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Kavayitri Bahinabai Chaudhari North Maharashtra University, Maharashtra
Information Technology
Physics
Kavayitri Bahinabai Chaudhari North Maharashtra University, Maharashtra, Information Technology Semester 1, Physics Syllabus
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Unit - 1 Introduction to Electromagnetic Theory and Optics
1.1 ELECTROSTATICS
1.2 CALCULATION OF ELECTRIC FIELD AND ELECTROSTATIC POTENTIAL FOR A CHARGE DISTRIBUTION
1.3 DIVERGENCE AND CURL OF ELECTROSTATIC FIELD
1.4 LAPLACE’S AND POISSON’S EQUATIONS FOR ELECTROSTATIC POTENTIAL AND UNIQUENESS OF THEIR SOLUTION
1.5 BIOSAVART LAW
1.6 DIVERGENCE AND CURL OF STATIC MAGNETIC FIELD
1.7 MAGNETIZATION AND ASSOCIATED BOUND CURRENTS
1.8 MAGNETIC SUSCEPTIBILITY AND FERROMAGNETIC PARAMAGNETIC AND DIAMAGNETIC MATERIALS
1.9 FARADAY’S LAW IN TERMS OF EMF PRODUCED BY CHANGING MAGNETIC FLUX
1.10 LENZ’S LAW
1.11 MAXWELL’S EQUATIONS IN VACUUM AND IN NONCONDUCTING MEDIUM
1.12 ELECTRODYNAMICS MOTION OF A CHARGED PARTICLE IN ELECTRIC AND MAGNETIC FIELDS
1.13 OPTICS INTERFERENCE DIFFRACTION POLARIZATION
1.14 APPLICATIONS CRO
Unit - 2 Acoustics and Introduction to Mechanics
2.1 ARCHITECTURAL ACOUSTICS AND ULTRASONIC
2.2 POTENTIAL ENERGY FUNCTION AND F GRAD V
2.3 EQUIPOTENTIAL SURFACES AND MEANING OF GRADIENT
2.4 CONSERVATIVE AND NONCONSERVATIVE FORCES
2.5 CURL OF A FORCE FIELD
2.6 PROBLEM OF CENTRAL FORCE FIELD
2.7 KEPLERS LAWS
2.8 INERTIAL AND NONINERTIAL FRAME OF REFERENCES
2.9 MOTION OF RIGID BODY IN 2D
Unit - 3 Quantum Mechanics and Nanotechnology for Engineers
3.1 INTRODUCTION TO QUANTUM MECHANICS
3.2 WAVE NATURE OF PARTICLES
3.3 TIMEDEPENDENT AND TIME INDEPENDENT SCHRODINGER EQUATION FOR WAVE FUNCTION
3.4 SOLUTION OF STATIONARYSTATE SCHRODINGER EQUATION FOR ONE DIMENSIONAL PROBLEMS– PARTICLE IN A BOX
3.5 WAVE FUNCTION
3.6 BORN INTERPRETATION
3.7 PROBABILITY CURRENT
3.8 EXPECTATION VALUES
3.9 FREEPARTICLE WAVE FUNCTION AND WAVEPACKETS
3.10 UNCERTAINTY PRINCIPLE
3.11 NANOTECHNOLOGY SYNTHESIS CHARACTERIZATION AND APPLICATIONS OF NANO SCIENCE AND NANOTECHNOLOGY
Unit - 4 Atomic Molecular physics
4.1 INNERSHELL VACANCY
4.2 XRAYS
4.3 AUGER TRANSITIONS
4.4 COMPTON EFFECT
4.5 PROPERTIES OF LASER BEAMS MONOCHROMATICITY COHERENCE DIRECTIONALITY AND BRIGHTNESS LASER SPECKLES
4.6 ABSORPTION SPONTANEOUS EMISSION AND STIMULATED EMISSION
4.7 EINSTEIN’S THEORY OF MATTER RADIATION INTERACTION AND A AND B COEFFICIENTS
4.8 APPLICATIONS OF LASERS IN SCIENCE ENGINEERING AND MEDICINE
4.8 TYPES OF LASERS GAS LASERS HENE CO2
4.9 APPLICATION FIBER OPTICS
Unit - 5 Solid state physics and Semiconductor Physics
5.1 ENERGY BANDS IN SOLID METALS SEMICONDUCTORS AND INSULATORS
5.2 INTRINSIC AND EXTRINSIC SEMICONDUCTORS
5.3 PN JUNCTION
5.4 PHOTOVOLTAIC EFFECT
5.5 SUPERCONDUCTIVITYBASIC PHENOMENOLOGY
5.6 MEISSNER EFFECT
5.7 TYPE I AND TYPE II SUPERCONDUCTORS
5.8 BCS PAIRING MECHANISMS
5.9 HIGH TC MATERIALS
5.10 APPLICATIONS HALL EFFECT
5.11 SOLID STATE LASER RUBYND YAG
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Other Subjects of Semester-1
Mathematics - i
Programming for problem solving
Basic electrical & electronics engineering
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