Materials for Tomorrow

Materials for Tomorrow

Author: Sibylle Gemming

Publisher: Springer Science & Business Media

Published: 2007-03-07

Total Pages: 208

ISBN-13: 3540479716

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This book contains six chapters on central topics in materials science. Each is written by specialists and gives a state-of-art presentation of the subject for graduate students and scientists not necessarily working in that field. Computer simulations of new materials, theory and experimental work are all extensively discussed. Most of the topics discussed have a bearing on nanomaterials and nanodevices.


How Much Is Enough? Balancing Today's Needs with Tomorrow's Retirement Goals

How Much Is Enough? Balancing Today's Needs with Tomorrow's Retirement Goals

Author: Diane McCurdy

Publisher: John Wiley & Sons

Published: 2006-02-10

Total Pages: 274

ISBN-13: 0471746053

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Questions concerning retirement savings abound, but the one question on everyone’s mind is, "How much is enough to provide for the type of retirement I want?" How Much Is Enough? provides the answer by helping readers build a customized plan. Author and financial planning expert Diane McCurdy clearly explains how to save on taxes and invest wisely, so that readers can find the money they need to reach their retirement goals. Readers will also learn how to comfortably work with financial advisors and manage the investments needed for retirement. Filled with in-depth insight and practical advice, How Much Is Enough? is a refreshing approach to defining retirement goals and building a personalized plan to reach them.


Today's Curiosity is Tomorrow's Cure

Today's Curiosity is Tomorrow's Cure

Author: Steve Caplan

Publisher: CRC Press

Published: 2021-11-09

Total Pages: 155

ISBN-13: 1000471004

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Basic curiosity-driven biomedical science has delivered many of today’s most significant medical advances. This book provides clearly explained examples from recent biomedical history and includes convincing arguments for sustaining a robust portfolio of basic research. Intended as an engaging read, which will delight undergraduate and graduate students, as well as scientific researchers, it is full-throated advocacy of basic science. Illustrations and examples include the discoveries of penicillin and insulin, and the breakthrough elucidation of the genetic code. Providing both compelling rationale in support of basic science, and a fascinating look through the history of modern biomedical research, this book highlights with stirring examples why basic biomedical research is so important, and how so many key advances in medicine are derived from basic research. The book also offers a rationale for scientific inquiry and a broader understanding of the history of modern biomedical research missing from today’s classrooms. Key Features 1) Provides clear explanations of great scientific discoveries 2) Illustrates connections between basic research findings and modern medicine 3) Includes compelling graphics/diagrams/illustrations 4) Accessible to the general public 5) Offers background for more specialized readers, including researchers as well as those with advanced degrees. Related Titles Staddon, J. Scientific Method: How Science Works, Fails to Work, and Pretends to Work (ISBN 978-1-1382-9536-0) Helliwell, J. R. Skills for Scientific Life (ISBN 978-1-4987-6875-7) MacRitchie, F. Scientific Research as a Career (ISBN 978-1-4398-6965-9)


Integral Mechanical Attachment

Integral Mechanical Attachment

Author: Robert W. Messler

Publisher: Elsevier

Published: 2011-04-01

Total Pages: 427

ISBN-13: 0080461417

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Integral Mechanical Attachment, highlights on one of the world's oldest technologies and makes it new again. Think of buttons and toggles updated to innovative snaps, hooks, and interlocking industrial parts. Mechanical fasteners have been around as long as mankind, but manufacturers of late have been re-discovering their quick, efficient and fail proof advantages when using them as interlocking individual components as compared with such traditional means of joining materials like welding, soldering, gluing and using nuts bolts, rivets and other similar devices. For many years, it has been virtually impossible to find a single-source reference that provides an overview of the various categories of fastening systems and their various applications. Design engineers should find this book to be an invaluable source of detailed, illustrated information on how such fasteners work, and how they can save time and money. Students, too, will find this book to be extremely useful for courses in mechanical design, machine design, product development and other related areas where fastening and joining subjects are taught. This will be the first reference book to come along in many years that will fully illustrate the major classes of integral mechanical fasteners, replete with examples of typical assembly and ideas and suggestions for further research.* Covers all major techniques for integral mechanical attachment within the context of other types of joining including chemical (adhesive) bonding, melting and solidification (welding, soldering, brazing), and mechanical joining (fasteners and part features)* Includes specific chapters for particular attachment considerations by materials type, including metals, plastics, ceramics, glass, wood, and masonry* Provides unique coverage of mechanical/electrical connections for reliable contact and use


The New Science of Strong Materials

The New Science of Strong Materials

Author: J. E. Gordon

Publisher: Princeton University Press

Published: 2006-02-19

Total Pages: 322

ISBN-13: 0691125481

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This new edition of the book on the properties of materials used in engineering answers some fundamental questions about how the material world around us functions. In particular: the author focuses on so-called strong materials, such as metals, wood, ceramics, glass, and bone. For each material in question, the author explains the unique physical and chemical basis for its inherent structural qualities. He also shows how an in-depth understanding of these materials' intrinsic strengths (and weaknesses) guides our engineering choices, allowing us to build the structures that support our modern society.