Electrical Engineering - Chapter 14 Magnetic Coupling

Electrical Engineering - Chapter 14 Magnetic Coupling

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Electrical Engineering: Ch 14 Magnetic Coupling (29 of 55) Finding the Currents I1=?, I2=? Part 1

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Electrical Engineering: Ch 14 Magnetic Coupling (29 of 55) Finding the Currents I1=?, I2=? Part 1

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Electrical Engineering - Chapter 14 Magnetic Coupling

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  1. 1 Electrical Engineering: Ch 14 Magnetic Coupling (1 of 55) What is Magnetic Flux?
  2. 2 Electrical Engineering: Ch 14 Magnetic Coupling (2 of 55) What is Self Induction
  3. 3 Electrical Engineering: Ch 14 Magnetic Coupling (3 of 55) What is Mutual Inductance - Part 1
  4. 4 Electrical Engineering: Ch 14 Magnetic Coupling (4 of 55) What is Mutual Inductance - Part 2
  5. 5 Electrical Engineering: Ch 14 Magnetic Coupling (5 of 55) Mutual Inductance Equal in Both Directio
  6. 6 Electrical Engineering: Ch 14 Magnetic Coupling (6 of 55) Polarity Convention
  7. 7 Electrical Engineering: Ch 14 Magnetic Coupling (7 of 55) Dot Convention for Inductors in Series
  8. 8 Electrical Engineering: Ch 14 Magnetic Coupling (8 of 55) KVL and Mutual Inductance - Part 1
  9. 9 Electrical Engineering: Ch 14 Magnetic Coupling (9 of 55) KVL and Mutual Inductance - Part 2***
  10. 10 Electrical Engineering: Ch 14 Magnetic Coupling (10 of 55) Good Model for Mutual Inductance
  11. 11 Electrical Engineering: Ch 14 Magnetic Coupling (11 of 55) Converting Circuit to Equivalent Model
  12. 12 Electrical Engineering: Ch 14 Magnetic Coupling (12 of 55) Convert Circuit to Equivalent Model: 1
  13. 13 Electrical Engineering: Ch 14 Magnetic Coupling (13 of 55) Convert Circuit to Equivalent Model: 2**
  14. 14 Electrical Engineering: Ch 14 Magnetic Coupling (14 of 55) Voltage Due to Mutual Coupleing: Rules
  15. 15 Electrical Engineering: Ch 14 Magnetic Coupling (15 of 55) Voltage Due to Mutual Coupling: Rules Ex
  16. 16 Electrical Engineering: Ch 14 Magnetic Coupling (16 of 55) Voltage Due to Mutual Coupling: Summary
  17. 17 Electrical Engineering: Ch 14 Magnetic Coupling (17 of 55) Voltage Due to Mutual Coupling: I1=? I2=?
  18. 18 Electrical Engineering: Ch 14 Magnetic Coupling (18 of 55) Voltage Due to Mutual Coupling: Example 2
  19. 19 Electrical Engineering: Ch 14 Magnetic Coupling (19 of 55) Voltage Due to Mutual Coupling: Example 2
  20. 20 Electrical Engineering: Ch 14 Magnetic Coupling (20 of 55) Energy with Mutual Coupling
  21. 21 Electrical Engineering: Ch 14 Magnetic Coupling (21 of 55) Instantaneous Energy with Mutual Coupling
  22. 22 Electrical Engineering: Ch 14 Magnetic Coupling (22 of 55) Series Aiding vs Series Opposing Connect.
  23. 23 Electrical Engineering: Ch 14 Magnetic Coupling (23 of 55) What is Upper Limit of Mutual Inductance?
  24. 24 Electrical Engineering: Ch 14 Magnetic Coupling (24 of 55) What is the Coupling Coefficient?
  25. 25 Electrical Engineering: Ch 14 Magnetic Coupling (25 of 55) The Coupling Coefficient: A Simple Ex.
  26. 26 Electrical Engineering: Ch 14 Magnetic Coupling (26 of 55) Finding the Currents I1=?, I2=? Method 1
  27. 27 Electrical Engineering: Ch 14 Magnetic Coupling (27 of 55) Finding the Currents I1=?, I2=? Method 2
  28. 28 Electrical Engineering: Ch 14 Magnetic Coupling (28 of 55) Finding the Energy E(t=1s)=? Method 1
  29. 29 Electrical Engineering: Ch 14 Magnetic Coupling (29 of 55) Finding the Currents I1=?, I2=? Part 1
  30. 30 Electrical Engineering: Ch 14 Magnetic Coupling (30 of 55) Finding the Currents I1=?, I2=? Part 2
  31. 31 Electrical Engineering: Ch 14 Magnetic Coupling (31 of 55) Finding the Energy E(t=1.5s) Part 3

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