Nitric oxide (NO) reacts with molecular oxygen as follows: 2NO(g) + O₂(g) - 4 2NO₂ (g) Initially NO and O₂ are separated in two different chambers connected by a valve. When the valve is opened, the reaction quickly goes to completion. Determine what gases remain at the end and calculate their partial pressures. Assume that the temperature remains constant at 25 "C. Initial conditions are as follows: NO: 3.90 L, 0.500 atm 0₂: 2.01 L, 1.00 atm Be sure each of your answer entries has the correct number of significant digits. atm Pos PNO,-0 atm atm X 5

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Nitric oxide (NO) reacts with molecular oxygen as follows:
2NO(g) + O₂(g)
2NO, (g)
Initially NO and O₂ are separated in two different chambers connected by a valve. When the valve is opened, the reaction quickly goes to completion.
Determine what gases remain at the end and calculate their partial pressures. Assume that the temperature remains constant at 25 "C. Initial conditions are as
follows:
NO: 3.90 L, 0.500 atm
O₂: 2.01 L, 1.00 atm
Be sure each of your answer entries has the correct number of significant digits.
Pos
PHO₂
-
atm
atm
-0-
atm
X
Transcribed Image Text:Nitric oxide (NO) reacts with molecular oxygen as follows: 2NO(g) + O₂(g) 2NO, (g) Initially NO and O₂ are separated in two different chambers connected by a valve. When the valve is opened, the reaction quickly goes to completion. Determine what gases remain at the end and calculate their partial pressures. Assume that the temperature remains constant at 25 "C. Initial conditions are as follows: NO: 3.90 L, 0.500 atm O₂: 2.01 L, 1.00 atm Be sure each of your answer entries has the correct number of significant digits. Pos PHO₂ - atm atm -0- atm X
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