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Punyashlok Ahilyadevi Holkar Solapur University, Maharashtra
Computer Engineering
Engineering Physics
Punyashlok Ahilyadevi Holkar Solapur University, Maharashtra, Computer Engineering Semester 2, Engineering Physics Syllabus
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Unit - 1 SEMICONDUCTOR PHYSICS
UNIT1
SEMICONDUCTOR PHYSICS
1.1 CLASSIFICATION OF SOLIDS FERMI LEVEL DEFINITION FERMIDIRAC PROBABILITY DISTRIBUTION FUNCTION INTRODUCTION ONLY
1.2 FERMI LEVEL IN INTRINSIC AND EXTRINSIC SEMICONDUCTORS EFFECT OF IMPURITY CONCENTRATION ON FERMI LEVEL DERIVATION FOR EFIN
1.3 FERMI LEVEL IN INTRINSIC AND EXTRINSIC SEMICONDUCTORS EFFECT OF IMPURITY CONCENTRATION ON FERMI LEVEL DERIVATION FOR EFIN
1.3 HALL EFFECT AND ITS APPLICATIONS
1.4 NUMERICAL PROBLEMS
Unit - 2 Crystallography
UNIT 2
CRYSTALLOGRAPHY
2.1 INTRODUCTION TO CRYSTAL SYSTEMS CHARACTERISTICS OF CUBIC UNIT CELL NUMBER OF ATOMS PER UNIT CELL ATOMIC RADIUS COORDINATION NUMBER
2.2 ATOMIC PACKING FACTOR VOID SPACE DENSITY OF CRYSTAL SYMMETRY ELEMENTS AXIS CENTER AND PLANE BRAGG’S LAW
2.3 MILLER INDICES INTER PLANNER DISTANCE BY USING MILLER INDICES
2.4 NUMERICAL PROBLEMS
Unit - 3 SOUND ENGINEERING
UNIT 3
SOUND ENGINEERING
3.1 ACOUSTICS INTRODUCTION REVERBERATION REVERBERATION TIME ABSORPTION COEFFICIENT DEFINITION ONLY SABINE’S FORMULA BASIC REQUIREMENTS FOR ACOUSTICALLY GOOD HALL
3.2 FACTORS AFFECTING ACOUSTICS OF AUDITORIUM AND THEIR REMEDIES
3.3 ULTRASONIC INTRODUCTION PIEZOELECTRIC EFFECT AND MAGNETOSTRICTION EFFECT INTRODUCTION PROPERTIES OF ULTRASONIC WAVES DETECTION METHODS OF ULTRASONIC WAVES AND APPLICATIONS.
3.4 NUMERICAL PROBLEMS
Unit - 4 RELATIVISTIC MECHANICS
UNIT4
RELATIVISTIC MECHANICS
4.1 INTRODUCTION POSTULATES OF SPECIAL THEORY OF RELATIVITY LORENTZ TRANSFORMATION OF SPACE AND TIME
4.2 LENGTH CONTRACTION TIME DILATION
4.3 EQUIVALENCE OF MASS AND ENERGY
4.4 NUMERICAL PROBLEMS
Unit - 5 WAVE OPTICS
UNIT5
WAVE OPTICS
5.1 DIFFRACTION INTRODUCTION RESOLVING POWER RAYLEIGH CRITERION THEORY OF DIFFRACTION GRATING AND ITS RESOLVING POWER.
5.2 POLARIZATION CONCEPT OPTIC AXIS MALUS LAW POSITIVE AND NEGATIVE CRYSTALS
5.3 OPTICAL ACTIVITY SPECIFIC ROTATION LAURENT’S HALF SHADE POLARIMETER
5.4 NUMERICAL PROBLEMS
Unit - 6 LASER
UNIT 6
LASER
6.1 INTERACTION OF RADIATION WITH MATTERSTIMULATED ABSORPTION SPONTANEOUS AND STIMULATED EMISSION POPULATION INVERSION PUMPING METASTABLE STATE PROPERTIES OF LASER
6.2 HENE GAS LASER
6.3 HOLOGRAPHY CONSTRUCTION AND RECONSTRUCTION APPLICATIONS OF LASER SCIENCE ENGINEERING AND MEDICAL
Unit - 7 OPTICAL FIBERS
UNIT 7
OPTICAL FIBERS
7.1 INTRODUCTION STRUCTURE OF OPTICAL FIBER BASIC PRINCIPLE OF OPTICAL FIBER TOTAL INTERNAL REFLECTION
7.2 DERIVATION FOR ACCEPTANCE ANGLE ACCEPTANCE CONE AND NUMERICAL APERTURE FRACTIONAL REFRACTIVE INDEX CHANGE
7.3 CLASSIFICATION OF OPTICAL FIBERS SINGLE MODE AND MULTIMODE FIBER STEP INDEX AND GRADED INDEX FIBERS ADVANTAGES OF OPTICAL FIBERS OVER CONDUCTING WIRES
7.4 NUMERICAL PROBLEM
Unit - 7 OPTICAL FIBERS
UNIT 7
OPTICAL FIBERS
Unit - 8 INTRODUCTION TO QUANTUM MECHANICS AND NANOTECHNOLOGY
UNIT8
INTRODUCTION TO QUANTUM MECHANICS AND NANOTECHNOLOGY
8.1 DE BROGLIE HYPOTHESIS DE BROGLIE WAVELENGTH OF MATTER WAVES IN TERMS OF KINETIC ENERGY AND ASSOCIATED WITH PARTICLE IN THERMAL EQUILIBRIUM PROPERTIES OF MATTER WAVES
8.2 DAVISSONGERMER EXPERIMENT APPARATUS INVESTIGATIONS AND ANALYSIS
8.3 NANOTECHNOLOGY INTRODUCTION CARBON NANOTUBES AND ITS CLASSIFICATION APPLICATIONS OF NANOTECHNOLOGY ELECTRONICS ENERGY AUTOMOBILES SPACE AND DEFENSE MEDICAL ENVIRONMENTAL TEXTILE COSMETICS
8.4 NUMERICAL PROBLEM
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Other Subjects of Semester-2
Engineering chemistry
Engineering mathematics ii
Professional communication
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