Electric Circuits & Networks
Circuit analysis, network theorems, transient and steady-state analysis, Laplace transform, and three-phase systems.
Comprehensive, free EEE courses by Dr. Mithun Mondal, BITS Pilani Hyderabad — covering power systems, electric circuits, electrical machines, electronics, and more, through detailed handouts, video lectures, and practical labs.
A transformative approach combining rigorous theory with practical engineering applications — designed for university students, GATE aspirants, and working professionals.
Learn directly from Dr. Mithun Mondal's decade-plus of academic and research experience in high voltage and power systems.
Hands-on experiments with detailed manuals and video demonstrations — bridging theory and real engineering.
Progress from fundamentals to advanced topics through carefully designed learning paths with no gaps.
Comprehensive handouts, solved problems, MATLAB guides, tutorial sheets, and GATE-ready notes — all free.
Founded by Dr. Mithun Mondal, Associate Professor at BITS Pilani Hyderabad, this academy bridges the gap between academic principles and practical engineering. Complex EEE concepts become accessible through clear derivations, worked examples, and hands-on learning.
Our curriculum spans fundamental principles to advanced applications — from Kirchhoff's laws all the way to power system stability analysis, transformer diagnostics, and vector-controlled drives.
Ph.D. from IIT Roorkee · High Voltage & Transformer Diagnostics specialist
Every concept tied to real circuits, machines, and power systems
Structured from fundamentals through advanced GATE EE topics
Handouts, video lectures, labs, and tutorials — freely available
Each subject includes dedicated handouts, lecture recordings, and tutorial sheets — structured for clarity and exam success. All freely accessible.
Circuit analysis, network theorems, transient and steady-state analysis, Laplace transform, and three-phase systems.
Transformers, DC machines, induction motors, and synchronous machines — principles, characteristics, and control.
Generation, transmission, distribution, load flow, fault analysis, and stability of modern electrical power systems.
Semiconductor physics, diodes, BJTs, FETs, amplifiers, oscillators, and digital logic circuits from first principles.
Converters, inverters, choppers, thyristors, and PWM controllers for modern energy conversion and motor drives.
Electromagnetic Field Theory, High Voltage Engineering, Solid-State Electric Drives, Optimization Techniques, and Basic EEE.
Explore freely available handouts, lectures, and labs designed to build your EEE foundation — from first principles to advanced topics. No sign-up required.