Electrodynamics: An Introduction

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课程主页: https://www.coursera.org/archive/electrodynamics-introduction

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课程简介

Korea Advanced Institute of Science and Technology

课程大纲

In this module, electrodynamics is introduced by examining the different forces and explaining which are related to electric forces. Furthermore, fields are defined and we differentiate between scalar and vector fields. We cover laws that constitute electrodynamics, specifically Maxwell's equations and the Lorentz force. After explaining how these topics can be illustrated, we also cover how relativity relates to the subject material.

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The depth and breadth of electromagnetism, the foundation for many fields including materials science, electrical engineering, and physical chemistry, requires a long, steep, and steady learning curve. This course aims to bridge the gap between the fundamental principles taught in electromagnetism and its practical application to specific fields such as materials, physics, and chemistry related to energy storage and harvesting. The goal of Electrodynamics: An Introduction is to not only teach electromagnetism but also introduce some mathematical tools which can be used to solve problems in the subject. Within these lecture notes, we review vector calculus and explain how to use fields to visualize the topics we cover. This course is dynamic, as the lectures continuously build on previous notes and a variety of explanations are presented for each solution. Since this is a lower level course, we will focus on the simple concept of electrostatics. This has applications in exploring intermolecular forces, and qualities of capacitors. Through this, we relate electromagnetism to more conventionally studied topics and its application to specific research topics related to energy storage and harvesting.

电动力学:简介:电磁学的深度和广度是许多领域(包括材料科学,电气工程和物理化学)的基础,需要长而陡峭且稳定的学习曲线。本课程旨在弥合电磁学教授的基本原理及其在特定领域(如与能量存储和收集有关的材料,物理和化学)的实际应用之间的差距。 电动力学的目标:简介不仅要教授电磁学,而且还介绍一些数学工具,这些工具可以用来解决该主题中的问题。在这些讲义中,我们回顾了矢量演算,并说明了如何使用字段来可视化我们涵盖的主题。本课程是动态的,因为讲课不断地建立在以前的笔记上,并且针对每种解决方案提供了各种说明。由于这是一门较低级别的课程,因此我们将重点介绍静电的简单概念。这在探索分子间力和电容器质量方面有应用。通过这种方式,我们将电磁学与更常规研究的主题相关联,并将其应用于与能量存储和收集有关的特定研究主题。

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