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[" Assuming all the surfaces to be smooth,if the time period of motion of the ball is "N times10^(-1)" sec then find "],[" N.Neglect the small effect of bend near the bottom.( "g=10m/s^(2)" ) "],[[" Ap "],[" 20"],[" I'm "]],[" Imen "]

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Assuming all the surfaces to be smoth, if the time period of motion of the ball is N xx 10^(-1) sec then find N . Neglect the small effect of bend near the bottom. (g = 10m//s^(2))

Assuming all the surfaces to be smoth, if the time period of motion of the ball is N xx 10^(-1) sec then find N . Neglect the small effect of bend near the bottom. (g = 10m//s^(2))

Assuming all the surfaces to be smoth, if the time period of motion of the ball is N xx 10^(-1) sec then find N . Neglect the small effect of bend near the bottom. (g = 10m//s^(2))

Find the time period of the motion of the particle shown in figure. Neglected small effect of the bend near the bottom.

Find the time period of the motion of the particle shown in figure. Neglected small effect of the bend near the bottom.

Find the time period of the motion of the particle shown in figure. Neglected small effect of the bend near the bottom.

A cylinder of height 20 m is completely filled with water. The velocity of efflux of water (in ms^(-1) ) through a small hole on the side of the cylinder near its bottom is: [g=10m//s^(2)]

Find the reading of the spring balance as shown in the arrangem nt. Given m = 2.5 kg. Assume all surfaces of contact are smooth (g = 10 m//s^2)

A pendulum suspended from the ceiling of the train has a time period of two seconds when the train is at rest, then the time period of the pendulum, if the train accelerates 10 m//s^(2) will be (g=10m//s^(2))