In the figure shown
In the figure shown, forces of equal magnitude are applied to the two ends of a uniform rod . consider A as the cross sectional area of the rod. For this situation , mark out the incorrect statements.
10
Oct
In the figure shown, forces of equal magnitude are applied to the two ends of a uniform rod . consider A as the cross sectional area of the rod. For this situation , mark out the incorrect statements. forces of equal magnitude are applied to the two ends of a uniform rod . consider A [...]
In the figure shown , the heavy cylinder ( radius root 8/3 m) kept on a smooth surface seperates two liquids of densities 2 rho and 3 rho. The height h for the equilibrium of cylinder must be
08
Oct
In the figure shown , the heavy cylinder ( radius root 8/3 m) kept on a smooth surface seperates two liquids of densities 2 rho and 3 rho. The height h for the equilibrium of cylinder must be In the figure shown the heavy cylinder ( radius root 8/3 m) kept on a smooth surface [...]
In the figure shown, the heavy cylinder ( radius R ) resting on a smooth surface seperates two liquids of densities 2 rho and 3 rho. Find the height h for the equilibrium of cylinder.
06
Oct
In the figure shown, the heavy cylinder ( radius R ) resting on a smooth surface seperates two liquids of densities 2 rho and 3 rho. Find the height h for the equilibrium of cylinder. In the figure shown the heavy cylinder ( radius R ) resting on a smooth surface seperates two liquids of [...]
In the figure shown, a spring of spring constant k is fixed at one end and the other end is attached to the mass m . The coefficient of friction between block and the inclined plane is mu.
04
Oct
In the figure shown, a spring of spring constant k is fixed at one end and the other end is attached to the mass m . The coefficient of friction between block and the inclined plane is mu. a spring of spring constant k is fixed at one end and the other end is attached [...]
In the figure shown, a ring A is initially rolling without sliding with a velocity 1, on the horizontal surface of the body B (of same mass as A). All surfaces arc smooth. B has no initial velocity. What will be the maximum height reached by A on B?
30
Sep
In the figure shown, a ring A is initially rolling without sliding with a velocity 1, on the horizontal surface of the body B (of same mass as A). All surfaces arc smooth. B has no initial velocity. What will be the maximum height reached by A on B? a ring A is initially rolling [...]
In the figure shown, a ball without sliding on a horizontal surface. It ascends a curved track up to a height h and returns. The value of h is h 1 for sufficiently rough curved track to avoid sliding and is h 2 for smooth curved track, then
29
Sep
In the figure shown, a ball without sliding on a horizontal surface. It ascends a curved track up to a height h and returns. The value of h is h 1 for sufficiently rough curved track to avoid sliding and is h 2 for smooth curved track, then A sphere is released on a [...]
In the figure shown, the instantaneous speed of end A of the rod is v to the left. The angular velocity of the rod of length L must be
26
Sep
In the figure shown, the instantaneous speed of end A of the rod is v to the left. The angular velocity of the rod of length L must be In the figure shown the instantaneous speed of end A of the rod is v to the left. The angular velocity of the rod of length [...]
In the figure shown, the two identical balls of mass M and radius R each, are placed in contact with each other on the frictionless horizontal surface. The third ball of mass M and radius R/2, is coming down vertically and has a velocity =v0 when it simultaneously hits the two balls and itself comes to rest. Then, each of the two bigger balls will move after collision with a speed equal to
24
Sep
In the figure shown, the two identical balls of mass M and radius R each, are placed in contact with each other on the frictionless horizontal surface. The third ball of mass M and radius R/2, is coming down vertically and has a velocity =v0 when it simultaneously hits the two balls and itself comes [...]
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are placed in contact with each other on the frictionless horizontal surface. The third ball of mass M and radius R/2 ,
each of the two bigger balls will move after collision with a speed equal to ,
In the figure shown ,
is coming down vertically and has a velocity =v0 when it simultaneously hits the two balls and itself comes to rest. Then ,
the two identical balls of mass M and radius R each ,
A pendulum consists of a wooden bob of mass m and of length l. A bullet of mass m 1 is fired towards the pendulum with a speed v 1 . The bullet emerges out of the bob with a speed v1 /3 and the bob just completes motion along a vertical circle. Then v1 is
24
Sep
A pendulum consists of a wooden bob of mass m and of length l. A bullet of mass m 1 is fired towards the pendulum with a speed v 1 . The bullet emerges out of the bob with a speed v1 /3 and the bob just completes motion along a vertical circle. [...]
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determine the velocity vrel of the particle with respect to the cart when the rod is vertical. (Assume friction less surface) ,
In the figure shown ,
the cart of mass 6 m is initially at rest. A particle of mass m is attached to the end of the light rod which can rotate freely about A. If the rod is released from rest in a horizontal position shown ,
Block A is hanging from vertical spring of spring constant K and is rest. Block B strikes block A with velocity v and sticks to it. Then the value of v for which the spring just attains natural length is
24
Sep
Block A is hanging from vertical spring of spring constant K and is rest. Block B strikes block A with velocity v and sticks to it. Then the value of v for which the spring just attains natural length is determine the velocity vrel of the particle with respect to the cart when the rod [...]
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determine the velocity vrel of the particle with respect to the cart when the rod is vertical. (Assume friction less surface) ,
In the figure shown ,
the cart of mass 6 m is initially at rest. A particle of mass m is attached to the end of the light rod which can rotate freely about A. If the rod is released from rest in a horizontal position shown ,