Formerly Janakpur Engineering College (JEC)Affiliated to Tribhuvan University
Electronics students and an instructor working together at a laboratory bench

IOE curriculum, 2080 batch onward

BEI Syllabus 2080

icenepal.com/syllabus/bei · Tribhuvan University, Institute of Engineering

Every course in the IOE Bachelor in Electronics, Communication and Information Engineering, semester by semester: credits, weekly hours, marks, and each chapter with its teaching hours. Read it here or download the whole syllabus as one PDF.

  • 138 credits
  • 8 semesters
  • 36 syllabi published
  • 314 chapters

At a glance

The BEI syllabus in one view

The IOE Bachelor in Electronics, Communication and Information Engineering (BEI) runs eight semesters and 138 credits. IOE has published the syllabus for 36 courses in Semesters 1 to 6, which is Years I to III, covering 314 chapters. The 10 Year IV courses are listed below with their credits and marks, and their syllabi will follow from IOE.

SemesterYear and partCoursesCreditsMarks
Semester 1Year I, Part I616675
Semester 2Year I, Part II619800
Semester 3Year II, Part I618775
Semester 4Year II, Part II619750
Semester 5Year III, Part I618725
Semester 6Year III, Part II617675
Semester 7Year IV, Part I617675
Semester 8Year IV, Part II414525
TotalFour years461385600

Scroll the table sideways for Courses, Credits and Marks.

Free PDF

IOE Electronics, Communication and Information Engineering (BEI) Syllabus 2080, every semester in one file

All 36 published BEI syllabi in a 164-page handbook, with a contents page you can tap through and IOE's syllabus pages reproduced unchanged. Keep it on your phone for the whole degree.

Year I, Part I

BEI Semester 1 syllabus

6 courses, 16 credits and 675 marks. Open a course to see its chapters, the teaching hours IOE sets for each, and its share of the lectures.

CourseCreditsL-T-PTheory (internal + final)PracticalTotal
ENSH 101 Engineering Mathematics I33-2-040 + 60-100
ENSH 102 Engineering Physics44-1-240 + 6025125
ENCT 101 Computer Programming33-1-340 + 6050150
ENME 101 Engineering Drawing22-0-420 + 3050100
ENEX 101 Fundamental of Electrical and Electronics Engineering33-1-340 + 6050150
ENME 106 Engineering Workshop11-0-320 internal3050

Scroll the table sideways for credits, hours and marks.

ENSH 101Engineering Mathematics I5 chapters · 45 lecture hours
  1. Derivatives and its Applications10 h
  2. Antiderivatives and its Applications11 h
  3. Ordinary Differential Equations and its Applications10 h
  4. Plane Analytic Geometry4 h
  5. Three dimensional geometry10 h

The largest chapter carries 24% of the lecture hours. Marks: 40 internal, 60 in the 3-hour IOE final.

Full Engineering Mathematics I syllabus with topics, exam marks and study guide

ENSH 102Engineering Physics8 chapters · 60 lecture hours
  1. Oscillation6 h
  2. Acoustics3 h
  3. Heat and Thermodynamics8 h
  4. Optics17 h
  5. Electrostatics8 h
  6. Electromagnetism6 h
  7. Electromagnetic Waves6 h
  8. Photon and Matter Waves6 h

The largest chapter carries 28% of the lecture hours. 13 laboratory or practical exercises. Marks: 40 internal, 60 in the 3-hour IOE final, 25 practical.

Full Engineering Physics syllabus with topics, exam marks and study guide

ENCT 101Computer Programming10 chapters · 45 lecture hours
  1. Introduction to Computer Programming3 h
  2. Overview of C Programming3 h
  3. Operators and Expressions4 h
  4. Input and Output3 h
  5. Control Structures8 h
  6. Array and Pointer7 h
  7. User-defined Functions6 h
  8. Structures5 h
  9. File Management4 h
  10. Recent Trends in Programming2 h

The largest chapter carries 18% of the lecture hours. 11 laboratory or practical exercises. Marks: 40 internal, 60 in the 3-hour IOE final, 50 practical.

Full Computer Programming syllabus with topics, exam marks and study guide

ENME 101Engineering Drawing7 chapters · 30 lecture hours
  1. Instrumental Drawing, Technical Lettering Practices and Techniques1 h
  2. Dimensioning1 h
  3. Geometrical Construction2 h
  4. Basic Descriptive Geometry4 h
  5. Multi View (Orthographic) Projections8 h
  6. Developments and Intersections7 h
  7. Pictorial Drawings7 h

The largest chapter carries 27% of the lecture hours. 15 laboratory or practical exercises. Marks: 20 internal, 30 in the 3-hour IOE final, 50 practical.

ENEX 101Fundamental of Electrical and Electronics Engineering6 chapters · 45 lecture hours
  1. Basic Circuits Concepts6 h
  2. Average and RMS Values4 h
  3. AC Circuit Analysis12 h
  4. Diodes7 h
  5. Transistor10 h
  6. Operational Amplifier and Oscillator6 h

The largest chapter carries 27% of the lecture hours. 11 laboratory or practical exercises. Marks: 40 internal, 60 in the 3-hour IOE final, 50 practical.

ENME 106Engineering Workshop8 chapters · 15 lecture hours
  1. Safety Measures in the Workshop1 h
  2. Bench Work and Fittings4 h
  3. Thread Cutting1 h
  4. Sheet Metal2 h
  5. Machine Tools2 h
  6. Forging and Casting1.5 h
  7. Welding2.5 h
  8. Brazing and Soldering1 h

The largest chapter carries 27% of the lecture hours. 7 laboratory or practical exercises.

Year I, Part II

BEI Semester 2 syllabus

6 courses, 19 credits and 800 marks. Open a course to see its chapters, the teaching hours IOE sets for each, and its share of the lectures.

CourseCreditsL-T-PTheory (internal + final)PracticalTotal
ENSH 151 Engineering Mathematics II33-2-040 + 60-100
ENCT 151 Object Oriented Programming33-1-340 + 6050150
ENEX 151 Electronic Device and Circuits33-1-340 + 6050150
ENEX 152 Digital Logic33-1-340 + 6050150
ENEE 154 Electrical Circuits and Machines44-1-1.540 + 6025125
ENSH 153 Engineering Chemistry33-1-340 + 6025125

Scroll the table sideways for credits, hours and marks.

ENSH 151Engineering Mathematics II6 chapters · 45 lecture hours
  1. Calculus of Two and More Variables6 h
  2. Multiple Integrals7 h
  3. Vector Calculus12 h
  4. Laplace Transform7 h
  5. Matrices8 h
  6. Solution of Differential Equation in Series and Special Functions5 h

The largest chapter carries 27% of the lecture hours. Marks: 40 internal, 60 in the 3-hour IOE final.

Full Engineering Mathematics II syllabus with topics, exam marks and study guide

ENCT 151Object Oriented Programming9 chapters · 45 lecture hours
  1. Introduction to Object Oriented Programming3 h
  2. Basics of C++ Programming5 h
  3. Objects and Classes7 h
  4. Operator Overloading5 h
  5. Inheritance5 h
  6. Virtual Functions4 h
  7. Stream Computation6 h
  8. Templates6 h
  9. Exception Handling4 h

The largest chapter carries 16% of the lecture hours. Marks: 40 internal, 60 in the 3-hour IOE final, 50 practical.

Full Object Oriented Programming syllabus with topics, exam marks and study guide

ENEX 151Electronic Device and Circuits5 chapters · 45 lecture hours
  1. The Bipolar Junction Transistor (BJT)9 h
  2. Field-Effect Transistor10 h
  3. Operational Amplifier Circuits and Oscillator10 h
  4. Output Stages and Power Amplifiers10 h
  5. Power Supplies, Breakdown Diodes, and Voltage Reference6 h

The largest chapter carries 22% of the lecture hours. 11 laboratory or practical exercises. Marks: 40 internal, 60 in the 3-hour IOE final, 50 practical.

ENEX 152Digital Logic8 chapters · 45 lecture hours
  1. Introduction5 h
  2. Logic Gates3 h
  3. Boolean Algebra and K-Maps4 h
  4. Combinational Logic Circuits8 h
  5. Sequential Logic Circuits5 h
  6. Registers and Counters7 h
  7. Sequential Machine Designs8 h
  8. Digital Integrated Circuits5 h

The largest chapter carries 18% of the lecture hours. 10 laboratory or practical exercises. Marks: 40 internal, 60 in the 3-hour IOE final, 50 practical.

Full Digital Logic syllabus with topics, exam marks and study guide

ENEE 154Electrical Circuits and Machines9 chapters · 60 lecture hours
  1. Transients in Electric Circuit7 h
  2. Transient Analysis R-L-C Circuit by Classical Method10 h
  3. Transient Analysis Using Laplace Transform7 h
  4. Network Transfer Function and Frequency Response8 h
  5. Two-Port Parameters of Network8 h
  6. Magnetic Circuit and Induction3 h
  7. Transformers6 h
  8. DC Machine5 h
  9. AC Motor6 h

The largest chapter carries 17% of the lecture hours. 6 laboratory or practical exercises. Marks: 40 internal, 60 in the 3-hour IOE final, 25 practical.

ENSH 153Engineering Chemistry8 chapters · 45 lecture hours
  1. Electrochemistry and Buffer8 h
  2. Catalyst and Catalysis4 h
  3. Analytical Techniques and their Applications6 h
  4. Metal Complexes, Rare Earth Elements and Metal alloys6 h
  5. Sustainable Chemistry7 h
  6. Nanoscience and Nanotechnology3 h
  7. Engineering Materials7 h
  8. Explosives, Lubricants and Paints4 h

The largest chapter carries 18% of the lecture hours. 12 laboratory or practical exercises. Marks: 40 internal, 60 in the 3-hour IOE final, 25 practical.

Year II, Part I

BEI Semester 3 syllabus

6 courses, 18 credits and 775 marks. Open a course to see its chapters, the teaching hours IOE sets for each, and its share of the lectures.

CourseCreditsL-T-PTheory (internal + final)PracticalTotal
ENSH 201 Engineering Mathematics III33-2-040 + 60-100
ENSH 204 Communication English33-0-140 + 6025125
ENCT 201 Computer Graphics and Visualization33-1-340 + 6050150
ENEX 201 Microprocessors33-1-340 + 6050150
ENEX 202 Advanced Electronics33-1-1.540 + 6025125
ENEE 204 Control System33-1-1.540 + 6025125

Scroll the table sideways for credits, hours and marks.

ENSH 201Engineering Mathematics III5 chapters · 45 lecture hours
  1. Fourier Series and Fourier Transform12 h
  2. Functions of Complex Variable12 h
  3. Partial Differential Equations5 h
  4. Modelling through Partial Differential Equation10 h
  5. Z- transform and its Applications6 h

The largest chapter carries 27% of the lecture hours. Marks: 40 internal, 60 in the 3-hour IOE final.

Full Engineering Mathematics III syllabus with topics, exam marks and study guide

ENSH 204Communication English6 chapters · 45 lecture hours
  1. Technical Communication2 h
  2. Writing Skills8 h
  3. Technical Writing15 h
  4. Business Correspondence10 h
  5. Listening and Oral Communication4 h
  6. Use of Visual Aids in Communication6 h

The largest chapter carries 33% of the lecture hours. 8 laboratory or practical exercises. Marks: 40 internal, 60 in the 3-hour IOE final, 25 practical.

ENCT 201Computer Graphics and Visualization8 chapters · 45 lecture hours
  1. Introduction and Application4 h
  2. Raster Graphics and Algorithms9 h
  3. 2D and 3D Coordinate Systems and Viewing Transformations9 h
  4. Curve Modeling and Surface Modelling4 h
  5. Visible Surface Determination4 h
  6. Illumination and Surface Rendering Methods4 h
  7. Computer Animation and Visualization5 h
  8. Latest Trends in Computer Graphics6 h

The largest chapter carries 20% of the lecture hours. 12 laboratory or practical exercises. Marks: 40 internal, 60 in the 3-hour IOE final, 50 practical.

ENEX 201Microprocessors6 chapters · 45 lecture hours
  1. Introduction4 h
  2. Intel 8085 Microprocessor12 h
  3. Intel 8086 Microprocessor14 h
  4. Microprocessor System7 h
  5. Interrupt Operations5 h
  6. Advanced Topics3 h

The largest chapter carries 31% of the lecture hours. 12 laboratory or practical exercises. Marks: 40 internal, 60 in the 3-hour IOE final, 50 practical.

Full Microprocessors syllabus with topics, exam marks and study guide

ENEX 202Advanced Electronics7 chapters · 45 lecture hours
  1. Operational Amplifier Characterization9 h
  2. Digital-to-Analog and Analog-to-Digital Conversion7 h
  3. Instrumentation and Isolation Amplifiers4 h
  4. Operational Amplifier-Bipolar Transistor Logarithmic Amplifier4 h
  5. Log-Antilog Circuit Application4 h
  6. Power Electronics11 h
  7. Switched Mode Power Supplies and Drives6 h

The largest chapter carries 24% of the lecture hours. 7 laboratory or practical exercises. Marks: 40 internal, 60 in the 3-hour IOE final, 25 practical.

ENEE 204Control System8 chapters · 46 lecture hours
  1. Control System Background2 h
  2. Component Modeling6 h
  3. System Transfer Function and Responses10 h
  4. Stability4 h
  5. Root Locus Technique6 h
  6. Frequency Response Techniques8 h
  7. Performance Specifications and Compensation Design6 h
  8. State Space Analysis4 h

The largest chapter carries 22% of the lecture hours. 5 laboratory or practical exercises. Marks: 40 internal, 60 in the 3-hour IOE final, 25 practical.

Year II, Part II

BEI Semester 4 syllabus

6 courses, 19 credits and 750 marks. Open a course to see its chapters, the teaching hours IOE sets for each, and its share of the lectures.

CourseCreditsL-T-PTheory (internal + final)PracticalTotal
ENSH 252 Numerical Methods33-1-340 + 6050150
ENCT 251 Discrete Structure33-1-040 + 60-100
ENEX 252 Instrumentation44-1-1.540 + 6025125
ENEX 253 Computer Organization & Architecture33-1-1.540 + 6025125
ENEX 254 Electromagnetics33-1-1.540 + 6025125
ENEX 255 Signals and Systems33-1-1.540 + 6025125

Scroll the table sideways for credits, hours and marks.

ENSH 252Numerical Methods6 chapters · 45 lecture hours
  1. Solution of Non-Linear Equations7 h
  2. Solution of System of Linear Algebraic Equations8 h
  3. Interpolation9 h
  4. Numerical Differentiation and Integration6 h
  5. Solution of Ordinary Differential Equations (ODE)8 h
  6. Solution of Partial Differential Equations7 h

The largest chapter carries 20% of the lecture hours. 7 laboratory or practical exercises. Marks: 40 internal, 60 in the 3-hour IOE final, 50 practical.

ENCT 251Discrete Structure5 chapters · 45 lecture hours
  1. Logic and Induction8 h
  2. Proof Techniques5 h
  3. Automata Theory, Regular Language and Grammar10 h
  4. Recurrence Relation and Algorithmic Analysis7 h
  5. Graph Theory and Tree15 h

The largest chapter carries 33% of the lecture hours. Marks: 40 internal, 60 in the 3-hour IOE final.

ENEX 252Instrumentation10 chapters · 60 lecture hours
  1. Introduction2 h
  2. Theory of Measurement6 h
  3. Transducer8 h
  4. Interfacing of Instrumentation System14 h
  5. Connectivity Technology in Instrumentation System6 h
  6. Circuit Design4 h
  7. Software for Instrumentation Application6 h
  8. Electrical Equipment6 h
  9. Latest Trends3 h
  10. Application of Modern Instrumentation System5 h

The largest chapter carries 23% of the lecture hours. 6 laboratory or practical exercises. Marks: 40 internal, 60 in the 3-hour IOE final, 25 practical.

ENEX 253Computer Organization & Architecture8 chapters · 45 lecture hours
  1. Introduction6 h
  2. Central Processor Organization6 h
  3. Control Unit5 h
  4. Memory System8 h
  5. Computer Arithmetic8 h
  6. Pipelining and Vector Processing4 h
  7. Input Output (I/O) Organization4 h
  8. Multicore Computer4 h

The largest chapter carries 18% of the lecture hours. 6 laboratory or practical exercises. Marks: 40 internal, 60 in the 3-hour IOE final, 25 practical.

ENEX 254Electromagnetics6 chapters · 45 lecture hours
  1. Introduction4 h
  2. Electric Field15 h
  3. Magnetic Field9 h
  4. Time Varying Fields4 h
  5. Plane Waves9 h
  6. Transmission Lines4 h

The largest chapter carries 33% of the lecture hours. 6 laboratory or practical exercises. Marks: 40 internal, 60 in the 3-hour IOE final, 25 practical.

ENEX 255Signals and Systems6 chapters · 45 lecture hours
  1. Signal and its Types7 h
  2. Fourier Series9 h
  3. Fourier Transform9 h
  4. Linear Time Invariant (LTI) System7 h
  5. Sampling6 h
  6. Frequency Response of Continuous and Discrete Time Systems7 h

The largest chapter carries 20% of the lecture hours. 5 laboratory or practical exercises. Marks: 40 internal, 60 in the 3-hour IOE final, 25 practical.

Year III, Part I

BEI Semester 5 syllabus

6 courses, 18 credits and 725 marks. Open a course to see its chapters, the teaching hours IOE sets for each, and its share of the lectures.

CourseCreditsL-T-PTheory (internal + final)PracticalTotal
ENSH 304 Probability and Statistics33-1-040 + 60-100
ENCT 305 Artificial Intelligence33-1-1.540 + 6025125
ENEX 301 Filter Design33-1-1.540 + 6025125
ENEX 302 Embedded Systems33-1-1.540 + 6025125
ENEX 303 Propagation and Antenna33-1-1.540 + 6025125
ENEX 325-344 Elective I33-2-140 + 6025125

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ENSH 304Probability and Statistics5 chapters · 45 lecture hours
  1. Descriptive Statistics and Basic Probability6 h
  2. Probability Distributions and Sampling Distribution14 h
  3. Statistical Inference14 h
  4. Correlation and Regression6 h
  5. Statistical Quality Control5 h

The largest chapter carries 31% of the lecture hours. Marks: 40 internal, 60 in the 3-hour IOE final.

ENCT 305Artificial Intelligence7 chapters · 45 lecture hours
  1. Introduction4 h
  2. Problem Solving and Search9 h
  3. Knowledge Representation and Probabilistic Reasoning7 h
  4. Machine Learning Fundamentals10 h
  5. Neural Networks and Deep Learning Algorithms6 h
  6. AI Applications7 h
  7. AI Ethics and Recent Trends2 h

The largest chapter carries 22% of the lecture hours. 6 laboratory or practical exercises. Marks: 40 internal, 60 in the 3-hour IOE final, 25 practical.

ENEX 301Filter Design8 chapters · 45 lecture hours
  1. Introduction6 h
  2. Approximation Methods9 h
  3. Frequency Transformation2 h
  4. Properties and Synthesis of Passive Networks8 h
  5. Design of Resistively-Terminated Lossless Filters4 h
  6. Design of Active Filters12 h
  7. Sensitivity2 h
  8. Other Filters2 h

The largest chapter carries 27% of the lecture hours. 6 laboratory or practical exercises. Marks: 40 internal, 60 in the 3-hour IOE final, 25 practical.

ENEX 302Embedded Systems8 chapters · 45 lecture hours
  1. Introduction2 h
  2. Core of Embedded System6 h
  3. Hardware Design Issues6 h
  4. Designing Embedded System with Microcontroller10 h
  5. Embedded System Development Environment4 h
  6. RTOS Based Embedded System Design10 h
  7. VHDL Coding and Logic Synthesis4 h
  8. IC Technology3 h

The largest chapter carries 22% of the lecture hours. 6 laboratory or practical exercises. Marks: 40 internal, 60 in the 3-hour IOE final, 25 practical.

ENEX 303Propagation and Antenna6 chapters · 45 lecture hours
  1. Introduction6 h
  2. Basic Antenna Parameters and Arrays7 h
  3. Antenna Classifications12 h
  4. Propagation and Radio Frequency Spectrum7 h
  5. Propagation between Antennas6 h
  6. Link Budget7 h

The largest chapter carries 27% of the lecture hours. 7 laboratory or practical exercises. Marks: 40 internal, 60 in the 3-hour IOE final, 25 practical.

ENEX 325-344Elective I6 options, choose one

ENEX 325 Biomedical Instrumentation9 chapters · 45 lecture hours

  1. Fundamental of Medical Instrumentation2 h
  2. Bioelectric Signals and Electrodes2 h
  3. Physiological Transducers2 h
  4. Bioelectric Signals Measurement and Recording System5 h
  5. Non- Invasive Diagnostic Instruments10 h
  6. Therapeutic Instruments4 h
  7. Biomedical Telemetry and Telemedicine2 h
  8. Ventilators15 h
  9. Electrical Safety of Medical Equipment3 h

ENCT 327 Java Programming5 chapters · 45 lecture hours

  1. Java Fundamentals7 h
  2. Java I/O and Data Handling6 h
  3. Database and Web Communication10 h
  4. Spring Boot and Modern Web Development16 h
  5. Concurrency and Performance6 h

ENCT 328 Quantum Computing8 chapters · 45 lecture hours

  1. Fundamentals of Quantum Concepts6 h
  2. Quantum Gates and Circuits6 h
  3. Entanglement and Quantum Communication5 h
  4. Quantum Algorithms10 h
  5. Quantum Hardware and NISQ Era6 h
  6. Quantum Error and Correction4 h
  7. Quantum Annealing, Optimization Algorithms4 h
  8. Quantum Machine Learning4 h

ENCT 329 Python Programming for Data Science6 chapters · 45 lecture hours

  1. Introduction8 h
  2. Control Structures and Functions8 h
  3. Data Structures and Collections8 h
  4. NumPy for Numerical Computing5 h
  5. Data Manipulation with Pandas8 h
  6. Data Visualization with Matplotlib and Seaborn8 h

ENCT 330 Web Programming6 chapters · 45 lecture hours

  1. Introduction6 h
  2. JavaScript and Client-Side Programming12 h
  3. Server-Side Web Programming9 h
  4. Web Services and APIs7 h
  5. Web Application Security6 h
  6. Web Application Deployment and Modern Trends5 h

ENCT 331 Operating System (OS)8 chapters · 45 lecture hours

  1. Introduction6 h
  2. Process Management7 h
  3. Process Communication and Synchronization10 h
  4. I/O and Memory Management9 h
  5. File Systems3 h
  6. Security and System Administration Tools3 h
  7. Hypervisors and Virtual Systems4 h
  8. Recent Development3 h

Year III, Part II

BEI Semester 6 syllabus

6 courses, 17 credits and 675 marks. Open a course to see its chapters, the teaching hours IOE sets for each, and its share of the lectures.

CourseCreditsL-T-PTheory (internal + final)PracticalTotal
ENCT 355 ICT Project Management33-1-040 + 60-100
ENCE 356 Engineering Economics33-1-040 + 60-100
ENEX 351 Communication Systems44-1-340 + 6050150
ENEX 352 Telecommunication and Computer Networks33-1-340 + 6050150
ENEX 353 Minor Project1Project work-5050
ENEX 385-399 Elective II33-2-140 + 6025125

Scroll the table sideways for credits, hours and marks.

ENCT 355ICT Project Management14 chapters · 45 lecture hours
  1. Introduction5 h
  2. Project Management Body of Knowledge6 h
  3. Portfolio and Project Management Framework2 h
  4. Project Management Process Groups2 h
  5. Project Integration Management2 h
  6. Project Scope Management2 h
  7. Project Time Management6 h
  8. Project Cost Management5 h
  9. Project Quality Management2 h
  10. Project Communication Management2 h
  11. Project Risk Management3 h
  12. Project Procurement Management3 h
  13. Project Resource and Stakeholder Management3 h
  14. Trends in ICT Project management2 h

The largest chapter carries 13% of the lecture hours. Marks: 40 internal, 60 in the 3-hour IOE final.

ENCE 356Engineering Economics9 chapters · 51 lecture hours
  1. Introduction2 h
  2. Market Economics3 h
  3. Cost8 h
  4. Time Value of Money6 h
  5. Methods of Economic Analysis12 h
  6. Replacement Analysis5 h
  7. Risk Analysis5 h
  8. Depreciation and Taxes5 h
  9. Measurement of Nation Income5 h

The largest chapter carries 24% of the lecture hours. Marks: 40 internal, 60 in the 3-hour IOE final.

ENEX 351Communication Systems9 chapters · 60 lecture hours
  1. Introduction5 h
  2. Amplitude Modulation8 h
  3. Angle Modulation7 h
  4. Pulse Modulation8 h
  5. Multiplexing Techniques3 h
  6. Baseband Digital Data Transmission8 h
  7. Digital Modulation Techniques8 h
  8. Error Detection and Correction Coding7 h
  9. Noise in Communication Systems6 h

The largest chapter carries 13% of the lecture hours. 10 laboratory or practical exercises. Marks: 40 internal, 60 in the 3-hour IOE final, 50 practical.

ENEX 352Telecommunication and Computer Networks9 chapters · 45 lecture hours
  1. Introduction3 h
  2. Switching and Multiplexing5 h
  3. Telephone Traffic4 h
  4. Network Models5 h
  5. Physical and Data Link Layer6 h
  6. Network Layer9 h
  7. Transport Layer4 h
  8. Application Layer5 h
  9. Advanced Topics4 h

The largest chapter carries 20% of the lecture hours. 12 laboratory or practical exercises. Marks: 40 internal, 60 in the 3-hour IOE final, 50 practical.

ENEX 353Minor Project4 chapters
  1. Project Selection and Planning
  2. Literature Review and Proposal
  3. Design, Development and Project Management
  4. Implementation and Testing

ENEX 385-399Elective II3 options, choose one

ENEX 386 Software Systems Engineering9 chapters · 45 lecture hours

  1. Introduction4 h
  2. Software Development Process6 h
  3. Software Requirements Engineering6 h
  4. System Modeling for Engineering Applications9 h
  5. System Design and Architecture4 h
  6. Implementation Practices3 h
  7. System Testing5 h
  8. Software Quality and Maintenance4 h
  9. Software in Engineering Systems4 h

ENCT 388 Analysis of Algorithms7 chapters · 45 lecture hours

  1. Introduction to Algorithm Analysis5 h
  2. Iterative and Numeric Algorithms8 h
  3. Divide and Conquer Algorithms8 h
  4. Greedy Algorithms7 h
  5. Dynamic Programming8 h
  6. Backtracking Techniques4 h
  7. NP-Hard and NP-Complete Problems5 h

ENCT 389 Audio Processing7 chapters · 45 lecture hours

  1. Fundamental of Sound and Audio Signal7 h
  2. Time Domain Audio Processing8 h
  3. Spectral Representation7 h
  4. Frequency Domain and Non-Linear Effects10 h
  5. Music Information Retrieval6 h
  6. Audio system and DAW Integration4 h
  7. Recent Trend3 h

Year IV, Part I

BEI Semester 7 syllabus

6 courses, 17 credits and 675 marks. IOE has listed these courses but not yet published their syllabi.

CourseCreditsL-T-PTheory (internal + final)PracticalTotal
ENEX 411 RF and Microwave Engineering33-1-1.540 + 6025125
ENEX 412 Robotics33-1-1.540 + 6025125
ENEX 413 Digital Signal Processing33-1-1.540 + 6025125
ENEX 435-444 Elective III33-2-140 + 6025125
ENEX 414 Project I2Project work-5050
ENEX 415 Wireless Communication33-1-1.540 + 6025125

Scroll the table sideways for credits, hours and marks.

Year IV, Part II

BEI Semester 8 syllabus

4 courses, 14 credits and 525 marks. IOE has listed these courses but not yet published their syllabi.

CourseCreditsL-T-PTheory (internal + final)PracticalTotal
ENEX 463 Energy, Environment and Social Engineering33-0-040 + 60-100
ENEX 462 Internship4Project work-100 + 50150
ENEX 465-484 Elective IV33-2-140 + 6025125
ENEX 461 Project II4Project work-100 + 50150

Scroll the table sideways for credits, hours and marks.

Shared subjects

What BEI shares with the other programmes

With BCE: 4 courses under the same code

Engineering Mathematics I (ENSH 101), Computer Programming (ENCT 101), Engineering Mathematics II (ENSH 151) and Engineering Mathematics III (ENSH 201).

With BCT: 21 courses under the same code

Engineering Mathematics I (ENSH 101), Engineering Physics (ENSH 102), Computer Programming (ENCT 101), Engineering Drawing (ENME 101), Fundamental of Electrical and Electronics Engineering (ENEX 101), Engineering Workshop (ENME 106), Engineering Mathematics II (ENSH 151), Object Oriented Programming (ENCT 151), Electronic Device and Circuits (ENEX 151), Digital Logic (ENEX 152), Electrical Circuits and Machines (ENEE 154), Engineering Chemistry (ENSH 153), Engineering Mathematics III (ENSH 201), Communication English (ENSH 204), Computer Graphics and Visualization (ENCT 201), Microprocessors (ENEX 201), Numerical Methods (ENSH 252), Instrumentation (ENEX 252), Electromagnetics (ENEX 254), Probability and Statistics (ENSH 304) and Engineering Economics (ENCE 356).

Civil also teaches Physics, Engineering Drawing, Numerical Methods, Communication English, Probability and Statistics and Engineering Economics with the same outline under its own course codes, so a student who changes programme keeps more common ground than the codes suggest.

Quick answers

BEI syllabus questions

How many credits is the IOE BEI degree?

The IOE BEI curriculum carries 138 credits over eight semesters, between 14 and 19 credits a semester. Years I to III account for 107 of them.

How many subjects are in the BEI syllabus?

IOE lists 46 courses across the eight semesters. The syllabus for 36 of them, Semesters 1 to 6, is published, and the elective slots in Year III offer 9 options. The 10 Year IV courses are listed with credits and marks but without a syllabus so far.

How are BEI subjects marked?

All 41 theory subjects are marked 40 internal and 60 in the IOE final examination, which lasts 3 hours for most papers. Practical work is assessed internally, and 2 courses have a separate practical final. The full split for every subject is in the semester tables on this page.

Is the Year IV BEI syllabus published?

Not as of 30 September 2026. IOE lists the 10 Year IV courses, among them RF and Microwave Engineering and Robotics, with their credits and marks, but has not released their syllabi. ICE will add them to this page and to the handbook when IOE publishes them.

Where can I download the BEI syllabus PDF?

On this page. The ICE handbook puts every published BEI syllabus, Semesters 1 to 6, in one 164-page PDF with a contents page, and the syllabus pages inside it are IOE's own, unchanged. IOE's curriculum page links each course's syllabus separately.

Which BEI subjects are shared with other programmes?

4 subjects carry the same course code in BCE, and 21 subjects carry the same course code in BCT. 4 are common to all three ICE programmes: Engineering Mathematics I, Computer Programming, Engineering Mathematics II and Engineering Mathematics III.

Source

IOE's syllabus is the authority

Credits, hours and marks on this page are taken from IOE's curriculum structure for BEI, and the chapters from IOE's own syllabus PDFs, checked on 30 September 2026. Where the two disagree, as in a few chapter hours, this page shows the syllabus outline. If IOE revises a course, its page is what counts. Open IOE's BEI curriculum page.

Last reviewed by Imperial College of Engineering. Credits, hours and marks from IOE’s BEI curriculum structure; chapters from IOE’s syllabus PDFs.