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Maxwell's Speed Distribution Law
Maxwell's Speed Distribution Law - The rms speed of an oxygen molecule in a sample at 300 K is about 480m/s. This does not mean that the speed of each molecule is 480 m/s. Many of the molecules have speed less than 480m/s and many have speed more than 480m/s. Maxw..
Maxwell's Speed Distribution Law - The rms speed of an oxygen molecule in a sample at 300 K is about 480m/s. This does not mean that the speed of each molecule is 480 m/s. Many of the molecules have speed less than 480m/s and many have speed more than 480m/s. Maxw..Maxwell's Speed Distribution Law
The rms speed of an oxygen molecule in a sample at 300 K is about 480m/s. This does not mean that the speed of each molecule is 480 m/s. Many of the molecules have speed less than 480m/s and many have speed more than 480m/s. Maxwell derived an equation giving the distribution..
Maxwell's Distribution of Molecular Speeds
On plotting a fraction of molecules having different speeds against the speeds of the molecules (along x-axis) a curve known as Maxwell's distribution curve is obtained. ..
Distributive laws
If A, B, C are three sets, then..
If A, B, C are three sets, then..First law:
>As is known, EMF is induced in a circuit only when amount of magnetic flux with the circuit changes. As f =BA cos q , therefore, three methods of producing induced EMF are (i) by changing B (ii) by changing A and (iii) by changing q . When a conductor of length l moves with a velocity V ..
>As is known, EMF is induced in a circuit only when amount of magnetic flux with the circuit changes. As f =BA cos q , therefore, three methods of producing induced EMF are (i) by changing B (ii) by changing A and (iii) by changing q . When a conductor of length l moves with a velocity V ..Variation of Mass with Velocity
According to Newton's second law of motion, F = m..
Variation of Mass with Velocity
According to Newton's second law of motion, F = ma If a constant force 'F' is applied to a body for a very long interval of time, the velocity of the body will go on increasing due to the acceleration produced in the body. This velocity may become equal to, or even exc..
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..
Result
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