Question: a A 0.200-kg object attached to a spring oscillates on a frictionless horizontal table with a frequency of 3.00Hz and an amplitude sum_((pi )/(2))^(Nox )

a A

0.200-kg

object attached to a spring oscillates on a frictionless horizontal table with a frequency of

3.00Hz

and an amplitude\

\\\\sum_((\\\\pi )/(2))^(Nox )

What is the maximum potential energy

U_(max)^(')

of the system?\

U_(max)=

\ What is the displacement

x

of the object when the potential energy is one-half of the maximum?\

x=

\ m\ What is the potential energy

U

when the displacement of the object is

10.0cm

.\

U=
 a A 0.200-kg object attached to a spring oscillates on a

A 0.200kg object attached to a spring oscillates on a frictionless horizontal table with a frequency of 3.00Hz and an amplitude of 15.0cm. What is the maximum potential energy Umax of the system? Umax= What is the displacement x of the object when the potential energy is one-half of the maximum? x= m What is the potential energy U when the displacement of the object is 10.0cm. U=

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