7. The following shapes each represent an orbital of an atom in a hypothetical universe. The small circle is the location of the nucleus in each orbital. a) If you placed an electron in each orbital, which one would be higher in energy? b) When an electron makes a transition from the orbital represented on the right to the orbital on the left, would you expect energy to be absorbed or released?

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7. The following shapes each represent an orbital of an atom in a hypothetical universe. The small
circle is the location of the nucleus in each orbital.
a) If you placed an electron in each orbital, which one would be higher in energy?
b) When an electron makes a transition from the orbital represented on the right to the orbital
on the left, would you expect energy to be absorbed or released?
c) Draw a sketch of an orbital of the same type that would be higher in energy than either of
the two pictured orbitals.
Transcribed Image Text:7. The following shapes each represent an orbital of an atom in a hypothetical universe. The small circle is the location of the nucleus in each orbital. a) If you placed an electron in each orbital, which one would be higher in energy? b) When an electron makes a transition from the orbital represented on the right to the orbital on the left, would you expect energy to be absorbed or released? c) Draw a sketch of an orbital of the same type that would be higher in energy than either of the two pictured orbitals.
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