The oxidation of nitric oxide 2 NO+O2)→2 NO2(g) is a key step in the production of photochemical smog. Calculate the change in internal energy (in kJ) that occurs when 250.0 g of NO reacts with excess oxygen at 85.0°C. AH=-113.1 kJ

Chemistry & Chemical Reactivity
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Chapter5: Principles Of Chemical Reactivity: Energy And Chemical Reactions
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i
(1 L atm = 101.325 J, 1 L bar = 100.000 J)
The oxidation of nitric oxide
2 NO(g) + O2(g) → 2 NO2(g)
AH =-113.1 kJ
is a key step in the production of photochemical smog. Calculate the change in internal energy (in kJ) that occurs
when 250.0 g of NO reacts with excess oxygen at 85.0°C.
Transcribed Image Text:i (1 L atm = 101.325 J, 1 L bar = 100.000 J) The oxidation of nitric oxide 2 NO(g) + O2(g) → 2 NO2(g) AH =-113.1 kJ is a key step in the production of photochemical smog. Calculate the change in internal energy (in kJ) that occurs when 250.0 g of NO reacts with excess oxygen at 85.0°C.
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