Electrons are in a two-dimensional square potential energy well with sides of length L. The potential energy is infinite at the sides and zero inside. The single-particle energies are given by (h²/8mL²) (n²+ n) where nx and ny are integers. The number of single-particle states with energy 5(h²/8mL²) is: O 1 5 3 2
Electrons are in a two-dimensional square potential energy well with sides of length L. The potential energy is infinite at the sides and zero inside. The single-particle energies are given by (h²/8mL²) (n²+ n) where nx and ny are integers. The number of single-particle states with energy 5(h²/8mL²) is: O 1 5 3 2
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![Electrons are in a two-dimensional square potential energy well with sides of length L. The potential energy is infinite at the sides and zero inside.
The single-particle energies are given by (h²/8mL²) (n² + n) where nx and ny are integers. The number of single-particle states with energy
5(h²/8mL²) is:
1
5
3
+
● 2](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F2348598c-5f2c-4c41-9169-5f4583a23805%2Fad8aa4b8-dd89-4adb-86d6-7837386cd4c9%2Fga9siwm_processed.png&w=3840&q=75)
Transcribed Image Text:Electrons are in a two-dimensional square potential energy well with sides of length L. The potential energy is infinite at the sides and zero inside.
The single-particle energies are given by (h²/8mL²) (n² + n) where nx and ny are integers. The number of single-particle states with energy
5(h²/8mL²) is:
1
5
3
+
● 2
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