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High School/JEE/NEET/IPhO Physics | 17-19 Yrs
Mechanics
Kinematics
Newton’s Laws of Motion
Work Energy Power
Circular Motion
System of Particles
Rigid Body Dynamics
Heat & Thermodynamics
Heat Transfer
KTG and Thermodynamics
Thermal Expansion & Calorimetry
Oscillation & Waves
Simple Harmonic Motion
Waves
Properties of Matter
Properties of Matter
Fluid Statics & Dynamics
Gravitation
Gravitation
Electrostatics
Electric Charges and Fields
Capacitance
Electric Current & Circuits
Current Electricity
Magnetic Effects
Magnetic Effects and Electromagnetic Induction
Optics
Geometrical Optics
Wave Optics
Modern Physics
Atomic and Nuclear Physics
KTG and Thermodynamics
Illustration - 1
Sliding Pistons in a Tube of different Cross Sections
Duration: 5.38 Min
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Illustration - 2
Temperature Gradient in a Container
Duration: 2.57 Min
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Illustration - 3
Lifting a Glass Tube
Duration: 4.50 Min
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Illustration - 4
Mass of a Gas in a Vessel
Duration: 5.57 Min
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Illustration - 5
Evacuation of a Gas From a Chamber
Duration: 3.37 Min
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Illustration - 6
Temperature Gradient of a Gas
Duration: 4.58 Min
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Illustration - 7
Tension in a string connecting Pistons in a tube
Duration: 2.34 Min
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Illustration - 8
Displacement of a Mercury Column
Duration: 6.13 Min
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Illustration - 9
Maximum Gas Temperature in a Thermodynamic Process
Duration: 3.47 Min
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Illustration - 10
Gas under a Piston connected to Spring
Duration: 4.03 Min
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Illustration - 11
Two step Thermodynamic Process on a Gas
Duration: 4.29 Min
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Illustration - 12
External Work on a system of two Gas Chambers
Duration: 7.44 Min
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Illustration - 13
Molar Heat capacity of a Gas in Tuna Process
Duration: 3.13 Min
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Illustration - 14
A Floating Cylinder in Water
Duration: 5.05 Min
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Illustration - 15
Gas Pressure variation with height
Duration: 3.48 Min
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Illustration - 16
Mercury Over a Piston
Duration: 3.37 Min
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Illustration - 17
Ratio of Gas Masses in a Mixture
Duration: 3.53 Min
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Illustration - 18
Breaking of a Container
Duration: 1.15 Min
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Illustration - 19
Centre of Mass of a Gas
Duration: 5.38 Min
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Illustration - 20
Heat Supply to two Cylinders
Duration: 2.51 Min
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Illustration - 21
Work Done by Gas having varying Specific Heat
Duration: 2.52 Min
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Illustration - 22
Adiabatic Exponent for a Mixture of Gases
Duration: 4.39 Min
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Illustration - 23
Breaking of a Gas Container
Duration: 2.58 Min
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Illustration - 24
External Work in displacing a Piston
Duration: 4.32 Min
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Illustration - 25
Re-plotting of Indicator Diagram-1
Duration: 3.57 Min
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Illustration - 26
Re-plotting of Indicator Diagram-2
Duration: 3.13 Min
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Illustration - 27
Isothermal Curve to Adiabatic Curve
Duration: 4.18 Min
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Illustration - 28
Excitation of Atomic Hydrogen Gas
Duration: 2.32 Min
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Illustration - 29
Heat Exchange Between Two Gases
Duration: 4.55 Min
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Illustration - 30
Air leakage from a tyre puncture
Duration: 2.55 Min
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Illustration - 31
Work Done in a Cyclic Process
Duration: 2.57 Min
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Illustration - 32
Process Equation of a Gas in a Specific Process
Duration: 3.53 Min
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Illustration - 33
Different Processes on Identical Gases
Duration: 4.25 Min
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Illustration - 34
Heating of a Gas with Modified Gas Law
Duration: 2.32 Min
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Illustration - 35
Internal Energy of Adiabatic Process
Duration: 2.38 Min
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Illustration - 36
Minimum Pressure of an Expending Gas
Duration: 3.21 Min
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Illustration - 37
Mercury Overflow Due to Gas Expansion
Duration: 4.37 Min
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Illustration - 38
Heat and Work Done in a Linear Process
Duration: 5.34 Min
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Illustration - 39
A Gas Undergoing a Cyclic Process-1
Duration: 3.04 Min
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Illustration - 40
A Gas Undergoing a Cyclic Process-2
Duration: 4.58 Min
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Illustration - 41
A Gas Undergoing a Cyclic Process-3
Duration: 7.42 Min
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Illustration - 42
A Gas Undergoing a Cyclic Process-4
Duration: 3.20 Min
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Illustration - 43
Air Pressure in a Rotating Tube
Duration: 3.51 Min
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Illustration - 44
Change in Collision Rate of Molecules
Duration: 4.41 Min
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Illustration - 45
Heating the Gas in a Cylinder
Duration: 3.40 Min
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Illustration - 46
Pressure Increment With Volume of a Gas
Duration: 4.01 Min
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Illustration - 47
Atmospheric Temperature of a Planet
Duration: 2.51 Min
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Illustration - 48
Gas Pressure in a Varying Temperature Tube
Duration: 3.33 Min
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Post your question related to above video lecture
sir dp = +dh(row)g because pressure should decrease so dp is positive small mistake is there sir
9 years ago by akanksh
Ans 1 ->
NO
4 years ago by
Aakash R Bhat
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