Deck 1: Introduction and Review
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Deck 1: Introduction and Review
1
While you were up late one night studying organic chemistry, you happened to see the last 5 minutes of an infomercial on TV. The spokesperson claimed that their brand of automobile tires were superior to all other brands on the market because they were made by using only natural rubber, isolated from the resin of rubber trees. How could a chemist test her claims that no petroleum products went into the manufacture of her brand of tires?
Compounds synthesized from petroleum products have a lower content of 14C. Plant-derived compounds are recently synthesized from CO2 in the air and have a higher 14C content.
2
Which element in the second row of the periodic table has six valence electrons and a valence of two?
oxygen
3
Atoms with the same number of protons but different numbers of neutrons are called ________.
isotopes
4
An oxygen atom has ________ valence electrons.
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5
In a carbon atom, the 2s and 2p orbitals are equal in energy.
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6
The ________ tells us that each orbital can hold a maximum of 2 electrons.
A) aufbau principle
B) Pauli exclusion principle
C) Hund's rule principle
D) LeChatelier principle
E) uncertainty principle
A) aufbau principle
B) Pauli exclusion principle
C) Hund's rule principle
D) LeChatelier principle
E) uncertainty principle
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7
When filling two or more orbitals of the same energy with electrons, the electrons will go into different orbitals rather than pair up in the same orbital.
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8
Draw the line energy orbital diagram for the outer shell of an uncharge nitrogen atom and describe the location and number of unshared electrons.
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9
The atomic number of boron is 5. The correct electronic configuration of boron is:
A) 1s22s3
B) 1s22p3
C) 1s22s22p1
D) 2s22p3
E) 1s22s23s1
A) 1s22s3
B) 1s22p3
C) 1s22s22p1
D) 2s22p3
E) 1s22s23s1
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10
Provide a Lewis structure for a molecule with molecular formula CH2O2.
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11
The electron density of ________ orbitals has spherical symmetry.
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12
Draw the Lewis structure for 2-butanol, CH3CH(OH)CH2CH3.
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13
Draw the shape of a 2p orbital.
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14
Orbitals which are equal in energy are referred to as ________.
A) degenerate
B) polar
C) nodes
D) filled
E) nonpolar
A) degenerate
B) polar
C) nodes
D) filled
E) nonpolar
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15
The element with the electronic configuration 1s22s22p63s1 is ________.
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16
How many distinct p orbitals exist in the second electron shell, where n = 2?
A) 2
B) 3
C) 4
D) 5
E) 6
A) 2
B) 3
C) 4
D) 5
E) 6
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17
A node is a region of high electron density between the two atoms in a covalent bond.
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18
Draw a correct Lewis structure for chloromethane, CH3Cl.
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19
Provide the electron configuration of phosphorus.
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20
Draw the Lewis structure of acetic acid, CH3CO2H.
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21
Covalent bonds may be polar or nonpolar. What property of the atoms forming a given bond determines this?
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22
Assign the correct formal charge to each nitrogen atom in the following Lewis structure. 

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23
Draw a proper Lewis structure for H2SO4.
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24
Add the appropriate formal charge to each atom in the molecule below. It is not necessary to indicate formal charges when zero. 

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25
One or more of the atoms in the structure shown should have nonzero formal charges. Redraw the structure and indicate any such charges. 

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26
Draw a correct Lewis structure for acetonitrile, CH3CN.
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27
Add the appropriate formal charge to each atom in the molecule below. It is not necessary to indicate formal charges when zero. 

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28
For most compounds in which a nitrogen atom bears no formal charge, the valence of this nitrogen atom is ________.
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29
The electronegativity of elements on the periodic table increases going ________ a column and to the ________ in each row.
A) up, right
B) up, left
C) down, right
D) down, left
A) up, right
B) up, left
C) down, right
D) down, left
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30
Draw a correct Lewis structure for boric acid, B(OH)3.
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31
Which of the following molecules contains a polar covalent bond?
A) H2
B) F2
C) CH3Cl
D) NaCl
E) He
A) H2
B) F2
C) CH3Cl
D) NaCl
E) He
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32
Draw a correct Lewis structure for tert-butyl alcohol, (CH3)3COH.
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33
Write a Lewis structure for a compound with the molecular formula H2N2.
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34
The formal charge on oxygen in dimethyl ether, CH3OCH3, is ________.
A) +2
B) +1
C) 0
D) -1
E) -2
A) +2
B) +1
C) 0
D) -1
E) -2
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35
The formal charge on nitrogen in the compound below is ________. 
A) +2
B) +1
C) 0
D) -1
E) -2

A) +2
B) +1
C) 0
D) -1
E) -2
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36
One or more of the atoms in the structure shown should have nonzero formal charges. Redraw the structure and indicate any such charges. 

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37
A carbon-hydrogen bond in ethane (CH3CH3) is best described a ________.
A) highly polar
B) essentially nonpolar
C) ionic
D) a multiple bond
E) resonance stabilized
A) highly polar
B) essentially nonpolar
C) ionic
D) a multiple bond
E) resonance stabilized
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38
Which of the following are correct Lewis structures, including formal charges, for nitric acid, HNO3? 
A) A only
B) B only
C) C only
D) both B and C
E) A, B, and C

A) A only
B) B only
C) C only
D) both B and C
E) A, B, and C
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39
Within a given row of the periodic table, electronegativity typically increases left to right across the row.
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40
The compound methylamine, CH3NH2, contains a C-N bond. In this bond, which of the following best describes the charge on the carbon atom?
A) +1
B) slightly positive
C) uncharged
D) slightly negative
E) -1
A) +1
B) slightly positive
C) uncharged
D) slightly negative
E) -1
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41
Draw the other important resonance form of: 

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42
Which of the following choices represent(s) a pair of resonance forms?
A)

B)

C)

D) both A and C
E) both B and C
A)

B)

C)

D) both A and C
E) both B and C
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43
In the compound sodium methoxide (NaOCH3), there is ________ bonding.
A) ionic
B) polar covalent
C) nonpolar covalent
D) a mixture of ionic and covalent
E) resonance stabilized
A) ionic
B) polar covalent
C) nonpolar covalent
D) a mixture of ionic and covalent
E) resonance stabilized
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44
Structures ________, shown below, are resonance structures, and structure ________ is the major contributor to the overall resonance hybrid. 
A) 2 & 4; 2
B) 1, 3 & 5; 3
C) 4 & 6; 6
D) 1, 3 & 5; 1
E) 1, 3, 4 & 5; 3

A) 2 & 4; 2
B) 1, 3 & 5; 3
C) 4 & 6; 6
D) 1, 3 & 5; 1
E) 1, 3, 4 & 5; 3
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45
Draw the important resonance forms for the structure shown below. 

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46
The Lewis structure of trimethylamine is shown below. Draw the condensed structural formula which corresponds to this Lewis structure. 

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47
Draw the important resonance forms for the structure shown below. 

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48
When a molecule can best be represented as a series of resonance forms, each of these forms always contributes to the same degree in the hybrid.
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49
Draw 3 significant resonance structures for the compound shown below. Place a box around the major contributor. Fill in any missing formal charges. 

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50
Draw the important resonance forms of: 

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51
The Lewis structure of pentane is shown below. Draw the condensed structural formula which corresponds to this Lewis structure. 

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52
Draw a line-angle formula for (CH3)2CHCH2CH2NH2.
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53
Draw the important resonance forms for the structure shown below. 

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54
Draw the complete Lewis structure for the compound whose condensed formula is (CH3)2CHCHO.
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55
When a negatively charged species is most appropriately depicted as a hybrid of several resonance forms, the negative charge present is considered to be rapidly moving between the resonance forms bearing the formal negative charge.
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56
Which of the following bonding patterns of carbon is not allowed in the formation of an organic compound?
A)
B)
C)
D)
E)
F)
A)

B)

C)

D)

E)

F)

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57
Nitroamines are common functional groups found in energetic materials, such as RDX and HMX. For the structure below, draw two other significant resonance structures, include any formal charges, and indicate the hybridization on each nitrogen and oxygen. 

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58
Which of the following structures (a-d) is another resonance structure of the following organic molecule?
A)
B)
C)
D)

A)

B)

C)

D)

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59
One resonance structure of a cation is shown. Provide the other reasonable resonance structures. 

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60
Which of the following compounds are covalent compounds?
A) KCl
B) CF4
C) NH3
D) both A and B
E) both B and C
A) KCl
B) CF4
C) NH3
D) both A and B
E) both B and C
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61
Provide the line-angle formula (skeletal structure) for (CH3CH2)2C=O.
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62
Draw the line-angle formula for three compounds with molecular formula C3H8O.
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63
Draw an acceptable line-angle formula for the compound shown below. 

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64
Provide the line-angle formula (skeletal structure) for (CH3)2CHCH2CHO.
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65
How many carbon atoms are present in the molecule shown? 
A) 6
B) 8
C) 10
D) 11
E) 12

A) 6
B) 8
C) 10
D) 11
E) 12
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66
Draw condensed structures for the four compounds with formula C3H9N.
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67
Draw a correct Lewis structure for (CH3)2CHCOOH.
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68
A condensed structure for acetone is CH3COCH3. Provide the structural formula for acetone.
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69
Indicate the line-angle structure that corresponds to the condensed structure, HOCH2C(O)CH(CH3)2.
A)

B)

C)

D)

A)

B)

C)

D)

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70
Provide the line-angle formula for the alcohol CH3CH2CH(OH)CH2CH2CH(CH3)2.
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71
How many hydrogen atoms are present in the molecule shown? 

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72
Draw an acceptable line-angle formula for cyclobutanol (shown below). 

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73
Draw a complete Lewis structure, including lone pairs, for (CH3)2CHCO2H.
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74
Provide the line-angle formula (skeletal structure) for CH2=CHCH2CH2C(CH3)3.
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75
Provide the structural formula for an aldehyde whose condensed structure is (CH3)3CCHO.
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76
Draw a correct Lewis structure for acetaldehyde, CH3CHO.
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77
Compute the empirical and molecular formulas for the compound of molecular weight 180 g/mol which is shown to contain 40.0% C and 6.7% H by elemental analysis.
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78
Provide the line-angle formula for CH3CH2C(CH3)2CH2CHO
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79
Which of the following condensed formulas correctly represents the line-angle structure shown below? 
A) CH(CH3)2CH(CH3)CO2H
B) C2(CH3)3CO2H
C) (CH3)2CC(CH3)CO2H
D) C(CH3)2C(CH3)CH2CO2H

A) CH(CH3)2CH(CH3)CO2H
B) C2(CH3)3CO2H
C) (CH3)2CC(CH3)CO2H
D) C(CH3)2C(CH3)CH2CO2H
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80
Which of the following condensed formulas represents the same compound as the line-angle structure shown? 
A) CH3CH2CH2OCH2CH2CH2N(CH2CH2CH3)2
B) CH3CH2CH2OCH2N(CH2CH3)2
C) CH3CH2OCH2N(CH2CH3)2
D) CH3CH2OCH2N(CH2CH2CH3)2
E) CH3ON(CH3)2

A) CH3CH2CH2OCH2CH2CH2N(CH2CH2CH3)2
B) CH3CH2CH2OCH2N(CH2CH3)2
C) CH3CH2OCH2N(CH2CH3)2
D) CH3CH2OCH2N(CH2CH2CH3)2
E) CH3ON(CH3)2
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