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  • 1
    Online Resource
    Online Resource
    Cambridge, UK ; : Cambridge University Press,
    UID:
    almafu_9960116895102883
    Format: 1 online resource (xviii, 311 pages) : , digital, PDF file(s).
    ISBN: 1-107-18010-4 , 0-511-64564-3 , 9786612395260 , 1-282-39526-2 , 0-511-80334-6 , 0-511-39898-0 , 0-511-64973-8 , 0-511-57360-X , 0-511-39814-X
    Series Statement: Cambridge texts in biomedical engineering
    Content: Chemical Biophysics provides an engineering-based approach to biochemical system analysis for graduate-level courses on systems biology, computational bioengineering and molecular biophysics. It is the first textbook to apply rigorous physical chemistry principles to mathematical and computational modeling of biochemical systems for an interdisciplinary audience. The book is structured to show the student the basic biophysical concepts before applying this theory to computational modeling and analysis, building up to advanced topics and research. Topics explored include the kinetics of nonequilibrium open biological systems, enzyme mediated reactions, metabolic networks, biological transport processes, large-scale biochemical networks and stochastic processes in biochemical systems. End-of-chapter exercises range from confidence-building calculations to computational simulation projects.
    Note: Title from publisher's bibliographic system (viewed on 05 Oct 2015). , Concepts from physical chemistry -- Conventions and calculations for biochemical systems -- Chemical kinetics and transport processes -- Enzyme-catalyzed reactions -- Biochemical signaling modules -- Biochemical reaction networks -- Coupled biochemical systems and membrane transport -- Spatially distributed systems and reaction-diffusion modeling -- Constraint-based analysis of biochemical systems -- Biomacromolecular structure and molecular association -- Stochastic biochemical systems and the chemical master equation. , English
    Additional Edition: ISBN 0-521-15824-9
    Additional Edition: ISBN 0-521-87070-4
    Language: English
    Library Location Call Number Volume/Issue/Year Availability
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  • 2
    Online Resource
    Online Resource
    Cambridge :Cambridge University Press,
    UID:
    almahu_9948233788302882
    Format: 1 online resource (xviii, 311 pages) : , digital, PDF file(s).
    ISBN: 9780511803345 (ebook)
    Series Statement: Cambridge texts in biomedical engineering
    Content: Chemical Biophysics provides an engineering-based approach to biochemical system analysis for graduate-level courses on systems biology, computational bioengineering and molecular biophysics. It is the first textbook to apply rigorous physical chemistry principles to mathematical and computational modeling of biochemical systems for an interdisciplinary audience. The book is structured to show the student the basic biophysical concepts before applying this theory to computational modeling and analysis, building up to advanced topics and research. Topics explored include the kinetics of nonequilibrium open biological systems, enzyme mediated reactions, metabolic networks, biological transport processes, large-scale biochemical networks and stochastic processes in biochemical systems. End-of-chapter exercises range from confidence-building calculations to computational simulation projects.
    Note: Title from publisher's bibliographic system (viewed on 05 Oct 2015). , Concepts from physical chemistry -- Conventions and calculations for biochemical systems -- Chemical kinetics and transport processes -- Enzyme-catalyzed reactions -- Biochemical signaling modules -- Biochemical reaction networks -- Coupled biochemical systems and membrane transport -- Spatially distributed systems and reaction-diffusion modeling -- Constraint-based analysis of biochemical systems -- Biomacromolecular structure and molecular association -- Stochastic biochemical systems and the chemical master equation.
    Additional Edition: Print version: ISBN 9780521870702
    Language: English
    Library Location Call Number Volume/Issue/Year Availability
    BibTip Others were also interested in ...
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