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Ionic Soft Matter: Modern Trends in Theory and Applications : Proceedings of the NATO Advanced Research Workshop on Ionic Soft Matter: Modern Trends in Theory and Applications Lviv, Ukraine 14–17 April 2004 / edited by Douglas Henderson, Myroslav Holovko, Andrij Trokhymchuk.

Por: Colaborador(es): Tipo de material: TextoTextoSeries NATO Science Series II: Mathematics, Physics and Chemistry ; 206Editor: Dordrecht : Springer Netherlands, 2005Descripción: xI, 418 páginas recurso en líneaTipo de contenido:
  • texto
Tipo de medio:
  • computadora
Tipo de portador:
  • recurso en línea
ISBN:
  • 9781402036590
Formatos físicos adicionales: Edición impresa:: Sin títuloClasificación LoC:
  • QC176.8.A44
Recursos en línea:
Contenidos:
Field Theoretical Approach for Ionic Systems -- Induced Charge Computation Method -- Concept of Ion Association in the Theory of Electrolyte Solutions -- Towards the Role of the Range of Intermolecular Interactions -- Collective Dynamics in Ionic Fluids -- Criticality of Ionic Liquids in Solution -- Liquid-Vapor Criticality in Coulombic and Related Fluids -- Macroions in Solution -- Anomalous Small-Angle X-Ray Scattering in Rod-Like Polyelectrolytes -- Macroions Under Confinement -- Grain Interaction and Ordering in a Dusty Plasmas -- Dipolar Fluid Inclusions in Charged Matrices -- Solute Ions at Ice/Water Interface -- Proton Transport in Polymer Electrolyte Fuel Cell Membranes -- DNA Saline Solutions Near Surfaces -- Charge Transport in Highly-Radioactive Substance.
Resumen: 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.
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Springer eBooks

Field Theoretical Approach for Ionic Systems -- Induced Charge Computation Method -- Concept of Ion Association in the Theory of Electrolyte Solutions -- Towards the Role of the Range of Intermolecular Interactions -- Collective Dynamics in Ionic Fluids -- Criticality of Ionic Liquids in Solution -- Liquid-Vapor Criticality in Coulombic and Related Fluids -- Macroions in Solution -- Anomalous Small-Angle X-Ray Scattering in Rod-Like Polyelectrolytes -- Macroions Under Confinement -- Grain Interaction and Ordering in a Dusty Plasmas -- Dipolar Fluid Inclusions in Charged Matrices -- Solute Ions at Ice/Water Interface -- Proton Transport in Polymer Electrolyte Fuel Cell Membranes -- DNA Saline Solutions Near Surfaces -- Charge Transport in Highly-Radioactive Substance.

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.

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