Recorded barometric pressure: 758.9 mmHg Mass of Aluminum used= .021 g Volume of gas in gas burette after placing into leveling tank= 23 mL temperature in levelling tank: 21 oC Room Temperature: 294.45 K Partial pressure of water vapor: 17.5 mmHg 2 Al (s)+ 6HCl (aq)>>>>2 AlCl3 (aq)+ 3 H2 (g) 1. How to calculate the theoretical yield of H2 gas (mL) based on the mass of Aluminum used. 2. How to calculate the % error of H2 gas.
Recorded barometric pressure: 758.9 mmHg Mass of Aluminum used= .021 g Volume of gas in gas burette after placing into leveling tank= 23 mL temperature in levelling tank: 21 oC Room Temperature: 294.45 K Partial pressure of water vapor: 17.5 mmHg 2 Al (s)+ 6HCl (aq)>>>>2 AlCl3 (aq)+ 3 H2 (g) 1. How to calculate the theoretical yield of H2 gas (mL) based on the mass of Aluminum used. 2. How to calculate the % error of H2 gas.
Chemistry
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ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Publisher:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Chapter1: Chemical Foundations
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Recorded barometric pressure: 758.9 mmHg
Mass of Aluminum used= .021 g
Volume of gas in gas burette after placing into leveling tank= 23 mL
temperature in levelling tank: 21 oC
Room Temperature: 294.45 K
Partial pressure of water vapor: 17.5 mmHg
2 Al (s)+ 6HCl (aq)>>>>2 AlCl3 (aq)+ 3 H2 (g)
1. How to calculate the theoretical yield of H2 gas (mL) based on the mass of Aluminum used.
2. How to calculate the % error of H2 gas.
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