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一般说来,质点运动时其加速度常随时间而 改变,但在有些情况下,质点的加速度可以 视为是恒定的,即其值和方向都不随时间而 变。如质点在地球表面附近运动、电荷在均 匀电场中的运动等,均属这种情况。 已知质点的初始运动状态及质点的 加速度来求质点的曲线运动方程,是属于运 动学的第二类问题~即已知运动状态求运动 方程的问题
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一、 场的概念、标量场和矢量场 1。数学上引入场的概念,用于描述物理量在 空间的分布和变化规律。如果空间的每一点 都对应着某个物理量的确定值,就说在着空 间里确定了该物理量的场。 若该物理量是数量(标量)——标量场,如 温度场、密度场、电位场;若是矢量,这个 场为矢量场,如力场、速度场、电场、磁场、 引力场等
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List of contents From Knowledge to Strategy 2. Classical Model of Decision-Making 3. Information Theory of Decision-Making 4. Unified Theory
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1. Information Processing Definition of Information processing All operations exerted to the information itself for its better utilization Information processing is necessary because most of the information in its original form may not be good for use. Thus information processing is the basis of later operations Two categories of information processing: 1)Shallow Level of Information Processing 2)Deeper level of Information Processing
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3-1 Measures of Random Syntactic Information Shannon Theory of Information Key point: 1. Information is something that can be used to remove uncertainty. 2. The amount of information can then be measured by the amount of uncertainty it removed. 3. In the cases of communications, only waveform is concerned while meaning and value are ignored. 4. Uncertainty and thus information are statistic in nature and statistical mathematics is enough
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Problems to be concerned with 1. How should we define the concept of Information 2. What are the typical features of Information compared with matter and energy 3. What are the relationship and difference between Shannon Information and comprehensive Information 4. How to reasonably classify Information 5. How to properly represent Information
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1.1 Information science Definition of information Science Information Science is a trans-disciplinary science with information as its object in study; the laws in information process as its content information methodology as its approach; and the strengthening human information functions particularly the intellectual ability, as its goal
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4.1概述 4.2测量放大器的电路原理 4.3测量放大器的主要技术指标 4.4测量放大器集成芯片 4.5测量放大器的使用
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武警学院:《大学物理学》第九章 静电场中的导体和电介质 9.5 静电场的能量 能量密度 9-6 静电的应用 9-7 电场的边界条件 9-8 压电效应 铁电体 驻极体
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8-1 周期信号的频谱分析 8-2 傅里叶变换 8-2-2 常用信号的傅里叶变换 8-3 傅里叶变换的性质
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