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In this lecture we will consider the equations that result from integrating Newtons second law, F=ma, in time. This will lead to the principle of linear impulse and momentum. This principle is very useful when solving problems in which we are interested in determining the global effect of a force acting on a particle over a time interval Linear momentum We consider the curvilinear motion of a particle of mass, m, under the influence of a force F. Assuming that
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In this lecture we will look at some applications of Newton's second law, expressed in the different coordinate systems that were introduced in lectures D3-D5. Recall that Newton's second law F=ma, (1) is a vector equation which is valid for inertial observers. In general, we will be interested in determining the motion of a particle given
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In this lecture we will look at some other common systems of coordinates. We will present polar coordinates in two dimensions and cylindrical and spherical coordinates in three dimensions. We shall see that these systems are particularly useful for certain classes of problems Like in the case of intrinsic coordinates presented in the previous lecture, the reference frame changes from point to point. However, for the coordinate systems to be presented below, the reference frame depends only on the position of the particle. This is in contrast with the intrinsic coordinates, where the reference frame is a function of the position, as well as the path
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We will start by studying the motion of a particle. We think of particle as a body which has mass, but has negligible dimensions. Treating bodies as particles is, of course, an idealization which involves an approximation. This approximation may be perfectly acceptable in some situations and not adequate in some other cases. For instance, if we want to study the motion of planets it is common to consider each planet as a particle
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一、断裂是机械和工程构件失效的主要形式之一。 二、失效形式:如弹塑性失稳、磨损、腐蚀等。 三、断裂是材料的一种十分复亲的行为,在不同的力学、物理和化学环境下,会有不同的断裂形式。 四、研究断裂的主要目的是防止断裂,以保证构件在服役过程中的安全
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第一章概述 第二章原子吸收分光光度法 第三章原子荧光光谱法 第四章荧光及磷光光谱法 第五章化学发光监测技术 第六章色谱分析法理论基础 第七章气相色谱分析法 第八章高效液相色谱分析法
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第一章小结本章从并行计算的角度出发,着重讨论当代科学和工程计算问题所要求的高 性能并行计算系统,包括并行计算机系统的互连技术、并行计算机的系统结构模型、存储 访问模型和存储结构组织等
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习题例题: 1.查阅资料,找出一个并行计算的典型应用,详细描述该应用在并行化方面成功和失败 之处以及遇到的困难:(从下列方面考虑:该应用是针对什么科学或者工程上的具仁 问题设计的;对于要解决的问题,该应用实际效果怎样,模拟结果和物理结果进行比 较的结果如何;该应用的运行在什么并行计算平台上;(比如分布式或共享内存,向 量机)这个应用使用那种开发工具开发的;该应用的实际工作性能怎样,和运行平台 最佳性能相比较;该应用的可扩展性如何?如果不好,你认为它的扩展性的瓶颈在何 处?)
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一、什么是印刷电路板? 二、怎样制作电路板?
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环境问题是指由于自然或人类活动使环境质量发生变化,从而带来不利于人类生产、生活 和健康的结果,其重要特点就是从局部地区的环境污染向全球性环境问题发展。当前人类面临 的环境问题很多,很难区分哪些是最重要的。本章把主要的环境问题划分为全球(大气)环境 问题,生态环境问题及社会环境问题三部分分别进行介绍
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