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Jawaharlal Nehru Technological University, Telangana
Electronics and Communication engineering
Engineering Graphics
Jawaharlal Nehru Technological University, Telangana, Electronics and Communication engineering Semester 1, Engineering Graphics Syllabus
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Unit - 1 Introduction of Engineering Drawing
UNIT 1
INTRODUCTION TO MECHANICS
1.1 TRANSFORMATION OF SCALARS AND VECTORS UNDER ROTATION TRANSFORMATION
1.2 FORCES IN NATURE
1.3 NEWTON’S LAWS AND ITS COMPLETENESS IN DESCRIBING PARTICLE MOTION
1.4 FORM INVARIANCE OF NEWTON’S SECOND LAW
1.5 SOLVING NEWTON’S EQUATIONS OF MOTION IN POLAR COORDINATES
1.6 PROBLEMS INCLUDING CONSTRAINTS AND FRICTION
1.7 EXTENSION TO CYLINDRICAL AND SPHERICAL COORDINATES
Unit - 2 Orthographic Projections
UNIT 2
HARMONIC OSCILLATIONS
2.1 MECHANICAL AND ELECTRICAL SIMPLE HARMONIC OSCILLATORS
2.2 COMPLEX NUMBER NOTATION AND PHASOR REPRESENTATION OF SIMPLE HARMONIC MOTION
2.3 DAMPED HARMONIC OSCILLATOR HEAVY CRITICAL AND LIGHT DAMPING
2.4 ENERGY DECAY IN A DAMPED HARMONIC OSCILLATOR
2.5 QUALITY FACTOR
2.6 MECHANICAL AND ELECTRICAL OSCILLATORS
2.7 MECHANICAL AND ELECTRICAL IMPEDANCE
2.8 STEADY STATE MOTION OF FORCED DAMPED HARMONIC OSCILLATOR
2.9 POWER OBSERVED BY OSCILLATOR
Unit - 3 Projections of Regular Solids
UNITIII
WAVES IN ONE DIMENSION
3.1 TRANSVERSE WAVE ON A STRING THE WAVE EQUATION ON A STRING HARMONIC WAVES
3.2 REFLECTION AND TRANSMISSION OF WAVES AT A BOUNDARY
3.3 IMPEDANCE MATCHING
3.4 STANDING WAVES AND THEIR EIGEN FREQUENCIES
3.5 LONGITUDINAL WAVES AND THE WAVE EQUATIONS FOR THEM
3.6 ACOUSTIC WAVES AND SPEED OF SOUND
3.7 STANDING SOUND WAVES
Unit - 4 Development of Surfaces of Right Regular Solids
UNIT 4
WAVE OPTICS
4.1 HUYGEN’S PRINCIPLE
4.2 SUPERPOSITION OF WAVES AND INTERFERENCE OF LIGHT BY WAVE FRONT SPLITTING AND AMPLITUDE SPLITTING
4.3 YOUNG’S DOUBLE SLIT EXPERIMENT
4.4 NEWTON’S RINGS
4.5 MICHELSON’S INTERFEROMETER
4.6 MACHZEHNDER INTERFEROMETER
4.7 FRUNHOFER DIFFRACTION FROM A SINGLE SLIT AND CIRCULAR APERTURE
4.8 DIFFRACTION GRATING RESOLVING POWER
Unit - 5 Isometric Projection
UNIT 5
LASERS AND FIBRE OPTICS
5.1 LASERS INTRODUCTION TO INTERACTION OF RADIATION WITH MATTER
5.2 COHERENCE
5.3 PRINCIPLE AND WORKING OF LASER
5.4 POPULATION INVERSION
5.5 PUMPING
5.6 TYPES OF LASERS RUBY LASER
5.7 CARBON DIOXIDE CO2 LASER
5.8 HENE LASER
5.9 APPLICATIONS OF LASER
5.10 FIBRE OPTICS INTRODUCTION
5.11 OPTICAL FIBRE AS A DIELECTRIC WAVE GUIDE TOTAL INTERNAL REFLECTION
5.12 ACCEPTANCE ANGLE ACCEPTANCE CONE AND NUMERICAL APERTURE
5.13 STEP AND GRADED INDEX FIBRES
5.14 LOSSES ASSOCIATED WITH OPTICAL FIBRES
5.15 APPLICATIONS OF OPTICAL FIBRES
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Other Subjects of Semester-1
Applied physics
Mathematics - i
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