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Lecture
Induction Motor: Torque Calculation
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Induction Motors: Operating Principles
Explores the operating principles of induction motors, focusing on torque characteristics, starting methods, and power balance.
Noise in Two-port Networks
Covers the analysis of noise in two-port networks, Y-parameters, substrate resistance extraction, and the noise factor.
Characteristics of Torque in Induction Motors
Explores the torque characteristics of induction motors and their operational principles.
Calculation of Short-Circuit Currents
Explores the calculation of short-circuit currents in electrical networks, emphasizing symmetrical systems and nodal impedances.
Electric Machines: Asynchronous Machine Principles
Explains the principles and functioning of asynchronous machines, focusing on their structure, operation, and key concepts like slip and torque generation.
Step Response of RLC Circuits and Quadrupoles
Analyzes the step response of RLC circuits and introduces the concept of quadrupoles.
DC Motors: Excitation and Induced Voltage
Covers the principles of DC motors, excitation types, induced voltage equations, power balance, and operating modes.
Balancing and Shielding in Electronic Circuits
Explores non-ideal components, filters, impedance parameters, and shielding methods in electronic circuits.
Circuit Analysis: Thevenin and Norton Theorems
Explores circuit analysis using Thevenin and Norton theorems to simplify complex circuits for analysis.
Equations of a Motor: Parameter Relationship and Elimination
Explains the relationship between parameters in motor equations and how to eliminate them.