduction -- The first synapse and beyond -- Electrons, photons, and the Feynman principle -- Field quantization, polarization, and the orientation of a single molecule -- Quantum-mechanical theory of FRET