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Expression for terminal velocity
Weight of the body =mg where r is the radius of the body, r is density, g is the gravity due to upward viscous drag F v = 6 ph vr (Stokes' law). where h is coefficient of viscosity, v is the velocity of body, r is radius of the body. Upthrust or Buoyant force F T = w..
Weight of the body =mg where r is the radius of the body, r is density, g is the gravity due to upward viscous drag F v = 6 ph vr (Stokes' law). where h is coefficient of viscosity, v is the velocity of body, r is radius of the body. Upthrust or Buoyant force F T = w..Expression for Velocity Vector
The curved line in the figure represents the trajectory of a particle. Let the particle be at P at time t. The position of p with reference to origin O is given by . Let the particle be at Q at time (t + D t). The position of Q with reference to P is given by . Applying the law of tr..
The curved line in the figure represents the trajectory of a particle. Let the particle be at P at time t. The position of p with reference to origin O is given by . Let the particle be at Q at time (t + D t). The position of Q with reference to P is given by . Applying the law of tr..Stoke's Law
When small spherical bodies move through a viscous medium, the bodies drag the layers of the medium that are in contact with them. This dragging results in relative motion between different layers, which are away from the body. Therefore, a viscous drag comes into play, opposing the motion of..
Stokes' Law
When small spherical bodies move through a viscous medium, the bodies drag the layers of the medium that are in contact with them. This dragging results in relative motion between different layers, which are away from the body. Therefore, a viscous drag comes into play, opposing the motion of the b..
When small spherical bodies move through a viscous medium, the bodies drag the layers of the medium that are in contact with them. This dragging results in relative motion between different layers, which are away from the body. Therefore, a viscous drag comes into play, opposing the motion of the b..The First Law of Thermodynamics
Equation (1) is the statement of the first law of thermodynamics. In an ideal monatomic gas, the internal energy of the gas is simply translational kinetic energy of all its molecules. In general, the internal energy may get contributions from the vibrational kinetic energy of molecules, ..
Velocity of Sound in Gases (Newton's Formula)
Velocity of Sound in Gases (Newton's Formula) - We know that the properties of a medium that govern the propagation of a mechanical wave are: a restoring force an inertial mass The restoring force acting on the particles of the medium is intimately connected to the approximate elastic mod..
Velocity of Sound in Gases (Newton's Formula) - We know that the properties of a medium that govern the propagation of a mechanical wave are: a restoring force an inertial mass The restoring force acting on the particles of the medium is intimately connected to the approximate elastic mod..Applications of Law of Conservation of Momentum, Newton's Third Law of Motion
When a bullet is fired from a gun, the gases produced in the barrel exerts a tremendous force on the bullet (action force). As a result, the bullet moves forward with a great velocity called the muzzle velocity..
Newton's Second Law of Motion
Earlier we have mentioned that application of force can change the velocity of the moving object. Let us suppose that a body of mass 'm' is moving with a velocity 'u'. When a force F is applied on the body for 't' seconds, the velocity changes from the initial ..
Force and Laws Of Motion
Introduction - We have learnt about the motion of objects based on the definition of displacement, velocity and acceleratio..
Applications of Avogadro's Law
Applications of Avogadro's Law - Avogadro's law has been useful in substantiating a number of important laws and concepts. It has helped in the following areas: In explaining Gay Lussac's law of gaseous volumes. In determining the atomicity of gases. In deter..
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