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Maharaja Ranjit Singh Punjab Technical University, Punjab
Electrical Engineering
Physics (Waves and Optics and Introduction to Quantum Mechanics)
Maharaja Ranjit Singh Punjab Technical University, Punjab, Electrical Engineering Semester 1, Physics (Waves and Optics and Introduction to Quantum Mechanics) Syllabus
Physics (Waves and Optics and Introduction to Quantum Mechanics) Lecture notes
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Unit - 1 Electromagnetic Waves and Dielectrics
1.1 INTRODUCTION AND PHYSICAL SIGNIFICANCE OF GRADIENT DIVERGENCE CURL
1.2 DIELECTRIC POLARIZATION QUALITATIVE ONLY
1.3 TYPES OF POLARIZATION
1.4 DISPLACEMENT CURRENT
1.5 MAXWELL’S EQUATIONS
1.6 EQUATION OF EM WAVES IN FREE SPACE VELOCITY OF EM WAVES
1.7 POYNTING VECTOR
1.8 ELECTROMAGNETIC SPECTRUM BASIC IDEAS OF DIFFERENT REGION
Unit - 2 Propagation of Light and Geometric Optics
2.1 FERMAT’S PRINCIPLE OF STATIONARY TIME AND ITS APPLICATIONS E.G. IN EXPLAINING MIRAGE EFFECT LAWS OF REFLECTION AND REFRACTION
2.2 BREWSTER’S ANGLE
2.3 TOTAL INTERNAL REFLECTION
2.4 HUYGENS’ PRINCIPLE
2.5 SUPERPOSITION OF WAVES AND INTERFERENCE OF LIGHT BY WAVEFRONT SPLITTING AND AMPLITUDE SPLITTING
2.6 YOUNG’S DOUBLE SLIT EXPERIMENT
2.7 NEWTON’S RING EXPERIMENT
2.8 FARUNHOFER DIFFRACTION FROM A SINGLE SLIT AND A CIRCULAR APERTURE
2.9 THE RAYLEIGH CRITERION FOR LIMIT OF RESOLUTION AND ITS APPLICATION TO VISION
2.10 DIFFRACTION GRATINGS AND THEIR RESOLVING POWER
Unit - 3 Lasers and Applications
3.1 SPONTANEOUS AND STIMULATED EMISSION STIMULATED ABSORPTION
3.2 PUMPING AND POPULATION INVERSION
3.3 EINSTEIN’S THEORY OF MATTER RADIATION INTERACTION AND A AND B COEFFICIENTS
3.4 AMPLIFICATION OF LIGHT BY POPULATION INVERSION
3.5 DIFFERENT TYPES OF LASERS GAS LASERS HENE CO2
3.6 SOLIDSTATE LASERS RUBY
3.7 PROPERTIES OF LASER BEAMS MONOCHROMATICITY COHERENCE DIRECTIONALITY AND BRIGHTNESS
3.8 APPLICATIONS OF LASERS IN SCIENCE ENGINEERING AND MEDICINE
Unit - 4 Quantum Mechanics
4.1 INTRODUCTION TO QUANTUM MECHANICS
4.2 WAVE NATURE OF PARTICLES DE BROGLIE’S CONCEPT
4.3 TIME DEPENDENT AND TIMEINDEPENDENT SCHRODINGER EQUATION FOR WAVEFUNCTION
4.4 PROBABILITY CURRENT
4.5 FREEPARTICLE WAVEFUNCTION AND WAVE PACKET
4.6 UNCERTAINTY PRINCIPLE APPLICATION OF UNCERTAINTY PRINCIPLE NONEXISTENCE OF ELECTRON IN THE NUCLEUS
4.7 EXPECTATION VALUE
4.8 SCHRODINGER EQUATION FOR ONE DIMENSIONAL PROBLEMS– PARTICLE IN A BOX LINEAR HARMONIC OSCILLATOR CONCEPT OF SCATTERING FROM A POTENTIAL BARRIER AND TUNNELING
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Other Subjects of Semester-1
Basic electrical engineering
Engineering graphics & design
Mathematics-i (calculus and differential equations)
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