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[" A stone is thrown horizontally with "10ms^(-1)],[" from a certain height.The radius of curvature "],[" of its trajectory "3sec" later is "]

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A stone is thrown horizontally with a velocity of 10m//sec . Find the radius of curvature of it’s trajectory at the end of 3 s after motion began. (g=10m//s^(2))

A stone is thrown horizontally with a velocity of 10m//sec . Find the radius of curvature of it’s trajectory at the end of 3 s after motion began. (g=10m//s^(2))

A stone is thrown horizontally with a velocity of 10m//sec . Find the radius of curvature of it’s trajectory at the end of 3 s after motion began. (g=10m//s^(2))

A stone is thrown horizontally with a velocity of 10 m//s at h = 0 . The radius of curvature of the stone's trajectory at t = 3s is : [Take g = 10 m//s^(2) ]

A stone is projected horizontally with speed u from the top of a tower of height h. (a) Calculate the radius of curvature of the path of the stone at the point where its tangential and radial accelerations are equal. (b) What shall be the height (h) of the tower so that radius of curvature of the path is always less than the value obtained in (a) above.

A stone is thrown horizontally with velocity g ms^(-1) from the top of a tower of height g metre. The velocity with which it hits the ground is (in ms^(-1) )