Fundamentals of Machine Elements 3/E SI Version (Adapted Edition) 作(編/譯)者 : Schmid & Hamrock & Jacobson/林靖國 改編 出版年份 : 2023 ISBN : 9789863783732 書號 : MX0537 幾色 : 2 規格 : 平裝 發行公司 : Taylor & Francis 英文書名中譯 : 機械設計 版次 : 3E 頁數 : 512 分別 : 原文書 Table of Contents: Part I Fundamentals 1. Introduction 2. Load, Stress, and Strain 3. Introduction to Materials and Manufacturing 4. Stresses and Strains 5. Deformation 6. Failure Prediction for Static Loading 7. Fatigue and Impact 8. Lubrication, Friction, and Wear Part II Machine Elements 9. Shafting and Associated Parts 10. Hydrodynamic and Hydrostatic Bearings 11. Rolling-Element Bearings 12. Helical, Bevel, and Worm Gears 13. Fasteners, Connections, and Power Screws 14. Springs 15. Brakes and Clutches Appendix A: Physical and Mechanical Properties of Materials Appendix B: Stress-Strain Relationships Appendix C: Stress Intensity Factors for Some Common Crack Geometries Appendix D: Shear, Moment, and Deflection of Selected Beams Appendix E: Dimensions of Threaded Fasteners Index
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原文書資訊 書名:Incropera`s Principles of Heat and Mass Transfer 8/e GE 2017 <JW> 作者: INCROPERA ISBN: 9781119382911 出版社: John Wiley 出版年: 2017年 中文書資訊 書名: 熱傳遞 (Incropera & DeWitt & Bergman & Lavine:Incropera's Principles of Heat and Mass Transfer)精華版(Global Edition) Abridged Version 作者: Incropera & DeWitt & Bergman & Lavine/ 徐金城 ISBN: 9789863782605 出版社: 高立 出版年: 2021年
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作(編/譯)者 : 傅光華.張信良 編譯 出版年份 : 2016 ISBN : 9789863780816 書號 : 1051A1 幾色 : 2 規格 : 16K 發行公司 : Taylor/高立 版權日期 : 2016/06/01 頁數 : 632 分別 : 授權書 本書分為兩大部分,第一部分建構分析各種機械元件的學科基礎,第二部分則討論各類機械元件特性與設計步驟。 第一部分簡介工程師設計機械元件的基本程序與安全係數等安全性概念,並討論施加負載衍生的應力與應變、應力集中效應與元件變形、失效預測、疲勞與衝擊以及磨潤學等。循序漸進、淺顯易懂的解說,使讀者更易瞭解基礎機械設計的理論與應用。 第二部分涵蓋長柱、圓筒中的應力與變形、液體動力與液體靜力軸承、滾動元件軸承、正齒輪、斜齒輪、螺旋齒輪及蝸桿、扣接件與動力螺桿、彈簧、煞車與離合器、撓性元件等。 本書精選較具實務應用與有助於活用各章主題之例題與習題,使讀者易於掌握學習內容與複習,以收學習之成效。 本書專有名詞皆依國家教育研究院學術名詞暨辭書資訊網所編輯內容。 目錄 Part I 基礎篇 Chapter 1 導 論 Chapter 2 力學基礎 Chapter 3 靜態負載的失效預測 Chapter 4 疲勞與衝擊 Chapter 5 潤滑、摩擦與磨損 Part II 機械元件 Chapter 6 長 柱 Chapter 7 圓筒中的應力與變形 Chapter 8 軸系及相關零件 Chapter 9 液體動力與液體靜力軸承 Chapter 10 滾動元件軸承 Chapter 11 一般齒輪理論與正齒輪 Chapter 12 螺旋、斜與蝸輪齒輪 Chapter 13 扣件、連接件及動力螺桿 Chapter 14 彈 簧 Chapter 15 煞車及離合器 Chapter 16 撓性機械元件 中英文索引
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【簡介】 About the Book Heat and Mass Transfer-Fundamentals & Applications, 6e in SI Units, is a textbook for practical-oriented heat transfer course offered to engineering students. It has a perfect blend of fundamentals and applications. It covers the standard topics of heat transfer with emphasis on physics and physical arguments. The text is designed to develop a deeper understanding of the subject and encourage creative thinking. With numerous real-world examples, the book enhances intuitive skill among students and help them confidently apply their knowledge. McGraw Hill's Connect is also available as an optional add on item. Connect is an integrated learning system that empowers students by continuously adapting to deliver exactly what they need, when they need it, and how they need it so that class time is more effective. Connect allows instructors to assign assignments and tests easily and automatically grades and records scores of the student's work. HIGHLIGHTS New topics-Engineering Codes and Standards, Equation Solvers, Aerogel, etc. 2000+ Chapter-end problems based on theory, computer and design 1000+1Illustrations with visual appeal to highlight key learning features 160+ Solved examples to demonstrate application of concepts 【目錄】 Chapter 1 Introduction and Basic Concepts Chapter 2 Heat Conduction Equation Chapter 3 Steady Heat Conduction Chapter 4 Transient Heat Conduction Chapter 5 Numerical Methods in Heat Conduction Chapter 6 Fundamentals of Convection Chapter 7 External Forced Convection Chapter 8 Internal Forced Convection Chapter 9 Natural Convection Chapter 10 Boiling and Condensation Chapter 11 Heat Exchangers Chapter 12 Fundamentals of Thermal Radiation Chapter 13 Radiation Heat Transfer Chapter 14 Mass Transfer Chapter 15 Cooling of Electronic Equipment (Online Chapter) Chapter 16 Heating and Cooling of Buildings (Online Chapter) Chapter 17 Refrigeration and Freezing of Foods (Online Chapter)
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原文書資訊 書名:Automatic Control Systems 10/E 2017<MH> 作者: F.GOLNARAGHI, KUO ISBN: 9789813151505 出版社: Mc Graw Hill 出版年: 2017年 中文書資訊 書名: 自動控制系統 Automatic Control Systems 作者: Golnaraghi/ 江昭皚 ISBN: 9789863413943 出版社: 東華 出版年: 2018年
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振動學 ISBN13:9789864302253 出版社:新文京開發出版 作者:吳佳璋 裝訂/頁數:平裝/412頁 規格:26cm*19cm*2.4cm (高/寬/厚) 版次:2 出版日:2016/11/20 中國圖書分類:運動學 內容簡介 本書以淺顯易懂的編寫方式,帶領讀者進入振動學的領域。作者編寫時,將理論與範例、習題互相配合編寫,附上MATLAB的原始程式碼,讓讀者更容易掌握振動學的概念。 內容分為八章,第一章為讀者建立振動學的基本概念,第二章介紹運動方程式的推導與自然頻率,第三、四、五章依序講述單自由度、雙自由度及多自由度等結構系統的自由與強迫振動分析,第六章討論隔振與減振,第七章及第八章分別探討軸系的扭轉振動分析和連體系統的振動分析。 本書是特別為課程教學設計編寫,書中不提供習題解答。自學讀者選購前請先知悉,銷售者和出版社都無法提供習題解答給讀者。 目錄 第一章 振動學基本概念 1.1 振動學的重要名詞 1.2 簡諧運動 1.3 振動分析的流程 1.4 練習題 第二章 運動方程式的推導與自然頻率 2.1 牛頓第二運動定律 2.2 能量法 2.3 虛位移法 2.4 哈密爾頓原理 2.5 拉格朗日方程式 2.6 彈簧-質量系統的運動方程式與自然頻率 2.7 彈簧-阻尼-質量系統的運動方程式 2.8 扭振系統的運動方程式與自然頻率 2.9 旋轉軸的臨界轉速 2.10 側向振動系統的運動方程式與自然頻率 2.11 彈性構件的質量對系統運動方程式與自然頻率的影響 2.12 雜項振動系統的運動方程式與自然頻率 2.13 練習題 第三章 單自由度結構系統的自由與強迫振動分析 3.1 無阻尼結構系統的自由振動分析 3.2 無阻尼結構系統的強迫振動分析 3.3 黏滯阻尼結構系統的自由振動分析 3.4 黏滯阻尼結構系統的強迫振動分析 第四章 雙自由度結構系統的自由與強迫振動分析 4.1 雙自由度彈簧-阻尼-質量系統之運動方程式的推導 4.2 無阻尼雙自由度彈簧-質量系統的自由振動分析 4.3 雙自由度彈簧-阻尼-質量系統的強迫振動分析 4.4 雙自由度扭振系統 4.5 平移運動與旋轉運動偶合的雙自由度系統 4.6 半定系統 4.7 穩定性分析 4.8 練習題 第五章 多自由度結構系統的自由與強迫振動分析 5.1 樑元素 5.2 桿元素 5.3 彈簧元素 5.4 阻尼元素 5.5 質塊元素 5.6 多自由度結構系統之運動方程式的推導 5.7 多自由度無阻尼結構系統的自然頻率與振態 5.8 振態的正交性 5.9 多自由度無阻尼結構系統的自由振動反應 5.10 多自由度無阻尼結構系統的強迫振動分析 5.11 阻尼矩陣 5.12 多自由度阻尼結構系統的強迫振動分析 5.13 穩定性分析 5.14 利用數值方法來求解多自由度結構系統的振動反應 5.15 練習題 第六章 隔振與減振 6.1 隔振器設計 6.2 調諧質量阻尼器 6.3 調諧液柱阻尼器 6.4 練習題 第七章 軸系的扭轉振動分析 7.1 旋轉軸的扭轉彈簧常數與圓盤的質量慣性矩 7.2 等效長度 7.3 等效質量慣性矩 7.4 利用Holzer列表法來求解多自由度扭轉振動系統的自然頻率及振態 7.5 二自由度及單自由度扭振系統的自然頻率 7.6 數值分析結果與討論 7.7 實例說明與電算程式設計 7.8 練習題 第八章 連體系統的振動分析 8.1 受垂向力之樑的側向振動分析 8.2 受軸向力之樑的側向振動分析 8.3 圓桿的軸向振動分析 8.4 圓桿的扭轉振動分析 8.5 弦的側向振動分析 8.6 薄膜的側向振動分析 8.7 四邊固定之長方形平板的側向振動分析 8.8 練習題 索引 參考文獻
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書名:Linear System Theory and Design 4/E 作者:CHEN 出版社:Oxford 出版日期:2013/12/01 ISBN:9780199964543 目錄 Table of Contents 1 Introduction 1.1 Introduction 1.2 Overview 1.2.1 A brief history 2 Mathematical Descriptions of Systems 2.1 Introduction 2.2 Causality, lumpedness, and time-invariance 2.2.1 Impulses 2.3 Linear time-invariant (LTI) systems 2.3.1 Multi-input multi-output case 2.4 Linear time-varying systems 2.3.1 Linearization 2.5 RLC circuits { Comparisons of various descriptions 2.6 Mechanical and hydraulic systems 2.7 Proper rational transfer functions 2.8 Discrete-time linear time-invariant systems 2.9 Concluding remarks Problems 3 Linear Algebra 3.1 Introduction 3.2 Basis, representation, and orthonormalization 3.3 Linear algebraic equations 3.4 Similarity transformation 3.5 Diagonal form and Jordan form 3.6 Functions of a square matrix 3.7 Lyapunov equation 3.8 Some useful formula 3.9 Quadratic form and positive de niteness 3.10 Singular value decomposition 3.11 Norms of matrices Problems 4 State-Space Solutions and Realizations 4.1 Introduction 4.2 General solution of CT LTI state-space equations 4.2.1 Discretization 4.2.2 General solution of DT LTI state-space equations 4.3 Computer computation of CT state-space equations 4.3.1 Real-time processing 4.3.2 Op-amp circuit implementation 4.4 Equivalent state equations 4.4.1 Canonical forms 4.3.2 Magnitude scaling in op-amp circuits 4.5 Realizations 4.5.1 Multi-input multi-output case 4.6 Solution of linear time-varying (LTV) equations 4.6.1 Discrete-time case 4.7 Equivalent time-varying equations 4.8 Time-varying realizations Problems 5 Stability 5.1 Introduction 5.2 Input-output stability of LTI systems 5.3 Discrete-time case 5.4 Internal stability 5.4.1 Discrete-time case 5.5 Lyapunov theorem 5.5.1 Discrete-time case 5.6 Stability of LTV systems Problems 6 Controllability and Observability 6.1 Introduction . 6.2 Controllability 6.2.1 Controllability indices 6.3 Observability 6.3.1 Observability indices 6.4 Canonical decomposition 6.5 Conditions in Jordan-form equations 6.6 Discrete-time state-space equations . 6.6.1 Controllability to the origin and reachability 6.7 Controllability after sampling 6.8 LTV state-space equations Problems 7 Minimal Realizations and Coprime Fractions 7.1 Introduction 7.2 Implications of coprimeness 7.2.1 Minimal realizations 7.2.2 Complete characterization 7.3 Computing coprime fractions 7.3.1 QR decomposition 7.4 Balanced realization 7.5 Realizations from Markov parameters 7.6 Degree of transfer matrices 7.7 Minimal realizations{Matrix case 7.8 Matrix polynomial fractions 7.8.1 Column and row reducedness 7.8.2 Computing matrix coprime fractions 7.9 Realization from matrix coprime fractions 7.10 Realizations from matrix Markov parameters 7.11 Concluding remarks Problems 8 State Feedback and State Estimators 8.1 Introduction 8.2 State feedback 8.2.1 Solving Lyapunov equation 8.3 Regulation and tracking 8.3.1 Robust tracking and disturbance rejection 8.3.
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Fundamentals of Machine Learning for Predictive Data Analytics, Second Edition: Algorithms, Worked Examples, and Case Studies 作者: Kelleher, John D.,Mac Namee, Brian,D’Arcy, Aoife 原文出版社:MIT Press 出版日期:2020/10/20 語言:英文 簡介 The second edition of a comprehensive introduction to machine learning approaches used in predictive data analytics, covering both theory and practice.Machine learning is often used to build predictive models by extracting patterns from large datasets. These models are used in predictive data analytics applications including price prediction, risk assessment, predicting customer behavior, and document classification. This introductory textbook offers a detailed and focused treatment of the most important machine learning approaches used in predictive data analytics, covering both theoretical concepts and practical applications. Technical and mathematical material is augmented with explanatory worked examples, and case studies illustrate the application of these models in the broader business context. This second edition covers recent developments in machine learning, especially in a new chapter on deep learning, and two new chapters that go beyond predictive analytics to cover unsupervised learning and reinforcement learning. The book is accessible, offering nontechnical explanations of the ideas underpinning each approach before introducing mathematical models and algorithms. It is focused and deep, providing students with detailed knowledge on core concepts, giving them a solid basis for exploring the field on their own. Both early chapters and later case studies illustrate how the process of learning predictive models fits into the broader business context. The two case studies describe specific data analytics projects through each phase of development, from formulating the business problem to implementation of the analytics solution. The book can be used as a textbook at the introductory level or as a reference for professionals.
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Fundamentals of Machine Component Design 7/e 作者:Robert C. Juvinall, Kurt M. Marshek 原價:NT$ 1,800 ISBN:9781119590637 版次:7 年份:2020 出版商:John Wiley 頁數/規格:800頁/平裝單色 參考網頁:Fundamentals of Machine Component Design 7/e 內容簡介 Description Fundamentals of Machine Component Design presents a thorough introduction to the concepts and methods essential to mechanical engineering design, analysis, and application. In-depth coverage of major topics, including free body diagrams, force flow concepts, failure theories, and fatigue design, are coupled with specific applications to bearings, springs, brakes, clutches, fasteners, and more for a real-world functional body of knowledge. Critical thinking and problem-solving skills are strengthened through a graphical procedural framework, enabling the effective identification of problems and clear presentation of solutions. Solidly focused on practical applications of fundamental theory, this text helps students develop the ability to conceptualize designs, interpret test results, and facilitate improvement. Clear presentation reinforces central ideas with multiple case studies, in-class exercises, homework problems, computer software data sets, and access to supplemental internet resources, while appendices provide extensive reference material on processing methods, joinability, failure modes, and material properties to aid student comprehension and encourage self-study. 目錄 Table of Contents Part 1 Fundamentals Chapter 1 Mechanical Engineering design in Broad Perspective Chapter 2 Load Analysis Chapter 3 Materials Chapter 4 Static Body Stresses Chapter 5 Elastic Strain, Deflection, and Stability Chapter 6 Failure Theories, Safety Factors, and Reliability Chapter 7 Impact Chapter 8 Fatigue Chapter 9 Surface Damage Part 2 Applications Chapter 10 Threaded Fasteners and Power Screws Chapter 11 Rivets, Welding, and Bonding Chapter 12 Springs Chapter 13 Lubrication and Sliding Bearings Chapter 14 Rolling-Element Bearings Chapter 15 Spur Gears Chapter 16 Helical, Bevel, and Worm Gears Chapter 17 Shafts and Associated Parts Chapter 18 Clutches and Brakes Chapter 19 Belts, Chains, and Other Components Chapter 20 Micro/Nanoscale Machine Elements Chapter 21 Machine Component Interrelationships-A Case Study Chapter 22 Design and Fabrication of the Mechanical Systems for a Remote Control Car-A Design Project Case Study
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