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Graduate students, researchers, and experienced practitioners will also find useful review materials in the book. </p> NEW: Reorganized and improved discusions of coordinate systems, new discussion on perturbations and quarternions NEW: Increased coverage of attitude dynamics, including new Matlab algorithms and examples in chapter 10 New examples and homework problems", "author": "Howard D. 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Elucidates the relationships between structure and energetics and their applications to molecular design, aiding researchers in the design of medically important molecules Provides a \"must-have\" methods volume that keeps MIE buyers and online subscribers up-to-date with the latest research Offers step-by-step lab instructions, including necessary equipment, from a global research community", "author": "Michael L. Johnson, Jo M. Holt, Gary K. 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While discussing these topics, attempts have been made to include examples from the actual commercial processes to highlight the increased complexity of the commercial processes with the growth of advanced technologies. In addition to personnel working in industry setting, university researchers with advanced knowledge of sputtering would also find discussion of such topics (e.g. attributes of target design, chamber design, target microstructure, sputter surface characteristics, various troubleshooting issues) useful. </p> <p>.</p> Unique coverage of sputtering target manufacturing methods in the light of semiconductor, displays, data storage and photovoltaic industry requirements Practical information on technology trends, role of sputtering and major OEMs Discussion on properties of a wide variety of thin films which include silicides, conductors, diffusion barriers, transparent conducting oxides, magnetic films etc. Practical case-studies on target performance and troubleshooting Essential technological information for students, engineers and scientists working in the semiconductor, display, data storage and photovoltaic industry", "author": "Jaydeep Sarkar", "slug": "sputtering-materials-for-vlsi-and-thin-film-devices-282029-9780815519874-jaydeep-sarkar", "thumbnail_image": "//redshelf-images.s3-external-1.amazonaws.com/cover_image/9780815519874.jpg", "default_thumbnail_image": "//redshelf-images.s3-external-1.amazonaws.com/thumbnail/default_book_thumbnail.jpg", "product_type": "book", "product_id": "282029", "product_url": "/app/ecom/book/282029/sputtering-materials-for-vlsi-and-thin-film-devices-282029-9780815519874-jaydeep-sarkar", "bisac_codes": [ "TEC009000", "TEC021000" ], "items_count": null, "identifiers": { "ISBN13": "9780815515937", "EISBN13": "9780815519874", "EISBN10": "0815519877" }, "drm": null, "cover_image": null, "default_cover_image": null, "book_type": null }, "relationships": { "lowest_offering": { "data": { "type": "offerings", "id": "00010026344218" } } } }, { "type": "Product", "id": "00010000282027", "attributes": { "name": "Microwave/RF Applicators and Probes for Material Heating, Sensing, and Plasma Generation", "subtitle": "A Design Guide", "description": "<p>Interactions of electromagnetic fields with materials at high frequencies have given rise to a vast array of practical applications in industry, science, medicine, and consumer markets. Applicators or probes, which are the front end of these systems, provide the field that interacts with the material. This book takes an integrated approach to the area of high frequency applicators and probes for material interactions, providing a toolkit for those who design these devices. Particular attention is given to real-world applications and the latest developments in the area.</p> <p>Mathematical methods are provided as design tools, and are often simplified via curve-fitting techniques that are particularly usable by handheld calculators. Useful equations and numerically solved examples, using situations encountered in practice, are supplied. Above all, this volume is a comprehensive and useful reference where the reader can find design rules and principles of high frequency applicators and probes for material processing and sensing applications. Electronic and electrical R&D; engineers, physicists, university professors and students will all find this book a valuable reference.</p> <p>Mehrdad Mehdizadeh is with the DuPont Company, Engineering Research & Technology Division in Wilmington, Delaware. His areas of expertise include high frequency hardware and electromagnetic methods of processing, sensing, and characterization of materials. His work and innovation in industrial, scientific, and medical applications of radio frequency and microwaves has resulted in 19 US patents and a number of publications. He earned his Ph.D. and M.S. from Marquette University (1983, 1980), and a B.S. from Sharif University of Technology (1977), all in electrical engineering. Dr. Mehdizadeh is a Senior Member of the Institute of Electrical and Electronic Engineers (IEEE ), Sigma Xi (Scientific Research Society), the International Microwave Power Institute (IMPI ), and a voting member of IEEE Standard Association.</p> Books in this area are usually theoretical; this book provides practical information for those who actually intend to design a system Features real world and numerically solved examples, and curve-fitted simple equations to replace complex equations provided in typical texts Author is a voting member of IEEE Standards Association", "author": "Mehrdad Mehdizadeh", "slug": "microwaverf-applicators-and-probes-for-material-heating-sensing-and-plasma-generation-282027-9780815519867-mehrdad-mehdizadeh", "thumbnail_image": "//redshelf-images.s3-external-1.amazonaws.com/cover_image/9780815519867.jpg", "default_thumbnail_image": "//redshelf-images.s3-external-1.amazonaws.com/thumbnail/default_book_thumbnail.jpg", "product_type": "book", "product_id": "282027", "product_url": "/app/ecom/book/282027/microwaverf-applicators-and-probes-for-material-heating-sensing-and-plasma-generation-282027-9780815519867-mehrdad-mehdizadeh", "bisac_codes": [ "TEC009000", "SCI055000" ], "items_count": null, "identifiers": { "ISBN13": "9780815515920", "EISBN13": "9780815519867", "EISBN10": "0815519869" }, "drm": null, "cover_image": null, "default_cover_image": null, "book_type": null }, "relationships": { "lowest_offering": { "data": { "type": "offerings", "id": "00010026345887" } } } }, { "type": "Product", "id": "00010000282025", "attributes": { "name": "Nanotechnology Environmental Health and Safety", "subtitle": "Risks, Regulation and Management", "description": "<p>This book tackles the debate over nanotechnology's environmental health and safety (EHS) by thoroughly explaining EHS issues, financial implications, foreseeable risks (i.e. exposure, dose, hazards of nanomaterials), and the implications of occupational hygiene precautions and consumer protections.</p> <p>Real-world case studies are included, e.g. the discussion of a leading chemical company's unusual pairing with the USA's largest environmental NGO, and an innovative program designed for small- to mid-sized businesses, which became a model approach for proactive nanotechnology EHS risk management.</p> Considers the potential of nanotechnology from multiple perspectives (NGO, insurance industry, small business, etc) Provides guidance and advice for appropriate, proactive risk management strategies Reviews toxicological studies and industrial initiatives, documented with actual case studies Of significant interest to CEOs/CTOs of technology companies (SMEs), Health and Safety officers of technology companies (SMEs), Government officials (HSE), Toxicology experts, and venture capitalists", "author": "Matthew Hull, Diana Bowman", "slug": "nanotechnology-environmental-health-and-safety-282025-9780815519829-matthew-hull-diana-bowman", "thumbnail_image": "//redshelf-images.s3-external-1.amazonaws.com/cover_image/9780815519829.jpg", "default_thumbnail_image": "//redshelf-images.s3-external-1.amazonaws.com/thumbnail/default_book_thumbnail.jpg", "product_type": "book", "product_id": "282025", "product_url": "/app/ecom/book/282025/nanotechnology-environmental-health-and-safety-282025-9780815519829-matthew-hull-diana-bowman", "bisac_codes": [ "TEC009000", "034" ], "items_count": null, "identifiers": { "ISBN13": "9780815515869", "EISBN13": "9780815519829", "EISBN10": "0815519826" }, "drm": null, "cover_image": null, "default_cover_image": null, "book_type": null }, "relationships": { "lowest_offering": { "data": { "type": "offerings", "id": "00010026359676" } } } }, { "type": "Product", "id": "00010000282023", "attributes": { "name": "Micromachining Using Electrochemical Discharge Phenomenon", "subtitle": "Fundamentals and Application of Spark Assisted Chemical Engraving", "description": "This book explains the fundamentals of SACE, promotes the technology, and encourages researchers and engineers from industry to use it for their specific applications. Therefore, the book, after presenting in details the fundaments of SACE (in particular the Electrochemical Discharges), deals mainly with practical aspects of implementing the machining technology. The book is written so that researchers from fields other than micro-technology (e.g., from life science) will be able to build a simple machining set-up, together with his mechanical work-shop, for individual needs. Topics include: micro- and electrochemical discharge machining (including glass), microfluidics, non-conventional manufacturing, electrochemical discharges, biocompatibility, and anode effects Provides applicable information for engineers in industry dealing with micromachining of glass, polymers, and ceramics Covers a range of microfluidic devices (including micro-TAS) with applications in various fields like chemistry and life sciences", "author": "Rolf Wuthrich, Jana D. 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Plastics of similar polymer types are grouped into chapters, each with an introduction that briefly explains the chemistry of the polymers used in the plastics. An extensive introductory chapter has also been added, which summarizes the chemistry of making polymers, the formulation of plastics, creep-testing, test methods, measurements, and charts, as well as theory and plastic selection.Each chapter is generally organized by product and concludes with comparisons of brand or generic products. The appendices include a list of trade names, plastics sold under those names, and manufacturer. A list of conversion factors for stress measures is also included.ABOUT THE AUTHORLaurence W. McKeen earned a B.S. in Chemistry from Rensselaer Polytechnic Institute in 1973 and a Ph.D. in 1978 from the University of Wisconsin. He began his career with DuPont in 1978 as a mass spectroscopist, but moved into product development in the Teflon Finishes group in 1980. Dr. McKeen has accumulated over 28 years of experience in product development and applications, working with customers in a wide range of industries, which has led to the creation of dozens of commercial products. More than 8 core chapters, which serve as a databank for evaluating the creep of plastics Over 600 uniform graphs for more than 45 generic families of plastics are explained Types of graphs include: (1) Isochronous StressStrain Curves at Various Times and Temperatures (2) Creep Strain or Creep Deformation versus Time at Various Stress Levels and Temperatures (3) Various Modulus Measures (Tensile, Compressive, Flexural) versus Time at Various Temperatures (4) Hoop Stress versus Time at Various Temperatures (5) Stress Cracking and Other Plastics Failure versus Time (6) Creep Rupture versus Time", "author": "Laurence W. 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It gives a history of miniaturization, micro- and nanofabrication, and surveys industrial fields of application, illustrating fabrication processes of relevant micro and nano devices.<br><br>Concerning sub-micron feature manufacture, the book explains: the philosophy of micro/ nanofabrication for integrated circuit industry; thin film deposition; (waveguide, plastic, semiconductor) material processing; packaging; interconnects; stress (e.g., thin film residual); economic; and environmental aspects.<br><br>Micro/nanomechanical sensors and actuators are explained in depth with information on applications, materials (incl. functional polymers), methods, testing, fabrication, integration, reliability, magnetic microstructures, etc. Shows engineers & students how to evaluate the potential value of current and nearfuture manufacturing processes for miniaturized systems in industrial environments Explains the top-down and bottom up approaches to nanotechnology, nanostructures fabricated with beams, nano imprinting methods, nanoparticle manufacturing (and their health aspects), nanofeature analysis, and connecting nano to micro to macro Discusses issues for practical application cases; possibilities of dimension precision; large volume manufacturing of micro- & nanostructures (machines, materials, costs) Explains applications of Microsystems for information technology, e.g.: data recording (camera, microphone), storage (memories, CDs), communication; computing; and displays (beamers, LCD, TFT) Case studies are given for sensors, resonators, probes, transdermal medical systems, micro- pumps & valves, inkjets, DNA-analysis, lab-on-a-chip, & micro-cooling", "author": "Regina Luttge", "slug": "microfabrication-for-industrial-applications-282018-9780815519775-regina-luttge", "thumbnail_image": "//redshelf-images.s3-external-1.amazonaws.com/thumbnail/9780815519775.jpg", "default_thumbnail_image": "//redshelf-images.s3-external-1.amazonaws.com/thumbnail/default_book_thumbnail.jpg", "product_type": "book", "product_id": "282018", "product_url": "/app/ecom/book/282018/microfabrication-for-industrial-applications-282018-9780815519775-regina-luttge", "bisac_codes": [ "TEC009000", "TEC021000" ], "items_count": null, "identifiers": { "ISBN13": "9780815515821", "EISBN13": "9780815519775", "EISBN10": "081551977X" }, "drm": null, "cover_image": null, "default_cover_image": null, "book_type": null }, "relationships": { "lowest_offering": { "data": { "type": "offerings", "id": "00010026361808" } } } }, { "type": "Product", "id": "00010000282017", "attributes": { "name": "Emerging Nanotechnologies for Manufacturing", "subtitle": "", "description": "<p>Nanotechnology is a technology on the verge of commercialization. In this important work, an unrivalled team of international experts provides an exploration of the emerging nanotechnologies that are poised to make the nano-revolution a reality in the manufacturing sector. From their different perspectives, the contributors explore how developments in nanotechnology are transforming areas as diverse as medicine, advanced materials, energy, electronics and agriculture.</p> <p>Key topics covered include:</p> Characterization of nanostructures Bionanotechnology Nanoelectronics Micro- and nanomachining Self-assembly techniques New applications of carbon nanotubes Environmental and health impacts <p>This book provides an important and in-depth guide to the applications and impact of nanotechnology to different manufacturing sectors. As such, it will find a broad readership, from R&D; scientists and engineers to venture capitalists.</p> <p>About the Authors </p> <p>Waqar Ahmed is Chair of Nanotechnology & Advanced Manufacturing and the Director of the Institute of Advanced Manufacturing and Innovation at the University of Central Lancashire, UK. He has contributed to the wider industrial adoption of surface coating solutions through fundamental research and modeling of gas phase processes in CVD and studies of tribological behavior. </p> <p>Mark J. Jackson is a Professor at the Birck Nanotechnology Center and Center for Advanced Manufacturing, College of Technology at Purdue University. Dr Jackson is active in research work concerned with understanding the properties of materials in the field of microscale metal cutting, micro- and nanoabrasive machining, and laser micromachining. He is also involved in developing next generation manufacturing processes and biomedical engineering. </p> Explains how to use biological pathways to produce nanoelectric devices Presents data on new, experimental designs Discusses the history of carbon nanotubes and how they are synthesized to fabricate novel nanostructures (incl. data on laser ablation) Extensive use of illustrations, tables, and figures throughout", "author": "Waqar Ahmed, Waqar Ahmed, M. J. 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While the situation is grim, recent advances strongly indicate that many of the current water quality problems can be addresses and potentially resolved using nanotechnology.Nanotechnology is already having a dramatic impact on research in water quality and Nanotechnology Applications for Clean Water highlights both the challenges and the opportunities for nanotechnology to positively influence this area of environmental protection.Here you will find detailed information on breakthroughs, cutting edge technologies, current research, and future trends that may affect acceptance of widespread applications. The first four parts of the book cover specific topics including using nanotechnology for clean drinking water in both large scale water treatment plants and in point-of-use systems. For instance, recent advances show that many of the current problems involving water quality can be addressed using nanosorbents, nanocatalysts, bioactive nanoparticles, nanostructured catalytic membranes, and nanoparticle enhanced filtration. The book also discusses existing technologies and future potential for groundwater remediation, pollution prevention, and sensors. The final part discusses the inherent societal implications that may affect acceptance of widespread applications. Over 80 leading experts from around the world share their wealth of knowledge in this truly unique reference. Institutions such as Center for the Purification of Water and Systems (Univ. of Illinois at Urbana-Champaign); UCLA Water Technology Center; Carnegie Mellon University, University of Kentucky; The University of Western Ontario; Pacific Northwest National Laboratory; National Institute for Advanced Industrial Science and Technology (Japan), Munasinghe Institute for Development (Sri Lanka) and the Woodrow Wilson Center for Scholars are just a few of the knowledge centers represented in this book. Water quality is a serious, global issue in which government bodies and scientific communities face many challenges in ensuring clean water is available to everyone. Nanotechnology is already showing dramatic results, and this book is an attempt to share current technologies and future possibilities in reaching this goal. From the Foreword:\"Researchers and practitioners may find in this volume, key challenges regarding clean water resources. The presentations may crystallize new research and education programs.\" - Mihail Roco, U.S. National Science Foundation and U.S. Nanotechnology Initiative Contributors from the US, India, Canada, Japan, UK, Sri Lanka, and South Africa Provides detailed information on breakthroughs, cutting edge technologies, current research, and future trends that may affect acceptance of widespread applications Covers specific topics including using nanotechnology for clean drinking water in both large scale water treatment plants and in point-of-use systems Discusses existing technologies and future potential for groundwater remediation, pollution prevention, and sensors Highlights both the challenges and the opportunities for nanotechnology to positively influence this area of environmental protection", "author": "Mamadou Diallo, Jeremiah Duncan, Nora Savage, Anita Street, Richard Sustich", "slug": "nanotechnology-applications-for-clean-water-282011-9780815519737-mamadou-diallo-jeremiah-duncan-nora-savage-anita-street-richard-sustich", "thumbnail_image": "//redshelf-images.s3-external-1.amazonaws.com/cover_image/9780815519737.jpg", "default_thumbnail_image": "//redshelf-images.s3-external-1.amazonaws.com/thumbnail/default_book_thumbnail.jpg", "product_type": "book", "product_id": "282011", "product_url": "/app/ecom/book/282011/nanotechnology-applications-for-clean-water-282011-9780815519737-mamadou-diallo-jeremiah-duncan-nora-savage-anita-street-richard-sustich", "bisac_codes": [ "TEC009000", "TEC027000" ], "items_count": null, "identifiers": { "ISBN13": "9780815515784", "EISBN13": "9780815519737", "EISBN10": "0815519737" }, "drm": null, "cover_image": null, "default_cover_image": null, "book_type": null }, "relationships": { "lowest_offering": { "data": { "type": "offerings", "id": "00010026343870" } } } }, { "type": "Product", "id": "00010000282008", "attributes": { "name": "Encapsulation Technologies for Electronic Applications", "subtitle": "", "description": "<p>Electronics are used in a wide range of applications including computing, communication, biomedical, automotive, military and aerospace. They must operate in varying temperature and humidity environments including indoor controlled conditions and outdoor climate changes. Moisture, ionic contamination, heat, radiation and mechanical stresses are all highly detrimental to electronic devices and can lead to device failures. Therefore, it is essential that the electronic devices be packaged for protection from their intended environments, as well as to provide handling, assembly, electrical and thermal considerations.</p> <p>Currently, more than 99% of microelectronic devices are plastic encapsulated. Improvements in encapsulant materials, and cost incentives have stretched the application boundaries for plastic electronic packages. Many electronic applications that traditionally used hermetic packages such as military are now using commercial-off-the-shelf (COTS) plastic packages. Plastic encapsulation has the advantages of low cost, smaller form factors, and improved manufacturability.</p> <p>With recent trends in environmental awareness, new environmentally friendly or ' green' encapsulant materials (i.e. without brominated additives) have emerged. Plastic packages are also being considered for use in extreme high and low temperature electronics. 3-D packaging and wafer-level-packaging (WLP) require unique encapsulation techniques. Encapsulant materials are also being developed for micro-electro-mechanical systems (MEMS), bio-MEMS, bio-electronics, and organic light-emitting diodes (O-LEDs).</p> <p>This book offers a comprehensive discussion of encapsulants in electronic applications. The main emphasis is on the encapsulation of microelectronic devices; however, the encapsulation of connectors and transformers is also addressed. 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Light-based devices, including lasers and intense-pulsed light systems, have been used for years in the treatment of cutaneous vascular and pigmented lesions, yet have only recently appeared in cosmetic applications, beauty salons and spas. Meanwhile, ever more research and development is being performed with the intent of bringing them to the home-use market.</p> <p>This book is the first to introduce a range of currently used, or under development, laser- and light-based technologies that will provide greater cosmetic benefits to the consumer. It explains the basic physics of light-based technologies, the bio-physical principles behind their mechanism of action, and their applications in many cosmetic procedures. The fundamentals of skin and hair physiology (relevant to the understanding of actions of various cosmetics) are also explained, as are: cosmeceuticals; topical drugs for cosmetic benefits; non-invasive and invasive options available for beauty treatments, and how all this fits in with the emerging light-based technologies.</p> <p>Individual chapters are devoted to the various skin and hair conditions where light-based systems are currently used. Treatments discussed include the rejuvenation and toning of damaged skin; skin resurfacing and microdermabrasion; hair removal and growth reduction; wrinkle reduction; acne treatment and cellulite. 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