PROBLEM: Many gaseous reactions occur in a car engine and exhaust system. One of these is NO (g)- CO(g) - NO(g) + CO (g) Use the following data to determine the individual and overall reaction orders: rate = k[NOJ"[CO) Initial (NO,] Initial [CO] (mol/L) Initial Rate Experiment (mol/L-s) (mol/L) 0.0050 0 10 0.10 0.080 0.40 0.10 0.0050 0.10 0 20

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Activity: 1
Determining Reaction Orders from Rate Data
PROBLEM: Many gaseous reactions occur in a car engine and exhaust
system. One of these is
NO (g) - CO(g) –- NO(g) + CO (g) rate = k(NOJ"(CO)
Use the following data to determine the individual and
overall reaction orders:
Initial (NO] Initial [CO]
(mol/L)
Initial Rate
Experiment (mol/L-s)
(mol/L)
1
0.0050
0 10
0.10
0.080
0.40
0.10
0.0050
0. 10
0 20
Transcribed Image Text:Activity: 1 Determining Reaction Orders from Rate Data PROBLEM: Many gaseous reactions occur in a car engine and exhaust system. One of these is NO (g) - CO(g) –- NO(g) + CO (g) rate = k(NOJ"(CO) Use the following data to determine the individual and overall reaction orders: Initial (NO] Initial [CO] (mol/L) Initial Rate Experiment (mol/L-s) (mol/L) 1 0.0050 0 10 0.10 0.080 0.40 0.10 0.0050 0. 10 0 20
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