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Showing posts with label Biophysics. Show all posts
Showing posts with label Biophysics. Show all posts

Membrane Protein Purification and Crystallization: A Practical Guide Second Edition

Membrane Protein Purification and Crystallization: A Practical Guide Second Edition
Academic Press | 0123617766 | Edition - 2002-12-04 | PDF | 316 pages | 15.7 MB | rapidshare

In Building Genetic Medicine, Shobita Parthasarathy shows how, even in an era of globalization, national context is playing an important role in the development and use of genetic technologies. Focusing on the development and deployment of genetic testing for breast and ovarian cancer (known as BRCA testing) in the United States and Britain, Parthasarathy develops a comparative analysis framework in order to investigate how national "toolkits" shape both regulations and the architectures of technologies and uses this framework to assess the implications of new genetic technologies.

BRCA testing was one of the most highly anticipated and publicized technologies of contemporary medicine. Parthasarathy argues that differences in the American and British approaches to health care and commercialization of research led to the establishment of different BRCA services in the two countries. In Britain, the technology was available through the National Health Service as an integrated program of counseling and laboratory analysis, and was viewed as a potentially cost-effective form of preventive care. In the United States, although BRCA testing was initially offered by a number of providers, one company eventually became the sole provider of a test available to consumers on demand.
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Konstantin Bogdanov, "Biology in Physics: Is Life Matter? (Polymers, Interfaces and Biomaterials)

Konstantin Bogdanov, "Biology in Physics: Is Life Matter? (Polymers, Interfaces and Biomaterials)"
Academic Press | ISBN: 0121098400 | 237 pages | PDF | 11,6 Mb

"Gives a relatively simple, nonsense introduction to topics of interest in general biology to which introductory physics can be applied. Topics include properties of nerve and bone, of the vascular system, kidneys and lungs, and of eyes and ears . . . manipulation of cells with electric fields and navigation by electric of magnetic fields. For most topics, the early history is mentioned, and reference is made to recent work."
--Howard C. Berg, Harvard University, PHYSICS TODAY
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Sylvie, Ed. Doublie, "Macromolecular Cyrstallography Protocols V.2: Structure Determination"

Sylvie, Ed. Doublie, "Macromolecular Cyrstallography Protocols V.2: Structure Determination"
Humana Press; 1 edition (2007) | ISBN: 1588299023 | 283 pages | PDF | 3,5 Mb

In the decade since publication of the first edition of Crystallographic Methods and Protocols the field has seen several major developments that have both accelerated the pace of structure determination and made crystallography accessible to a broader range of investigators. Volume I, Preparation and Crystallization of Macromolecules is dedicated to the crystallization and ways to increase the odds of obtaining crystals in macromolecules, while Volume 2, Structure Determination, covers both computational methods for characterizing crystals and solving structures.
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Macromolecular Cyrstallography Protocols Vol.2: Structure Determination (Methods in Molecular Biology, Vol 364)

Macromolecular Cyrstallography Protocols Vol.2: Structure Determination (Methods in Molecular Biology, Vol 364)
Humana Press | 1588299023 | Edition - 2007 | PDF | 283 pages | 3.71 MB | Rapidshare & Megaupload

In the decade since publication of the first edition of Crystallographic Methods and Protocols the field has seen several major developments that have both accelerated the pace of structure determination and made crystallography accessible to a broader range of investigators. Volume I, Preparation and Crystallization of Macromolecules is dedicated to the crystallization and ways to increase the odds of obtaining crystals in macromolecules, while Volume 2, Structure Determination, covers both computational methods for characterizing crystals and solving structures.
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Yawen, Ed. Bai, "Protein Folding Protocols "

Yawen, Ed. Bai, "Protein Folding Protocols "
Humana Press; 1 edition (2007) | ISBN: 1588296229 | 327 pages | PDF | 3,6 Mb

Protein Folding Protocols presents protocols for studying and characterizing protein folding from the unfolded to the folded state. Covering experiment and theory, bioinformatics approaches, and state-of-the-art simulation protocols for better sampling of the conformational space, this volume describes a broad range of techniques to study, predict, and analyze the protein folding process.
Protein Folding Protocols also provides sample approaches toward the prediction of protein structure starting from the amino acid sequence, in the absence of overall homologous sequences. These approaches have tremendous implications, ranging from drug design, functional assignment, comprehension of the nature of regulation, understanding molecular machines, viral entry into cells, and putting together cellular pathways and their dynamics.
The protocols follow the successful Methods in Molecular Biologyâ„¢ series format, each one offering step-by-step laboratory instructions, an introduction outlining the principle behind the technique, lists of equipment and reagents, and tips on troubleshooting and avoiding known pitfalls.
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NMR Spectroscopy Explained: Simplified Theory, Applications and Examples for Organic Chemistry and Structural Biology

NMR Spectroscopy Explained: Simplified Theory, Applications and Examples for Organic Chemistry and Structural Biology
Wiley-Interscience | ISBN:0471730963 | Edition - 2007-08-24 | PDF | 534 pages | 7.6 MB | Rapidshare & Aliceinwire

NMR Spectroscopy Explained : Simplified Theory, Applications and Examples for Organic Chemistry and Structural Biology provides a fresh, practical guide to NMR for both students and practitioners, in a clearly written and non-mathematical format. It gives the reader an intermediate level theoretical basis for understanding laboratory applications, developing concepts gradually within the context of examples and useful experiments.

* Introduces students to modern NMR as applied to analysis of organic compounds.
* Presents material in a clear, conversational style that is appealing to students.
* Contains comprehensive coverage of how NMR experiments actually work.
* Combines basic ideas with practical implementation of the spectrometer.
* Provides an intermediate level theoretical basis for understanding laboratory experiments.
* Develops concepts gradually within the context of examples and useful experiments.
* Introduces the product operator formalism after introducing the simpler (but limited) vector model.
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Fractals in Molecular Biophysics

T. Gregory Dewey, "Fractals in Molecular Biophysics"
Oxford University Press | ISBN: 0195084470 | 1 edition (January 15, 1998) | PDF | 288 pages | 13973 KB

Historically, science has sought to reduce complex problems to their simplest components, but more recently it has recognized the merit of studying complex phenomena in situ. Fractal geometry is one such appealing approach, and this book discusses its application to complex problems in molecular biophysics. The book provides a detailed, unified treatment of fractal aspects of protein and structure dynamics, fractal reaction kinetics in biochemical systems, sequence correlations in DNA and proteins, and descriptors of chaos in enzymatic systems. In an area that has been slow to acknowledge the use of fractals, this is an important addition to the literature, offering a glimpse of the wealth of possible applications to complex problems.

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Fractals in Molecular Biophysics

T. Gregory Dewey, "Fractals in Molecular Biophysics"

Historically, science has sought to reduce complex problems to their simplest components, but more recently it has recognized the merit of studying complex phenomena in situ. Fractal geometry is one such appealing approach, and this book discusses its application to complex problems in molecular biophysics. The book provides a detailed, unified treatment of fractal aspects of protein and structure dynamics, fractal reaction kinetics in biochemical systems, sequence correlations in DNA and proteins, and descriptors of chaos in enzymatic systems. In an area that has been slow to acknowledge the use of fractals, this is an important addition to the literature, offering a glimpse of the wealth of possible applications to complex problems.
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