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Скачать или смотреть 2.18: How to Use Ohm's Law and Kirchhoff's Law in Circuit Analysis | Electric Circuits By Nilsson

  • Engineering Tutor
  • 2025-09-09
  • 243
2.18: How to Use Ohm's Law and Kirchhoff's Law in Circuit Analysis | Electric Circuits By Nilsson
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Описание к видео 2.18: How to Use Ohm's Law and Kirchhoff's Law in Circuit Analysis | Electric Circuits By Nilsson

Welcome back, engineers and circuit enthusiasts!
In this video, we tackle *Problem 2.18 from *Chapter 2* of **Electric Circuits by James W. Nilsson & Susan A. Riedel**, one of the most renowned textbooks in circuit analysis. We discussed the conditions for absorbing or developing sources and found out the nature of sources.

🎯 *What you'll learn in this video:*
• How to apply ohm's law and Kirchhoff's laws (KVL, KVL) to determine the unknown electric quantities in a circuit.
• How to determine the value of power developed (by source) and dissipated in a circuit elements (resistors).

📚 *Book Reference:*
Nilsson, J.W. & Riedel, S.A., *Electric Circuits*, 10th–12th editions (Pearson), widely used in engineering programs.

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*Why You Should Watch:*
Nail your *circuit theory* homework with clarity
Understand essential concepts like *power analysis**, **source interconnection validity**, and **KVL/KCL* in a visual, step-by-step breakdown
Essential viewing for students in *Introductory Circuit Analysis**, **EE**, and **ECE* courses


Thanks for watching! If this helped you crush your circuit analysis homework—or gave you that “aha!” moment—be sure to **hit like**, **subscribe**, and ring that **notification bell**. Drop any questions or suggestions in the comments below—I'm here to help you master circuits!

Stay tuned for more walkthroughs from *Electric Circuits by Nilsson & Riedel*, and happy analysing! ⚡🔋


Thank you for visiting the channel. This channel is all about the latest trends and concepts related to the problems a student encounter while studying Electrical and Computer Engineering.

We are specialized in covering the material related to Electrical and Electronics Circuit Analysis, Artificial Intelligence, Probability and Statistics, Data Science, Machine Learning, and Deep Learning, to name a few.
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Happy Learning :-)

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