
Master Electrostatics And Capacitor Circuit Analysis
Published 8/2026
Created by Addae Valentine
MP4 |
Video: h264, 1920x1080 |
Audio: AAC, 44.1 KHz, 2 Ch
Level: Intermediate |
Genre: eLearning |
Language: English |
Duration: 10 Lectures ( 2h 43m ) |
Size: 1.4 GB
Master Electrostatics & Capacitors: Coulomb's Law, Electric Fields and Capacitance
What you'll learn
⚡ Explain the fundamental principles of electrostatics and electric charge.
⚡ Apply Coulomb's Law to calculate forces between electric charges.
⚡ Calculate electric field strength around point charges.
⚡ Explain the construction and operation of capacitors.
⚡ Calculate capacitance, charge and potential difference.
⚡ Analyze parallel-plate capacitors.
⚡ Determine the effect of plate area, separation and dielectric materials on capacitance.
⚡ Solve capacitor circuits connected in series and parallel.
⚡ Calculate equivalent capacitance in capacitor networks.
⚡ Solve examination-style electrostatics and capacitance problems.
⚡ Calculate the energy stored in charged capacitors.
⚡ Apply electrostatic and capacitor principles to practical electrical and electronic systems.
Requirements
❗ Basic mathematics knowledge
❗ Ability to perform simple algebra
❗ Basic understanding of electrical quantities is helpful but not compulsory
❗ A calculator for numerical exercises
❗ Interest in electrical engineering, electronics or physics
Description
Build a strong understanding of
electrostatics, electric fields, capacitors and capacitance through a practical, problem-solving approach.
This course is designed to take learners from the fundamental concept of electric charge through to the analysis of capacitor circuits and electrical energy storage. Rather than simply presenting equations, the lessons explain what the equations mean, when they should be used, and how to apply them correctly to engineering and examination problems.
You will begin with the fundamentals of electrostatics before studying
Coulomb's Law and learning how to calculate the attractive or repulsive forces between electric charges. You will then explore
electric field strength and understand how charged objects influence the space around them.
The second part of the course focuses extensively on
capacitors and capacitance. You will study the construction and operation of capacitors, parallel-plate capacitors, dielectric materials and the major factors that determine capacitance.
You will then learn how to analyze
capacitors connected in series and parallel, calculate equivalent capacitance, determine charge and voltage relationships, and solve increasingly challenging numerical problems.
The course concludes with examination-style questions and a detailed study of the
energy stored in charged capacitors.
Worked examples and step-by-step calculations are incorporated throughout the course to help you develop the analytical skills required to confidently solve electrostatics and capacitor problems.
Whether you are studying electrical engineering, electronics, physics or a related technical discipline, this course provides a structured foundation that can support both your academic studies and further technical training.ectrical engineering studies and professional development.
Who this course is for
⭐ Beginners who want to build a strong foundation in applied electricity and electrical circuit analysis.
⭐ Electrical and electronic engineering students seeking clearer understanding of circuit theory and practical applications.
⭐ Aspiring electrical technicians and electricians preparing for technical careers.
⭐ Industry professionals who want to refresh or strengthen their knowledge of electrical principles.
⭐ Anyone interested in learning how electrical circuits work in real-world industrial, commercial, and residential environments.
⭐ Self-learners looking for structured, practical training in applied electricity.
Homepage
Код:
https://www.udemy.com/course/master-electrostatics-and-capacitor-circuit-analysis