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Maharaja Ranjit Singh Punjab Technical University, Punjab
Mechanical Engineering
Physics (Electromagnetism)
Maharaja Ranjit Singh Punjab Technical University, Punjab, Mechanical Engineering Semester 1, Physics (Electromagnetism) Syllabus
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Unit - 1 Electrostatics in Vaccum
1.1 CALCULATION OF ELECTRIC FIELD AND ELECTROSTATIC POTENTIAL FOR A CHARGE DISTRIBUTION
1.2 DIVERGENCE AND CURL OF ELECTROSTATIC FIELD
1.3 LAPLACE’S AND POISSON’S EQUATIONS FOR ELECTROSTATIC POTENTIAL
1.4 BASIC IDEA OF UNIQUENESS THEOREM
1.5 METHOD OF IMAGES PLANE CONDUCTING SURFACE
1.6 INTRODUCTION TO BOUNDARY CONDITIONS OF ELECTRIC FIELD AND ELECTROSTATIC POTENTIAL
1.7 ELECTROSTATIC FIELD AND POTENTIAL OF A DIPOLE
1.8 BOUND CHARGES DUE TO ELECTRIC POLARIZATION
1.9 ELECTRIC DISPLACEMENT
1.10 BOUNDARY CONDITIONS ON DISPLACEMENT
Unit - 2 Magnetostatics and Magnetostatics in Linear Medium
2.1 BIOSAVART LAW
2.2 DIVERGENCE AND CURL OF STATIC MAGNETIC FIELD
2.3 VECTOR POTENTIAL AND CALCULATING IT FOR A GIVEN MAGNETIC FIELD
2.4 CONCEPT OF MAGNETIZATION AND ASSOCIATED BOUND CURRENTS
2.5 AUXILIARY MAGNETIC FIELD H
2.6 BOUNDARY CONDITIONS ON B AND H
2.7 MAGNETIC SUSCEPTIBILITY AND FERROMAGNETIC PARAMAGNETIC AND DIAMAGNETIC MATERIALS
2.8 QUALITATIVE DISCUSSION OF MAGNETIC FIELD IN PRESENCE OF MAGNETIC MATERIALS
Unit - 3 Faraday Laws and Maxwell Equations
3.1 INTRODUCTION TO FARADAY’S LAW
3.2 DIFFERENTIAL FORM OF FARADAY’S LAW EXPRESSING CURL OF ELECTRIC FIELD IN TERMS OF TIMEDERIVATIVE OF MAGNETIC FIELD AND CALCULATING ELECTRIC FIELD DUE TO CHANGING MAGNETIC FIELDS.
3.3 CONTINUITY EQUATION FOR CURRENT DENSITIES
3.4 MODIFYING EQUATION FOR THE CURL OF MAGNETIC FIELD TO SATISFY CONTINUITY EQUATION
3.5 DISPLACEMENT CURRENT AND MAGNETIC FIELD ARISING FROM TIME DEPENDENT ELECTRIC FIELD
3.6 MAXWELL’S EQUATION IN VACUUM AND NONCONDUCTING MEDIUM
3.7 POYNTING VECTOR CONCEPT ONLY
Unit - 4 Electromagnetic Wave
4.1 THE WAVE EQUATIONS
4.2 PLANE ELECTROMAGNETIC WAVES IN VACUUM THEIR TRANSVERSE NATURE AND POLARIZATION
4.3 TRANSVERSE NATURE
4.4 POLARIZATION
4.5 RELATION BETWEEN ELECTRIC AND MAGNETIC FIELDS OF AN ELECTROMAGNETIC WAVE
4.6 ENERGY CARRIED BY ELECTROMAGNETIC WAVES.
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Other Subjects of Semester-1
Basic electrical engineering
Engineering graphics & design
Mathematics-i (calculus, linear algebra)
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