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1. Introduction 3. The Pragmatic Role of the Notion of ‘Translation’ 2. Basics of Relevance Theory 4. Context-Based Problems in Translation 5. Conclusion
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The Conception of Theory of Strength 材料力学所研究的最基本问题之一—构件的强度问题。 由§1-1我们知道:构件的强度是指构件承受荷载的能力或构件抵抗 破坏的能力。在前面各章中,我们得到: 正应力强度条件:Omax≤[o]对应的应力状态为:0←口→>0 max 或:σ→□←σ<0 剪应力强度条件:Tmax≤[τ]对应的应力状态为:↑τ max 上述两个强度条件都是直接用相应的实验来建立强度条件的
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8.1 Keynesian consumption function 8.2 A simple two-period model 8.3 Consumption theory after Keynes Permanent-income Hypothesis Life-style Hypothesis 8.4 Real interest& decision-making- between consumption and saving
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1 Introduction 2 Deterministic Dynamic Programming and Viscosity Solutions 3 Stochastic Control 3.1 Some Probability Theory 3.2 Controlled State Space Models 3.3 Filtering 3.4 Dynamic Programming - Case I : Complete State Information 3.5 Dynamic Programming - Case II : Partial State Information 3.6 Two Continuous Time Problems 4 Robust Control 4.1 Introduction and Background 4.2 The Standard Problem of H∞ Control 4.3 The Solution for Linear Systems 4.4 Risk-Sensitive Stochastic Control and Robustness 5 Optimal Feedback Control of Quantum Systems 5.1 Preliminaries 5.2 The Feedback Control Problem 5.3 Conditional Dynamics 5.4 Optimal Control 5.5 Appendix: Formulas for the Two-State System with Feedback Example 6 Optimal Risk-Sensitive Feedback Control of Quantum Systems 6.1 System Model 6.2 Risk-Neutral Optimal Control 6.3 Risk-Sensitive Optimal Control 6.4 Control of a Two Level Atom 6.5 Control of a Trapped Atom
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1 Introduction 2 Deterministic Dynamic Programming and Viscosity Solutions 2.1 Introduction 2.2 Value Functions are Viscosity Solutions 2.3 Comparison and Uniqueness 3 Stochastic Control 3.1 Some Probability Theory 3.2 Controlled State Space Models 3.3 Filtering 3.4 Dynamic Programming - Case I : Complete State Information 3.5 Dynamic Programming - Case II : Partial State Information 3.6 Two Continuous Time Problems 4 Robust Control 4.1 Introduction and Background 4.2 The Standard Problem of H∞ Control 4.3 The Solution for Linear Systems 4.4 Risk-Sensitive Stochastic Control and Robustness 5 Optimal Feedback Control of Quantum Systems 5.1 Preliminaries 5.2 The Feedback Control Problem 5.3 Conditional Dynamics 5.4 Optimal Control 5.5 Appendix: Formulas for the Two-State System with Feedback Example 6 Optimal Risk-Sensitive Feedback Control of Quantum Systems 6.1 System Model
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Total Quality Management (TQM) Theory of Process Management The Theory of Control Charts Common Cause Variation Vs Special Cause Variation Control Charts for the Proportion of Nonconforming Items Process Variability Control charts for the Mean and the Range
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There are two main limit ations in the use of Hoo theory for compensator design. First, only full complex perturb ations() Cnm can be treated in a non-conservative way in an Ho robust st ability test. Second, robust performance can only be handled in a conservative way even for full complex perturbations since st ability and performance can not be separated in the Hoo structure
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According to the evolutionary theory of sleep, evolution equipped us with a regular pattern of sleeping and waking for the same reason. The theory does not
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Chapter Three Consumer’s Behavior Theory: Further analysis(1) Chapter Four Production and Cost Function Chapter Five Perfect Competitive Market (1)完全竞争市场
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Chapter 1:前史——Isaac Newton Chapter 2 :量子力学预备 Chapter 3:前量子论中的原子 Chapter 4 Max Planck——The Birth of the Quantum Adventure Chapter 5 :Light——Wave or Projectile? Chapter 6:Einstein Enters the Scene Chapter 7:Niels Bohr Introduces the Quantum into Atomic Physics Chapter 8 Werner Heisenberg——An Equation for Uncertainty Chapter 9 Louis de Broglie——Matter Waves Chapter 10 Erwin Schrodinger——Wave Mechanics Chapter 11 Eigenstates——The Theory of the Seen and Unseen Chapter 12 Eigenstates in the Subnuclear World Chapter 13 Paul Dirac——Tying Things Together Chapter 14 Richard Feynman——The Strange Theory of Light and Matter Chapter 15 Quantum Reality——The World of the Absurd
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