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Instructor Name

MAYURI INGOLE MADAM

Category

Science

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Course Requirements

To be eligible for admission to a 3-year Bachelor of Science (B.sc) degree program in colleges affiliated with Sant Gadge Baba Amravati University, a student typically needs to have successfully completed their Higher Secondary Certificate (HSC) in either the science or Science field and maintained a consistent academic record throughout their educational career.

Course Description

By the successful completion of the Course, the student will be all set to face the exam with confidence and with proper preparation of the course, student can ace the results.

Course Outcomes

tudents will be able to…


Use physical reasoning to explain astronomical phenomena and solve problems pertaining to the solar system. 

Synthesize how historical and modern astronomers arrive at their understanding of astronomical phenomena relevant to the solar system.  

Use celestial charts and models to be able to differentiate objects in the sky connected with solar system observations and beyond.  

Demonstrate knowledge of the basic physics, and technological advancements, such as telescopes and spacecraft, that pertain to the study of select bodies of the solar system.

Course Curriculum

1 SYLLABUS


1 Average and RMS Speed
Preview 13 Min


2 Boltzmann entropy 1
6 Min


3 Boltzmann entropy 2
5 Min


4 Boltzmann entropy relation 3
2 Min


5 distinguishable part 2
2 Min


6 Macrostate and microstates
8 Min


7 Maxwell boltzmann energy distribution
13 Min


8 Maxwell Boltzmann Energy distribution
7 Min


9 Most Probable velocity
9 Min


10 Statistical mechanics introduction
8 Min


11 Thermodynamic probability &Boltzmann entropy relation 1
6 Min


12 M B Statistic Distribution law
13 Min


13 M B Statistic part 2
13 Min


1 Unit cell
8 Min


2 Application B E of black body radiation part 2
8 Min


3 B E Most Probable distribution part 1
9 Min


4 B E statistic part 2
5 Min


5 B E statisticsThermodynamic probability
2 Min


6 Boson and Fermions
9 Min


7 distinguishable particle and Indistinguishable particle
18 Min


8 F D Statistics Most probable distribution part 2
8 Min


9 Fermi Dirac Statistics
5 Min


10 Fermi function and fermi energy
8 Min


11 Fermi Temperature
5 Min


1 Crystalline solid and amorphous solid
12 Min


2 Defect in solid
14 Min


3 Diffraction of x ray & Bragg's law
25 Min


4 Lattice Parameter and NACL Crystal
16 Min


5 Line defect and point defect
10 Min


6 Miller Indices
10 Min


7 Three Dimensional lattices crystal and type
11 Min


8 Two Dimensional Lattice crystal and type of crystal
13 Min


9 Co Ordination Number
12 Min


1 Electrical Conductivity and Ohm's law
12 Min


2 Electrical conductivity
12 Min


3 Energy Band
12 Min


4 Fermi energy and density of state
15 Min


5 Free electron model
8 Min


6 motion of electron and mean free path
13 Min


1 Energy loss part1
6 Min


2 Energy loss part2
3 Min


3 Hysteresis curve part1
7 Min


4 Hysteresis part2
7 Min


5 Hysteresis part3
8 Min


6 Intro Magnetic properties of material
18 Min


7 Langevin theory of paramagnetism part 2
10 Min


8 Langevin's theory of diamagnetism part 2
11 Min


9 Langevin's Theory of Diamagnetism part1
15 Min


10 Langevin's theory of Paramagnetism part1
15 Min


11 Magnetic Susceptibility and permeability
4 Min


12 Magnetization
10 Min


13 Paramagnetism and Ferromagnetism
12 Min


14 Quantum mechanical treatment of paramagnetism
7 Min


15 Type of magnetism and Diamagnetism
11 Min


1 Application of Nanomaterial
8 Min


2 Application of superconductor
6 Min


3 BCS theory
12 Min


4 Critical temperature & critical magnetic field
10 Min


5 History of Nanotechnology
8 Min


6 Introduction Superconductivity
6 Min


7 Meissner Effect
9 Min


8 Nanotechnology dimensions on physical proper
10 Min


9 Nanotechnology
13 Min


10 Quantum size effect
10 Min


11 Superconductivity
9 Min


1. UNIT 3
2. UNIT 5
3. UNIT 6
4. UNIT 1
5. UNIT 4
6. UNIT 2

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S3604 - B.SC 3 SEMESTER 6 PHYSICS

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