1A. Nitrogen gas and Hydrogen gas were combined to form Ammonia. Compute for the mol of Nitrogen when Hydrogen is 9.45 grams. Atomic weight: Nitrogen 14.0g/mol Hydrogen 1.00g/mol 1B. Nitrogen gas and Hydrogen gas were combined to form Ammonia. Compute for the grams of Nitrogen when Hydrogen is 7.08 mol Atomic weight: Nitrogen 14.0g/mol Hydrogen 1.00g/mol 1C. Nitrogen gas and Hydrogen gas were combined to form Ammonia. Compute for the mol of Hydrogen when Nitrogen is 5.05 mol Atomic weight: Nitrogen 14.0g/mol Hydrogen 1.00g/mol

Chemistry for Engineering Students
4th Edition
ISBN:9781337398909
Author:Lawrence S. Brown, Tom Holme
Publisher:Lawrence S. Brown, Tom Holme
Chapter3: Molecules, Moles, And Chemical Equations
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1A. Nitrogen gas and Hydrogen gas were combined to form Ammonia. 

Compute for the mol of Nitrogen when Hydrogen is 9.45 grams.

Atomic weight: Nitrogen 14.0g/mol

Hydrogen 1.00g/mol

 

1B. Nitrogen gas and Hydrogen gas were combined to form Ammonia. 

Compute for the grams of Nitrogen when Hydrogen is 7.08 mol

Atomic weight: Nitrogen 14.0g/mol

Hydrogen 1.00g/mol

 

1C. Nitrogen gas and Hydrogen gas were combined to form Ammonia. 

Compute for the mol of Hydrogen when Nitrogen is 5.05 mol

Atomic weight: Nitrogen 14.0g/mol

Hydrogen 1.00g/mol

 

1D. Nitrogen gas and Hydrogen gas were combined to form Ammonia. 

Compute for the grams of Nitrogen when Hydrogen is 7.08 mol

Atomic weight: Nitrogen 14.0g/mol

Hydrogen 1.00g/mol

 

1E. Nitrogen gas and Hydrogen gas were combined to form Ammonia. 

Compute for the grams of Ammonia when Nitrogen is 3.09 grams.

Atomic weight: Nitrogen 14.0g/mol

Hydrogen 1.00g/mol

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