(a)
Interpretation:
The equation to show the basic nature of the given species in water according to the Bronsted-Lowry model should be written.
Concept introduction:
According Bronsted-Lowry acid and base theory, acids are substance which loses protons
For example:
Here, HA is an acid as it donates a proton to form
Similarly,
Here,
Answer to Problem 12QAP
Explanation of Solution
The given species is
On reaction with water, it can act as a base by accepting hydrogen ion from the water molecule. The reaction is shown as follows:
In the above reaction,
Therefore,
(b)
Interpretation:
The equation to show the basic nature of the given species in water according to the Bronsted-Lowry model should be written.
Concept introduction:
According Bronsted-Lowry acid and base theory, acids are substance which loses protons
For example:
Here, HA is an acid as it donates a proton to form
Similarly,
Here,
Answer to Problem 12QAP
Explanation of Solution
The given species is
On reaction with water, it can act as a base by accepting hydrogen ion from the water molecule. The reaction is shown as follows:
In the above reaction,
Therefore,
(c)
Interpretation:
The equation to show the basic nature of the given species in water according to the Bronsted-Lowry model should be written.
Concept introduction:
According Bronsted-Lowry acid and base theory, acids are substance which loses protons
For example:
Here, HA is an acid as it donates a proton to form
Similarly,
Here,
Answer to Problem 12QAP
Explanation of Solution
The given species is
On reaction with water, it can act as a base by accepting hydrogen ion from the water molecule. The reaction is shown as follows:
In the above reaction,
Therefore,
(d)
Interpretation:
The equation to show the basic nature of the given species in water according to the Bronsted-Lowry model should be written.
Concept introduction:
According Bronsted-Lowry acid and base theory, acids are substance which loses protons
For example:
Here, HA is an acid as it donates a proton to form
Similarly,
Here,
Answer to Problem 12QAP
Explanation of Solution
The given species is
On reaction with water, it can act as a base by accepting hydrogen ion from the water molecule. The reaction is shown as follows:
In the above reaction,
Therefore,
(e)
Interpretation:
The equation to show the basic nature of the given species in water according to the Bronsted-Lowry model should be written.
Concept introduction:
According Bronsted-Lowry acid and base theory, acids are substance which loses protons
For example:
Here, HA is an acid as it donates a proton to form
Similarly,
Here,
Answer to Problem 12QAP
Explanation of Solution
The given species is
On reaction with water, it can act as a base by accepting hydrogen ion from the water molecule. The reaction is shown as follows:
In the above reaction,
Therefore,
(f)
Interpretation:
The equation to show the basic nature of the given species in water according to the Bronsted-Lowry model should be written.
Concept introduction:
According Bronsted-Lowry acid and base theory, acids are substance which loses protons
For example:
Here, HA is an acid as it donates a proton to form
Similarly,
Here,
Answer to Problem 12QAP
Explanation of Solution
The given species is
On reaction with water, it can act as a base by accepting hydrogen ion from the water molecule. The reaction is shown as follows:
In the above reaction,
Therefore,
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Chapter 13 Solutions
OWLv2 with Student Solutions Manual eBook for Masterton/Hurley's Chemistry: Principles and Reactions, 8th Edition, [Instant Access], 4 terms (24 months)
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- Draw a Lewis structure for each of the following molecules and ions. In each case, the atoms can be connected in only one way. (a) Br2 (b) H2S (c) N2H4 (d) N2H2 (e) CN- (f) NH4+ (g) N2 (h) O2arrow_forwardFor each conjugate acid-base pair, identify the first species as an acid or a base and the second species as its conjugate acid or base. In addition, draw Lewis structures for each species, showing all valence electrons and any formal charge. (a) CH3S- CH3SHarrow_forwardArrange the Lewis acids GaCl3, BCl3 en AlCl3 in order of increasing acidity.arrow_forward
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