A sodium atom of mass 3.82 x 10-20 kg vibrates with simple harmonic motion in a crystal. The potential energy increases by 0.0075 eV when the atom is displaced 0.014 nm from its equilibrium position. Find the ground-state energy. O 5.89 x 10-2 ev 5.89 x 10-3 ev O5.89 ev O 6.89 x 10-3 ev 5.89 x 10-4 ey
A sodium atom of mass 3.82 x 10-20 kg vibrates with simple harmonic motion in a crystal. The potential energy increases by 0.0075 eV when the atom is displaced 0.014 nm from its equilibrium position. Find the ground-state energy. O 5.89 x 10-2 ev 5.89 x 10-3 ev O5.89 ev O 6.89 x 10-3 ev 5.89 x 10-4 ey
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![- A sodium atom of mass 3.82 x 10-20 kg vibrates with simple harmonic motion in a crystal. The potential energy
increases by 0.0075 eV when the atom is displaced 0.014 nm from its equilibrium position. Find the ground-state
energy.
O 5.89 x 10 ev
5.89 x 103 ev
5.89 eV
6.89 x 10-3 ev
O 5.89 x 10 ev](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fa1adc9e6-9dfb-42bb-970e-0a050f45a2cf%2F60e1812c-2736-4b5c-bc07-627315a2a8e5%2F8ufpf4_processed.jpeg&w=3840&q=75)
Transcribed Image Text:- A sodium atom of mass 3.82 x 10-20 kg vibrates with simple harmonic motion in a crystal. The potential energy
increases by 0.0075 eV when the atom is displaced 0.014 nm from its equilibrium position. Find the ground-state
energy.
O 5.89 x 10 ev
5.89 x 103 ev
5.89 eV
6.89 x 10-3 ev
O 5.89 x 10 ev
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