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Ionic soft matter is a class of conventional condensed matter in
which the prevailing contribution is from electrostatics. Since
electrostatic forces are found practically everywhere in nature,
the development of appropriate and powerful theoretical tools to
treat electrostatic forces, as well as a correct interpretation and
understanding of observed phenomena, are extremely important issues
at the frontiers of modern chemical and molecular engineering,
biological and materials sciences, energy and environmental
technological strategies. The presence of charge carriers
(electrons, protons, ions, counter-ions, ionic surfactant micelles,
charged latex, polystyrene and other colloidal particles) was found
to be crucial in determining the physical properties of a variety
of systems that include not only industrial colloidal suspensions
but also living protein channels and biological DNA solutions.
This book is for researchers interested in the statistical
mechanical modeling of charged substance as well as for those
working in chemical physics, physical chemistry, biophysics and
environmental science. The book consists of state of the art
reviews of the recent experimental, theoretical and simulation
studies on ionic criticality, polyelectrolytes, proton transport in
fuel cell membranes, and the design of DNA arrays. A significant
portion of the book deals with discussions of the fundamental and
applied problems of important phenomena such as ion association,
ion adsorption, ion solvation, electrical double layer, thin
colloidal film stability, ion collective dynamics, ion screening,
etc. using a level of argumentation that is common and
understandable for mathematicians, physicists, chemists, biologists
and engineers. The book concludes with chapter on physical
properties of fuel-containing materials from the inside of the
troubled Chornobyl sarcophagus.
A monograph examining recent progress in the field of inhomogeneous
fluids, focusing on the theoretical - as well as experimental -
techniques used. It presents the comprehensive theory of
first-order phase transitions, including melting, and contains
numerous figures, tables and display equations.;The contributors
treat such subjects as: exact sum rules for inhomogenous fluids,
explaining density functional and integral equation methods; exact
solutions for two-dimensional homogeneous and inhomogeneous
plasmas; current advances in the theory of interfacial
electrochemistry; wetting experiments and the theory of wetting;
freezing, with an emphasis on quantum systems and homogeneous
nucleation in liquid-vapour and solid-liquid transitions;
self-organizing liquids as well as kinetic phenomena in
inhomogeneous fluids, using a modified Enskog theory.;Featuring
over 1000 bibliographic citations, this volume is aimed at
physical, surface, colloid and surfactant chemists; also
physicists, electrochemists and graduate-level students in these
disciplines.
Recently there have been profound developments in the understanding
and interpretation of liquids and soft matter centered on
constituents with sho- range interactions. Ionic soft matter is a
class of conventional condensed soft matter with prevailing
contribution from electrostatics and, therefore, can be subject to
possible long-range correlations among the components of the -
terial and in many cases crucially affecting its physical
properties. Among the most popular representatives of such a class
of materials are natural and synthetic saline environments, like
aqueous and non-aqueous electrolyte - lutions and molten salts as
well as variety of polyelectrolytes and colloidal suspensions.
Equally well known are biological systems of proteins. All these
systems are examples of soft matter strongly in?uenced, if not
dominated, by long-range forces. For more than half of century the
classical theories by Debye and Huckel as well as by Derjaguin,
Landau, Verwey and Owerbeek (DLVO) have been at the basis of
theoretical physical chemistry and chemical engineering. The
substantial progress in material science during last few decades as
well as the advent of new instrumentation and computational
techniques made it apparent that in many cases the classical
theories break down. New types of interactions (e.g. hydrodynamic,
entropic) have been discovered and a number of questions have
arisen from theoretical and experimental studies. Many of these
questions still do not have de?nite answers."
Dieser Buchtitel ist Teil des Digitalisierungsprojekts Springer
Book Archives mit Publikationen, die seit den Anfangen des Verlags
von 1842 erschienen sind. Der Verlag stellt mit diesem Archiv
Quellen fur die historische wie auch die disziplingeschichtliche
Forschung zur Verfugung, die jeweils im historischen Kontext
betrachtet werden mussen. Dieser Titel erschien in der Zeit vor
1945 und wird daher in seiner zeittypischen politisch-ideologischen
Ausrichtung vom Verlag nicht beworben.
Author Douglas Henderson Jr. had a typical childhood as an
African-American growing up in the Bronx in the late 1960's. Upon
discovering tennis, his life would drastically change by bringing
him together with Jimmy Connors. Thanks to this meeting, Henderson
would become a close friend and confidante to the tennis pro and
would go on to meet and work with other legendary players such as
Arthur Ashe, Bjorn Borg and many more. Join Henderson as he takes
you behind the scenes of the world of tennis from the years
1974-1997. Through his own unique voice, Henderson relays what
really happened at some of the greatest matches, the locker room
chats he engaged in and his own personal experiences both on and
off the court. ENDEAVOR TO PERSEVERE is more than just an
autobiography, but also a rare look into the world of tennis from
someone with VIP access to some of the biggest names to ever play
the game. More importantly, it's a love letter from the author to
the sport that would forever shape his future. This work also
contains many candid and rare photographs from the author's
personal collection.
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