A comprehensive manual covering all significant aspects of the field, emphasing basic explanations of motor behaviour, deriving important equations and relationships required to analyze, design and apply polyphase induction motors and shows how to apply working equations to real-life situations with examples.
A comprehensive manual covering all significant aspects of the field, emphasing basic explanations of motor behaviour, deriving important equations and relationships required to analyze, design and apply polyphase induction motors and shows how to apply working equations to real-life situations with examples.
INTRODUCTION 2 AMPERE'S LAW AND FARADAY'S LAW 3 MOTOR ACTION 4 BACKGROUND OF THE EQUIVALENT CIRCUIT 5 ANALYSIS OF THE EQUIVALENT CIRCUIT 6 THE SIMPLIFIED EQUIVALENT CIRCUIT 7 THE VECTOR DIAGRAM 8 THE CIRCLE DIAGRAM 9 sTAOR WINDINGS 10 ROTOR WINDINGS 11 DIELECTRICS AND INSULATION 12 MAGNETOMOTIVE FORCES ACTING ACROSS THE AIR GAP 13 REACTANCE 14 THE MAGNETIC CIRCUIT 15 APPLICATION OF INDUCTION MOTORS LIST OF SYMBOLS.
INTRODUCTION 2 AMPERE'S LAW AND FARADAY'S LAW 3 MOTOR ACTION 4 BACKGROUND OF THE EQUIVALENT CIRCUIT 5 ANALYSIS OF THE EQUIVALENT CIRCUIT 6 THE SIMPLIFIED EQUIVALENT CIRCUIT 7 THE VECTOR DIAGRAM 8 THE CIRCLE DIAGRAM 9 sTAOR WINDINGS 10 ROTOR WINDINGS 11 DIELECTRICS AND INSULATION 12 MAGNETOMOTIVE FORCES ACTING ACROSS THE AIR GAP 13 REACTANCE 14 THE MAGNETIC CIRCUIT 15 APPLICATION OF INDUCTION MOTORS LIST OF SYMBOLS.
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