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EXPERIMENTAL TECHNIQUES
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BASIC PHYSICS
UNITS AND MEASUREMNT
MOTION IN A STRIGHT LINE
MOTION IN A PLANE
LAWS OF MOTION
SYSTEM OF PARTICLE AND ROTATION MOTION
WORK ENERGY POWER
SOLIDS
FLUIDS
OSCIALLATION AND WAVES
MOVING CHARGES AND MAGNETISM
MAGNETISM AND MATTER
ELECTROMAGNETIC WAVES
WAVE OPTICS
DUAL NATURE OF MATTER
SEMICONDUCTOR ELECTRONICS
THERMAL PROPERTIES OF MATTER
THERMODYNAMICS
KYNETIC THEORY
ELECTRIC CHARGES AND FIELDS
CURRENT ELECTRICITY
ALTERNATING CURRENT
RAY OPTICLS AND INSTRUMENTS
ATOMS
NULCEI
ADVANCED PHYSICS
QUANTUM MECHANICS
MATHEMATICAL PHYSICS
CLASSICAL MECHANICS
SOLID STATE PHYSICS
ELECTRODYNAMICS
SPECTROSCOPY
ELECTRONICS
NULCEAR PHYSICS
STATISTICAL MECHANICS
BASIC MATHEAMTICS
SETS
RELATION & FUNCTION
SEQUENCE AND SERIES
TRIGNOMETRIC FUNCTION
INVERSE TRIGNOMETRY
COMPLEX NUMBERS & QUADRATIC EQUATIONS
MATRICES AND DETERMINANCE
VECTOR ALGIBRA
3D GEOMETRY
PERMUTATION & COMBINATIONS
PROBABILITY & STATISTICS
BINOMIAL THEOREM
CONTINUTY AND DIFFIERENTIABILITY
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Kronig Penney model
Diod
Fundamental Concepts
Intrinsic and Extrinsic semiconductors
The photo electric effect
Wein’s Displacement Law
Newton’s Laws of Motion & conservation laws
Latest updates
Kronig Penney model
Diod
Fundamental Concepts
Intrinsic and Extrinsic semiconductors
The photo electric effect
Wein’s Displacement Law
Newton’s Laws of Motion & conservation laws
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Diod
8 months ago
in:
Uncategorized
no comments
Fundamental Concepts
8 months ago
in:
AP- Electronics
no comments
Intrinsic and Extrinsic semiconductors
1 year ago
in:
Uncategorized
no comments
The photo electric effect
1 year ago
in:
AP-QM-WM
no comments
Wein’s Displacement Law
1 year ago
in:
AP-QM-WM
no comments
Newton’s Laws of Motion & conservation laws
1 year ago
in:
AP-CM-NM&CL-1
no comments
Units & Measurements-Qn & ans
2 years ago
in:
BP
,
BP-Units and measurements
,
BP-Units and Measurements -Qn & ans
no comments
Investigate the impact of quantum confinement on the probability of occupation of energy states in nanostructured semiconductors. How does the reduction in dimensionality affect the electron distribution and electronic properties of these materials?
2 years ago
in:
AP-SSP-SEMI-ALLWD
no comments
Explore the application of the Fermi-Dirac distribution function in modeling and simulating semiconductor devices. How does this distribution function assist in predicting the performance of semiconductor devices under different operating conditions?
2 years ago
in:
AP-SSP-SEMI-ALLWD
no comments
Explain the concept of the Fermi energy level in semiconductors and its relationship to the probability of electron occupation in energy states. Discuss how the position of the Fermi level influences the electrical properties of doped and intrinsic semiconductors.
2 years ago
in:
AP-SSP-SEMI-ALLWD
no comments
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