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Earth Orbiting Clusters Edmund M C Kong SSL Graduate Research Assistant Prof david w. miller Director, MIT Space Systems Lab Space 2001 Conference& Exposition Albuquerque August28-30,2001
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16-1 LC Circuit LC Oscillations 振荡电路电磁振荡 16-2 Generation& Radiation of an Electromagnetic Wave电磁波的产生和辐 射 16-3 The Properties of Electromagnetic Waves Electromagnetic电磁波的基本性质 16-4 Energy in Electromagnetic Waves 电磁波的能量 16-5 Electromagnetic Spectrum 电磁波譜
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l. Pre-reading Task ll. Related Information llI. Detailed Study lV. Outline& Summary V Home Assignment
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Through the study of these two periods of class, the students should understand the text correctly. The new words should be read fluently. The newwordsandtheexpresionsinthetextshoudbeleamtbyheart
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1. C Applications of the Second Law N-Chapter6;VWB&S-8.1,8.2,8.5,8.6,8.7,8.8,9.6] 1. CI Limitations on the work that Can be supplied by a heat engine The second law enables us to make powerful and general statements concerning the maximum work that can be Q1
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1. D: Interpretation of Entropy on the Microscopic Scale- The Connection between Randomness and entropy 1. D I Entropy Change in Mixing of Two ldeal gases Consider an insulated rigid container of gas separated into two halves by a heat conducting partition so the temperature of the gas in each part is the same. One side contains air, the other side another gas, say argon, both regarded as ideal gases. The mass of gas in each side is such
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2. B Power Cycles with Two-Phase Media (Vapor Power Cycles) [SB&vw-chapter 3, Chapter ll, Sections 11.1 to 11.7] In this section, we examine cycles that use two-phase media as the working fluid. These can be combined with gas turbine cycles to provide combined cycles which have higher efficiency
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Index absorptance HT-54 cylindrical geometry see non-planar geometry absorption HT-57 adiabatic 0-5.0-9 Diesel cycle 2A-4 adiabatic efficiency see efficiency diffusivity ht-22 adiabatic flame temperature 2C-7 dissipation 1C-10 drag HT-24 Biot number HT-30, HT-36 black body HT-56, HT-63 see also
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Efficiency of growth and product formation 3.0 Introduction 3.1 Growth stoichiometry 3.2 Relationships between product formation and growth 3.3 Determination of maintenance energy requirement and maximum biomass yield
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一、原子半径(Atomic Radi)、电离势(Ionization Energy)、电子亲和能 (Electron Affinity)和电负性(Electronegativity)的周期性变化 (见第七章)
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