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#2
 
 
Re: APGENCO AE Syllabus EEE
As you are looking for the APGENCO AE syllabus for EEE, here I am providing you the syllabus: APGENCO AE syllabus for EEE: 1. Electrical Circuits and Networks: Kirchoff.s laws, mesh and node analysis, network theorems, sinusoidal steady state analysis of single phase and three phase circuits, resonance, transient response of RL,RC,RLC circuits for different inputs, toport networks, Two element network synthesis. 2. Control Systems: Modeling of physical systems, Block diagrams and signal flow graphs, Time and frequency domain analysis, Steady state errors, Routh.s criterion, Nyquist and Bode plots, compensation, root loci, elementary ideas of state variable analysis, control systems components. 3. Measurements and Instrumentation: SI units, measurement of current, voltage, power, powerfactor and energy, Measurement of resistance, inductance capacitance and frequencybridge methods, transducers and their applications to the measurement of nonelectrical quantities like temperature, pressure, strain, displacement etc., cathode ray oscilloscope. 4. Analog and Digital Electronics: Characteristics of diodes, BJT, FET,SCR, Amplifier biasing, equivalent circuits, frequency response, feedback amplifiers, power amplifiers, oscillators, operational amplifiers and applications, wave shaping circuits, multivibrators, flipflops, universal gate combinational circuits, A/D and D/A converters. 5. Electrical Machines and power Electronic Drives: Single phase transformer, equivalent circuit, tests, regulation and efficiency, three phase transformer connections parallel operation, auto transformer, principle of energy conversion, winding of rotating machines, DC generators and motors, characteristics, starting and speed control, three phase induction motors performance characteristics, starting and speed control, single phase induction motors, synchronous generators, performance, regulation, parallel operation, synchronous motors, starting characteristics and applications, synchronous condensers, fractional horse power motors, permanent magnet and stepper motors, Characteristics of Power Electronic devices, phase control, bridge converters, choppers and inverters, basic concepts of adjustable speed drives. 6. Power Systems: Electrical power generation thermal, hydro, nuclear : transmission line parameters; steady state performance of overhead transmission lines and cables, surge propagation, distribution systems, insulators, bundle conductors, corona, and radio interference effects; perunit quantities: bus admittance and impedance matrices: load flow: voltage control and power factor correction; economic operation, symmetrical components, analysis of symmetrical and unsymmetrical faults; principles of over current, differential and distance protections, circuit breaker, concept of system stability, swing curves and equal area criterion. 
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#7
 
 
Re: APGENCO AE Syllabus EEE
As you want to get APGENCO AE Syllabus EEE for doing preparation so here I am giving you same: Qualifying Marks for this exam: Section A: Questions on core academic curriculum of respective discipline. The syllabus for the examination is shown in the Annexure. Section B: Questions on analytical aptitude. The minimum qualifying marks in the written test shall be for OCs 40% BCs 35%, SCs, STs and physically challenged 30%. Syllabus: 1. ELECTRICAL CIRCUITS AND NETWORKS: Kirchhoff’s laws, mesh and node analysis, network theorems, sinusoidal steady state analysis of single phase and three phase circuits, resonance, transient response of RL, RC, RLC circuits for different inputs, twoport networks, Two element network synthesis. 2. CONTROL SYSTEMS: Modelling of physical systems, Block diagrams and signal flow graphs, Time and frequency domain analysis, Steady state errors, Routh’s criterion, Nyquist and Bode plots, compensation, root loci, elementary ideas of state variable analysis, control system components . 3. MEASUREMENTS AND INSTRUMENTATION: SI units, measurement of current, voltage, power, powerfactor and energy, Measurement of resistance, inductance, capacitance and frequencybridge methods, transducers and their applications to the measurement of nonelectrical quantities like temperature, pressure, strain, displacement etc., cathode ray oscilloscope. 4. ANALOG AND DIGITAL ELECTRONICS: Characteristics of diodes, BJT, FET, SCR, Amplifier biasing, equivalent circuits, frequency response, feedback amplifiers, power amplifiers, oscillators ,operational amplifiers and applications, wave shaping circuits, multivibrators, flipflops, universal gates, combinational circuits, A/D and D/A converters . 5. ELECTRICAL MACHINES AND POWER ELECTRONIC DRIVES: Single phase transformer; equivalent circuit, tests, regulation and efficiency, three phase transformer connections parallel operation, auto transformer, principle of energy conversion, windings of rotating machines, DC generators and motors, characteristics, starting and speed control, three phase induction motors performance characteristics, starting and speed control, single phase induction motors, synchronous generators, performance, regulation, parallel operation, synchronous motors, starting characteristics and applications, synchronous condensers, fractional horse power motors, permanent magnet and stepper motors, Characteristics of Power electronic devices, phase control, bridge converters, choppers and inverters, basic concepts of adjustable speed drives. 6. POWER SYSTEMS: Electrical power generation thermal, hydro, nuclear: transmission line parameters; steady state performance of overhead transmission lines and cables, surge propagation, distribution systems, insulators, bundle conductors, corona, and radio interference effects; perunit quantities: bus admittance and impedance matrices: load flow: voltage control and power factor correction; economic operation, symmetrical components, analysis of symmetrical and unsymmetrical faults; principles of over current, differential and distance protections, circuit breakers, concept of system stability, swing curves and equal area criterion. 
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