3.1菲涅耳公式 3.2反射率透射率 3.3反射光的相位变化 3.4反射光的偏振态 3.5全反射时的透镜场一隐失波 3.6近场扫描光学显微镜 3.1费涅耳公式
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2.1光是一种电磁波 2.2定态光波复振幅描述 2.3波前函数 2.4球面波向平面波的转化 2.5光波干涉引论 2.6两个点源的干涉场杨氏实验 2.7两束平行光的干涉场 2.8光波衍射引论 2.9圆孔和圆屏菲涅耳衍射 2.10波带片 2.11单缝夫琅禾费衍射 2.12矩孔和三角孔夫琅禾费衍射
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1.1惠更斯原理 1.2折射率 1.3光程 1.4费马原理 1.5费马原理与成像 1.6自然变折射率 1.7人工变折射率强光变折射率 1.8光线方程 1.9评述费马原理
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课程简介 本光学课程系统而深入地论述了从经典波动光学到 现代变换光学的基本概念和规律、典型现象和重要应用、 以及诸多方面的新进展
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A practical \blue-collar science initially concerned with economics industry, real life problems DYNAMICS--Concerned with the concepts of energy transfers between a system and its environment and the resulting
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Chap. 14: Energy in Thermal Processes Solids, liquids or gases have internal energy t Kinetic energy from random motion of molecules translation rotation vibration
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Temperature: measure of the motion of the individual atoms and molecules in a gas liquid or solid related to average kinetic energy of constituents High temperature: constituents are moving around energetically
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The Simple Pendulum A pendulum is made by suspending a mass m at the end of a string of length L Find the frequency of oscillation for small displacements mg
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Today' s topics Fluids in motion Bernouilli’ s equation Viscous fluids Simple oscillations
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At ordinary temperature, matter exists in one of three states Solid- has a shape and forms a surface Liquid- has no shape but forms a surface Gas-has no shape and forms no surface What do we mean by“ fluids”? F| uids are“ substances that flow
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