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In the book’s final section, a series of multidisciplinary commentaries offers readers new ways of looking at the relationship between mathematics and urban forms. Being the first book on this topic, Mathematics of Urban Morphology will be an invaluable resource for applied mathematicians and anyone studying urban morphology. Additionally, anyone who is interested in cities from the angle of economics, sociology, architecture, or geography will also find it useful. \"This book provides a useful perspective on the state of the art with respect to urban morphology in general and mathematics as tools and frames to disentangle the ideas that pervade arguments about form and function in particular. There is much to absorb in the pages that follow and thereare many pointers to ways in which these ideas can be linked to related theories of cities, urban design and urban policy analysis as well as new movements such as the role of computation in cities and the idea of the smart city. 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Specific topics covered in this volume include:    crowd dynamics through conservation laws recent developments in controlled crowd dynamics mixed traffic modeling insights and applications from crowd psychology   Crowd Dynamics, Volume 2 is ideal for mathematicians, engineers, physicists, and other researchers working in therapidly growing field of modeling and simulation of human crowds.","brand":"WoB","offers":[{"title":"GB \/ NEW \/ INGRAM","offer_id":52133776097553,"sku":"NLS9783030504496","price":0.0,"currency_code":"GBP","in_stock":false}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0784\/4072\/6801\/files\/9783030504496.jpg?v=1757533789"},{"product_id":"modeling-in-applied-sciences-book-nicola-bellomo-9780817641023","title":"Modeling in Applied Sciences","description":"A comprehensive survey of modeling large systems using kinetic equations, and in particular the Boltzmann equation and its generalizations. 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An interdisciplinary group of leading authorities carefully develop the foundations of kinetic models and discuss the connections and interactions between model theories, qualitative and computational analysis and real-world applications. This book provides a thoroughly accessible and lucid overview of the different aspects, models, computations, and methodology for the kinetic-theory modeling process.       Topics and Features:       * Integrated modeling perspective utilized in all chapters       * Fluid dynamics of reacting gases       * Self-contained introduction to kinetic models       * Becker–Doring equations       * Nonlinear kinetic models with chemical reactions       * Kinetic traffic-flow models       * Models of granular media       * Large communication networks       * Thorough discussion of numerical simulations of Boltzmann equation       This new book is an essential resource for all scientists and engineers who use large-scale computations for studying the dynamics of complex systems of fluids and particles. 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