(a)
Interpretation:
The given
Concept Introduction:
The
(a)

Answer to Problem 16QRT
The
In this reaction,
Explanation of Solution
The given unbalanced redox reaction is shown below.
The carbon atoms in the given redox reaction are balanced. The oxygen atoms are balanced by putting
The above balanced reaction is multiplied by
Thus, the balanced chemical reaction is shown below.
The oxidation number of carbon atom in
The oxidation number of oxygen atom in
(b)
Interpretation:
The given redox reaction is to be balanced and the oxidizing agent and reducing agent are to be identified.
Concept Introduction:
Same as part (a).
(b)

Answer to Problem 16QRT
The balanced redox reaction is shown below.
In this reaction,
Explanation of Solution
The given unbalanced redox reaction is shown below.
The hydrogen atoms and chlorine atoms are balanced by putting
The above balanced reaction is multiplied by
Thus, the balanced chemical reaction is shown below.
The oxidation number of hydrogen atom in
The oxidation number of chlorine atom in
(c)
Interpretation:
The given redox reaction is to be balanced in acidic medium and the oxidizing agent and reducing agent are to be identified.
Concept Introduction:
Same as part (a).
(c)

Answer to Problem 16QRT
The balanced redox reaction is shown below.
In this reaction,
Explanation of Solution
The given unbalanced redox reaction is shown below.
The oxidation number of titanium atom in
The oxidation number of oxygen atom in
The given unbalanced redox reaction is shown below.
The oxidation number of titanium atom in
The oxidation number of oxygen atom in
Therefore, the unbalanced half reactions are shown below.
Oxidation:
Reduction:
The given reaction is to be balanced in acidic medium. Therefore, oxygen atoms are balanced by adding water molecules to the deficient side.
Oxidation:
Reduction:
After balancing oxygen atoms, now hydrogen atoms are balanced by adding protons
Oxidation:
Reduction:
The charge is on both sides is balanced by adding electrons to the more positive side of the half- reaction to equal the less positive side of the half- reaction.
Oxidation:
Reduction:
Since, there is the equal loss and gain of electron in the above two half-cell reactions. Therefore, the overall cell reaction is get by addition the above two half-cell reactions.
The simplified chemical equation after removing the chemical species of the similar kind is shown below.
Thus, the balanced chemical reaction is shown below.
(d)
Interpretation:
The given redox reaction is to be balanced in acidic medium and the oxidizing agent and reducing agent are to be identified.
Concept Introduction:
Same as part (a).
(d)

Answer to Problem 16QRT
The balanced redox reaction is shown below.
In this reaction,
Explanation of Solution
The given unbalanced redox reaction is shown below.
The oxidation number of chlorine atom in
The oxidation number of manganese atom in
Therefore, the unbalanced half reactions are shown below.
Oxidation:
Reduction:
The given reaction is to be balanced in acidic medium. Therefore, oxygen atoms are balanced by adding water molecules to the deficient side.
Oxidation:
Reduction:
After balancing oxygen atoms, now hydrogen atoms are balanced by adding protons
Oxidation:
Reduction:
The charge is on both sides is balanced by adding electrons to the more positive side of the half- reaction to equal the less positive side of the half- reaction.
Oxidation:
Reduction:
Since the electron gain is not equivalent to electron lost. Thus, multiply the oxidation half reaction by
Oxidation:
Reduction:
Now, there is the equal loss and gain of electron in the above two half-cell reactions. Therefore, the overall cell reaction is get by addition the above two half-cell reactions.
The simplified chemical equation after removing the chemical species of the similar kind is shown below.
Thus, the balanced chemical reaction is shown below.
(e)
Interpretation:
The given redox reaction is to be balanced and the oxidizing agent and reducing agent are to be identified.
Concept Introduction:
Same as part (a).
(e)

Answer to Problem 16QRT
The balanced redox reaction is shown below.
In this reaction,
Explanation of Solution
The given unbalanced redox reaction is shown below.
The oxidation number of iron atom in
The oxidation number of oxygen atom in
Therefore, the unbalanced half reactions are shown below.
Oxidation:
Reduction:
The iron atom and sulphur atoms are balanced by putting
Oxidation:
Reduction:
The given reaction is to be balanced in acidic medium. Therefore, oxygen atoms are balanced by adding water molecules to the deficient side.
Oxidation:
Reduction:
After balancing oxygen atoms, now hydrogen atoms are balanced by adding protons
Oxidation:
Reduction:
The charge is on both sides is balanced by adding electrons to the more positive side of the half- reaction to equal the less positive side of the half- reaction.
Oxidation:
Reduction:
Since the electron gain is not equivalent to electron lost. Thus, multiply the oxidation half reaction by
Oxidation:
Reduction:
Now, there is the equal loss and gain of electron in the above two half-cell reactions. Therefore, the overall cell reaction is get by addition the above two half-cell reactions.
The simplified chemical equation after removing the chemical species of the similar kind is shown below.
Thus, the balanced chemical reaction is shown below.
(f)
Interpretation:
The given redox reaction is to be balanced and the oxidizing agent and reducing agent are to be identified.
Concept Introduction:
Same as part (a).
(f)

Answer to Problem 16QRT
The balanced redox reaction is shown below.
In this reaction,
Explanation of Solution
The given redox reaction is shown below.
The given redox reaction is already balanced and there are equal numbers of each atom both the sides.
The oxidation number of nitrogen atom in
The oxidation number of oxygen atom in
(g)
Interpretation:
The given redox reaction is to be balanced in basic medium and the oxidizing agent and reducing agent are to be identified.
Concept Introduction:
Same as part (a).
(g)

Answer to Problem 16QRT
The balanced redox reaction is shown below.
In this reaction,
Explanation of Solution
The given unbalanced redox reaction is shown below.
The oxidation number of zinc atom in
The oxidation number of mercury atom in
Therefore, the unbalanced half reactions are shown below.
Oxidation:
Reduction:
The given reaction is to be balanced in basic medium. Therefore, oxygen atoms are balanced by adding water molecules to the deficient side.
Oxidation:
Reduction:
After balancing oxygen atoms, hydrogen atoms are balanced by adding water molecules
Oxidation:
Reduction:
The charge is on both sides is balanced by adding electrons to the more positive side of the half- reaction to equal the less positive side of the half- reaction.
Oxidation:
Reduction:
Now, there is the equal loss and gain of electron in the above two half-cell reactions. Therefore, the overall cell reaction is get by addition the above two half-cell reactions.
The simplified chemical equation after removing the chemical species of the similar kind is shown below.
Thus, the balanced chemical reaction is shown below.
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Chapter 17 Solutions
OWLv2 for Moore/Stanitski's Chemistry: The Molecular Science, 5th Edition, [Instant Access], 1 term (6 months)
- Using reaction free energy to predict equilibrium composition Consider the following equilibrium: N2O4 (g) 2NO2 (g) AG⁰ = 5.4 kJ Now suppose a reaction vessel is filled with 1.68 atm of dinitrogen tetroxide (N204) at 148. °C. Answer the following questions about this system: rise Under these conditions, will the pressure of N2O4 tend to rise or fall? x10 fall Is it possible to reverse this tendency by adding NO2? In other words, if you said the pressure of N2O4 will tend to rise, can that be changed to a tendency to fall by adding NO2? Similarly, if you said the pressure of N2O4 will tend to fall, can that be changed to a tendency to rise by adding NO2? If you said the tendency can be reversed in the second question, calculate the minimum pressure of NO 2 needed to reverse it. Round your answer to 2 significant digits. yes no 0.42 atm ☑ 5 0/5 ? مله Ararrow_forwardHomework 13 (Ch17) Question 4 of 4 (1 point) | Question Attempt: 2 of 2 ✓ 1 ✓ 2 = 3 4 Time Remaining: 4:25:54 Using the thermodynamic information in the ALEKS Data tab, calculate the standard reaction free energy of the following chemical reaction: 2CH3OH (g)+302 (g) → 2CO2 (g) + 4H₂O (g) Round your answer to zero decimal places. ☐ kJ x10 ☐ Subm Check 2020 Hill LLC. All Rights Reserved. Terms of Use | Privacy Cearrow_forwardIdentifying the major species in weak acid or weak base equilibria Your answer is incorrect. • Row 2: Your answer is incorrect. • Row 3: Your answer is incorrect. • Row 6: Your answer is incorrect. 0/5 The preparations of two aqueous solutions are described in the table below. For each solution, write the chemical formulas of the major species present at equilibrium. You can leave out water itself. Write the chemical formulas of the species that will act as acids in the 'acids' row, the formulas of the species that will act as bases in the 'bases' row, and the formulas of the species that will act as neither acids nor bases in the 'other' row. You will find it useful to keep in mind that HF is a weak acid. acids: HF 0.1 mol of NaOH is added to 1.0 L of a 0.7M HF solution. bases: 0.13 mol of HCl is added to 1.0 L of a solution that is 1.0M in both HF and KF. Exponent other: F acids: HF bases: F other: K 1 0,0,... ? 000 18 Ararrow_forward
- Using reaction free energy to predict equilibrium composition Consider the following equilibrium: 2NOCI (g) 2NO (g) + Cl2 (g) AGº =41. kJ Now suppose a reaction vessel is filled with 4.50 atm of nitrosyl chloride (NOCI) and 6.38 atm of chlorine (C12) at 212. °C. Answer the following questions about this system: ? rise Under these conditions, will the pressure of NOCI tend to rise or fall? x10 fall Is it possible to reverse this tendency by adding NO? In other words, if you said the pressure of NOCI will tend to rise, can that be changed to a tendency to fall by adding NO? Similarly, if you said the pressure of NOCI will tend to fall, can that be changed to a tendency to rise by adding NO? yes no If you said the tendency can be reversed in the second question, calculate the minimum pressure of NO needed to reverse it. Round your answer to 2 significant digits. 0.035 atm ✓ G 00. 18 Ararrow_forwardHighlight each glycosidic bond in the molecule below. Then answer the questions in the table under the drawing area. HO- HO- -0 OH OH HO NG HO- HO- OH OH OH OH NG OHarrow_forward€ + Suppose the molecule in the drawing area below were reacted with H₂ over a platinum catalyst. Edit the molecule to show what would happen to it. That is, turn it into the product of the reaction. Also, write the name of the product molecule under the drawing area. Name: ☐ H C=0 X H- OH HO- H HO- -H CH₂OH ×arrow_forward
- Draw the Haworth projection of the disaccharide made by joining D-glucose and D-mannose with a ẞ(1-4) glycosidic bond. If the disaccharide has more than one anomer, you can draw any of them. Click and drag to start drawing a structure. Xarrow_forwardEpoxides can be opened in aqueous acid or aqueous base to produce diols (molecules with two OH groups). In this question, you'll explore the mechanism of epoxide opening in aqueous acid. 2nd attempt Be sure to show all four bonds at stereocenters using hash and wedge lines. 0 0 Draw curved arrows to show how the epoxide reacts with hydronium ion. 100 +1: 1st attempt Feedback Be sure to show all four bonds at stereocenters using hash and wedge lines. See Periodic Table See Hint H A 5 F F Hr See Periodic Table See Hintarrow_forward03 Question (1 point) For the reaction below, draw both of the major organic products. Be sure to consider stereochemistry. > 1. CH₂CH₂MgBr 2. H₂O 3rd attempt Draw all four bonds at chiral centers. Draw all stereoisomers formed. Draw the structures here. e 130 AN H See Periodic Table See Hint P C Brarrow_forward
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