This is the first book that can be considered a textbook on thin film science, complete with exercises at the end of each chapter. Ohring has contributed many highly regarded reference books to the AP list, including Reliability and Failure of Electronic Materials and the Engineering Science of Thin Films. The knowledge base is intended for science and engineering students in advanced undergraduate or first-year graduate level courses on thin films and scientists and engineers who are entering or require an overview of the field. Since 1992, when the book was first published, the field of thin films has expanded tremendously, especially with regard to technological applications. The second edition will bring the book up-to-date with regard to these advances. Most chapters have been greatly updated, and several new chapters have been added
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Understanding materials, their properties and behavior is fundamental to engineering design, and a key application of materials science. Written for all students of engineering, materials science and design, this book describes the procedures for material selection in mechanical design in order to ensure that the most suitable materials for a given application are identified from the full range of materials and section shapes available. Extensively revised for this fourth edition, Materials Selection in Mechanical Design is recognized as one of the leading materials selection texts, and provides a unique and genuinely innovative resource
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本书内容包括:固体材料的结构,常用工程材料(高分子材料、金属材料、陶瓷材料和复合材料)的结构、力学性能、成分、加工工艺以及应用前景,常用工程材料的化学性能(耐腐蚀性能)和物理性能(电、磁、热和光学性能)以及新型材料(生物材料、纳米材料和智能材料)的介绍等
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This book describes semiconductors from a materials science perspective rather than from condensed matter physics or electrical engineering viewpoints. It includes discussion of current approaches to organic materials for electronic devices. It further describes the fundamental aspects of thin film nucleation and growth, and the most common physical and chemical vapor deposition techniques. Examples of the application of the concepts in each chapter to specific problems or situations are included, along with recommended readings and homework problems
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Describing the fundamental physical properties of materials used in electronics, the thorough coverage of this book will facilitate an understanding of the technological processes used in the fabrication of electronic and photonic devices. The book opens with an introduction to the basic applied physics of simple electronic states and energy levels. Silicon and copper, the building blocks for many electronic devices, are used as examples. Next, more advanced theories are developed to better account for the electronic and optical behavior of ordered materials, such as diamond, and disordered materials, such as amorphous silicon. Finally, the principal quasi-particles (phonons, polarons, excitons, plasmons, and polaritons) that are fundamental to explaining phenomena such as component aging (phonons) and optical performance in terms of yield (excitons) or communication speed (polarons) are discussed
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复旦大学:《材料科学导论》课程教学资源(教学论文)教学相长,与时俱进——交互式教学在《材料科学导论》中的实践与改革(朱熠民、杨振国)
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复旦大学:《材料科学导论》课程教学资源(教学论文)材料科学导论课程的教改探索与实践(范圣男、杨振国)
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复旦大学:《材料科学导论》课程教学资源_教学大纲(2021)Introduction to Materials Science
文件格式: PDF大小: 279.71KB页数: 3
复旦大学:《材料科学导论》课程教学资源_教学大纲(2020)Introduction to Materials Science
文件格式: PDF大小: 279.14KB页数: 3
西安建筑科技大学:《材料研究与测试方法》精品课程建设项目申报书(本科)
文件格式: PDF大小: 5.79MB页数: 23
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