Consider the H2+ ion. (a) Sketch the molecular orbitals ofthe ion and draw its energy-level diagram. (b) How manyelectrons are there in the H2+ ion? (c) Write the electronconfiguration of the ion in terms of its MOs. (d) What isthe bond order in H2+? (e) Suppose that the ion is excitedby light so that an electron moves from a lower-energy toa higher-energy MO. Would you expect the excited-stateH2+ ion to be stable or to fall apart? (f) Which of the followingstatements about part (e) is correct: (i) The light excitesan electron from a bonding orbital to an antibonding orbital,(ii) The light excites an electron from an antibonding orbitalto a bonding orbital, or (iii) In the excited state there are morebonding electrons than antibonding electrons?

Chemistry & Chemical Reactivity
10th Edition
ISBN:9781337399074
Author:John C. Kotz, Paul M. Treichel, John Townsend, David Treichel
Publisher:John C. Kotz, Paul M. Treichel, John Townsend, David Treichel
Chapter9: Bonding And Molecular Structure: Orbital Hybridization And Molecular Orbitals
Section9.2: Molecular Orbital Theory
Problem 9.6CYU: The cations O2+ and N2+ are formed when molecules of O2 and N2 are subjected to intense, high-energy...
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Consider the H2+ ion. (a) Sketch the molecular orbitals of
the ion and draw its energy-level diagram. (b) How many
electrons are there in the H2+ ion? (c) Write the electron
configuration of the ion in terms of its MOs. (d) What is
the bond order in H2+? (e) Suppose that the ion is excited
by light so that an electron moves from a lower-energy to
a higher-energy MO. Would you expect the excited-state
H2+ ion to be stable or to fall apart? (f) Which of the following
statements about part (e) is correct: (i) The light excites
an electron from a bonding orbital to an antibonding orbital,
(ii) The light excites an electron from an antibonding orbital
to a bonding orbital, or (iii) In the excited state there are more
bonding electrons than antibonding electrons?

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