III. 3. Balance the following equations: a. Acidic media (also identify the reducing agent and the oxidizing agent) 1. P4(S) + NO3 H₂PO4 + NO(g) b. Basic media (also identify the reduction half reaction and the oxidation half reaction) 1. CrO4 + S₂04²- Cr(OH)3(s) + SO3²- C. Combustion 1. Combustion of hexane Integrated Calculations 1. From the balanced equation in 3.a.1. how much AgNO3 is needed in grams if there is 5.20 grams of phosphorus? A 0.2 M AgNO3 solution is present in the laboratory with around 250 mL left in the container. Will this be enough for the reaction? Show why or why not.

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III.
3. Balance the following equations:
a. Acidic media (also identify the reducing agent and the oxidizing agent)
1. P4(S) + NO3 → H₂PO4 + NO(g)
b.
Basic media (also identify the reduction half reaction and the oxidation half reaction)
1. CrO4²- + S₂04² → Cr(OH)3(s) + SO3²-
c. Combustion
1. Combustion of hexane
Integrated Calculations
1. From the balanced equation in 3.a.1. how much AgNO3 is needed in grams if there is
5.20 grams of phosphorus? A 0.2 M AgNO3 solution is present in the laboratory with
around 250 mL left in the container. Will this be enough for the reaction? Show why or
why not.
Transcribed Image Text:III. 3. Balance the following equations: a. Acidic media (also identify the reducing agent and the oxidizing agent) 1. P4(S) + NO3 → H₂PO4 + NO(g) b. Basic media (also identify the reduction half reaction and the oxidation half reaction) 1. CrO4²- + S₂04² → Cr(OH)3(s) + SO3²- c. Combustion 1. Combustion of hexane Integrated Calculations 1. From the balanced equation in 3.a.1. how much AgNO3 is needed in grams if there is 5.20 grams of phosphorus? A 0.2 M AgNO3 solution is present in the laboratory with around 250 mL left in the container. Will this be enough for the reaction? Show why or why not.
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