find the angular distance covered by each ring when the tension in the string vanishes for once during their motion.
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A spherical ball of mass m is kept at the highest point in the space between two fixed, concentric spheres A and B (see figure). The smaller sphere A has a radius R and the space between the two spheres has a width d. The ball has a diameter very slightly less than d. All surfaces are frictionless. The ball is given a gentle push (towards the right in the figure). The angle made by the radius vector of the ball with the upward vertical is denoted by θ
31
Aug
A spherical ball of mass m is kept at the highest point in the space between two fixed, concentric spheres A and B (see figure). The smaller sphere A has a radius R and the space between the two spheres has a width d. The ball has a diameter very slightly less than d. All [...]
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A loop of mass M with two identical rings of mass m at its top hangs from a ceiling by an inextensible string. If the rings gently pushed horizontally in opposite directions ,
A spherical ball of mass m is kept at the highest point in the space between two fixed ,
find the angular distance covered by each ring when the tension in the string vanishes for once during their motion. ,
A block of mass m is projected up with a velocity v0 along an inclined plane of angle of inclination theta=37. The coefficient of friction between the inclined plane AB and blocks is mu(=tan theta). Find the values of v0 so that the block moves in a circular path from B to C.
31
Aug
A block of mass m is projected up with a velocity v0 along an inclined plane of angle of inclination theta=37. The coefficient of friction between the inclined plane AB and blocks is mu(=tan theta). Find the values of v0 so that the block moves in a circular path from B to C. A loop [...]
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A loop of mass M with two identical rings of mass m at its top hangs from a ceiling by an inextensible string. If the rings gently pushed horizontally in opposite directions ,
find the angular distance covered by each ring when the tension in the string vanishes for once during their motion. ,
A loop of mass M with two identical rings of mass m at its top hangs from a ceiling by an inextensible string. If the rings gently pushed horizontally in opposite directions, find the angular distance covered by each ring when the tension in the string vanishes for once during their motion.
31
Aug
A loop of mass M with two identical rings of mass m at its top hangs from a ceiling by an inextensible string. If the rings gently pushed horizontally in opposite directions, find the angular distance covered by each ring when the tension in the string vanishes for once during their motion. A loop of [...]
Tags:
A loop of mass M with two identical rings of mass m at its top hangs from a ceiling by an inextensible string. If the rings gently pushed horizontally in opposite directions ,
find the angular distance covered by each ring when the tension in the string vanishes for once during their motion. ,