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Biju Patnaik University of Technology, Odisha
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Biju Patnaik University of Technology, Odisha, Computer Engineering Semester 2, Physics Syllabus
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Syllabus
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Unit - 1 Oscillation & Waves
1.1 SIMPLE HARMONIC OSCILLATION VELOCITY OF MOTION ACCELERATION TIME PERIOD FREQUENCY PHASE
1.2 DAMPED HARMONIC OSCILLATION WAVE EQUATION OF DAMPED VIBRATION
1.3 LOGARITHMIC DECREMENT
1.4 QUALITY FACTOR
1.5 RELAXATION TIME
1.6 FORCED OSCILLATION RESONANCE VELOCITY RESONANCE AND AMPLITUDE RESONANCE
1.7 COUPLED OSCILLATION NORMAL COORDINATES AND NORMAL FREQUENCIES IN PHASE AND OUTOFPHASE OSCILLATION
1.8 CONCEPT OF WAVE AND WAVE EQUATION
1.9 REFLECTION AND TRANSMISSION OF LONGITUDINAL WAVES AT BOUNDARIES
Unit - 2 OPTICS
2.1 CONCEPT OF INTERFERENCE
2.2 TWO SOURCES INTERFERENCE PATTERN BIPRISM FRINGE WIDTH USES OF BIPRISM
2.3 NEWTON’S RING AMP MEASUREMENT OF WAVELENGTH AND REFRACTIVE INDEX
2.4 DIFFRACTION HUYGEN’S PRINCIPLE
2.5 FRESNEL’S DIFFRACTION AND FRAUNHOFFER’S DIFFRACTION
2.6 HALF PERIOD ZONE
2.7 ZONE PLATE CONSTRUCTION PRINCIPLE MULTIPLE FOCI COMPARISON OF ZONE PLATE WITH CONVEX LENS
2.8 FRAUNHOPER’S DIFFRACTION OF SINGLE SLIT INTENSITY DISTRIBUTION
Unit - 3 LASER and Fibre Optics
3.1 ATOMIC EXCITATION AND ENERGY STATES
3.2 INTERACTION OF EXTERNAL ENERGY WITH ATOMIC ENERGY STATES
3.3 ABSORPTION SPONTANEOUS EMISSION AND STIMULATED EMISSION
3.4 POPULATION INVERSION
3.5 PUMPING MECHANISM OPTICAL PUMPING ELECTRICAL PUMPING
3.6 COMPONENTS OF LASER SYSTEM ACTIVE MEDIUM POPULATION INVERSION
3.7 RUBY LASER
3.8 HELIUMNEON LASER
3.9 SEMICONDUCTOR LASER BASIC CONCEPTS AND ENGINEERING APPLICATION ONLY
3.10 STRUCTURE OF OPTICAL FIBRE PRINCIPLE OF PROPAGATION
3.11 NUMERICAL APERTURE AND ACCEPTANCE ANGLE
3.12 CLASSIFICATION OF OPTICAL FIBRE SINGLE MODE AND MULTIMODE SIN AND GRIN
3.13 FOCL FIBER OPTIC COMMUNICATION LINK
3.14 SOLID STATE PHYSICS CRYSTALLINE AND AMORPHOUS SOLID
3.15 UNIT CELL LATTICE PARAMETER
3.16 MILLER INDICES
3.17 RECIPROCAL LATTICE ONLY CONCEPT
3.18 BRAGG’S LAW
3.19 CONCEPT OF FERMIONS AND BOSONS AND THEIR DISTRIBUTION FUNCTIONS
3.20 BAND THEORY OF SOLIDS QUALITATIVE
3.21 CLASSIFICATION OF MATERIALS METALS SEMICONDUCTOR AND INSULATOR IN TERMS OF BAND THEORY.
Unit - 4 Electromagnetism
4.1 INTRODUCTION SCALAR VECTOR FIELDS
4.2 GRADIENT OF SCALAR FIELD
4.3 DIVERGENCE AND CURL OF VECTOR FIELD
4.4 GAUSS DIVERGENCE THEOREM STOKES THEOREM ONLY STATEMENTS NO PROOF
4.5 GAUSS’S LAW OF ELECTROSTATICS IN FREE SPACE AND IN A MEDIUM ONLY STATEMENTS
4.6 FARADAY’S LAW OF ELECTROMAGNETIC INDUCTION ONLY STATEMENTS
4.7 DISPLACEMENT CURRENT
4.8 AMPERE’S CIRCUITAL LAW
4.9 MAXWELL’S EQUATION IN DIFFERENTIAL AND INTEGRAL FORM
4.10 ELECTROMAGNETIC WAVE EQUATION IN E
4.11 ELECTROMAGNETIC ENERGY
4.12 POYNTING THEOREM AND POYNTING VECTOR NO DERIVATION
Unit - 5 Quantum Physics
5.1 ELEMENTARY CONCEPTS OF QUANTUM PHYSICS FORMULATION TO DEAL WITH PHYSICAL SYSTEMS NEED FOR QUANTUM PHYSICS HISTORICAL OVERVIEWS FOR CONCEPT
5.2 EINSTEIN EQUATION DE BROGLIE HYPOTHESIS OF MATTER WAVES
5.3 COMPTON SCATTERING
5.4 PAIR PRODUCTION NO DERIVATION
5.5 UNCERTAINTY PRINCIPLE
5.6 APPLICATION OF UNCERTAINTY PRINCIPLE NONEXISTENCE OF ELECTRONS IN THE NUCLEUS
5.7 BASIC FEATURES OF QUANTUM MECHANICS TRANSITION FROM DETERMINISTIC TO PROBABILISTIC WAVE FUNCTION PROBABILITY DENSITY NORMALIZATION OF WAVE FUNCTION SIMPLE PROBLEM
5.8 OBSERVABLES AND OPERATORS
5.9 EXPECTATION VALUES SIMPLE PROBLEM
5.10 SCHRODINGER EQUATIONTIME DEPENDENT AND TIME INDEPENDENT EQUATION
5.11 APPLICATION FREE PARTICLE AND PARTICLE IN A BOX
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Other Subjects of Semester-2
Chemistry
Mathematics-ii
Basic civil engineering
Basic electrical engineering
Basic electronics engineering
Basic mechanical engineering
Programming for problem solving using c
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