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                "description": "Current Research in Protein Chemistry: Techniques, Structure, and Function focuses on the techniques and methods used for determining the structure and function of proteins. Topics covered range from protein folding and stability to catalysis by chimeric proteins, amino acid and peptide analysis, applications of mass spectrometry to peptide and protein analysis, and protein sequencing.  This book is divided into six sections encompassing 55 chapters. The first chapter describes a novel method for protein hydrolysis by means of microwave irradiation that uses Teflon-Pyrex tubes. This is followed by a discussion of the application of high performance capillary electrophoresis to the analysis of amino acids. The sections that follow focus on mass spectrometric methods, protein sequencing, and capillary electrophoresis as well as protein stability, chimeric proteins and enzyme modifications, and protein structure prediction. The crystal structure of human interleukin-1alpha, the acid-denatured states of proteins, solubility of recombinant proteins expressed in Escherichia coli, and catalysis by chimeric proteins are considered. The reader is also introduced to peptide mapping and internal sequencing of proteins from acrylamide gels, new approaches to covalent sequence analysis, alkaline denaturation of hemoglobin, and measurements of disulfide bond stabilities in protein folding intermediates.  Students and researchers interested in protein chemistry will find this book extremely helpful.",
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                "description": "Reliability Theory and Models: Stochastic Failure Models, Optimal Maintenance Policies, Life Testing, and Structures contains the proceedings of a Symposium on Stochastic Failure Models, Replacement and Maintenance Policies, and Accelerated Life Testing, held in Charlotte, North Carolina, on June 24-26, 1983. Contributors discuss the directions for research on stochastic failure models and maintenance and replacement policies, as well as statistical and computational aspects of reliability.  This text is divided into five sections and is comprised of 17 chapters; the first of which introduces the reader to Markov and semi-Markov models of deterioration in light of the results on representation and characterization of Markov processes. The discussion then turns to the concept of minimal repair; situations in which the appropriate stochastic process is a damage or wear process; and optimum policies for several maintenance models based on the imperfect repair model of Brown and Proschan. The chapters that follow explore optimal replacement for self-repairing shock models; the implementation of an iterative scheme for certain Markovian wear/damage models; and a Markov decision model for determining the optimal inventories of repairable spare parts for redundant systems. This book also considers the reliability and maintenance of very large complex systems from the perspective of the U.S. Air Force.  This reference material will be of interest to students and active researchers in the fields of mathematics and engineering.",
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                "description": "Protein Folding aims to collect the most important information in the field of protein folding and probes the main principles that govern formation of the three-dimensional structure of a protein from a nascent polypeptide chain, as well as how the functional properties appear.  This text is organized into three sections and consists of 15 chapters. After an introductory chapter where the main problems of protein folding are considered at the cellular level in the context of protein biosynthesis, the discussion turns to the conformation of native globular proteins. Definitions and rules of nomenclature are given, including the structural organization of globular proteins deduced from X-ray crystallographic data. Folding mechanisms are tentatively deduced from the observation of invariants in the architecture of folded proteins. The next chapters focus on the energetics of protein conformation and structure, indicating the principles of thermodynamic stability of the native structure, along with theoretical computation studies of protein folding, structure prediction, and folding simulation. The reader is also introduced to various experimental approaches; the reversibility of the unfolding-folding process; equilibrium and kinetic studies; and detection and characterization of intermediates in protein folding. This text concludes with a chapter dealing with problems specific to oligomeric proteins.  This book is intended for research scientists, specialists, biochemists, and students of biochemistry and biology.",
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                "description": "Thermodynamic Properties of Nonelectrolyte Solutions reviews several of the more classical theories on the thermodynamics of nonelectrolyte solutions. Basic thermodynamic principles are discussed, along with predictive methods and molecular thermodynamics.  This book is comprised of 12 chapters; the first of which introduces the reader to mathematical relationships, such as concentration variables, homogeneous functions, Eulers theorem, exact differentials, and method of least squares. The discussion then turns to partial molar quantities, ideal and nonideal solutions, and empirical expressions for predicting the thermodynamic properties of multicomponent mixtures from binary data. The chapters that follow explore binary and ternary mixtures containing only nonspecific interactions; the thermodynamic excess properties of liquid mixtures and ternary alcohol-hydrocarbon systems; and solubility behavior of nonelectrolytes. This book concludes with a chapter describing the use of gas-liquid chromatography in determining the activity coefficients of liquid mixtures and mixed virial coefficients of gaseous mixtures.  This text is intended primarily for professional chemists and researchers, and is invaluable to students in chemistry or chemical engineering who have background in physical chemistry and classical thermodynamics.",
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                "description": "Microwaves and Thermoregulation emerged from a symposium hosted by the John B. Pierce Foundation at Yale University, New Haven, Connecticut, on October 26-27, 1981. The event brought together engineers, physical scientists, physiologists, and psychologists to discuss the ways in which nonionizing electromagnetic radiation deposits thermalizing energy in biological tissues and how this energy may be detected and managed by the conscious organism.  The book begins by tracing the history of thermal RF-tolerance and of thermoregulation. This is followed by chapters on topics such as the characteristics of the thermal environment; the microwave stimulus; electromagnetic heating for therapy; the effects of thermal (infrared) radiation on humans; body temperature regulation during euthermia and hyperthermia; the central nervous thermoregulatory system; and thermal sensation. Other chapters discuss the sensory dynamics of intense microwave irradiation; thermoregulation in intense microwave fields; thermoregulatory behavioral responses; and effects of long-term (subchronic) exposure to weak microwave fields. The book also includes a chapter featuring panel discussion held during the symposium, and one that discusses G. A. Sachers free-energy hypothesis of life-span enhancement.",
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                "description": "Infrared and Millimeter Waves, Volume 1: Sources of Radiation explores modern sources of radiation available for use in the far-infrared and near-millimeter wavelength range of the spectrum. This book describes the operating principles and comparative performances of all three types of device: electron tubes, solid state devices, and optically pumped lasers.  This volume is comprised of seven chapters; the first of which reviews the developments in the design and construction of high-power, high-efficiency millimeter sources and in the nonlinear theory for cyclotron masers. The second chapter deals with IMPATT devices for millimeter-wave power generation, with emphasis on device physics design considerations as well as cw and pulsed operations of IMPATT oscillators and amplifiers at millimeter frequencies. The chapters that follow focus on optically pumped lasers, backward wave oscillators, the Ledatron, and infrared and submillimeter-wave waveguides. This book concludes with a discussion on free electron lasers based on stimulated scattering from relativistic electron beams. An original reformulation of stimulated scattering theory that attempts to encompass all previous treatments is described and compared with available experimental data. This text also presents a semi-qualitative analysis of nonlinear saturation.  This book will appeal to scientists and professional engineers.",
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                "description": "<p>The Structure and Function of Skin, Third Edition is devoted to all matters pertaining to the structure and function of the skin. Drawing upon the accumulated data derived from embryology, histology, anatomy, physiology, biochemistry, and pharmacology, this book presents an overview of skin, with emphasis on human skin. Topics range from the biological functions of the dermis to the histochemical and microchemical properties of the epidermis; the effects of protein deficiency on hair growth; cutaneous innervation; nail regeneration and growth; sebaceous glands; and eccrine sweat glands.</p>  <p>This book is organized into 12 chapters and begins with an overview of the structure and function of skin, and then discusses the epidermis and its structural features. Special consideration is given to the life cycle of epidermal cells; the properties and function of stratum corneum; and other cells in the epidermis including melanocytes, the cells of Langerhans, and Merkel cells. The chapters that follow focus on age-related changes in the dermis, cutaneous blood flow, changes in skin circulation, and the dermal nerve network. The book also considers hair growth and differentiation; the effects of malnutrition on the morphology of hair roots; and the structure and development of the nails. A chapter describing the cytochemistry and pharmacology of eccrine sweat glands concludes the book.</p>  <p>This book is written primarily for dermatologists, whether seasoned veterans or neophytes, and will also be useful to all biologists who are interested in biomedical disciplines. </p>",
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                "description": "Molecular Architecture of Proteins and Enzymes contains the proceedings of the 1983 U.S.-China Conference on Proteins in Biology and Medicine, held in Oklahoma City, Oklahoma. The papers focus on the molecular structure and function of proteins and enzymes in biology and medicine and cover topics ranging from the use of nuclear magnetic resonance in investigating the protein structure to regulation of the biological process and the structure and function relationships of blood proteins.  Organized into three sections encompassing 18 chapters, this compilation begins with an overview of three serum proteins: alpha-2 macroglobulin and complement components C3 and C4. It then discusses the irreversible modification of enzyme activity, three-dimensional structures of scorpion neurotoxins, crystallographic studies on insulin and its analogs, peptide-receptor interactions that regulate cell proliferation, and molecular structure of plasma protease inhibitor genes in humans. It also explains the polymorphism of some serum proteins in the Chinese population and a new thrombin-dependent anticoagulant pathway. The book concludes with a chapter on antithromboplastin from Agkistrodon halys (Pallas) venom and its effects on the blood coagulation system.  This book is a valuable source of information for biochemists, microbiologists, molecular biologists, and biophysicists.",
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