| 
																Syllabus 
																	 | 
																 | 
															
															
																
																	
																		 | 
																		 | 
																		Engineering Physics-2 Syllabus 
																			
																				(2 pages)
																			 | 
																		 | 
																	
																
															
														
															
																 | 
																CRASH COURSE 
																	 | 
																 | 
															
															
																
																	
																		 | 
																		 | 
																		PART 1: TOP 20 QUESTIONS PHYSICS 2 ( 99% SURE QUESTIONS) (35+ MARKS) 
																			
																				(2 pages)
																			 | 
																		 | 
																	
																
																	
																		 | 
																		 | 
																		PHYSICS TOP QUESTIONS part 2 
																			
																				(1 pages)
																			 | 
																		 | 
																	
																
																	
																		 | 
																		 | 
																		MODEL PAPER ANSWERS PART 1 
																			
																				(34 pages)
																			 | 
																		 | 
																	
																
																	
																		 | 
																		 | 
																		For diffraction & nanotechnology, follow chapter notes ( do not share with anyone else) 
																			 | 
																		 | 
																	
																
																	
																		 | 
																		 | 
																		Relativity model paper answers 
																			
																				(9 pages)
																			 | 
																		 | 
																	
																
																	
																		 | 
																		 | 
																		🔴Solutions of numerical can be found in chapter wise notes 
																			 | 
																		 | 
																	
																
																	
																		 | 
																		 | 
																		physics 2 Paper SET 2 
																			
																				(2 pages)
																			 | 
																		 | 
																	
																
																	
																		 | 
																		 | 
																		physics 2 Paper SET 1  
																			
																				(3 pages)
																			 | 
																		 | 
																	
																
																	
																		 | 
																		 | 
																		Physics Model Paper 
																			
																				(2 pages)
																			 | 
																		 | 
																	
																
																	
																		 | 
																		 | 
																		MID COMPLETE PHYSICS OF SENSOR NOTES 
																			
																				(13 pages)
																			 | 
																		 | 
																	
																
															
														
															
																 | 
																DIFFRACTION 
																	 | 
																 | 
															
															
																
																	
																		 | 
																		 | 
																		Details of Engineering Physics 2 Syllabus | Diffraction of Light 
																				12:00
																			
																			 | 
																		 | 
																	
																
																	
																		 | 
																		 | 
																		Various Phenomenon Associated With Light 
																				13:00
																			
																			 | 
																		 | 
																	
																
																	
																		 | 
																		 | 
																		Types of Diffraction: Fresnel Vs Fraunhofer 
																				14:00
																			
																			 | 
																		 | 
																	
																
																	
																		 | 
																		 | 
																		Concept of path & Phase difference 
																				8:00
																			
																			 | 
																		 | 
																	
																
																	
																		 | 
																		 | 
																		Diffraction: Fraunhoffer diffraction at single slit 
																				42:00
																			
																			 | 
																		 | 
																	
																
																	
																		 | 
																		 | 
																		Numerical Solving: Fraunhoffer Single Slit Diffraction 
																			 | 
																		 | 
																	
																
																	
																		 | 
																		 | 
																		Position of Maxima & Minima in Fraunhoffer Diffraction 
																				17:00
																			
																			 | 
																		 | 
																	
																
																	
																		 | 
																		 | 
																		Dependency of Spectrum on Wavelength and Slit Width 
																				9:00
																			
																			 | 
																		 | 
																	
																
																	
																		 | 
																		 | 
																		Width of Central Maxima 
																				5:00
																			
																			 | 
																		 | 
																	
																
																	
																		 | 
																		 | 
																		Diffraction Grating: Derivation of Intensity 
																				23:00
																			
																			 | 
																		 | 
																	
																
																	
																		 | 
																		 | 
																		Position of Maxima & Minima: Diffraction Grating 
																				33:00
																			
																			 | 
																		 | 
																	
																
																	
																		 | 
																		 | 
																		Determination of wavelength of light using plane transmission grating 
																				11:00
																			
																			 | 
																		 | 
																	
																
																	
																		 | 
																		 | 
																		Resolving power of a grating 
																				16:00
																			
																			 | 
																		 | 
																	
																
																	
																		 | 
																		 | 
																		DIFFRACTION FULL CHAPTER 
																			
																				(33 pages)
																			 | 
																		 | 
																	
																
																	
																		 | 
																		 | 
																		Numerical on Single Slit Diffraction 
																			 | 
																		 | 
																	
																
																	
																		 | 
																		 | 
																		Numerical on Grating 
																			 | 
																		 | 
																	
																
															
														
															
																 | 
																RELATIVITY 
																	 | 
																 | 
															
															
																
																	
																		 | 
																		 | 
																		Relativity | Engineering Physics | #MU #SEM 2 
																				10:00
																			
																			 | 
																		 | 
																	
																
																	
																		 | 
																		 | 
																		Prerequisites: Cartesian co-ordinate system, Special theory of Relativity & Inertial and Non-inertial Frames of reference 
																				56:00
																			
																			 | 
																		 | 
																	
																
																	
																		 | 
																		 | 
																		Michelson Morley Experiment: Part 1 
																				48:00
																			
																			 | 
																		 | 
																	
																
																	
																		 | 
																		 | 
																		Michelson Morley Experiment: Part 2 & Galilean transformations 
																				22:00
																			
																			 | 
																		 | 
																	
																
																	
																		 | 
																		 | 
																		Lorentz Transformation 
																			 | 
																		 | 
																	
																
																	
																		 | 
																		 | 
																		time dilation +length contraction+energy mass relation+relativity numerical combine 
																			 | 
																		 | 
																	
																
																	
																		 | 
																		 | 
																		Relativity Notes 
																			
																				(32 pages)
																			 | 
																		 | 
																	
																
															
														
															
																 | 
																LASER AND FIBRE OPTICS 
																	 | 
																 | 
															
															
																
																	
																		 | 
																		 | 
																		LASER COMPLETE THEORY 
																			
																				(18 pages)
																			 | 
																		 | 
																	
																
																	
																		 | 
																		 | 
																		Laser: spontaneous emission and stimulated emission 
																				32:00
																			
																			 | 
																		 | 
																	
																
																	
																		 | 
																		 | 
																		Einsteins Equations 
																				17:00
																			
																			 | 
																		 | 
																	
																
																	
																		 | 
																		 | 
																		Population inversion & Types of Pumping 
																				18:00
																			
																			 | 
																		 | 
																	
																
																	
																		 | 
																		 | 
																		Levels of pumping 
																				6:00
																			
																			 | 
																		 | 
																	
																
																	
																		 | 
																		 | 
																		Components of a Laser: Active medium. Resonantor Cavity, Pumping source 
																				13:00
																			
																			 | 
																		 | 
																	
																
																	
																		 | 
																		 | 
																		Helium Neon laser 
																				15:00
																			
																			 | 
																		 | 
																	
																
																	
																		 | 
																		 | 
																		Semiconductor Diode Laser 
																				8:00
																			
																			 | 
																		 | 
																	
																
																	
																		 | 
																		 | 
																		Nd:YAG laser 
																				5:00
																			
																			 | 
																		 | 
																	
																
																	
																		 | 
																		 | 
																		Applications of laser- Holography 
																			 | 
																		 | 
																	
																
																	
																		 | 
																		 | 
																		introduction to optical fiber 
																				6:00
																			
																			 | 
																		 | 
																	
																
																	
																		 | 
																		 | 
																		Concept of total inernal reflection 
																				6:00
																			
																			 | 
																		 | 
																	
																
																	
																		 | 
																		 | 
																		Angle of acceptance and  Numerical Aperture 
																				22:00
																			
																			 | 
																		 | 
																	
																
																	
																		 | 
																		 | 
																		OPTICAL FIBRE COMPLETE NOTES 
																			
																				(15 pages)
																			 | 
																		 | 
																	
																
																	
																		 | 
																		 | 
																		V number, types of optical fibre, optical fibre communication system 
																			 | 
																		 | 
																	
																
																	
																		 | 
																		 | 
																		Numerical on Optical Fiber 
																			 | 
																		 | 
																	
																
															
														
															
																 | 
																ELECTRODYNAMICS 
																	 | 
																 | 
															
															
																
																	
																		 | 
																		 | 
																		Live 1: Concept of Scalar & Vector Field, Gradient, divergence & Curl 
																			 | 
																		 | 
																	
																
																	
																		 | 
																		 | 
																		Curl, Divergence & Gradient 
																			 | 
																		 | 
																	
																
																	
																		 | 
																		 | 
																		Physical Significance of Divergence, Gradient & Curl 
																			 | 
																		 | 
																	
																
																	
																		 | 
																		 | 
																		Electrodynamics Complete Notes 
																			
																				(19 pages)
																			 | 
																		 | 
																	
																
																	
																		 | 
																		 | 
																		Complete Electrodynamics 1 shot | Engineering Physics 2 | #mu #sem2 #physics2 
																				55:00
																			
																			 | 
																		 | 
																	
																
																	
																		 | 
																		 | 
																		Complete Electrodynamics 1 shot | Part 2 | Engineering Physics 2 | #mu #sem2 #physics2 
																				47:00
																			
																			 | 
																		 | 
																	
																
															
														
															
																 | 
																NANOTECHNOLOGY 
																	 | 
																 | 
															
															
																
																	
																		 | 
																		 | 
																		Nanoparticles Introduction, surface volume ratio, properties 
																				9:00
																			
																			 | 
																		 | 
																	
																
																	
																		 | 
																		 | 
																		SEM-TEM-AFM 
																			 | 
																		 | 
																	
																
																	
																		 | 
																		 | 
																		all methods to synthesise of nano materials 
																			 | 
																		 | 
																	
																
																	
																		 | 
																		 | 
																		NANOTECHNOLOGY NOTES UPDATED 
																			
																				(14 pages)
																			 | 
																		 |