
Concept explainers
Calculate the pH of an aqueous solution at 25°C that is (a) 0.035 M in HI, (b) 1.2 × 10−4 M in HNO3, and (c) 6.7 × 10−5 M in HClO4.
(a)

Interpretation:
The pH of the given aqueous solutions at
Concept Information:
Strong acids:
In strong acids, the ionization of acid is complete. This implies that the concentration of the hydrogen ion or hydronium ion will be equal to the initial concentration of the acid at equilibrium.
pH definition:
The concentration of hydrogen ion is measured using
The
On rearranging, the concentration of hydrogen ion
To calculate: The pH of an aqueous solution of 0.035 M
Answer to Problem 16.7WE
Answer
(a)
The pH of the given aqueous solution (a) is 1.46
Explanation of Solution
The concentration of hydronium ion in the
Concentration of
Concentration of hydronium ion = 0.035 M
The pH can be calculated as follows,
Therefore, the pH of an aqueous solution of 0.035 M
(b)

Interpretation:
The pH of the given aqueous solutions at
Concept Information:
Strong acids:
In strong acids, the ionization of acid is complete. This implies that the concentration of the hydrogen ion or hydronium ion will be equal to the initial concentration of the acid at equilibrium.
pH definition:
The concentration of hydrogen ion is measured using
The
On rearranging, the concentration of hydrogen ion
To calculate: The pH of an aqueous solution of
Answer to Problem 16.7WE
Answer
The pH of the given aqueous solution (b) is 3.92
Explanation of Solution
The concentration of hydronium ion in the
Concentration of
Concentration of hydronium ion =
The pH can be calculated as follows,
Therefore, the pH of an aqueous solution of
(c)

Interpretation:
The pH of the given aqueous solutions at
Concept Information:
Strong acids:
In strong acids, the ionization of acid is complete. This implies that the concentration of the hydrogen ion or hydronium ion will be equal to the initial concentration of the acid at equilibrium.
pH definition:
The concentration of hydrogen ion is measured using
The
On rearranging, the concentration of hydrogen ion
To calculate: The pH of an aqueous solution of
Answer to Problem 16.7WE
Answer
The pH of the given aqueous solution (c) is 4.17
Explanation of Solution
Explanation
The concentration of hydronium ion in the
Concentration of
Concentration of hydronium ion =
The pH can be calculated as follows,
Therefore, the pH of an aqueous solution of
The pH of the given aqueous solutions at
Want to see more full solutions like this?
Chapter 16 Solutions
Chemistry: Atoms First
- Using Benzene as starting materia Show how each of the Following molecules could Ve synthesked 9. CHI d. 10450 b 0 -50311 ८ City -5034 1-0-650 e NO2arrow_forwardBA HBr of the fol 1)=MgCI 2) H₂O major NaOEt Ts Cl Py (pyridine) 1) 03 2) Me2S 1arrow_forward4. Provide a clear arrow-pushing mechanism for the following reactions. Do not skip proton transfers, do not combine steps, and make sure your arrows are clear enough to be interpreted without ambiguity. a) NHBoc ⚫OBn HO. H3C CO2CH3 -OBn H3C H3C. H3C. NHBOC CI CO2CH3arrow_forward
- Draw structures of the following compounds and identify their role: mCPBA (MCPBA) DMS Py 9-BBN LAH Sia₂BH TsCI PCC t-BuOK LDA MeLi n-BuLi DMSO DMF Sodium Borohydride Lithium DiisopropylAmide 2arrow_forwardUsing Luther's rule, calculate the reference potential of the Hg2+/Hg redox electrode. DATA: Electrode potentials E° = 0,854 V y E 0,788 V Hg2+/Hg 2+ Hg2/Hgarrow_forward1) NaNH2 (excess) 1) NaNH2 CI CI 2) H₂O 2) Mel 1) 03 2) (CH3)2S Na NH3 (liquid) 1arrow_forward
- CI 1) n-BuLi 2) 1) 03 HH T&Cl 2) H₂O 2arrow_forwardHelp with a!arrow_forwardFor the following compound: HO -H Draw a mechanism for the tautomerization process under BASIC conditions: Mechanism A: H-O: H-OH H-O HH H-OO Mechanism B: H-Q Mechanism C: Θ OH H-O: Mechanism D: H-O H- H-OO C H-OO H- H- H-OO HH OH -H - HON H :OH H-Harrow_forward
- identify the product (or multiple products) for each of the following reactions: CI 1) NaNH2 (excess) ठ Cl 2) H₂O Hz H₂SO₂, H₂O HgSO Lindlar's catalyst 1) n-BuLi 2) 1)9-BBN 2) H₂O, NaOH ? Br H A B C afó gó H OA B O c OD E OF D E F H H Na, NHarrow_forwardIdentify the product (or multiple products) for each of the following reactions: ? or CI CI 1) NaNHz (excess) 2) H₂O OA OB O C OD OE OF H₂SO₂, H₂O Hq50. 1) n-BuLi 2) Br 1) 9-BBN 2) H₂O₂, NaOH A B H H متته D E H H H H C H H F H H H₂ Lindlar's catalyst Na NHarrow_forwardIdentify the product (or multiple products) for each of the following reactions: O A OB Oc OD OE OF CI CI 1) NaNH2 (excess) 2) H₂O H₂ H₂SO2, H₂O HgSO Lindlar's catalyst 1) n-BuLi 2) Br 1)9-BBN 2) H₂O₂, NaOH ? Na, NH3 C H A H H مننه مننه منن مننه H F H H E مند H D H Harrow_forward
- Chemistry: The Molecular ScienceChemistryISBN:9781285199047Author:John W. Moore, Conrad L. StanitskiPublisher:Cengage LearningChemistry: Principles and PracticeChemistryISBN:9780534420123Author:Daniel L. Reger, Scott R. Goode, David W. Ball, Edward MercerPublisher:Cengage LearningChemistry: Principles and ReactionsChemistryISBN:9781305079373Author:William L. Masterton, Cecile N. HurleyPublisher:Cengage Learning
- Chemistry for Engineering StudentsChemistryISBN:9781337398909Author:Lawrence S. Brown, Tom HolmePublisher:Cengage LearningIntroductory Chemistry: A FoundationChemistryISBN:9781285199030Author:Steven S. Zumdahl, Donald J. DeCostePublisher:Cengage LearningGeneral, Organic, and Biological ChemistryChemistryISBN:9781285853918Author:H. Stephen StokerPublisher:Cengage Learning





