This is completed downloadable of Electric Machines Principles Applications and Control Schematics 2nd Edition Dino Zorbas Solutions Manual
Product Details:
- ISBN-10 : 1133628516
- ISBN-13 : 978-1133628514
- Author: Dino Zorbas
Designed to serve as a textbook for a single semester undergraduate course on electromechanical energy conversion devices or electric machines, ELECTRIC MACHINES strikes a balance between theoretical coverage, easy explanations, and practical applications, presenting real world applications of concepts without compromising on the rigor or the continuity of the text. The book provides excellent readability, in a conversational style, combined with invaluable industry insight. The accompanying website provides problems solved in MATLAB, SPICE simulations, manufacturing data, as well as additional problems for students and instructors.
Table of Content:
Ch 1: Basic Electromagnetic Concepts……Page 17
1.1: Electric Circuit Concepts……Page 19
1.2: Magnetic Circuit Concepts……Page 80
1.3: Force, Energy, and Torque……Page 141
1.4: Summary……Page 151
1.6: Problems……Page 159
Ch 2: Transformers……Page 167
2.0: Introduction……Page 169
2.1: Single-Phase Transformers……Page 170
2.2: Three-Phase, Two-Winding Transformers……Page 204
2.3: Autotransformers……Page 227
2.4: Parallel Operation of Transformers……Page 235
2.5: Instrument Transformers and Wiring Diagrams……Page 241
2.6: Transformer’s Nameplate Data……Page 252
2.7: Conclusion……Page 254
2.8: Summary……Page 255
2.9: Review Questions……Page 259
2.10: Problems……Page 260
Ch 3: Three-Phase Induction Machines……Page 265
3.1: Three-Phase Induction Motors……Page 267
3.2: Industrial Considerations……Page 293
3.3: Measurement of Equivalent-Circuit Parameters……Page 306
3.4: Asynchronous Generators……Page 314
3.5: Controls……Page 318
3.6: Conclusion……Page 335
3.7: Tables……Page 336
3.8: Review Questions……Page 340
3.9: Problems……Page 341
Ch 4: Single-Phase Motors……Page 347
4.0: Introduction……Page 348
4.1: Revolving Fields……Page 349
4.2: Equivalent Circuit……Page 350
4.3: Torque Developed……Page 351
4.4: Methods of Starting……Page 353
4.5: Magnetic Fields at Starting……Page 357
4.6: Types of I-o Motors……Page 361
4.7: Conclusion……Page 366
4.8: Problems……Page 367
Ch 5: Synchronous Machines……Page 369
5.0: Three-Phase Synchronous Machines……Page 370
5.1: Three-Phase Cylindrical Rotor Machines: Motors……Page 371
5.2: Three-Phase Cylindrical Rotor Machines: Generators……Page 405
5.3: Salient-Pole Synchronous Machines……Page 421
5.4: Conclusion……Page 432
5.5: Review of Important Mathematical Relationships……Page 434
5.6: Manufacturer’s Data……Page 436
5.8: Problems……Page 438
Ch 6: DC Machines……Page 441
6.0: Introduction……Page 442
6.1: Steady-State Analysis……Page 443
6.2: Modern Methods of Speed Control……Page 493
6.3: Conclusion……Page 505
6.5: Problems……Page 509
Ch 7: Control Schematics……Page 513
7.0: Introduction……Page 514
7.1: Basic Devices and Symbols……Page 515
7.2: The Concept of Protection……Page 528
7.3: Actual Control Schematics……Page 535
7.4: Conclusion……Page 546
7.6: Problems……Page 549
Ch 8: Electrical Safety and Reduction in Energy Consumption……Page 553
8.1: Electrical Safety……Page 555
8.2: Reduction in Energy Consumption……Page 571
Appendixes……Page 577
A: Three-Phase Systems……Page 579
B: Per-Unit System……Page 603
C: Laplace Transforms……Page 613
D: Solid-State Devices……Page 617
E: Basic Economic Considerations……Page 619
F: Photovoltaics……Page 623
G: Tables……Page 627
H: Bibliography……Page 631
Answers to Problems……Page 633
Index……Page 637
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