What is the oxidation number of sulfur in the thiosulfate ion, \( \text{S}_2\text{O}_3^{2-} \)?
Cambridge International AS Level · Chemistry (9701)
Electrochemistry:练习题
5 道选择题即时批改,另有 5 道文字题附完整解题步骤,全部围绕「Electrochemistry」。
In the unbalanced equation \( a\text{Cr}_2\text{O}_7^{2-} + b\text{H}^+ + c\text{I}^- \rightarrow d\text{Cr}^{3+} + e\text{I}_2 + f\text{H}_2\text{O} \), what are the values of the coefficients a and c when the equation is balanced using the change in oxidation number method?
A solution containing \( 0.10 \text{ mol} \) of \( \text{VO}_2^+ \) ions is reduced by exactly \( 0.20 \text{ mol} \) of electrons. What is the oxidation state of vanadium in the product of this reduction?
In the following redox reaction, which species acts as the reducing agent?
\( \text{Zn(s)} + \text{Cu}^{2+}\text{(aq)} \rightarrow \text{Zn}^{2+}\text{(aq)} + \text{Cu(s)} \)
When the redox equation \( a\text{MnO}_4^- + b\text{H}_2\text{O}_2 + c\text{H}^+ \rightarrow d\text{Mn}^{2+} + e\text{O}_2 + f\text{H}_2\text{O} \) is balanced using the lowest possible integer coefficients, what is the value of the ratio \( \frac{b}{a} \)?
Determine the oxidation number of S in the following species:
(i) \(\text{S}_2\text{O}_3^{2-}\)
(ii) \(\text{SO}_4^{2-}\)
(iii) \(\text{H}_2\text{S}\)
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Consider the reaction: \(3\text{Br}_2 + 6\text{OH}^- \rightarrow 5\text{Br}^- + \text{BrO}_3^- + 3\text{H}_2\text{O}\). Identify the oxidising agent and the reducing agent, justifying your choice using the change in oxidation numbers of bromine.
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Explain, in terms of oxidation numbers, why the reaction between iron(II) ions and acidified potassium manganate(VII) is classified as a redox process. Use the changes in oxidation states of Fe and Mn in your answer.
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The oxidation of ammonia is represented by the following equation:
\(4\text{NH}_3 + 5\text{O}_2 \rightarrow 4\text{NO} + 6\text{H}_2\text{O}\)
(a) Calculate the oxidation number of nitrogen in \(\text{NH}_3\) and in \(\text{NO}\).
(b) Identify the species being oxidised and the species being reduced, giving reasons in terms of oxidation number changes.
(c) Define disproportionation and explain why the reaction above is NOT a disproportionation reaction.
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Consider the redox reaction between acidified potassium manganate(VII) and iron(II) ions:
\(\text{MnO}_4^- + 8\text{H}^+ + 5\text{Fe}^{2+} \rightarrow \text{Mn}^{2+} + 5\text{Fe}^{3+} + 4\text{H}_2\text{O}\)
(a) Define oxidising agent in terms of electron transfer.
(b) Deduce the change in oxidation number for manganese and iron in this reaction.
(c) If \(25.0\text{ cm}^3\) of \(0.020\text{ mol dm}^{-3}\) \(\text{KMnO}_4\) reacts exactly with \(25.0\text{ cm}^3\) of an \(\text{FeSO}_4\) solution, calculate the concentration of the \(\text{Fe}^{2+}\) ions in \(\text{mol dm}^{-3}\).
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