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⏱ 2h 42m📚 27 lessons🎧 Audio version
Electromagnetic Induction and AC Circuits: Conceptual Analysis
Understand the fundamental principles of changing magnetic fields and alternating current, enabling you to confidently analyze and solve complex RLC circuit problems.
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About this course
Electromagnetic Induction (EMI) and Alternating Current (AC) circuits are foundational concepts in physics and electrical engineering, often posing significant conceptual challenges for new learners. This course provides the rigorous written explanations necessary to build a deep, working understanding.
By the end of this course, you will move beyond simple definitions to master the mathematical tools required for analyzing time-varying fields and dynamic circuits. You will gain the confidence to approach advanced application problems involving complex impedance, resonance, and power delivery in series and parallel RLC networks.
What you'll learn:
* Understand the core laws of induction, including Faraday's Law, Lenz's Law, and the generation of motional electromotive force (EMF).
* Analyze self-inductance and mutual inductance, calculating the energy stored in magnetic fields and the coupling between coils.
* Master the mathematical representation of AC signals, including phase relationships, RMS values, and frequency parameters.
* Apply complex impedance methods and phasor diagrams to determine current and voltage relationships in series and parallel RLC circuits.
* Calculate key circuit parameters such as resonance frequency, bandwidth, and the quality factor (Q-factor).
* Practice solving problems related to power in AC circuits, distinguishing between real power, reactive power, and apparent power.
The course begins with foundational terminology and the physics of changing magnetic flux, transitions into the behavior of individual AC components, and concludes with comprehensive analysis of complex RLC networks and practical power considerations. This course is designed for beginners who have a basic understanding of DC circuits and algebra. No prior experience with advanced calculus is required, but mathematical rigor is emphasized.
Read through the explanations and practice the fundamental techniques to secure your conceptual foundation.
What you'll get
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⚡Short & focused 2h 42m of practical content
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