Problem number 1: Milk of magnesia, which is an aqueous suspension of magnesium hydroxide is used as an antacid Balanced equation: Mg(OH), (s) + 2HCI (aq) 2H,0 (1) + MgCI, (aq) Given : 1 g Mg(OH)2 Find: 1. Mass of HCI needed 2. Mass of MgCl, formed 3. Moles of H,O formed 4. Moles of Mg(OH)2 5. Molecules of H,O 6. Atoms of hydrogen

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Problem number 1:
Milk of magnesia, which is an aqueous suspension of magnesium hydroxide is used as an
antacid
Balanced equation:
Mg(OH), (s) + 2HCI (aq)
2H,0 (I) + MgCI, (aq)
Given : 1 g Mg(OH)2
Find:
1. Mass of HCI needed
2. Mass of MgCl, formed
3. Moles of H¿O formed
4. Moles of Mg(OH)2
5. Molecules of H,0
6. Atoms of hydrogen
Problem Number 2:
Nitrogen gas can be prepared by passing gaseous ammonia over solid copper (II) oxide at high
temperatures. The other product of the reaction are solid copper and water vapor. If a sample
containing 18.1 g of NH3 is reacted with 90.4 g CuO
7. Which is the limiting reactant ?
8. How many g of N2 will be formed?
9. How much is the excess reagent?
10. What is the percent yield if 8.5 g of N2 is actually produced ?
Transcribed Image Text:Problem number 1: Milk of magnesia, which is an aqueous suspension of magnesium hydroxide is used as an antacid Balanced equation: Mg(OH), (s) + 2HCI (aq) 2H,0 (I) + MgCI, (aq) Given : 1 g Mg(OH)2 Find: 1. Mass of HCI needed 2. Mass of MgCl, formed 3. Moles of H¿O formed 4. Moles of Mg(OH)2 5. Molecules of H,0 6. Atoms of hydrogen Problem Number 2: Nitrogen gas can be prepared by passing gaseous ammonia over solid copper (II) oxide at high temperatures. The other product of the reaction are solid copper and water vapor. If a sample containing 18.1 g of NH3 is reacted with 90.4 g CuO 7. Which is the limiting reactant ? 8. How many g of N2 will be formed? 9. How much is the excess reagent? 10. What is the percent yield if 8.5 g of N2 is actually produced ?
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