Organic Chemistry 8th Edition Test Bank By L. G. Wade
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Course
CHEM 401
Institution
CHEM 401
Book
Organic Chemistry
1) An orbital can be described by its ________, which is the mathematical description of the shape of the electron
wave as it oscillates.
Answer: wave function
Diff: 1
Section: 2.1
2) The electron density at any point is proportional to the ________ of the electron wave at that point.
Answe...
organic chemistry 8th edition test bank by l g wade
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ORGANIC CHEMISTRY 8TH
EDITION TEST BANK BY L G WADE
,ORGANIC CHEMISTRY 8TH EDITION BY L. G. WADE – TEST BANK
Organic Chemistry, 8e (Wade)
Chapter 2 Structure and Properties of Organic Molecules
1) An orbital can be described by its , which is the mathematical description of the shape of the
electron wave as it oscillates.
Answer: wave function
Diff: 1
Section: 2.1
2) The electron density at any point is proportional to the of the electron wave at that point.
Answer: square of the wave function
Diff: 2
Section: 2.1
, CAR
T
3) Which atomic orbital combination would result in a molecular sigma
1. A)
2. B)
3. C)
4. D)
Answer: B
Diff: 1
Section: 2.2
4) Two p orbitals can overlap to form a s molecular orbital. How many nodes are present in this s
molecular orbital?
1. A) 0
2. B) 1
3. C) 2
4. D) 3
Answer: C
Diff: 1
Section: 2.2
5) Two p orbitals can overlap to form a s* molecular orbital. How many nodes are present in this s*
molecular orbital?
1. A) 0
2. B) 1
3. C) 2
4. D) 3
Answer: D
Diff: 1
Section: 2.2
, 6) When orbitals on different atoms interact,_________are
produced. CAR
T
Diff: 1
Section: 2.2
7) What kind of molecular orbital (σ, σ*, π, or π*) results when the two atomic orbitals shown below interact in
the manner indicated?
Answer: σ*
Diff: 2
Section: 2.2
8) What kind of molecular orbital (σ, σ*, π, or π*) results when the two atomic orbitals shown below interact in
the manner indicated?
Answer: σ
Diff: 2
Section: 2.2
9) What kind of molecular orbital (σ, σ*, π, or π*) results when the two atomic orbitals shown below interact in
the manner indicated?
Answer: σ*
Diff: 2
Section: 2.2
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