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Osmania University, Telangana
Electronics and Communication engineering
Physics
Osmania University, Telangana, Electronics and Communication engineering Semester 1, Physics Syllabus
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Unit - 1 Crystallography And Crystal Defects
UNIT – 1
CRYSTALLOGRAPHY AND CRYSTAL DEFECTS
1.1 CRYSTALLOGRAPHY INTRODUCTION TYPES OF CRYSTAL SYSTEMS BRAVAIS LATTICES
1.2 LATTICE PLANES AND MILLER INDICES CUBIC SYSTEM INTER PLANAR SPACING CUBIC SYSTEM
1.3 BRAGG’S LAW
1.4 POWDER DIFFRACTION METHOD
1.5 CRYSTAL DEFECTS CLASSIFICATION OF POINT DEFECTS CONCENTRATION OF SCHOTTKY DEFECTS IN METALS AND IONIC CRYSTALS CONCENTRATION OF FRANKEL DEFECTS
1.6 LINE DEFECTS SCREW AND EDGE DISLOCATIONS BURGER’S VECTOR
Unit - 2 BAND THEORY OF SOLIDS & SEMICONDUCTORS AND DIELECTRIC MATERIALS
UNIT – 5
LASERS AND FIBER OPTICS
5.1 LASERS CHARACTERISTICS OF LASERS
5.2 SPONTANEOUS AND STIMULATED EMISSION OF RADIATION
5.3 EINSTEIN’S COEFFICIENTS
5.4 POPULATION INVERSION
5.5 RUBY LASER
5.6 HELIUM NEON LASER
5.7 SEMICONDUCTOR LASER
5.8 APPLICATIONS OF LASERS
5.9 FIBER OPTICS INTRODUCTION
5.10 PROPAGATION OF LIGHT THROUGH AN OPTICAL FIBER
5.11 ACCEPTANCE ANGLE NUMERICAL APERTURE NA
5.12 TYPES OF OPTICAL FIBERS AND REFRACTIVE INDEX PROFILES
5.13 FIBER DRAWING PROCESS DOUBLE CRUCIBLE METHOD
5.14 LOSSES IN OPTICAL FIBERSS
5.15 APPLICATIONS OF OPTICAL FIBERS
Unit - 3 Wave Mechanics And Electromagnetic Theory
UNIT – 3
WAVE MECHANICS AND ELECTROMAGNETIC THEORY
3.1 WAVE MECHANICS MATTER WAVES – DEBROGLIE WAVELENGTH
3.2 PROPERTIES OF WAVE FUNCTION PHYSICAL SIGNIFICANCE
3.3 SCHRODINGER TIME DEPENDENT AND TIME INDEPENDENT WAVE EQUATION
3.4 PARTICLE IN A 1D BOX
3.5 ELECTROMAGNETIC THEORY BASIC LAWS OF ELECTRICITY AND MAGNETISM
3.6 MAXWELL’S EQUATIONS IN INTEGRAL AND DIFFERENTIAL FORMS
3.7 CONDUCTION AND DISPLACEMENT CURRENT
3.8 RELATION BETWEEN D E AND P –
3.9 ELECTROMAGNETIC WAVES EQUATION OF PLANE WAVE IN FREE SPACE
3.10 POYNTING THEOREM
Unit - 4 Magnetic Materials & Superconductivity
UNIT – 4
MAGNETIC MATERIALS SUPERCONDUCTIVITY
4.1 MAGNETIC MATERIALS CLASSIFICATION OF MAGNETIC MATERIALS DIA PARA FERRO ANTIFERRO AND FERRIMAGNETIC MATERIALS
4.2 WEISS MOLECULAR FIELD THEORY OF FERROMAGNETIC
4.3 MAGNETIC DOMAINS
4.4 HYSTERESIS CURVE SOFT AND HARD MAGNETIC MATERIALS
4.5 FERRITES APPLICATIONS OF FERRITES
4.6 SUPERCONDUCTIVITY INTRODUCTION GENERAL PROPERTIES OF SUPER CONDUCTORS
4.7 MEISSNER EFFECT
4.8 TYPE I AND TYPE II SUPERCONDUCTORS
4.9 BCS THEORY QUALITATIVE
4.10 INTRODUCTION TO HIGH TC SUPERCONDUCTORS
4.11 APPLICATIONS OF SUPERCONDUCTORS
Unit - 5 Lasers And Fiber Optics
UNIT – 5
LASERS AND FIBER OPTICS
5.1 LASERS CHARACTERISTICS OF LASERS
5.2 SPONTANEOUS AND STIMULATED EMISSION OF RADIATION
5.3 EINSTEIN’S COEFFICIENTS
5.4 POPULATION INVERSION
5.5 RUBY LASER
5.6 HELIUM NEON LASER
5.7 SEMICONDUCTOR LASER
5.8 APPLICATIONS OF LASERS
5.9 FIBER OPTICS INTRODUCTION
5.10 PROPAGATION OF LIGHT THROUGH AN OPTICAL FIBER
5.11 ACCEPTANCE ANGLE NUMERICAL APERTURE NA
5.12 TYPES OF OPTICAL FIBERS AND REFRACTIVE INDEX PROFILES
5.13 FIBER DRAWING PROCESS DOUBLE CRUCIBLE METHOD
5.14 LOSSES IN OPTICAL FIBERSS
5.15 APPLICATIONS OF OPTICAL FIBERS
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Other Subjects of Semester-1
Mathematics - i
Indian constitution
Basic electrical engineering
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