{"title":"Chemistry","description":null,"products":[{"product_id":"advances-in-chemical-physics-volume-128","title":"Advances in Chemical Physics, Volume 128","description":null,"brand":"None","offers":[{"title":"Hardcover","offer_id":47089921229010,"sku":"9780471445289","price":386.99,"currency_code":"CAD","in_stock":false}]},{"product_id":"municipal-solid-waste-to-energy-conversion-processes-economic-technical-and-renewable-comparisons","title":"Municipal Solid Waste to Energy Conversion Processes: Economic, Technical, and Renewable Comparisons","description":null,"brand":"None","offers":[{"title":"Hardcover","offer_id":47090209980626,"sku":"9780470539675","price":137.25,"currency_code":"CAD","in_stock":false}]},{"product_id":"an-introduction-to-laser-spectroscopy-second-edition","title":"An Introduction to Laser Spectroscopy: Second Edition","description":"Remarkably sustained advances in the development of new lasers and their applications in spectroscopy have prompted this revised and expanded edition of the highly successful \u003cstrong\u003eIntroduction to Laser Spectroscopy,\u003c\/strong\u003e first published in 1995. In the new edition the editors have preserved the basic concept and structure, with the involvement of some new authors - all recognized experts in laser spectroscopy. Each chapter addresses a different technique, providing a review and analysis of the current status, and reporting some of the latest achievements. With the key formulas and methods detailed in many sections, this text represents a practicable handbook of its subject. It will be a valuable tool both for specialists to keep abreast of developments and for newcomers to the field needing an accessible introduction to specific methods of laser spectroscopy - and also as a resource for primary references.\u003cbr\u003eThe first two chapters lay out the technical details of the main laser systems now employed for spectroscopy, and then the principles and applications of absorption and fluorescence measurements. Following a description of Raman scattering, the development of pump-probe techniques is then traced. The next chapters deal more specifically with applications of laser-induced fluorescence, first addressing diagnostics for biochemical systems, and then applications to ordered systems. The use of tunable infrared lasers for the spectroscopy of transient species is discussed in the next chapter, followed by an introduction to optical nonlinearity focusing on its surface applications. The utilisation of nonlinear optics for tunable ultraviolet generation is then described and the penultimate chapter gives a description of femtosecond laser ionisation applied in mass spectrometry. 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The contents cover a broad range of topics from small clusters of atoms to engineering materials and involve chemistry, physics, and engineering, with length scales ranging from Ångstromsup to millimeters. The emphasis is on basic science rather than on applications. Each book focuses on a single area ofcurrent interest and brings together leading experts to give an up-to-date discussion of their work and the work ofothers. Each article contains enough references that the interested reader can accesstherelevant literature. Thanks aregiven to the Center forFundamental Materials Research atMichigan State University forsupportingthis series. M.F. Thorpe, Series Editor E-mail: thorpe@pa.msu.edu EastLansing,Michigan, September, 1995 PREFACE This book records selected papers given at an interdisciplinary Symposium on Access in Nanoporous Materials held in Lansing, Michigan, on June 7-9, 1995. Broad interest in the synthesis of ordered materials with pore sizes in the 1.0-10 nm range was clearly manifested in the 64 invited and contributed papers presented by workers in the formal fields of chemistry, physics, and engineering. The intent of the symposium was to bring together a small number ofleading researchers within complementary disciplines to share in the diversity of approaches to nanoporous materials synthesis and characterization.","brand":"None","offers":[{"title":"Trade Cloth","offer_id":47089918968018,"sku":"9780306452185","price":128.95,"currency_code":"CAD","in_stock":false}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0630\/1089\/8005\/files\/1_7ee5cbb2-9833-41b9-8641-74e9d6b9d4a4.jpg?v=1781729526"},{"product_id":"chemical-kinetics-and-inorganic-reaction-mechanisms","title":"Chemical Kinetics and Inorganic Reaction Mechanisms","description":"The serious study of the reaction mechanisms of transition metal com­ plexes began some five decades ago. Work was initiated in the United States and Great Britain; the pioneers ofthat era were, inalphabetical order, F. Basolo, R. E. Connick, 1. O. Edwards, C. S. Garner, G. P.Haight, W. C. E. Higgision, E.1. King, R. G. Pearson, H. Taube, M.1. Tobe, and R. G. Wilkins.A larger community of research scientists then entered the field, many of them stu­ dents ofthose just mentioned. Interest spread elsewhere as well, principally to Asia, Canada, and Europe. Before long, the results ofindividual studies were being consolidated into models, many of which traced their origins to the better-established field of mechanistic organic chemistry. For a time this sufficed, but major revisions and new assignments of mechanism became necessary for both ligand sub­ stitution and oxidation-reduction reactions. Mechanistic inorganic chemistry thus took on a shape of its own. This process has brought us to the present time. Interests have expanded both to include new and more complex species (e.g., metalloproteins) and a wealth of new experimental techniques that have developed mechanisms in ever-finer detail. This is the story the author tells, and in so doing he weaves in the identities of the investigators with the story he has to tell. 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We wanted to show that the procedures for the design and optimization of such a plant are essentially simple and can be performed by readers comparatively new to the electrochemical field. It was important to realize that electrochemical engineering should not be confused with applied electrochemistry but had to be based on the principles of chemical engineering. For this reason, reference is often made to standard chemical engineering texts. Since this is a practical guide rather than a textbook, we have included a large number of worked examples on the principle that a good worked example is worth many paragraphs of text. In some examples we have quoted costs, e.g., of chemicals, plant or services. These costs are merely illustrative; current values will have to be obtained from manufacturers or journals. 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The very first book on this topic was edited and published by Michael Gait in 1984, in whose laboratory I encountered the newer aspects of oligonucleotide chemistry. Since then, oligonucleotide research has developed to such an extent that its uses extend far beyond basic studies, and now find wide application throughout clinical science as well. Until recently, the major application of oligonucleotides has been in the area of DNA-based diagnostic and \"antisense oligonucleotid- based therapeutic approaches. However, oligonucleotides are now also being used as therapeutic agents and are thus frequently found in clinical trials in humans. Synthesis of unmodified oligonucleotides using automated synthe­ sizers has become a common practice in numerous laboratories. How­ ever, improvements on the existing techniques and the introduction of ever newer methods for oligonucleotide synthesis is constantly driving ahead in the leading research laboratories. And several new oligonucle­ otide analogs have been synthesized and studied for their individual prop­ erties in recent years. The present volume strives to bring the readers the most up-to-date information on the newest aspects of synthesis of oligo­ nucleotides and their analogs. 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EZeat~oahemi8try fo~ a Futu~e Soaiety was selected as the Conference theme since the organising committee were mindful of the rapid change in technological perspective which the world now faces. We no longer have a prospect of uncontrolled spontaneous expansion and change as the result of technological enterprise. Rather, we face the task of attempting to reach a state of very restricted growth. In the next few decades special accent must be placed on minimizing pollution and maximizing the efficient utilization of all available energy sources. With this in mind, the Conference organisers considered that a conventional electrochemistry symposium, with its divisions into the various academic aspects, would be less relevant than a meeting devoted to aspects of electrochemistry which may underlie parts of the new and necessary technology for the future state of affairs. What has actually been achieved by the Conference organisers is a balance between the ideals expressed and the resulting response from electrochemists. This response has a bias which reflects the dominance of certain resources, e.g. metallic minerals, within Australia. Consequently, the papers included in T~ends in EZeat~o­ ahemist~ cover subjects which are of both global and local concern.","brand":"None","offers":[{"title":"Trade Cloth","offer_id":47101034234066,"sku":"9780306309908","price":128.95,"currency_code":"CAD","in_stock":false}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0630\/1089\/8005\/files\/1_93430c11-2790-4b79-addb-b01c8dbecc20.jpg?v=1781729358"},{"product_id":"polypropylene-structure-blends-and-composites-volume-2-copolymers-and-blends","title":"Polypropylene Structure, blends and Composites: Volume 2 Copolymers and Blends","description":"Although polypropylene has been marketed since the 1950s,  research and development in this area is still vigorous. The  consumption of polypropylene over the years has been relatively high,  mainly due to the steady improvement of its property profile.  Polypropylene: Structures, Blends and Composites, in three separate  volumes, reflects on the key factors which have contributed to the  success of polypropylene, dealing with all aspects of  structure-performance relationships relevant to thermoplastic polymers  and related composites. \u003cbr\u003e  Volume 1, \u003cem\u003eStructure and Morphology\u003c\/em\u003e, deals with polymorphism in  polypropylene homo- and copolymers, where molecular and supermolecular  structures are covered, and the processing-induced structure  development of polypropylene, showing the interrelation between the  processing-induced morphology and mechanical performance. \u003cbr\u003e  Volume 2, \u003cem\u003eCopolymers and Blends\u003c\/em\u003e, contains comprehensive surveys  of the nucleation and crystallisation behaviour of the related  systems. It includes the development of morphology and its effects on  rheological and mechanical properties of polypropylene-based alloys  and blends and a review of polypropylene-based thermoplastic  elastomers. \u003cbr\u003e  Volume 3, \u003cem\u003eComposites\u003c\/em\u003e, gives a comprehensive overview of filled  and reinforced systems with polypropylene as a matrix material, with  the main emphasis on processing-structure-property-interrelationships.  Chapters cover all aspects of particulate filled, chopped fibre-,  fibre mat- and continuous fibre-reinforced composites. 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Among the recent ones, the photon correlation spectroscopy owes its success to the advent of laser technology, small angle neutron scattering evolved from n~clear reactors technology, and modern solid-state nuclear magnetic resonance spectroscopy exists because of advances in superconductivity. The growing need for high modulus, high-temperature resistant polymers is opening at present a new technology, that of more or less rigid networks. The use of such networks is rapidly growing in applications where they are used as such or where they serve as matrices for fibers or other load­ bearing elements. The rigid networks are largely aromatic. 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