- Cartesian Coordinate System
- Line integration, surface integration and volume integration in cartesian coordinate system
- Numerical 1 on Line Integration
- Numerical 1 on Surface Integration
- Numerical 1 on Volume Integration
- Cylindrical Coordinate System
- Vector Conversion Between Cylindrical and Cartesian Coordinate System
- Numerical 1 for Vector Conversion Between Cartesian and Cylindrical Coordinate System
- line integration, surface integration and volume integration in cylindrical coordinate system
- Numerical 2 on Line Integration
- Numerical 2 on Surface Integration
- Spherical Coordinate System
- Vector Conversion Between Spherical and Cartesian Coordinate System
- Numerical 1 for Vector Conversion Between Spherical and Cartesian Coordinate System
- Divergence of Vector and Divergence Theorem
- Numerical 1 on Divergence
- Numerical 2 on Divergence
- Numerical 1 on Divergence Theorem
- Numerical 2 on Divergence Theorem
- Curl and Stoke's Theorem
- Numerical 1 on Curl
- Numerical 2 on Curl
- Numerical 1 on Stoke's Theorem
- Gradient of Scalar
- Numerical 1 on Gradient
- Numerical 2 on Gradient

- Introduction and Coulomb's Law
- Numerical 1 on Coulomb's Law
- Electric Field Intensity
- Numerical 1 on Electric Field Intensity
- Distributed Charges Line Charge Surface Charge and Volume Charge
- Electric Field Intensity Due to Line Charge
- Numerical 1 on Line Charge Electric Field
- Electric Field Intensity Due to Surface Charge
- Numerical 1 on Surface Charge Electric Field
- Numerical 2 on Line and Surface Charge Electric Field
- Flux Density and Gauss's Law, Maxwell Equation
- Numerical 1 on Gauss's Law
- Numerical 2 on Gauss's Law
- Numerical 3 on Gauss's Law
- Numerical 4 on Gauss's Law
- Work Done and Electric Potential and Maxwell Equation
- Numerical 1 on Work Done
- Numerical 2 on Work Done
- Numerical 1 on Potential V
- Relationship between E and V
- Numerical 2 on Potential V
- Electric Boundary Condition (Dielectric Dielectric Interface)
- Numerical 1 on Boundary Condition
- Electric Field Behaviour on Conductor
- Electric Boundary Condition (Dielectric Conductor Interface)
- Numerical 2 on Boundary Condition
- Poission's and Laplace's Equations
- Numerical 1 on Laplace's Equation
- Numerical 2 on Laplace's Equation
- Numerical 3 on Laplace's Equation
- Parallel Plate Capacitor
- Coaxial Capacitor
- Spherical Capacitor
- Numerical 1 on Capacitor
- Method of Images (Image Theory)
- Numerical 1 on Image Theory
- Numerical 2 on Image Theory
- Continuity Equation and Relaxation Time
- Electric Dipole
- Numerical 1 on Electric Dipole
- Energy Density in Electrostatic Field
- Numerical 1 on Energy Density

- Introduction and Biot Savart Law
- Magnetic Field Intensity Due to Infinite Long Current Carrying Wire
- Numerical 1 Magnetic Field Due to Wire
- Magnetic Field Intensity Due to Finite Length Current Carrying Wire
- Numerical 2 Magnetic Field Due to Wire
- Magnetic Field Due to Circular Loop
- Numerical 1 on Magnetic Field Due to Circular Loop
- Ampere's Law and Maxwell Equation
- Numerical 1 on Ampere's Law
- Numerical 2 on Ampere's Law
- Magnetic Vector and Scalar Potential
- Numerical 1 on Magnetic Vector Potential
- Magnetic Boundary Condition
- Numerical 1 on Magnetic Boundary Condition
- Numerical 2 on Magnetic Boundary Condition
- Lorentz Force
- Force on Current Carrying Wire in Magnetic Field
- Magnetic Flux Density and Maxwell Equation

Professor Prahlad Singh has twelve years of prior experience in the field of education and has gained M. Tech with a specialization in the branch of Electronics and Communication Engineering. Primary subjects of his teaching are EMT, Analog Electronics, EDC, Network Analysis, Signal and System, whereas secondary subject remain Digital Electronics. His teaching philosophy is based on two factors, satisfaction, and result of his students.

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