* An applied focus for electrical engineers and materials scientists.
* Theoretical results supported with real-world systems and applications.
* Includes worked examples and self-study questions.
* Solutions manual available.
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Peter L. Hagelstein is an Associate Professor in the Department of Electrical Engineering and Computer Science at M.I.T. He is a principal investigator in the Optics and Quantum Electronics Group of the Research Laboratory of Electronics.
Stephen D. Senturia joined the Department of Electrical Engineering and Computer Science at M.I.T. immediately after completing his education (MIT, Ph.D. in Physics, 1966), initially as Research Scientist, then as Assistant Professor in 1967, with subsequent promotions up the ranks. From 1992 to 2002, he held the Barton L. Weller Chair in Electrical Engineering. He has been involved in microsensor and MEMS research since the early 1970’s. For a number of years, his research focused on developing material-property measurement methods and CAD tools for MEMS. The work on MEMCAD led to the spin-out from his group of the two companies that lead this commercial field: IntelliSense and Coventor.He serves as Senior Editor of the ASME/IEEE Journal of Microelectromechanical Systems. After officially retiring from MIT in June, 2002, Dr. Senturia now has part-time duties at MIT and serves as Chairman and Chief Technology Officer of Polychromix, Inc., Woburn, MA, a company he founded to adapt the Polychromator technology for commercial use. Honor and professional societies include the IEEE (Fellow), Phi Beta Kappa, and Sigma Xi.
Terry P. Orlando is a Professor at the Research Laboratory of Electronics at M.I.T. His research focuses on superconducting circuits for quantum computation and nonlinear dynamics.
An Applied Approach to Quantum Mechanics
Quantum mechanics is vitally important in the study and design of semiconductor devices. The latest electronic and photonic devices have quantum mechanics at their core, and the emergence of quantum computing further increases the engineering importance of the subject. In contrast to the usual theoretical or experimental treatments of quantum physics, Introductory Applied Quantum and Statistical Mechanics approaches the subject from the point of view of an electrical engineer or materials scientist.
Equally useful as a reference for the practitioner and as a text, Introductory Applied Quantum and Statistical Mechanics introduces the reader to the fundamental concepts of quantum physics and their applications to electrical engineering, applied physics, and materials science. Developed from an introductory graduate course in the EECS Department at MIT, this book is structured with an eye towards how the laws enable one to design and build new and better devices. Throughout, theoretical results are supported with real-world systems and applications, and mastery of the material is assisted by worked examples and self-study questions.
A unique and useful resource, this book is a valuable tool for anyone seeking to apply the principles of quantum mechanics to the development of practical technical solutions.
An Applied Approach to Quantum Mechanics
Quantum mechanics is vitally important in the study and design of semiconductor devices. The latest electronic and photonic devices have quantum mechanics at their core, and the emergence of quantum computing further increases the engineering importance of the subject. In contrast to the usual theoretical or experimental treatments of quantum physics, Introductory Applied Quantum and Statistical Mechanics approaches the subject from the point of view of an electrical engineer or materials scientist.
Equally useful as a reference for the practitioner and as a text, Introductory Applied Quantum and Statistical Mechanics introduces the reader to the fundamental concepts of quantum physics and their applications to electrical engineering, applied physics, and materials science. Developed from an introductory graduate course in the EECS Department at MIT, this book is structured with an eye towards how the laws enable one to design and build new and better devices. Throughout, theoretical results are supported with real-world systems and applications, and mastery of the material is assisted by worked examples and self-study questions.
A unique and useful resource, this book is a valuable tool for anyone seeking to apply the principles of quantum mechanics to the development of practical technical solutions.
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Anbieter: Textbooks_Source, Columbia, MO, USA
hardcover. Zustand: Good. 1st Edition. Ships in a BOX from Central Missouri! May not include working access code. Will not include dust jacket. Has used sticker(s) and some writing or highlighting. UPS shipping for most packages, (Priority Mail for AK/HI/APO/PO Boxes). Bestandsnummer des Verkäufers 000694779U
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Hardcover. Zustand: Very Good. No Jacket. First Edition. Dive into the realm of quantum mechanics with the hardcover edition (2004) of "Introductory Applied Quantum and Statistical Mechanics" authored by Peter L. Hagelstein, Stephen D. Senturia, and Terry P. Orlando. This copy is in VG+ condition, showcasing covers that maintain their great shape, sharp corners, and only a hint of shelf wear. The binding is square and tight, while the interior pages are clean and unmarked, offering an excellent reading experience.The book, developed from an introductory graduate course at MIT, takes a unique approach by viewing quantum mechanics from the perspective of an electrical engineer or materials scientist. Quantum mechanics, a vital component in the study and design of semiconductor devices, is explored with a focus on real-world applications. The latest electronic and photonic devices, including quantum computing, underscore the engineering importance of this subject."Introductory Applied Quantum and Statistical Mechanics" serves as both a reference for practitioners and a text for learners, introducing fundamental quantum physics concepts and their practical applications in electrical engineering, applied physics, and materials science. The book is structured to showcase how these laws enable the design and construction of new and improved devices. Real-world systems and applications support theoretical results, and mastery of the material is facilitated by worked examples and self-study questions.For those seeking to apply the principles of quantum mechanics to develop practical technical solutions, this book is a valuable resource. It provides a comprehensive understanding of the subject, making it an essential tool for engineers, researchers, and students alike. If you're interested in delving into the fascinating world of applied quantum mechanics, don't hesitate to contact us for more information or pictures regarding this insightful volume. The book will be carefully packaged for shipment, and a USPS electronic tracking number will be issued free of charge to ensure its safe arrival. Bestandsnummer des Verkäufers 16131
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Anbieter: Textbooks_Source, Columbia, MO, USA
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Anbieter: GreatBookPrices, Columbia, MD, USA
Zustand: good. May show signs of wear, highlighting, writing, and previous use. This item may be a former library book with typical markings. No guarantee on products that contain supplements Your satisfaction is 100% guaranteed. Twenty-five year bookseller with shipments to over fifty million happy customers. Bestandsnummer des Verkäufers 1544690-5
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