Draw all possible resonance structures for SO, SO and SO. Use the resonance structures to solve the problems below. (a) Arrange these species in order of increasing S-O bond length (shortest bond first). (b) Match each species with the number of covalent bonds predicted by Lewis structures to exist between an S atom and an O atom bonded to this S atom. (Hint: Average the number of bonds between S and an attached oxygen atom in a particular position using all of your resonance structures for the species that you are working on.) SO₂:3.00x bonds between S and 2- O. SO, vv bonds between S and 0. So :3.00× bonds between S and O. (c) Match each species with the correct formal charge on the central S atom. SO2, x 2- charge on S. SO,

Auditing: A Risk Based-Approach (MindTap Course List)
11th Edition
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Chapter8: Specialized Audit Tools: Attributes Sampling, Monetary Unit Sampling, And Data Analytics Tools
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Problem 23RQSC
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Draw all possible resonance structures for SO, SO
and SO. Use the resonance structures to solve the
problems below. (a) Arrange these species in order of
increasing S-O bond length (shortest bond first). (b)
Match each species with the number of covalent bonds
predicted by Lewis structures to exist between an S
atom and an O atom bonded to this S atom. (Hint:
Average the number of bonds between S and an
attached oxygen atom in a particular position using all
of your resonance structures for the species that you are
working on.) SO₂:3.00x bonds between S and
2-
O. SO, vv bonds between S and 0. So :3.00×
bonds between S and O. (c) Match each species with
the correct formal charge on the central S atom. SO2, x
2-
charge on S. SO, <charge on S. SO +2.00 ×
charge on S. (d) Match each species with the average
formal charge on an outside oxygen atom predicted by
Lewis structures. SO₂:0.00x average charge on outside
O atom. SO, x average charge on outside 0 atom.
2-
3
SO 1.00 average charge on outside O atom.
3
500.00
50: 0.00x average ch
(d) Match each species we
1.00
average charge on
average charge on outside
Transcribed Image Text:Draw all possible resonance structures for SO, SO and SO. Use the resonance structures to solve the problems below. (a) Arrange these species in order of increasing S-O bond length (shortest bond first). (b) Match each species with the number of covalent bonds predicted by Lewis structures to exist between an S atom and an O atom bonded to this S atom. (Hint: Average the number of bonds between S and an attached oxygen atom in a particular position using all of your resonance structures for the species that you are working on.) SO₂:3.00x bonds between S and 2- O. SO, vv bonds between S and 0. So :3.00× bonds between S and O. (c) Match each species with the correct formal charge on the central S atom. SO2, x 2- charge on S. SO, <charge on S. SO +2.00 × charge on S. (d) Match each species with the average formal charge on an outside oxygen atom predicted by Lewis structures. SO₂:0.00x average charge on outside O atom. SO, x average charge on outside 0 atom. 2- 3 SO 1.00 average charge on outside O atom. 3 500.00 50: 0.00x average ch (d) Match each species we 1.00 average charge on average charge on outside
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