3. At 900 °C, titanium tetrachloride vapor reacts with molten magnesium metal to form solid titanium metal and molten magnesium chloride. (a) Write a balanced equation for this reaction. (b) What is being oxidized, and what is being reduced? (c) Which substance is the reductant, and which is the oxidant?

Chemistry: The Molecular Science
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Author:John W. Moore, Conrad L. Stanitski
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Chapter17: Electrochemistry And Its Applications
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Identifying oxidising and reducing agents
3. At 900 °C, titanium tetrachloride vapor reacts with molten magnesium metal to form solid titanium metal and
molten magnesium chloride. (a) Write a balanced equation for this reaction. (b) What is being oxidized, and
what is being reduced? (c) Which substance is the reductant, and which is the oxidant?
4. Complete and balance the following half-reactions. In each case, indicate whether the half-reaction is an
oxidation or a reduction.
(a) CIO," (00) → Cl ()
(b) SO," (aa) → SO?" (aa)
(c) O2 → H;0
(d) HOCI (aa) →Cl2 @
(acidic solution)
(basic solution)
(basic solution)
(acidic solution)
Transcribed Image Text:3. At 900 °C, titanium tetrachloride vapor reacts with molten magnesium metal to form solid titanium metal and molten magnesium chloride. (a) Write a balanced equation for this reaction. (b) What is being oxidized, and what is being reduced? (c) Which substance is the reductant, and which is the oxidant? 4. Complete and balance the following half-reactions. In each case, indicate whether the half-reaction is an oxidation or a reduction. (a) CIO," (00) → Cl () (b) SO," (aa) → SO?" (aa) (c) O2 → H;0 (d) HOCI (aa) →Cl2 @ (acidic solution) (basic solution) (basic solution) (acidic solution)
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