
Concept explainers
(a)
Interpretation:
Given Lewis structure is to be drawn using condensed formula.
Concept introduction:
The condensed formula indicates how the atoms should be connected in a given molecule. To arrive at a total charge of zero, each carbon should have a maximum of four bonds while each oxygen should have a maximum of two bonds and two lone pairs. A parenthesis in the condensed formula represents that the repetitive unit is attached to the previous carbon atom. The

Answer to Problem 1.61P
The condensed formula for the first Lewis structure is:
Explanation of Solution
The given Lewis structure is:
In the given Lewis structure, there are two
The condensed formula for the first Lewis structure is shown as:
(b)
Interpretation:
Given Lewis structure is to be drawn using condensed formula.
Concept introduction:
The condensed formula indicates how the atoms should be connected in a given molecule. To arrive at a total charge of zero, each carbon should have a maximum of four bonds while each oxygen should have a maximum of two bonds and two lone pairs. A parenthesis in the condensed formula represents that the repetitive unit is attached to the previous carbon atom. The

Answer to Problem 1.61P
The condensed structure for the given Lewis structure is:
Explanation of Solution
The given Lewis structure is:
In the structure above, there are two
The condensed formula for the given Lewis structure is shown as:
(c)
Interpretation:
Given Lewis structure is to be drawn using condensed formula.
Concept introduction:
The condensed formula indicates how the atoms should be connected in a given molecule. To arrive at a total charge of zero, each carbon should have a maximum of four bonds while each oxygen should have a maximum of two bonds and two lone pairs. A parenthesis in the condensed formula represents that the repetitive unit is attached to the previous carbon atom. The

Answer to Problem 1.61P
The condensed structure for the given Lewis structure is:
Explanation of Solution
The given Lewis structure is:
In the structure above, there are two
The condensed formula for the given Lewis structure is shown as:
(d)
Interpretation:
Given Lewis structure is to be drawn using condensed formula.
Concept introduction:
The condensed formula indicates how the atoms should be connected in a given molecule. To arrive at a total charge of zero, each carbon should have a maximum of four bonds while each oxygen should have a maximum of two bonds and two lone pairs. A parenthesis in the condensed formula represents that the repetitive unit is attached to the previous carbon atom. The

Answer to Problem 1.61P
The condensed structure for the given Lewis structure is:
Explanation of Solution
The given Lewis structure is:
The structure above is a five carbon ring structure. Rings are generally now shown in their condensed formulas, but they are commonly shown in their partially condensed form. Thus, the condensed formula for the given Lewis structure is:
The condensed formula for the given Lewis structure is shown in Figure 1.
(e)
Interpretation:
Given Lewis structure is to be drawn using condensed formula.
Concept introduction:
The condensed formula indicates how the atoms should be connected in a given molecule. To arrive at a total charge of zero, each carbon should have a maximum of four bonds while each oxygen should have a maximum of two bonds and two lone pairs. A parenthesis in the condensed formula represents that the repetitive unit is attached to the previous carbon atom. The

Answer to Problem 1.61P
The condensed structure for the given Lewis structure is:
Explanation of Solution
The given Lewis structure is:
In the structure above, there is a five membered ring on the left side and a branch of three carbon atoms. Rings are generally now shown in their condensed formulas, but they are commonly shown in their partially condensed form. On one of the carbon atoms in the five membered ring, two
Thus, the condensed formula for the given Lewis structure is:
The condensed formula for the given Lewis structure is shown in Figure 2.
(f)
Interpretation:
Given Lewis structure is to be drawn using condensed formula.
Concept introduction:
The condensed formula indicates how the atoms should be connected in a given molecule. To arrive at a total charge of zero, each carbon should have a maximum of four bonds while each oxygen should have a maximum of two bonds and two lone pairs. A parenthesis in the condensed formula represents that the repetitive unit is attached to the previous carbon atom. The

Answer to Problem 1.61P
The condensed structure for the given Lewis structure is:
Explanation of Solution
The given Lewis structure is:
In the structure above, a
The condensed formula for the given Lewis structure is
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Chapter 1 Solutions
EBK ORGANIC CHEMISTRY: PRINCIPLES AND M
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- For each of the substituted benzene molecules below, determine the inductive and resonance effects the substituent will have on the benzene ring, as well as the overall electron-density of the ring compared to unsubstituted benzene. Molecule Inductive Effects Resonance Effects Overall Electron-Density × NO2 ○ donating O donating O withdrawing O withdrawing O electron-rich electron-deficient no inductive effects O no resonance effects O similar to benzene E [ CI O donating withdrawing O no inductive effects Explanation Check ○ donating withdrawing no resonance effects electron-rich electron-deficient O similar to benzene © 2025 McGraw Hill LLC. All Rights Reserved. Terms of Use | Privacy Center Accesarrow_forwardUnderstanding how substituents activate Rank each of the following substituted benzene molecules in order of which will react fastest (1) to slowest (4) by electrophilic aromatic substitution. Explanation HN NH2 Check X (Choose one) (Choose one) (Choose one) (Choose one) © 2025 McGraw Hill LLC. All Rights Reserved. Terms of Use | Privacy Center Aarrow_forwardIdentifying electron-donating and electron-withdrawing effects on benzene For each of the substituted benzene molecules below, determine the inductive and resonance effects the substituent will have on the benzene ring, as well as the overall electron-density of the ring compared to unsubstituted benzene. Inductive Effects Resonance Effects Overall Electron-Density Molecule CF3 O donating O donating O withdrawing O withdrawing O no inductive effects O no resonance effects electron-rich electron-deficient O similar to benzene CH3 O donating O withdrawing O no inductive effects O donating O withdrawing Ono resonance effects O electron-rich O electron-deficient O similar to benzene Explanation Check Х © 2025 McGraw Hill LLC. All Rights Reserved. Terms of Use | Privacy Centerarrow_forward
- * Hint: Think back to Chem 1 solubility rules. Follow Up Questions for Part B 12. What impact do the following disturbances to a system at equilibrium have on k, the rate constant for the forward reaction? Explain. (4 pts) a) Changing the concentration of a reactant or product. (2 pts) b) Changing the temperature of an exothermic reaction. (2 pts) ofarrow_forwardDraw TWO general chemical equation to prepare Symmetrical and non-Symmetrical ethers Draw 1 chemical reaction of an etherarrow_forwardPlease help me with the following questions for chemistry.arrow_forward
- Introductory Chemistry: An Active Learning Approa...ChemistryISBN:9781305079250Author:Mark S. Cracolice, Ed PetersPublisher:Cengage Learning
