Concept explainers
(a)
Interpretation:
Given equation has to be balanced.
(a)

Explanation of Solution
Given equation is,
The oxidation state of manganese has changed from
Balancing the equation:
Balanced chemical equation can be written for the given reaction by the method of half-reactions. Summing up the half-reactions obtained gives the resultant reaction.
Therefore, the balanced chemical equation is,
(b)
Interpretation:
Amount of bromide ions that is required to produce
(b)

Explanation of Solution
In the problem statement it is given that the yield is
Therefore, the amount of bromide ions required is
(c)
Interpretation:
The mass of manganese dioxide that is required to produce
(c)

Explanation of Solution
In the problem statement it is given that the yield is
Therefore, the amount of manganese dioxide required is
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Chapter 19 Solutions
OWLV2 FOR MOORE/STANITSKI'S CHEMISTRY:
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- What would be the reagents and conditions above and below the arrow that will complete the proposed acetoacetic ester synthesis? If it cannot be done efficiently, then I will choose that answer. There could be 2 or 4 reagents involved. Please provide a detailed explanation and drawings showing how it would proceed with the correct reagents.arrow_forwardFor benzene, the ∆H° of vaporization is 30.72 kJ/mol and the ∆S° of vaporization is 86.97 J/mol・K. At 1.00 atm and 228.0 K, what is the ∆G° of vaporization for benzene, in kJ/mol?arrow_forwardThe reaction Q(g) + R(g) → Z(l) is shown to be exothermic. Which of the following is true concerning the reaction. it is spontaneous only at High T, it is spontaneous at low T it is nonspontaneous at all T it is spontanrous at all T. it is non spontaneous only at low T.arrow_forward
- The reaction Q(g) + R(g) → Z(l) is shown to be exothermic. Which of the following is true concerning the reactionarrow_forwardWhich of the following has the largest standard molar entropy, S° (298.15 K) He H2 NaCl KBr Hgarrow_forwardWhich of the following is true for a particular reaction if ∆G° is -40.0 kJ/mol at 290 K and –20.0 kJ/mol at 390 K?arrow_forward
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