114 results on '"Holbert, Keith E."'
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2. APPENDIX A: INTRODUCTION TO MATHCAD.
3. CHAPTER 11: INTRODUCTION TO POWER ELECTRONICS AND MOTOR CONTROL: 11.8. APPLICAT ION EXAMPLES.
4. CHAPTER 11: INTRODUCTION TO POWER ELECTRONICS AND MOTOR CONTROL: 11.6. FLEXIBLE AC TRANSMISSION.
5. CHAPTER 11: INTRODUCTION TO POWER ELECTRONICS AND MOTOR CONTROL: 11.4. RECTIFIERS.
6. CHAPTER 11: INTRODUCTION TO POWER ELECTRONICS AND MOTOR CONTROL: 11.3. SEMICON DUCTOR SWITCHES.
7. CHAPTER 11: INTRODUCTION TO POWER ELECTRONICS AND MOTOR CONTROL: 11.7. DC-TO-DC CONVERTERS.
8. CHAPTER 11: INTRODUCTION TO POWER ELECTRONICS AND MOTOR CONTROL: 11.5. INVERTERS.
9. CHAPTER 11: INTRODUCTION TO POWER ELECTRONICS AND MOTOR CONTROL: 11.1. CONCEPT OF DC MOTOR CONTROL.
10. CHAPTER 10: DC MACHINES: 10.6. PROBLEMS.
11. CHAPTER 10: DC MACHINES: 10.4. APPLICATION EXAMPLES.
12. CHAPTER 10: DC MACHINES: 10.3. OPERATION ANALYSES.
13. CHAPTER 10: DC MACHINES: 10.2. OPERATING PRINCIPLE.
14. CHAPTER 10: DC MACHINES: 10.1. CONSTRUCTION.
15. CHAPTER 9: INDUCTION MACHINES: 9.8. PROBLEMS.
16. CHAPTER 9: INDUCTION MACHINES: 9.5. INDUCTION GENERATORS.
17. CHAPTER 9: INDUCTION MACHINES: 9.2. CONSTRUCTION.
18. CHAPTER 9: INDUCTION MACHINES: 9.4. SING LE-PHASE INDUCTION MOTOR.
19. CHAPTER 9: INDUCTION MACHINES: 9.3. THREE-PHASE INDUCTION MOTOR.
20. CHAPTER 3: SINGLE-PHASE CIRCUITS: 3.9. PROBLEMS.
21. CHAPTER 3: SINGLE-PHASE CIRCUITS: 3.6. APPLICATIONS OF SINGLE- PHASE CIRCUIT ANALYSIS.
22. CHAPTER 3: SINGLE-PHASE CIRCUITS: 3.5. BASIC LAWS AND CIRCUIT ANALYSIS TECHNIQUES.
23. CHAPTER 3: SINGLE-PHASE CIRCUITS: 3.4. LOADS.
24. CHAPTER 3: SINGLE-PHASE CIRCUITS: 3.3. IMPEDANCE.
25. CHAPTER 3: SINGLE-PHASE CIRCUITS: 3.1. CIRCUIT ANALYSIS FUNDAMENTALS.
26. CHAPTER 8: SYNCHRONOUS MACHINES: 8.8. PROBLEMS.
27. CHAPTER 8: SYNCHRONOUS MACHINES: 8.6. APPLICATION EXAMPLES.
28. CHAPTER 8: SYNCHRONOUS MACHINES: 8.5. CONCEPT OF GENERATOR PROTECTION.
29. CHAPTER 8: SYNCHRONOUS MACHINES: 8.4. INDUCED VOLTAGE AND ARMATURE REACTANCE CALCULATION.
30. CHAPTER 8: SYNCHRONOUS MACHINES: 8.3. GENERATOR APPLICATION.
31. CHAPTER 8: SYNCHRONOUS MACHINES: 8.2. OPERATING CONCEPT.
32. CHAPTER 8: SYNCHRONOUS MACHINES: 8.1. CONSTRUCTION.
33. CHAPTER 7: TRANSFORMERS: 7.5. PROBLEMS.
34. CHAPTER 7: TRANSFORMERS: 7.3. T HREE-PHASE TRANSFORMERS.
35. CHAPTER 7: TRANSFORMERS: 7.2. SINGLE-PHASE TRANSFORMERS.
36. CHAPTER 7: TRANSFORMERS: 7.1. CONSTRUCTION.
37. CHAPTER 6: ELECTROMECHANICAL ENERGY CONVERSION: 6.8. PROBLEMS.
38. CHAPTER 6: ELECTROMECHANICAL ENERGY CONVERSION: 6.5. A PPLICATIONS.
39. CHAPTER 6: ELECTROMECHANICAL ENERGY CONVERSION: 6.4. CALCULATION OF ELECTRO MAGNETIC FORCES.
40. CHAPTER 6: ELECTROMECHANICAL ENERGY CONVERSION: 6.3. ELECTROMECHANICAL SYSTEM.
41. CHAPTER 6: ELECTROMECHANICAL ENERGY CONVERSION: 6.2. MAGNETIC AND ELECTRIC FIELD GENERATED FORCES.
42. CHAPTER 6: ELECTROMECHANICAL ENERGY CONVERSION: 6.1. MAGNETIC CIRCUITS.
43. CHAPTER 4: THREE-PHASE CIRCUITS: 4.9. APPLICATION EXAMPLES.
44. CHAPTER 4: THREE-PHASE CIRCUITS: 4.8. SYMMETRICAL COMPONENTS.
45. CHAPTER 4: THREE-PHASE CIRCUITS: 4.7. PER-UNIT SYSTEM.
46. CHAPTER 4: THREE-PHASE CIRCUITS: 4.6. THREE-PHASE POWER MEASUREMENT.
47. CHAPTER 4: THREE-PHASE CIRCUITS: 4.5. SUMMARY.
48. CHAPTER 4: THREE-PHASE CIRCUITS: 4.4. DELTA-CONNECTED SYSTEM.
49. CHAPTER 4: THREE-PHASE CIRCUITS: 4.3. WYE-CONNECTED LOADS.
50. CHAPTER 4: THREE-PHASE CIRCUITS: 4.2. WYE-CONNECTED GENERATOR.
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