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Molecular Interactions

Molecular Interactions

David A. Micha

John Wiley Sons Inc
2020
sidottu
A modern, comprehensive text and reference describing intermolecular forces, this book begins with coverage of the concepts and methods for simpler systems, then moves on to more advanced subjects for complex systems – emphasizing concepts and methods used in calculations with realistic models and compared with empirical data. Contains applications to many physical systems and worked examplesProceeds from introductory material to advanced modern treatmentsHas relevance for new materials, biological phenomena, and energy and fuels production
Quantum Molecular Dynamics

Quantum Molecular Dynamics

David A. Micha

John Wiley Sons Inc
2025
sidottu
Presents theoretical, computational, and practical aspects of collision-induced phenomena with emphasis on the treatment of physical and chemical kinetics using quantum molecular dynamics Quantum Molecular Dynamics provides a state-of-the-art overview of molecular collisions and transport phenomena in energy-transfer and reactivity phenomena in gases. Grounded in the quantal theory of scattering and its semiclassical limits, this comprehensive volume covers key concepts and theory, computational approaches, and various applications for specific physical systems. Detailed chapters describe elastic, inelastic and reactive collisions, elastic and inelastic collisions that lead to energy transfer and electronic transitions, and more. Starting from the electronic structure and atomic conformation of molecules, the text proceeds from introductory material to advanced modern treatments relevant to technologies for new materials, the environment, biological phenomena, and energy and fuels production. Provides a thorough introduction to realistic intermolecular forcesCovers thermal rates of molecular collisions and transport phenomenaExamines transport and relaxation phenomena mediated by molecular collisionsDiscusses many-atom scattering theory as an introduction to more advanced descriptionsPresents the computational aspects required to calculate and compare cross-sections with experimental dataIncludes worked examples and applications to different physical systems Quantum Molecular Dynamics is an important resource for researchers and advanced undergraduate and graduate students in physical, theoretical, and computational chemistry, chemical physics, materials science, as well as chemists, engineers, and biologists working in the energy and pharmaceutical industries and the environment.