1(1) Is(2) 1s(3) 1 2s(1) 2s(2) 2s(3) 3s(1) 3s(2) 3s(3) The bar above the orbital symbol indicates the spin state (a without bar, B with bar) of the electron. Which of the following statements is correct? Show the working A. The wavefunction does not satisfy the Pauli exclusion principle because it is antisymmetric with respect to exchange of any two electrons B. The wavefunction does not satisfy the Pauli exclusion principle because the signs are totally wrong C. The wavefunction satisfies the Pauli exclusion principle D. This wavefunction is the exact wavefunction for Li E. The Pauli exclusion principle is violated because the spins of the electrons are all the ||

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excited state wavefunction for Lithium:
1s(1) 1s(2) 1s(3)
1
2s(1) 2s(2) 2s(3)
3s(1) 3s(2) 3s(3)
The bar above the orbital symbol indicates the spin state (a without bar, B with bar) of the
electron. Which of the following statements is correct? Show the working
A. The wavefunction does not satisfy the Pauli exclusion principle because it is
antisymmetric with respect to exchange of any two electrons
B. The wavefunction does not satisfy the Pauli exclusion principle because the signs are
totally wrong
C. The wavefunction satisfies the Pauli exclusion principle
D. This wavefunction is the exact wavefunction for Li
E. The Pauli exclusion principle is violated because the spins of the electrons are all the
same
Transcribed Image Text:excited state wavefunction for Lithium: 1s(1) 1s(2) 1s(3) 1 2s(1) 2s(2) 2s(3) 3s(1) 3s(2) 3s(3) The bar above the orbital symbol indicates the spin state (a without bar, B with bar) of the electron. Which of the following statements is correct? Show the working A. The wavefunction does not satisfy the Pauli exclusion principle because it is antisymmetric with respect to exchange of any two electrons B. The wavefunction does not satisfy the Pauli exclusion principle because the signs are totally wrong C. The wavefunction satisfies the Pauli exclusion principle D. This wavefunction is the exact wavefunction for Li E. The Pauli exclusion principle is violated because the spins of the electrons are all the same
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