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[" Example "9" A sphere of radius 0.1"m"...

[" Example "9" A sphere of radius 0.1"m" and mass "8 pi" kg is attached to the biuer end "],[" of a steel wire of length 5.0m and diameter 10- "m" .The wire is suspended from "],[5.22" m high ceiling of a room.When the sphere is made to swing as a simple "],[5.22m" high celling of a room.When the sphere is made to swing as a simple "],[" pendulum,it just grazes the floor at its lowest point.Calculate the veloicity of the "],[" sphere at the lowest position.Young's modulus of steel is "1.994times10^(11)NIm^(2)" ."]

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A sphere of radius 0.1m and mass 8 pi kg is attached to the lower end of a steel wire of length 5.0 m and diameter 10^(-3) . The wire is suspended from 5.22 m high ceiling of a room . When the sphere is made to swing as a simple pendulum, it just grazes the floor at its lowest point. Calculate the velocity of the sphere at the lowest position . Young's modulus of steel is (1.994xx10^(11) N//m^(2)) .

A sphere of radius 0.1m and mass 8 pi kg is attached to the lower end of a steel wire of length 5.0 m and diameter 10^(-3) . The wire is suspended from 5.22 m high ceiling of a room . When the sphere is made to swing as a simple pendulum, it just grazes the floor at its lowest point. Calculate the velocity of the sphere at the lowest position . Young's modulus of steel is (1.994xx10^(11) N//m^(2)) .

A sphere of radius 0.1 m and mass 8pi kg is attached to the lower end of a steel wire of length 5.0 m and diameter 10^(-3) m. The wire is suspended from 5.22 m high ceiling of a room. When the sphere is made to swing as a simple pendulum, it just grazes the floor at its lowest point. Calculate the velocity of the sphere at the lowest position. Y for steel =1.994xx10^(11)N//m^(2) .