The C O double bond has a dipole moment of about 2.4 D and a bond length of about 1.23 . (a) Calculate the amount of charge separation in this bond. (b) Use this information to evaluate the relative importance of the following two resonance contributors: O C R R C+ R R O (R is a general symbol for a carbon-containing group.)
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Textbook Solutions for Organic Chemistry
Question
Write equations for the following acid–base reactions. Label the conjugate acids and bases, and show any inductive stabilization. Predict whether the equilibrium favors the reactants or products. Try to do this without using a table of \(\mathrm{p} K_{\mathrm{a}}\) values, but if you need a hint, you can consult Appendix 4.
(a) \(\mathrm{CH}_{3} \mathrm{CH}_{2} \mathrm{OH}+\mathrm{CH}_{3} \mathrm{NH}^{-}\)
(b) \(\mathrm{F}_{3} \mathrm{CCOONa}+\mathrm{Br}_{3} \mathrm{C}-\mathrm{COOH}\)
(c) \(\mathrm{CH}_{3} \mathrm{OH}+\mathrm{H}_{2} \mathrm{SO}_{4}\)
(d) \(\mathrm{NaOH}+\mathrm{H}_{2} \mathrm{S}\)
(e) \(\mathrm{CH}_{3} \mathrm{NH}_{3}^{+}+\mathrm{CH}_{3} \mathrm{O}^{-}\)
(f) \(\mathrm{BrCH}_{2} \mathrm{CH}_{2} \mathrm{OH}+\mathrm{F}_{3} \mathrm{C}-\mathrm{CH}_{2} \mathrm{O}^{-}\)
(g) \(\mathrm{NaOCH}_{2} \mathrm{CH}_{3}+\mathrm{Cl}_{2} \mathrm{CHCH}_{2} \mathrm{OH}\)
(h) \(\mathrm{H}_{2} \mathrm{Se}+\mathrm{NaNH}_{2}\)
(i) \(\mathrm{CH}_{3} \mathrm{CHFCOOH}+\mathrm{FCH}_{2} \mathrm{CH}_{2} \mathrm{COO}^{-}\)
(j) \(\mathrm{CF}_{3} \mathrm{CH}_{2} \mathrm{O}^{-}+\mathrm{FCH}_{2} \mathrm{CH}_{2} \mathrm{OH}\)
Solution
Step 1 of 2
1 kilometer is equal to 0.6214 miles.
1 litre is equal to 0.264172 gallon.
1 km/L can be converted to miles/gallon as follows:
\(\frac{{1km}}{L} = \frac{{0.6214miles}}{{0.264172gallon}}\)
\( \frac{{1km}}{L} = \frac{{2.352miles}}{{gallon}}\)
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