前言 第1章 绪论 Chapter 1 Introduction 1.1 如何学好近代物理实验课 1.1 How to learn modern physics experiments 1.1.1 近代物理实验课程的目的和任务(Objective and task of modern physics experiments) 1.1.2 近代物理实验课程教学内容及特点(Teaching content and characteristics of modern physic experiments) 1.1.3 怎样做好近代物理实验(How to do modem physics experiments)
第2章 误差理论与数据处理基础知识 Chapter 2 Error theory and basic knowledge of experiment data processing 2.1 测量误差 Section 2.1 Measurement error 2.2 随机变量的概率分布 Section 2.2 Probability distribution of random variable 2.3随机误差的统计分析 Section 2.3 Statistical analysis of random error 2.4 不确定度 Section 2.4 Uncertainty 2.5 数据处理——最小二乘法拟合 Section 2.5 Data prOcessing——least square method
第3章 原子物理 Chapter 3 Atomiz physizs 实验3.1 光谱分析基本知识 Experiment 3.1 Basic knowledge of spectral analysis 实验3.2 氢、氘原子光谱实验 Experiment 3.2 Hydrogen and deuterium atom spectra experiment 实验3.3 傅里叶变换光谱实验 Experiment 3.3 Fourier transform spectroscopy experiment 实验3.4 用电视显微油滴仪测电子电荷 Experiment 3.4 Electron charge determination using Millikan oil-drop apparatus 实验3.5 塞曼效应实验 Experiment 3.5 Zeeman effect experiment 实验3.6 法拉第效应 Experiment 3.6 Faraday effect 实验3.7 弗兰克一赫兹实验 Experiment 3.7 Frank-Hertz experiment 实验3.8 拉曼光谱实验 Experiment 3.8 Raman spectroscopy experiment 实验3.9 黑体辐射实验 Experiment 3.9 Blackbody radiation experiment 实验3.1 0光电效应法测普朗克常量 Experiment 3.1 0 Planck constant determination by photoelectric effect 实验3.1 1材料形貌的扫描电子显微镜观测实验 Experiment 3.1 1 Materials morphology observation by scanning electron microscope 实验3.1 2原子力显微镜的材料表面形貌表征实验 Experiment 3.1 2 Materials surface morphology characterization by atomic force microscope 实验3.1 3 NaI(T1)单晶γ闪烁谱仪与γ能谱测量 Experiment 3.1 3 NaI(T1)single crystal γ-ray scintillation spectrometer and v energy disperse spectroscopy measurement
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