(a)
Interpretation: The structures of the final products formed in the following reactions are to be stated.
Concept introduction: Organic compounds are synthesized through organic reactions. The different types of reactions in
To determine: The structure of
(a)

Explanation of Solution
Explanation
The structure of
The structure of
Figure 1
The given reactant is
(b)
Interpretation: The structures of the final products formed in the following reactions are to be stated.
Concept introduction: Organic compounds are synthesized through organic reactions. The different types of reactions in organic chemistry are elimination reaction, substitution reaction, addition reactions and many more. Addition reactions are takes place when two or more reactants combine to form a single product. Elimination reactions occur when a reactant broke down into two or more products and the substitution reactions takes place by an exchange in the reactants.
To determine: The structure of
(b)

Explanation of Solution
Explanation
The structure of
The structure of
Figure 2
The given reactant reacts with water to form tertiary alcohol as the major product. As tertiary alcohols are formed by the dehydration of
(c)
Interpretation: The structures of the final products formed in the following reactions are to be stated.
Concept introduction: Organic compounds are synthesized through organic reactions. The different types of reactions in organic chemistry are elimination reaction, substitution reaction, addition reactions and many more. Addition reactions are takes place when two or more reactants combine to form a single product. Elimination reactions occur when a reactant broke down into two or more products and the substitution reactions takes place by an exchange in the reactants.
To determine: The two possible structures of
(c)

Explanation of Solution
Explanation
The two possible structures of
The two possible structures of
Figure 3
The given chemical formula is
(d)
Interpretation: The structures of the final products formed in the following reactions are to be stated.
Concept introduction: Organic compounds are synthesized through organic reactions. The different types of reactions in organic chemistry are elimination reaction, substitution reaction, addition reactions and many more. Addition reactions are takes place when two or more reactants combine to form a single product. Elimination reactions occur when a reactant broke down into two or more products and the substitution reactions takes place by an exchange in the reactants.
To determine: The structure of hydrocarbon reacted with
(d)

Explanation of Solution
Explanation
The structure of hydrocarbon is shown in Figure 4.
The structure of hydrocarbon is,
Figure 4
The given hydrocarbon reacts with water which is further oxidized to give acetone. Therefore, the given hydrocarbon should be alkene which is propene as the major product is
(e)
Interpretation: The structures of the final products formed in the following reactions are to be stated.
Concept introduction: Organic compounds are synthesized through organic reactions. The different types of reactions in organic chemistry are elimination reaction, substitution reaction, addition reactions and many more. Addition reactions are takes place when two or more reactants combine to form a single product. Elimination reactions occur when a reactant broke down into two or more products and the substitution reactions takes place by an exchange in the reactants.
To determine: The possible structures for
(e)

Explanation of Solution
Explanation
The first possible structure for
The first possible structure for
Figure 5
The major product for this reaction is
The second possible structure for
The second possible structure for
Figure 6
The isomer for the given reactant
The third possible structure for
The third possible structure for
Figure 7
The isomer for the given reactant
The fourth possible structure for
The fourth possible structure for
Figure 8
The isomer for the given reactant
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Chapter 21 Solutions
EBK CHEMISTRY: AN ATOMS FIRST APPROACH
- Rank the labeled protons (Ha-Hd) in order of increasing acidity, starting with the least acidic. НОН НЬ OHd Онсarrow_forwardCan the target compound at right be efficiently synthesized in good yield from the unsubstituted benzene at left? ? starting material target If so, draw a synthesis below. If no synthesis using reagents ALEKS recognizes is possible, check the box under the drawing area. Be sure you follow the standard ALEKS rules for submitting syntheses. + More... Note for advanced students: you may assume that you are using a large excess of benzene as your starting material. C :0 T Add/Remove step Garrow_forwardThe following equations represent the formation of compound MX. What is the AH for the electron affinity of X (g)? X₂ (g) → 2X (g) M (s) → M (g) M (g) M (g) + e- AH = 60 kJ/mol AH = 22 kJ/mol X (g) + e-X (g) M* (g) +X (g) → MX (s) AH = 118 kJ/mol AH = ? AH = -190 kJ/mol AH = -100 kJ/mol a) -80 kJ b) -30 kJ c) -20 kJ d) 20 kJ e) 156 kJarrow_forward
- A covalent bond is the result of the a) b) c) d) e) overlap of two half-filled s orbitals overlap of a half-filled s orbital and a half-filled p orbital overlap of two half-filled p orbitals along their axes parallel overlap of two half-filled parallel p orbitals all of the abovearrow_forwardCan the target compound at right be efficiently synthesized in good yield from the unsubstituted benzene at left? starting material target If so, draw a synthesis below. If no synthesis using reagents ALEKS recognizes is possible, check the box under the drawing area. Be sure you follow the standard ALEKS rules for submitting syntheses. + More... Note for advanced students: you may assume that you are using a large excess of benzene as your starting material. C T Add/Remove step X ноarrow_forwardWhich one of the following atoms should have the largest electron affinity? a) b) c) d) 으으 e) 1s² 2s² 2p6 3s¹ 1s² 2s² 2p5 1s² 2s² 2p 3s² 3p² 1s² 2s 2p 3s² 3p6 4s2 3ds 1s² 2s² 2p6arrow_forward
- All of the following are allowed energy levels except _. a) 3f b) 1s c) 3d d) 5p e) 6sarrow_forwardA student wants to make the following product in good yield from a single transformation step, starting from benzene. Add any organic reagents the student is missing on the left-hand side of the arrow, and any addition reagents that are necessary above or below the arrow. If this product can't be made in good yield with a single transformation step, check the box below the drawing area. Note for advanced students: you may assume that an excess of benzene is used as part of the reaction conditions. : ☐ + I X This product can't be made in a single transformation step.arrow_forwardPredict the major products of this organic reaction:arrow_forward
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