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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, if a thermodynamic process is represented by a P vs V curve where P and V are not considered on perpendicular axis, how to compute work done in that case? the symbols stand for their usual meaning.
5 years ago by satya
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Sir, why change in volume is l times delta s?
9 years ago by Navneeth
Ans 1 ->
Here when the pistons displace by l, at the side of large piston volume increases by S1(l) and at the side of smaller piston volume reduces by S2(l) so change in volume (total expansion) willb e (l) x (S1 - S2)
9 years ago by
Physics Galaxy
Ans 2 ->
.
8 years ago by
jeevan99
Ans 3 ->
Because the change in volume is 1times delta s
6 years ago by
Anmol Mishra
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