A 70.0-g object connected to a spring with a force constant of 30.0 N/m oscillates with an amplitude of 8.00 cm on a frictionless, horizontal surface.
(a) Find the total energy of the system.
mJ
(b) Find the speed of the object when its position is 1.20 cm. (Let
0 cm be the position of equilibrium.)
m/s
(c) Find the kinetic energy when its position is 3.50 cm.
mJ
(d) Find the potential energy when its position is 3.50 cm.
A 70.0-g object connected to a spring with a force constant of 30.0 N/m oscillates with...
A 40.0-g object connected to a spring with a force constant of 30.0 N/m oscillates with an amplitude of 4.00 cm on a frictionless, horizontal surface. (a) Find the total energy of the system. mJ (b) Find the speed of the object when its position is 1.20 cm. (Let 0 cm be the position of equilibrium.) m/s (c) Find the kinetic energy when its position is 2.50 cm. mJ (d) Find the potential energy when its position is 2.50 cm....
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A 35.0-9 object connected to a spring with a force constant of 45.0 N/m oscillates with an amplitude of 8.00 cm on a frictionless, horizontal surface. (a) Find the total energy of the system. (h) Find the speed of the object when its position is 1.30 cm. (Let 0 cm be the position of equilibrium.) mi's (c) Find the kinetic energy when its position is 3.00 cm. m (d) Find the potential energy when its position is 3.00 cm. V...
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A 0.35-kg object connected to a light spring with a force constant of 25.0 N/m oscillates on a frictionless horizontal surface. The spring is compressed 4.0 cm and released from rest. (a) Determine the maximum speed of the object. ___________m/s (b) Determine the speed of the object when the spring is compressed 1.5 cm. __________ m/s (c) Determine the speed of the object as it passes the point 1.5 cm from the equilibrium position. _________m/s (d) For what value of...