Respuesta :
The correct option is: Option (C) 2.0 Joules.
Explanation:
According to law of conservation of Energy:
Initial Energy = Final Energy
KE(initial) + PE(initial) = KE(final) + PE(final) --- (1)
When in the compressed state:
KE(initial) = Initial Kinetic Energy = 0
PE(initial) = Initial Potential Energy = 2.0 J
At ground (since height is 0 with respect to ground)
KE(final) = Final Kinetic Energy
PE(final) = Final Potential Energy = 0.0 J
Plug all in (1):
(1) => KE(final) = 2.0 J (Option C)
Explanation:
According to law of conservation of Energy:
Initial Energy = Final Energy
KE(initial) + PE(initial) = KE(final) + PE(final) --- (1)
When in the compressed state:
KE(initial) = Initial Kinetic Energy = 0
PE(initial) = Initial Potential Energy = 2.0 J
At ground (since height is 0 with respect to ground)
KE(final) = Final Kinetic Energy
PE(final) = Final Potential Energy = 0.0 J
Plug all in (1):
(1) => KE(final) = 2.0 J (Option C)