> Question 5 Which of the following complex ions absorbs light of the longest wavelength? A) [Cr(CN)6]³- B) [CrCl6]³- C) [Cr(en)3]³+ D) [Cr(NH3)6]3+ E) [Cr(NO₂)6]3- O a O b O C Od Oe Question 6 All of the following statements concerning ligand field theory are true EXCEPT A) in low-spin complexes, electrons are concentrated in the lower energy orbitals. B) in an isolated atom or ion, the five d orbitals have identical energy. C) low-spin complexes contain the maximum number of unpaired electrons. D) the crystal field splitting is larger in low-spin complexes than high-spin complexes. E) the energy difference between d orbitals often corresponds to an energy of visible light.

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Question 5
Which of the following complex ions absorbs light of the longest wavelength?
A) [Cr(CN)6]³-
B) [CrCl6]³-
C) [Cr(en)3]3+
D) [Cr(NH3)6]3+
E) [Cr(NO₂)6]³-
::888
O a
Ob
O C
Od
Oe
Question 6
All of the following statements concerning ligand field theory are true EXCEPT
A)
in low-spin complexes, electrons are concentrated in the lower energy
orbitals.
B) in an isolated atom or ion, the five d orbitals have identical energy.
C) low-spin complexes contain the maximum number of unpaired electrons.
D)
the crystal field splitting is larger in low-spin complexes than high-spin
complexes.
E)
the energy difference between d orbitals often corresponds to an energy of
visible light.
Transcribed Image Text:tor Question 5 Which of the following complex ions absorbs light of the longest wavelength? A) [Cr(CN)6]³- B) [CrCl6]³- C) [Cr(en)3]3+ D) [Cr(NH3)6]3+ E) [Cr(NO₂)6]³- ::888 O a Ob O C Od Oe Question 6 All of the following statements concerning ligand field theory are true EXCEPT A) in low-spin complexes, electrons are concentrated in the lower energy orbitals. B) in an isolated atom or ion, the five d orbitals have identical energy. C) low-spin complexes contain the maximum number of unpaired electrons. D) the crystal field splitting is larger in low-spin complexes than high-spin complexes. E) the energy difference between d orbitals often corresponds to an energy of visible light.
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