CGPSC AE Syllabus 2026: Complete Civil, Mechanical & Electrical Engineering Syllabus

CGPSC AE Syllabus 2026: Complete Civil, Mechanical & Electrical Engineering Syllabus and Exam Pattern

Download and understand the complete CGPSC Assistant Engineer Syllabus 2026 for Civil Engineering, Mechanical Engineering, and Electrical Engineering. Check the latest exam pattern, subject-wise syllabus, important topics, preparation strategy, and unit-wise breakdown for the State Engineering Service Examination.

CGPSC AE Syllabus 2026 Overview

The Chhattisgarh Public Service Commission (CGPSC) conducts the State Engineering Service Examination for recruitment to Assistant Engineer posts in various government departments. The examination evaluates candidates on General Studies as well as technical engineering subjects according to their respective engineering discipline.

Conducting BodyChhattisgarh Public Service Commission (CGPSC)
Exam NameState Engineering Service Examination 2026
Post NameAssistant Engineer (AE)
Engineering StreamsCivil, Mechanical, Electrical
Selection ProcessWritten Examination + Interview
Exam ModeOffline

CGPSC AE Exam Pattern 2026

Before beginning preparation, candidates should understand the structure of the examination. The written examination consists of two papers. The first paper evaluates General Studies and the second paper tests engineering knowledge according to the candidate’s discipline.

PaperSubject
Paper 1General Studies
Paper 2Engineering Discipline

CGPSC AE General Studies Syllabus 2026

The General Studies section is designed to assess a candidate’s awareness of national issues, state-specific knowledge, governance, science, economy, and current affairs. Candidates preparing for CGPSC AE should not ignore this section because it plays an important role in the overall examination.

History of India

  • Ancient Indian History
  • Indus Valley Civilization
  • Vedic Period
  • Mauryan Empire
  • Gupta Empire
  • Medieval India
  • Mughal Administration
  • British Rule in India
  • Indian Freedom Movement
  • National Leaders

Indian Constitution and Polity

  • Preamble
  • Fundamental Rights
  • Directive Principles
  • Fundamental Duties
  • Parliament
  • President
  • Prime Minister
  • Judiciary
  • Constitutional Bodies
  • Local Government

Geography

  • Physical Geography
  • Indian Geography
  • Chhattisgarh Geography
  • Climate
  • Soils
  • Mineral Resources
  • Natural Resources
  • Agriculture

Economy

  • Indian Economy
  • Economic Planning
  • Banking System
  • Budget
  • Inflation
  • Poverty
  • Government Schemes

Science and Technology

  • Physics Basics
  • Chemistry Basics
  • Biology Basics
  • Space Technology
  • Information Technology
  • Environmental Science

Current Affairs

  • National Events
  • International Events
  • Government Reports
  • Economic Developments
  • Sports
  • Awards and Honours
  • Important Days

Mental Ability and Data Analysis

  • Logical Reasoning
  • Analytical Ability
  • Numerical Aptitude
  • Data Interpretation
  • Intelligence Testing

CGPSC AE Civil Engineering Syllabus 2026

Civil Engineering forms the largest portion of vacancies in CGPSC Assistant Engineer recruitment. The syllabus covers core engineering subjects from undergraduate level and requires conceptual as well as numerical preparation.

Unit 1: Solid Mechanics

Solid Mechanics is one of the most important subjects in Civil Engineering. It develops the foundation required for Structural Analysis, RCC Design, Steel Design, and Geotechnical Engineering.

Topics Included

  • Units and Dimensions
  • First Moment of Area
  • Second Moment of Area
  • Mass Moment of Inertia
  • Concept of Forces
  • Free Body Diagram
  • Static Equilibrium Conditions
  • Principle of Virtual Work
  • Elastic Constants
  • Young’s Modulus
  • Bulk Modulus
  • Shear Modulus
  • Poisson Ratio
  • Stress and Strain
  • Plane Stress
  • Plane Strain
  • Mohr’s Circle of Stress
  • Mohr’s Circle of Strain
  • Combined Stresses
  • Theories of Failure
  • Bending Moment Diagram
  • Shear Force Diagram
  • Bending Stress Distribution
  • Shear Stress Distribution
  • Torsion of Circular Sections
  • Torsion of Rectangular Sections
  • Unsymmetrical Bending
  • Beams of Uniform Strength
  • Elastic Stability of Columns
  • Euler Column Theory
  • Rankine Formula
  • Secant Formula

Unit 2: Structural Analysis

Structural Analysis deals with the behaviour of engineering structures under external loading. Questions are regularly asked from indeterminate structures, influence lines, and matrix methods.

Topics Included

  • Determinate Structures
  • Deflection Calculation
  • Macaulay Method
  • Moment Area Theorem
  • Conjugate Beam Method
  • Unit Load Method
  • Simple Plane Trusses
  • Deflection in Trusses
  • Degree of Indeterminacy
  • Castigliano Theorem I
  • Castigliano Theorem II
  • Consistent Deformation Method
  • Moment Distribution Method
  • Slope Deflection Method
  • Kani Method
  • Column Analogy Method
  • Stiffness Matrix Method
  • Flexibility Matrix Method
  • Rolling Loads
  • Influence Line Diagrams
  • Influence Lines for Determinate Structures
  • Influence Lines for Indeterminate Structures

Unit 3: RCC and Prestressed Concrete Structures

This unit focuses on reinforced concrete and prestressed concrete design concepts according to modern design philosophy.

Topics Included

  • Limit State Design
  • Bending Design
  • Shear Design
  • Axial Compression Design
  • Combined Forces
  • Codal Provisions
  • Design of Slabs
  • Design of Beams
  • Design of Walls
  • Design of Staircases
  • Design of Footings
  • Working Stress Method
  • Design of RCC Members
  • Cantilever Retaining Wall
  • Counterfort Retaining Wall
  • RCC Slab Bridge Design
  • RCC Beam Bridge Design
  • Prestressed Concrete Principles
  • Prestressing Materials
  • Methods of Prestressing
  • Losses in Prestressing
  • Design of Prestressed Members
  • Design of Determinate Structures

Unit 4: Design of Steel Structures

Steel Structure Design is an important subject that evaluates a candidate’s understanding of steel members, connections, girders, foundations, and modern plastic analysis methods. Questions are often asked from design concepts, load factors, welded joints, and steel bridge components.

Topics Covered in Steel Structures

  • Factor of Safety
  • Load Factors
  • Design of Steel Tension Members
  • Design of Steel Compression Members
  • Design of Rolled Steel Sections
  • Design of Built-Up Steel Sections
  • Design of Steel Beams
  • Design of Steel Columns
  • Simple Riveted Connections
  • Welded Connections
  • Design of Base Plates
  • Grillage Foundation Design
  • Design of Plate Girders
  • Design of Gantry Girders
  • Plastic Design of Beams
  • Plastic Design of Frames
  • Theory of Plastic Bending
  • Plastic Analysis Methods
  • Static Method of Plastic Analysis
  • Mechanism Method of Plastic Analysis
  • Introduction to Steel Bridge Design
Exam Importance

Focus especially on steel tension members, compression members, welded joints, plate girders, and plastic analysis concepts. Numerical questions frequently appear from these topics.

Unit 5: Building Materials, Construction Practices, Planning and Management

This unit covers construction materials, concrete technology, building planning principles, project management concepts, and modern construction practices. It is one of the scoring sections of the Civil Engineering syllabus.

Building Materials Topics

  • Aggregates
  • Types of Aggregates
  • Classification of Aggregates
  • Properties of Aggregates
  • Bricks
  • Types of Bricks
  • Classification of Bricks
  • Manufacturing of Bricks
  • Testing of Bricks
  • Cement
  • Types of Cement
  • Cement Manufacturing Process
  • Standard Tests on Cement
  • BIS Specifications

Cement Mortar

  • Ingredients of Mortar
  • Mortar Proportions
  • Mortar for Plastering
  • Mortar for Masonry

Concrete Technology

  • Concrete Ingredients
  • Water Cement Ratio
  • Workability of Concrete
  • Fresh Concrete Tests
  • Hardened Concrete Tests
  • Concrete Admixtures
  • Concrete Mix Design

Building Planning

  • Building Planning Principles
  • Preparation of Drawings
  • Orientation of Buildings
  • Building Circulation
  • Lighting Requirements
  • Ventilation Requirements

Civil Engineering Part-II Syllabus

Unit 1: Water Resources Engineering

Water Resources Engineering includes hydrology, irrigation engineering, canal design, hydraulic structures, groundwater management, and river engineering concepts.

Hydrology Topics

  • Hydrologic Cycle
  • Precipitation
  • Evaporation
  • Infiltration
  • Runoff
  • Hydrographs
  • Flood Routing
  • Groundwater Hydrology

Irrigation Engineering Topics

  • Irrigation Methods
  • Crop Water Requirement
  • Duty of Water
  • Delta
  • Canal Irrigation
  • Reservoir Planning

Canal Design Topics

  • Canal Classification
  • Canal Alignment
  • Design of Unlined Canals
  • Kennedy Theory
  • Lacey Theory
  • Design of Lined Canals

Hydraulic Structures

  • Bligh Theory
  • Khosla Theory
  • Weirs
  • Barrages
  • Head Regulators
  • Cross Regulators
  • Canal Falls
  • Cross Drainage Works

Water Logging

  • Causes of Water Logging
  • Effects of Water Logging
  • Remedial Measures

Unit 2: Environmental Engineering

Water Supply Engineering

  • Surface Water Resources
  • Ground Water Resources
  • Water Quality Parameters
  • Water Demand Estimation
  • Population Forecasting
  • Intake Structures
  • Water Conveyance Systems
  • Pipe Materials
  • Pumps
  • Pumping Stations

Water Treatment

  • Sedimentation
  • Coagulation
  • Filtration
  • Disinfection
  • Aeration
  • Water Softening
  • Fluoride Treatment
  • Iron Removal Treatment

Sewerage Engineering

  • Sewer Collection Systems
  • Sewer Design
  • Sewerage Systems
  • Sewage Characteristics
  • Sewage Pumping

Wastewater Treatment

  • Aerobic Treatment
  • Anaerobic Treatment
  • Sludge Disposal
  • Stream Rejuvenation
  • Industrial Wastewater Management

Solid Waste Management

  • Solid Waste Collection
  • Solid Waste Disposal
  • Recycling
  • Waste Management Systems

Pollution Control

  • Air Pollution
  • Noise Pollution
  • Environmental Monitoring
  • Environmental Impact Assessment
  • Ecological Balance

Unit 3: Geotechnical Engineering

  • Physical Properties of Soil
  • Index Properties
  • Soil Classification
  • Soil Structure
  • Clay Mineralogy
  • Permeability
  • Capillarity
  • Seepage Analysis
  • Flow Nets
  • Stress Distribution in Soil
  • Compaction
  • Compressibility
  • Consolidation
  • Shear Strength
  • Soil Failure
  • Laboratory Soil Testing
  • In-Situ Soil Testing
  • Earth Pressure
  • Retaining Walls
  • Slope Stability
  • Site Investigation
  • Soil Exploration
  • Samplers
  • Bearing Capacity
  • Settlement Analysis
  • Load Tests
  • Penetration Tests
  • Shallow Foundations
  • Deep Foundations
  • Piles
  • Caissons
  • Coffer Dams
  • Machine Foundations
  • Engineering Classification of Rocks
  • Dam Foundations
  • Bridge Foundations

Unit 4: Surveying

  • Chain Surveying
  • Compass Surveying
  • Plane Table Surveying
  • Theodolite Traversing
  • Tacheometric Surveying
  • Trigonometric Levelling
  • Contours
  • Methods of Contouring
  • Curves
  • Triangulation
  • Geodetic Adjustment
  • Theory of Errors
  • Aerial Photogrammetry
  • Cadastral Survey
  • GIS Applications
  • Remote Sensing
  • Total Station
  • Electronic Distance Measurement (EDM)
  • Global Positioning System (GPS)
  • Hydrographic Surveying
  • Soundings
  • Survey Computations
  • Plotting Methods

Unit 5: Transportation Engineering

  • Highway Planning
  • Highway Alignment
  • Geometric Design of Highways
  • Horizontal Curves
  • Vertical Curves
  • Grade Separation
  • Road Construction Materials
  • Flexible Pavement Design
  • Rigid Pavement Design
  • Pavement Construction
  • Highway Drainage
  • Pavement Evaluation
  • Pavement Strengthening
  • Traffic Surveys
  • Traffic Intersections
  • Traffic Signalling
  • Mass Transit Systems
  • Transportation Networking
  • Railway Engineering
  • Railway Gauges
  • Track Design
  • Railway Controls
  • Rolling Stock
  • Tractive Power
  • Track Modernisation
  • Airport Engineering
  • Airport Layout
  • Runway Design
  • Taxiway Design
  • Airport Drainage
  • Air Traffic Control
  • Helipads
  • Hangars
  • Airport Service Equipment

CGPSC AE Mechanical Engineering Syllabus 2026

The Mechanical Engineering syllabus for the CGPSC Assistant Engineer Examination is designed to evaluate a candidate’s understanding of fundamental and advanced engineering concepts. The syllabus covers Engineering Mechanics, Strength of Materials, Theory of Machines, Machine Design, Production Engineering, Industrial Engineering, Thermodynamics, Fluid Mechanics, Fluid Machinery, Heat Transfer, Refrigeration, Air Conditioning, and Energy Engineering.

Candidates preparing for the CGPSC Assistant Engineer Mechanical Engineering paper should focus on conceptual understanding, engineering applications, numerical problem-solving, and practical engineering principles. Most questions are based on standard undergraduate Mechanical Engineering subjects.

Mechanical Engineering Part-I

Unit 1: Engineering Mechanics and Strength of Materials

This unit forms the foundation of Mechanical Engineering and focuses on force systems, equilibrium, stress analysis, deformation, and strength calculations of engineering components.

Engineering Mechanics Topics

  • Force Systems
  • Resultant of Forces
  • Equilibrium of Coplanar Forces
  • Equilibrium of Non-Coplanar Forces
  • Free Body Diagrams
  • Friction
  • Laws of Friction
  • Centroid of Plane Areas
  • Centre of Gravity
  • Moment of Inertia
  • Radius of Gyration
  • Simple Lifting Machines
  • Virtual Work Method
  • Trusses
  • Frames

Strength of Materials Topics

  • Stress and Strain
  • Elastic Constants
  • Hooke’s Law
  • Principal Stresses
  • Principal Strains
  • Mohr’s Circle
  • Thermal Stresses
  • Shear Force and Bending Moment
  • Bending Stresses
  • Beam Deflection
  • Torsion of Circular Shafts
  • Helical Springs
  • Leaf Springs
  • Columns and Struts
  • Euler Theory
  • Rankine Theory
  • Thin Cylinders
  • Thick Cylinders
  • Pressure Vessels

Unit 2: Theory of Machines

Theory of Machines deals with mechanisms, machine motion, power transmission systems, balancing, governors, flywheels, and vibrations.

Topics Included

  • Kinematics of Machines
  • Kinematic Links
  • Kinematic Pairs
  • Kinematic Chains
  • Mechanisms
  • Velocity Analysis
  • Acceleration Analysis
  • Cams and Followers
  • Gear Terminology
  • Simple Gear Trains
  • Compound Gear Trains
  • Epicyclic Gear Trains
  • Governors
  • Watt Governor
  • Porter Governor
  • Proell Governor
  • Hartnell Governor
  • Flywheels
  • Balancing of Rotating Masses
  • Balancing of Reciprocating Masses
  • Brakes
  • Clutches
  • Gyroscopic Motion
  • Mechanical Vibrations
  • Free Vibrations
  • Forced Vibrations
  • Damped Vibrations
  • Critical Speed

Unit 3: Machine Design

Machine Design focuses on designing safe and reliable machine components subjected to static and dynamic loads.

Topics Included

  • Design Philosophy
  • Factor of Safety
  • Static Loading
  • Dynamic Loading
  • Fatigue Loading
  • Stress Concentration
  • Theories of Failure
  • Soderberg Criterion
  • Goodman Criterion
  • Gerber Criterion
  • Design of Shafts
  • Design of Couplings
  • Design of Keys
  • Design of Fasteners
  • Design of Power Screws
  • Rolling Contact Bearings
  • Sliding Contact Bearings
  • Spur Gear Design
  • Helical Gear Design
  • Worm Gear Design

Unit 4: Production Engineering

Manufacturing Processes

  • Engineering Materials
  • Material Properties
  • Heat Treatment
  • Annealing
  • Normalizing
  • Hardening
  • Tempering
  • Casting Processes
  • Pattern Design
  • Moulding
  • Forging
  • Rolling
  • Extrusion
  • Drawing

Metal Cutting and Machining

  • Tool Geometry
  • Tool Wear
  • Tool Life
  • Merchant Theory
  • Orthogonal Cutting
  • Machining Economics

Advanced Manufacturing Processes

  • EDM
  • ECM
  • USM
  • LBM
  • AJM
  • Powder Metallurgy

Joining Processes

  • Gas Welding
  • Arc Welding
  • Resistance Welding
  • Soldering
  • Brazing

Unit 5: Industrial Engineering

  • Work Study
  • Method Study
  • Time Study
  • Production Planning
  • Production Control
  • Forecasting
  • Inventory Management
  • ABC Analysis
  • EOQ
  • PERT
  • CPM
  • Linear Programming
  • Transportation Models
  • Assignment Problems
  • Queuing Theory
  • Quality Control
  • Control Charts
  • Acceptance Sampling
  • Total Quality Management
  • Reliability Engineering

Mechanical Engineering Part-II

Unit 6: Engineering Thermodynamics

  • Basic Concepts of Thermodynamics
  • Properties of Pure Substances
  • Zeroth Law of Thermodynamics
  • First Law of Thermodynamics
  • Second Law of Thermodynamics
  • Entropy
  • Availability
  • Irreversibility
  • Thermodynamic Cycles
  • Carnot Cycle
  • Otto Cycle
  • Diesel Cycle
  • Dual Cycle
  • Rankine Cycle
  • Brayton Cycle
  • Steam Generators
  • Boilers
  • IC Engines
  • Combustion
  • Supercharging
  • Gas Turbines
  • Jet Propulsion
  • Rocket Propulsion

Unit 7: Fluid Mechanics

Fluid Mechanics deals with the behavior of fluids at rest and in motion. This unit is fundamental for understanding hydraulic machines, pipe flow systems, irrigation structures, pumps, turbines, and various industrial applications.

Fluid Properties

  • Mass Density
  • Specific Weight
  • Specific Gravity
  • Viscosity
  • Kinematic Viscosity
  • Surface Tension
  • Capillarity
  • Compressibility
  • Vapour Pressure

Fluid Statics

  • Pressure Measurement
  • Manometers
  • Hydrostatic Forces
  • Buoyancy
  • Floatation
  • Stability of Floating Bodies
  • Metacentric Height

Fluid Kinematics

  • Types of Fluid Flow
  • Streamline Flow
  • Turbulent Flow
  • Steady Flow
  • Unsteady Flow
  • Rotational Flow
  • Irrotational Flow
  • Velocity Potential
  • Stream Function

Fluid Dynamics

  • Bernoulli Equation
  • Euler Equation
  • Momentum Principle
  • Energy Equation
  • Impulse-Momentum Equation

Flow Through Pipes

  • Major Losses
  • Minor Losses
  • Darcy-Weisbach Equation
  • Hydraulic Gradient Line
  • Energy Gradient Line
  • Pipe Networks
  • Water Hammer

Boundary Layer Theory

  • Boundary Layer Formation
  • Laminar Boundary Layer
  • Turbulent Boundary Layer
  • Boundary Layer Separation
  • Drag Force
  • Lift Force

Dimensional Analysis

  • Rayleigh Method
  • Buckingham Pi Theorem
  • Model Analysis
  • Similarity Laws

Unit 8: Fluid Machinery

Fluid Machinery covers hydraulic turbines, pumps, and performance characteristics of hydraulic systems. Numerical questions are commonly asked from this section.

Hydraulic Turbines

  • Impulse Turbines
  • Reaction Turbines
  • Pelton Wheel
  • Francis Turbine
  • Kaplan Turbine
  • Velocity Triangles
  • Turbine Efficiencies
  • Specific Speed
  • Draft Tube
  • Cavitation

Pumps

  • Centrifugal Pumps
  • Reciprocating Pumps
  • Multistage Pumps
  • Pump Characteristics
  • Priming
  • NPSH
  • Performance Curves
  • Pump Efficiency

Hydraulic Systems

  • Hydraulic Accumulators
  • Hydraulic Intensifiers
  • Hydraulic Press
  • Hydraulic Ram

Unit 9: Heat Transfer

Heat Transfer studies the transfer of thermal energy through conduction, convection, and radiation. This is one of the highest-weightage subjects in competitive engineering examinations.

Conduction

  • Fourier Law of Heat Conduction
  • Steady State Conduction
  • Unsteady State Conduction
  • Composite Walls
  • Cylindrical Systems
  • Spherical Systems
  • Critical Radius of Insulation

Convection

  • Natural Convection
  • Forced Convection
  • Dimensionless Numbers
  • Nusselt Number
  • Prandtl Number
  • Reynolds Number
  • Heat Transfer Coefficient

Radiation

  • Black Body Radiation
  • Grey Body
  • Kirchhoff Law
  • Stefan-Boltzmann Law
  • Planck Law
  • Radiation Exchange Between Surfaces

Heat Exchangers

  • Parallel Flow Heat Exchanger
  • Counter Flow Heat Exchanger
  • LMTD Method
  • NTU Method
  • Effectiveness of Heat Exchanger

Boiling and Condensation

  • Nucleate Boiling
  • Film Boiling
  • Dropwise Condensation
  • Filmwise Condensation

Fins

  • Types of Fins
  • Fin Effectiveness
  • Fin Efficiency

Unit 10: Refrigeration and Air Conditioning

Refrigeration and Air Conditioning focuses on cooling systems, refrigeration cycles, psychrometrics, and air conditioning applications.

Refrigeration Principles

  • Units of Refrigeration
  • Ton of Refrigeration
  • Coefficient of Performance (COP)
  • Reversed Carnot Cycle

Refrigeration Cycles

  • Vapour Compression Cycle
  • Vapour Absorption Cycle
  • Air Refrigeration Cycle
  • Multi-stage Refrigeration

Refrigerants

  • Properties of Refrigerants
  • Primary Refrigerants
  • Secondary Refrigerants
  • Eco-Friendly Refrigerants

Psychrometry

  • Psychrometric Properties
  • Relative Humidity
  • Dew Point Temperature
  • Wet Bulb Temperature
  • Psychrometric Processes
  • Psychrometric Chart

Air Conditioning

  • Human Comfort Conditions
  • Cooling Load Calculation
  • Heating Load Calculation
  • Air Distribution Systems
  • Ventilation Requirements
  • Duct Design

Unit 11: Power Plant Engineering

  • Steam Power Plants
  • Thermal Power Stations
  • Hydroelectric Power Plants
  • Nuclear Power Plants
  • Gas Turbine Power Plants
  • Diesel Power Plants
  • Combined Cycle Plants
  • Power Plant Economics
  • Load Curves
  • Tariff Structures
  • Plant Performance Evaluation
  • Environmental Impact of Power Plants

Unit 12: Renewable Energy Sources

  • Solar Energy Systems
  • Solar Thermal Energy
  • Solar Photovoltaic Systems
  • Wind Energy Conversion Systems
  • Biomass Energy
  • Biogas Plants
  • Geothermal Energy
  • Tidal Energy
  • Ocean Thermal Energy Conversion
  • Hydrogen Energy
  • Fuel Cells
  • Energy Storage Systems
  • Green Energy Technologies

Important Mechanical Engineering Topics for CGPSC AE

  • Strength of Materials
  • Theory of Machines
  • Machine Design
  • Manufacturing Processes
  • Thermodynamics
  • IC Engines
  • Fluid Mechanics
  • Hydraulic Turbines
  • Centrifugal Pumps
  • Heat Transfer
  • Refrigeration Cycles
  • Air Conditioning

Mechanical Engineering Quick Revision Notes

  • Engineering Mechanics is the foundation of all design subjects.
  • Mohr’s Circle is frequently asked in Strength of Materials.
  • Governors and Flywheels are important in Theory of Machines.
  • Fatigue Failure is an important Machine Design topic.
  • Manufacturing Processes require conceptual understanding.
  • PERT and CPM are important Industrial Engineering topics.
  • Thermodynamics carries high weightage every year.
  • Bernoulli Equation is fundamental in Fluid Mechanics.
  • Pelton, Francis, and Kaplan turbines are highly important.
  • Heat Exchangers are regularly asked in objective exams.
  • Psychrometric Chart problems are common.
  • Renewable Energy is gaining increasing importance.

CGPSC AE Electrical Engineering Syllabus 2026

The Electrical Engineering syllabus for CGPSC Assistant Engineer Examination covers the core areas of electrical engineering including Electromagnetic Field Theory, Network Analysis, Analog Electronics, Digital Electronics, Electrical Measurements, Instrumentation, and Control Systems. Candidates should develop strong conceptual understanding as well as numerical problem-solving skills to perform well in the examination.

Most questions are asked from fundamental engineering concepts taught during undergraduate engineering courses. Special attention should be given to network theorems, semiconductor devices, control systems, digital electronics, and electrical measurements.

Electrical Engineering Part-I

Unit 1: Electromagnetic Field Theory

Electromagnetic Field Theory forms the foundation of Electrical Engineering and explains the behavior of electric and magnetic fields, electromagnetic waves, and field interactions.

Electrostatics

  • Coulomb’s Law
  • Electric Field Intensity
  • Electric Flux Density
  • Gauss Law
  • Electric Potential
  • Potential Gradient
  • Electric Dipole
  • Energy Density in Electric Fields

Magnetostatics

  • Magnetic Field Intensity
  • Magnetic Flux Density
  • Biot-Savart Law
  • Ampere Circuital Law
  • Magnetic Circuits
  • Reluctance
  • Permeability

Field Theory

  • Divergence
  • Gradient
  • Curl
  • Laplace Equation
  • Poisson Equation
  • Boundary Conditions

Electromagnetic Waves

  • Maxwell’s Equations
  • Wave Propagation
  • Plane Waves
  • Poynting Vector
  • Electromagnetic Energy Flow
  • Skin Effect
  • Wave Reflection
  • Wave Refraction

Unit 2: Network Analysis

Network Analysis deals with electrical circuits, network theorems, transient analysis, and AC circuit behavior.

Basic Circuit Laws

  • Ohm’s Law
  • Kirchhoff’s Current Law (KCL)
  • Kirchhoff’s Voltage Law (KVL)
  • Power and Energy Calculations

Network Theorems

  • Superposition Theorem
  • Thevenin Theorem
  • Norton Theorem
  • Maximum Power Transfer Theorem
  • Reciprocity Theorem
  • Millman’s Theorem
  • Compensation Theorem

AC Circuit Analysis

  • Series Circuits
  • Parallel Circuits
  • Resonance
  • Power Factor
  • Complex Power
  • Three Phase Circuits
  • Balanced Systems
  • Unbalanced Systems

Transient Analysis

  • RL Circuits
  • RC Circuits
  • RLC Circuits
  • Transient Response
  • Natural Response
  • Forced Response

Advanced Network Concepts

  • Laplace Transform
  • Inverse Laplace Transform
  • Network Functions
  • Poles and Zeros
  • Fourier Series
  • Two-Port Networks

Unit 3: Analog Electronics

Analog Electronics focuses on semiconductor devices and electronic circuits used for amplification, switching, and signal processing.

Semiconductor Physics

  • Intrinsic Semiconductors
  • Extrinsic Semiconductors
  • P-Type Semiconductors
  • N-Type Semiconductors
  • Carrier Concentration

Diodes

  • PN Junction Diode
  • Zener Diode
  • LED
  • Photodiode
  • Rectifiers
  • Clippers
  • Clampers

Transistors

  • BJT Construction
  • CB Configuration
  • CE Configuration
  • CC Configuration
  • Transistor Biasing
  • Load Line Analysis

Amplifiers

  • Small Signal Amplifiers
  • Power Amplifiers
  • Feedback Amplifiers
  • Multistage Amplifiers

Oscillators

  • RC Oscillator
  • LC Oscillator
  • Crystal Oscillator
  • Frequency Stability

Operational Amplifiers

  • Ideal Op-Amp
  • Practical Op-Amp
  • Inverting Amplifier
  • Non-Inverting Amplifier
  • Integrator
  • Differentiator
  • Comparator

Unit 4: Digital Electronics

Digital Electronics deals with binary systems, logic gates, digital circuits, memory devices, and microprocessor fundamentals.

Number Systems

  • Binary Number System
  • Octal Number System
  • Decimal Number System
  • Hexadecimal Number System
  • Code Conversion

Boolean Algebra

  • Boolean Laws
  • De Morgan’s Theorem
  • Karnaugh Maps
  • Logic Simplification

Logic Gates

  • AND Gate
  • OR Gate
  • NOT Gate
  • NAND Gate
  • NOR Gate
  • XOR Gate
  • XNOR Gate

Combinational Circuits

  • Multiplexer
  • Demultiplexer
  • Encoder
  • Decoder
  • Adders
  • Subtractors

Sequential Circuits

  • Flip Flops
  • Registers
  • Counters
  • Shift Registers

Memory Devices

  • RAM
  • ROM
  • PROM
  • EPROM
  • EEPROM

Microprocessors and Microcontrollers

  • 8085 Microprocessor
  • 8086 Microprocessor
  • 8051 Microcontroller
  • Architecture
  • Addressing Modes
  • Instruction Sets

Unit 5: Electrical Measurements and Instrumentation

This unit covers measurement techniques, measuring instruments, transducers, and instrumentation systems used in electrical engineering.

Electrical Measuring Instruments

  • PMMC Instruments
  • Moving Iron Instruments
  • Electrodynamometer Instruments
  • Induction Type Instruments
  • Energy Meters
  • Power Factor Meters
  • Frequency Meters

Measurement Techniques

  • Voltage Measurement
  • Current Measurement
  • Power Measurement
  • Energy Measurement
  • Resistance Measurement
  • Bridge Circuits
  • Wheatstone Bridge
  • Kelvin Bridge

Transducers

  • Resistive Transducers
  • Inductive Transducers
  • Capacitive Transducers
  • Piezoelectric Transducers
  • Strain Gauges

Electronic Instruments

  • Digital Voltmeter
  • Digital Multimeter
  • CRO
  • Signal Generator
  • Frequency Counter

Electrical Engineering Part-II

Unit 6: Control Systems

Control Systems is one of the most important and scoring subjects in the Electrical Engineering syllabus. Questions are regularly asked from transfer functions, stability analysis, root locus, frequency response, and state-space representation.

Basic Concepts

  • Open Loop Control Systems
  • Closed Loop Control Systems
  • Feedback Control Systems
  • Advantages of Feedback
  • Control System Components
  • Block Diagram Representation
  • Signal Flow Graphs
  • Mason’s Gain Formula

Mathematical Modeling

  • Transfer Function
  • Impulse Response
  • Step Response
  • Time Domain Analysis
  • Frequency Domain Analysis

Stability Analysis

  • Routh Stability Criterion
  • Root Locus Technique
  • Nyquist Stability Criterion
  • Bode Plot
  • Polar Plot
  • Gain Margin
  • Phase Margin

State Space Analysis

  • State Variables
  • State Equations
  • State Transition Matrix
  • Controllability
  • Observability

Unit 7: Power Electronics

Power Electronics focuses on semiconductor switching devices and power conversion circuits used in industrial drives and power systems.

Power Semiconductor Devices

  • SCR (Silicon Controlled Rectifier)
  • TRIAC
  • DIAC
  • GTO
  • MOSFET
  • IGBT
  • Power BJT
  • Characteristics of Power Devices

Controlled Rectifiers

  • Single Phase Rectifiers
  • Three Phase Rectifiers
  • Half Wave Rectifiers
  • Full Wave Rectifiers
  • Bridge Rectifiers

DC-DC Converters

  • Choppers
  • Step-Up Chopper
  • Step-Down Chopper
  • DC Drives

DC-AC Converters

  • Inverters
  • PWM Techniques
  • Single Phase Inverters
  • Three Phase Inverters

AC Voltage Controllers

  • AC Regulators
  • Cycloconverters
  • Frequency Converters
  • Harmonics

Unit 8: Electrical Machines

Electrical Machines form the backbone of electrical engineering. Numerical and theoretical questions are frequently asked from transformers, induction motors, and synchronous machines.

Transformers

  • Single Phase Transformers
  • Three Phase Transformers
  • Equivalent Circuit
  • Transformer Losses
  • Efficiency
  • Voltage Regulation
  • Auto Transformers
  • Parallel Operation

DC Machines

  • DC Generator
  • DC Motor
  • Characteristics of DC Machines
  • Speed Control
  • Starting Methods
  • Braking Methods

Induction Motors

  • Three Phase Induction Motors
  • Single Phase Induction Motors
  • Equivalent Circuit
  • Torque Equation
  • Slip
  • Starting Methods
  • Speed Control Methods

Synchronous Machines

  • Alternators
  • Synchronous Motors
  • Armature Reaction
  • Voltage Regulation
  • Parallel Operation
  • Synchronization

Unit 9: Power Systems

Power Systems covers electrical energy generation, transmission, distribution, faults, and system analysis.

Power Generation

  • Thermal Power Plants
  • Hydroelectric Power Plants
  • Nuclear Power Plants
  • Gas Turbine Plants
  • Renewable Energy Sources

Transmission Systems

  • Transmission Line Parameters
  • Performance of Transmission Lines
  • Corona
  • HVDC Transmission
  • Insulators

Distribution Systems

  • Primary Distribution
  • Secondary Distribution
  • Distribution Network Design
  • Voltage Drop Calculations

Fault Analysis

  • Symmetrical Faults
  • Unsymmetrical Faults
  • Short Circuit Analysis
  • Fault Current Calculations

Power System Components

  • Bus Bars
  • Substations
  • Grounding Systems
  • Neutral Earthing

Unit 10: Modern Interconnected Power Systems

  • Load Flow Studies
  • Gauss-Seidel Method
  • Newton-Raphson Method
  • Fast Decoupled Load Flow
  • Economic Operation of Power Systems
  • Economic Load Dispatch
  • Unit Commitment
  • Voltage Stability
  • Rotor Angle Stability
  • Power System Stability
  • SCADA Systems
  • Energy Management Systems
  • Smart Grid Technology
  • Power Quality
  • Energy Conservation
  • Energy Audit

Unit 11: Protection and Switchgear

Protection systems ensure safe operation of power networks by detecting faults and isolating faulty sections.

  • Protective Relays
  • Electromagnetic Relays
  • Static Relays
  • Numerical Relays
  • Relay Characteristics
  • Overcurrent Protection
  • Differential Protection
  • Distance Protection
  • Generator Protection
  • Transformer Protection
  • Bus Bar Protection
  • Circuit Breakers
  • Air Blast Circuit Breakers
  • Oil Circuit Breakers
  • Vacuum Circuit Breakers
  • SF6 Circuit Breakers
  • Lightning Arresters
  • Insulation Coordination

Unit 12: Utilization of Electrical Energy

  • Electric Heating
  • Resistance Heating
  • Induction Heating
  • Dielectric Heating
  • Electric Welding
  • Electric Traction
  • Traction Motors
  • Illumination Engineering
  • Lighting Calculations
  • Industrial Drives
  • Motor Applications
  • Energy Efficient Systems

Important Electrical Engineering Topics for CGPSC AE

  • Maxwell’s Equations
  • Network Theorems
  • Laplace Transform
  • Operational Amplifiers
  • Digital Electronics
  • Control Systems
  • Power Electronics
  • Transformers
  • Induction Motors
  • Synchronous Machines
  • Power System Analysis
  • Protection and Relays
  • SCADA and Smart Grid

Electrical Engineering Quick Revision Notes

  • Electromagnetic Field Theory forms the basis of Electrical Engineering.
  • Network Theorems are frequently asked in objective examinations.
  • Operational Amplifier applications are important for electronics questions.
  • Digital Electronics carries significant weightage every year.
  • Control Systems is one of the highest-scoring subjects.
  • Power Electronics is important for industrial applications.
  • Transformers and Induction Motors are frequently tested topics.
  • Power System Fault Analysis is a recurring examination topic.
  • SCADA and Smart Grid concepts are increasingly important.
  • Protection and Switchgear concepts are highly relevant for Assistant Engineer posts.

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