In the reactants, acid and base has to be identified and also in the product, conjugate acid and conjugate base has to be identified in the given reaction. CN − ( a q ) + CH 3 COOH ( a q ) → CH 3 COO − ( a q ) + HCN ( a q ) Concept Introduction: Brønsted-Lowry acid is the one which can donate H + ion to other substances. It can also be said as proton donors. Brønsted-Lowry base is the one which can accept H + ion from other substances. It can also be said as proton acceptors. In order to be a Brønsted-Lowry base, an unshared pair of electrons must be present on molecule or the ion. When an acid donates a proton, the species formed from acid is known as conjugate base. When a base accepts a proton from acid, the species formed from the base is known as conjugate acid.
In the reactants, acid and base has to be identified and also in the product, conjugate acid and conjugate base has to be identified in the given reaction. CN − ( a q ) + CH 3 COOH ( a q ) → CH 3 COO − ( a q ) + HCN ( a q ) Concept Introduction: Brønsted-Lowry acid is the one which can donate H + ion to other substances. It can also be said as proton donors. Brønsted-Lowry base is the one which can accept H + ion from other substances. It can also be said as proton acceptors. In order to be a Brønsted-Lowry base, an unshared pair of electrons must be present on molecule or the ion. When an acid donates a proton, the species formed from acid is known as conjugate base. When a base accepts a proton from acid, the species formed from the base is known as conjugate acid.
Solution Summary: The author explains that Brnsted-Lowry acid is the one which can donate H + ion to other substances and can also be said as proton acceptors
In the reactants, acid and base has to be identified and also in the product, conjugate acid and conjugate base has to be identified in the given reaction.
CN−(aq)+CH3COOH(aq)→CH3COO−(aq)+HCN(aq)
Concept Introduction:
Brønsted-Lowry acid is the one which can donate H+ ion to other substances. It can also be said as proton donors. Brønsted-Lowry base is the one which can accept H+ ion from other substances. It can also be said as proton acceptors. In order to be a Brønsted-Lowry base, an unshared pair of electrons must be present on molecule or the ion.
When an acid donates a proton, the species formed from acid is known as conjugate base. When a base accepts a proton from acid, the species formed from the base is known as conjugate acid.
(b)
Interpretation Introduction
Interpretation:
In the reactants, acid and base has to be identified and also in the product, conjugate acid and conjugate base has to be identified in the given reaction.
O2−(aq)+H2O(l)→2OH−(aq)
Concept Introduction:
Refer part (a).
(c)
Interpretation Introduction
Interpretation:
In the reactants, acid and base has to be identified and also in the product, conjugate acid and conjugate base has to be identified in the given reaction.
Plan the synthesis of the following compound using the starting
material provided and any other reagents needed as long as
carbon based reagents have 3 carbons or less. Either the
retrosynthesis or the forward synthesis (mechanisms are not
required but will be graded if provided) will be accepted if all
necessary reagents and intermediates are shown (solvents and
temperature requirements are not needed unless specifically
involved in the reaction, i.e. DMSO in the Swern oxidation or
heat in the KMnO4 oxidation).
H
H
Hint These are benzene substitution reactions.
ALCI3 and UV light are catalyst no part in reactions and triangle A means
heating.
A. Add ethyl for Et in benzene ring alkylation reaction EtCl =
CH3CH2CL
1) EtC1 / AlCl3 / A
?
B: Add Br to benzene ring ( substitution)
2) Br₂ / uv light
?
C Add (CH3)2 CHCH2 in benzene ring ( substitution)
(CH3)2CHCH,C1 / AICI,
?
Draw the mechanism to make the alcohol 2-hexanol.
Draw the Mechanism to make the alcohol 1-hexanol.
Chapter 14 Solutions
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