produced. The balanced equation for this reaction is When potassium hydroxide reacts with phosphoric acid, potassium phosphate and water are 3KOH(aq)H3PO4(aq) -» K3PO4 (aq) +3H20(1) If 12 moles of potassium hydroxide react moles of phosphoric acid The reaction consumes moles of potassium phosphate and The reaction produces moles of water According to the following reaction, how many moles of water will be formed upon the complete reaction of 0.876 moles hydrochloric acid with excess oxygen gas? 4HC1(aq)2(g) -» 2H20()2C12 (g) mol water

Chemistry: Principles and Reactions
8th Edition
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Author:William L. Masterton, Cecile N. Hurley
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Chapter3: Mass Relations In Chemistry; Stoichiometry
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produced. The balanced equation for this reaction is
When potassium hydroxide reacts with phosphoric acid, potassium phosphate and water are
3KOH(aq)H3PO4(aq) -» K3PO4 (aq) +3H20(1)
If 12 moles of potassium hydroxide react
moles of phosphoric acid
The reaction consumes
moles of potassium phosphate and
The reaction produces
moles of water
Transcribed Image Text:produced. The balanced equation for this reaction is When potassium hydroxide reacts with phosphoric acid, potassium phosphate and water are 3KOH(aq)H3PO4(aq) -» K3PO4 (aq) +3H20(1) If 12 moles of potassium hydroxide react moles of phosphoric acid The reaction consumes moles of potassium phosphate and The reaction produces moles of water
According to the following reaction, how many moles of water will be formed upon the complete reaction of 0.876 moles hydrochloric acid with excess oxygen gas?
4HC1(aq)2(g) -» 2H20()2C12 (g)
mol water
Transcribed Image Text:According to the following reaction, how many moles of water will be formed upon the complete reaction of 0.876 moles hydrochloric acid with excess oxygen gas? 4HC1(aq)2(g) -» 2H20()2C12 (g) mol water
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