Potential energy of particle on a frictionless surface is given by, u(x) = k[1-e*], where k is a constant. Choose the correct statement. For small value Ar from the origin, particle execute SHM. For any value of non-zero x, direction of force is away from the origin. O For any point x>0, represents unstable equilibrium. If its total mechanical energy is k/2, it has its minimum kinetic energy at the origin.
Potential energy of particle on a frictionless surface is given by, u(x) = k[1-e*], where k is a constant. Choose the correct statement. For small value Ar from the origin, particle execute SHM. For any value of non-zero x, direction of force is away from the origin. O For any point x>0, represents unstable equilibrium. If its total mechanical energy is k/2, it has its minimum kinetic energy at the origin.
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![Potential energy of particle on a frictionless surface is given by,
u(x) = k[1-e*], where k is a constant. Choose the correct statement.
O For small value Ar from the origin, particle execute SHM.
For any value of non-zero x, direction of force is away from the origin.
For any point x>0, represents unstable equilibrium.
O If its total mechanical energy is k/2, it has its minimum kinetic energy at the origin.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F09f26328-51ca-4f7c-afc1-81d73c3139df%2Fe30cf8b2-a883-4199-89f8-6cacb3834731%2Fxcy4xvm_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Potential energy of particle on a frictionless surface is given by,
u(x) = k[1-e*], where k is a constant. Choose the correct statement.
O For small value Ar from the origin, particle execute SHM.
For any value of non-zero x, direction of force is away from the origin.
For any point x>0, represents unstable equilibrium.
O If its total mechanical energy is k/2, it has its minimum kinetic energy at the origin.
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