uestion (1 point) e See section 9.8 A number of reactions can be used to generate common gases on a laboratory scale. For example, nitrogen can be produced from sodium metal and potassium nitrate as indicated by the balanced equation: 10Na(s) + 2KNO3(s) K₂O(s)+5Na₂O(s)+N2(g) A common laboratory-scale reaction can also generate oxygen gas by heating potassium chlorate, as indicated by the balanced equation: 2KCIO3(s) - 2KCI(s)+302(g) 1st attempt Part 1 (0.5 point) See Periodic Table See Hint What mass of potassium nitrate is needed to generate 179.0 L of gas, composed of 135.0 L of N2 and 44.0 L of O2 at 0.920 atm and 291 K, using these two reactions? g KNO Part 2 (0.5 point) What mass of potassium chlorate is needed to generate 179.0 L of gas, composed of 135.0 L of N2 and 44.0 L of O2 at 0.920 atm and 291 K, using these two reactions? g KCIO See Hint
uestion (1 point) e See section 9.8 A number of reactions can be used to generate common gases on a laboratory scale. For example, nitrogen can be produced from sodium metal and potassium nitrate as indicated by the balanced equation: 10Na(s) + 2KNO3(s) K₂O(s)+5Na₂O(s)+N2(g) A common laboratory-scale reaction can also generate oxygen gas by heating potassium chlorate, as indicated by the balanced equation: 2KCIO3(s) - 2KCI(s)+302(g) 1st attempt Part 1 (0.5 point) See Periodic Table See Hint What mass of potassium nitrate is needed to generate 179.0 L of gas, composed of 135.0 L of N2 and 44.0 L of O2 at 0.920 atm and 291 K, using these two reactions? g KNO Part 2 (0.5 point) What mass of potassium chlorate is needed to generate 179.0 L of gas, composed of 135.0 L of N2 and 44.0 L of O2 at 0.920 atm and 291 K, using these two reactions? g KCIO See Hint
Human Anatomy & Physiology (11th Edition)
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![uestion (1 point)
e See section 9.8
A number of reactions can be used to generate common gases on a laboratory scale. For example, nitrogen can be produced from sodium metal
and potassium nitrate as indicated by the balanced equation:
10Na(s) + 2KNO3(s) K₂O(s)+5Na₂O(s)+N2(g)
A common laboratory-scale reaction can also generate oxygen gas by heating potassium chlorate, as indicated by the balanced equation:
2KCIO3(s) -
2KCI(s)+302(g)
1st attempt
Part 1 (0.5 point)
See Periodic Table See Hint
What mass of potassium nitrate is needed to generate 179.0 L of gas, composed of 135.0 L of N2 and 44.0 L of O2 at 0.920 atm
and 291 K, using these two reactions?
g KNO
Part 2 (0.5 point)
What mass of potassium chlorate is needed to generate 179.0 L of gas, composed of 135.0 L of N2 and 44.0 L of O2 at 0.920 atm
and 291 K, using these two reactions?
g KCIO
See Hint](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F9d37f402-fddb-4d42-aa05-22b4ee17284d%2F341c515e-44b5-4506-aacf-bc078ab3649b%2Fmso2rq_processed.jpeg&w=3840&q=75)
Transcribed Image Text:uestion (1 point)
e See section 9.8
A number of reactions can be used to generate common gases on a laboratory scale. For example, nitrogen can be produced from sodium metal
and potassium nitrate as indicated by the balanced equation:
10Na(s) + 2KNO3(s) K₂O(s)+5Na₂O(s)+N2(g)
A common laboratory-scale reaction can also generate oxygen gas by heating potassium chlorate, as indicated by the balanced equation:
2KCIO3(s) -
2KCI(s)+302(g)
1st attempt
Part 1 (0.5 point)
See Periodic Table See Hint
What mass of potassium nitrate is needed to generate 179.0 L of gas, composed of 135.0 L of N2 and 44.0 L of O2 at 0.920 atm
and 291 K, using these two reactions?
g KNO
Part 2 (0.5 point)
What mass of potassium chlorate is needed to generate 179.0 L of gas, composed of 135.0 L of N2 and 44.0 L of O2 at 0.920 atm
and 291 K, using these two reactions?
g KCIO
See Hint
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