|
所在平台: Coursera |
课程主页: https://www.coursera.org/learn/particle-dynamics
课程评论:没有评论
课程名称:粒子动力学 课程概述:本课程教授动力学,这是机械工程的基础力学科目之一。学生将能够整理关于力与运动、功-能、冲量-动量的知识,并在牛顿第二定律及其在时间和位移上的积分视角下进行理解。工程动力学分为两个部分:粒子动力学和刚体动力学。本课程是动力学的第一部分,粒子动力学课程将包括约15分钟(或稍长)的讲座视频,这些视频中包含一些练习题的解题过程。此外,还有不包含在视频讲座中的独立作业,以及期末考试。 课程大纲: 1. 讲座笔记:在开始讲座前,请下载此讲座笔记。每个章节有两个版本的讲座笔记,一个是学生版(带空白),另一个是填写完整的版本。 2. 第1周: - 1-1 讲座:粒子的直角坐标系、切向-法向坐标系、极坐标系和相对运动的运动学 - 1-2 讲座:粒子的直角坐标系、切向-法向坐标系、极坐标系和相对运动的运动学 3. 第2周: - 2-1 讲座:线性运动中粒子的运动方程 - 2-2 讲座:线性运动中粒子的运动方程 4. 第3周: - 3-1 讲座:粒子的功与能 - 3-2 讲座:粒子的功与能 5. 第4周: - 4-1 讲座:粒子的冲量动量 - 4-2 讲座:粒子的冲量动量 6. 第5周: - 5-1 讲座:粒子的冲击 - 5-2 讲座:粒子的冲击 7. 第6周: - 6-1 讲座:粒子系统的运动动力学 - 6-2 讲座:粒子系统的运动动力学 8. 第7周: - 7-1 讲座:稳态质量流动与变质量的动力学 - 7-2 讲座:稳态质量流动与变质量的动力学 9. 期末考试 本课程旨在为学生提供扎实的粒子动力学基础,以便于将来的学习与应用。
Name:Lecture Note
Description:Before you start the Lecture, please download this lecture note. Each chapter has two version of lecture note. One is student version that has blanks, the Other is filled version.
Name:1-1 Week
Description:Kinematics of particle in Cartesian, T-N, Polar coordinate and relative motion
Name:1-2 Week
Description:Kinematics of particle in Cartesian, T-N, Polar coordinate and relative motion
Name:2-1 Week
Description:Equations of motion of particle in linear motion
Name:2-2 Week
Description:Equations of motion of particle in linear motion
Name:3-1 Week
Description:Work & Energy of particle
Name:3-2 Week
Description:Work & Energy of particle
Name:4-1 Week
Description:Impulse momentum of a particle
Name:4-2 Week
Description:Impulse momentum of a particle
Name:5-1 Week
Description:Impact of particle
Name:5-2 Week
Description:Impact of particle
Name:6-1 Week
Description:Kinetics of motion of the systems of particle
Name:6-2 Week
Description:Kinetics of motion of the systems of particle
Name:7-1 Week
Description:Kinetics of steady mass flow and variable mass
Name:7-2 Week
Description:Kinetics of steady mass flow and variable mass
Name:FINAL TEST
Description:FINAL TEST
This course teaches dynamics, one of the basic mechanics subjects of Mechanical Engineering. Students would be able to organize their knowledge about force and motion, work-energy, impulse-momentum in view of Newton's 2nd law and its integration over time and displacement. The Engineering Dynamics consists of two parts: particle dynamics and rigid body dynamics. This is the first part of the dynamics: Particle dynamics class will consist of lecture videos, which are about 15 min length (or a bit longer). These contain a couple of practice problem solving. There will also be standalone homeworks that are not part of video lectures, and a final exam.