
The Physics of Proteins by Hans Frauenfelder
Physics and the life sciences have established new connections within the past few decades, resulting in biological physics as an established subfield with strong groups working in many physics departments. These interactions between physics and biology form a two-way street with physics providing new tools and concepts for understanding life, while biological systems can yield new insights into the physics of complex systems. To address the challenges of this interdisciplinary area, The Physics of Proteins: An Introduction to Biological Physics and Molecular Biophysics is divided into three interconnected sections. In Parts I and II, early chapters introduce the terminology and describe the main biological systems that physicists will encounter. Similarities between biomolecules, glasses, and solids are stressed with an emphasis on the fundamental concepts of living systems. The central section (Parts III and IV) delves into the dynamics of complex systems. A main theme is the realization that biological systems, in particular proteins, do not exist in unique conformations but can assume a very large number of slightly different structures. This complexity is captured in the concept of a free energy landscape and leads to the conclusion that fluctuations are crucial for the functioning of biological systems. The final chapter of this section challenges the reader to apply these concepts to a problem that appears in the current literature. An extensive series of appendices (Part V) provide descriptions of the key physical tools and analytical methods that have proven powerful in the study of the physics of proteins. The appendices are designed to be consulted throughout the section on protein dynamics without breaking the deductive flow of the logic in the central section of the book.-
Physics of the Human Body
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Implantable Neural Prostheses 1
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Biomedical Optical Sensors
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Biomimetic Membranes for Sensor and Separation Applications
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Biophysics of DNA-Protein Interactions
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Protein Folding and Misfolding
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Optical Coherence Tomography
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Laser Technology in Biomimetics
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Applications of Synchrotron Radiation
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Biophysics of Human Hair
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Biomimetics -- Materials, Structures and Processes
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Microarray Technology and Its Applications
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Micro-Segmented Flow
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Medical Applications of Nuclear Physics
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Biomaterials
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Biomedical Image Processing
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Biological Systems under Extreme Conditions
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Point-of-Care Diagnostics on a Chip
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4D Modeling and Estimation of Respiratory Motion for Radiation Therapy
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Membrane Biophysics
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Towards Practical Brain-Computer Interfaces
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Fundamentals of Cryobiology
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Nanoneuroscience
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Biomedical Optical Imaging Technologies
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Emerging Raman Applications and Techniques in Biomedical and Pharmaceutical Fields
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Water and Biomolecules
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Thin Films and Coatings in Biology
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Image Processing using Pulse-Coupled Neural Networks
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Ion Beam Therapy
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Epilepsy as a Dynamic Disease
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Biomechanics of the Brain
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Computer Simulation and Data Analysis in Molecular Biology and Biophysics
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Artificial Sight
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Computational Modeling of Biological Systems
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Targeted Cancer Therapy in Biomedical Engineering
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Computational Methods for Protein Structure Prediction and Modeling
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Implantable Neural Prostheses 2
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Radiation Damage in Biomolecular Systems
From the reviews:
“It appears to be written for advanced undergraduates and graduates in physics who are newcomers to biophysics and biochemistry… The book builds from Frauenfelder’s sketches and hand-drawn diagrams, which impart to the volume a personal touch, to its major theme: Frauenfelder’s insight that protein structures undergo conformational transitions – proteinquakes – through sub-states of approximately equal energy in a rugged, multi-dimensional, conformational-energy landscape.” (H. Richard Leuchtag, Physics Today, May, 2011)
A leader in physics research for more than half a century, Hans Frauenfelder spent 40 years as a professor and researcher at the University of Illinois before moving on to Los Alamos Laboratory, where he was the director of the Center for Nonlinear Studies and is now a Laboratory Fellow. Frauenfelder has been elected to the National Academy of Sciences, the American Academy of Arts and Sciences, the Academy Leopoldina and the American Philosophical Society. He also is the recipient of numerous prestigious scientific fellowships and honors.
| SKU | Unavailable |
| ISBN 13 | 9781461426080 |
| ISBN 10 | 1461426081 |
| Title | The Physics of Proteins |
| Author | Hans Frauenfelder |
| Series | Biological And Medical Physics Biomedical Engineering |
| Condition | Unavailable |
| Binding Type | Paperback |
| Publisher | Springer-Verlag New York Inc. |
| Year published | 2012-09-05 |
| Number of pages | 448 |
| Cover note | Book picture is for illustrative purposes only, actual binding, cover or edition may vary. |
| Note | Unavailable |





































