12. Consider the reaction of nitric oxide with chlorine gas to yield NOCI. The rate law equation for this reaction was determined to be rate = k [Ch₂][NO] ², where k = 18L²/(mol².s). Find the unknown information in the table below: Trial 1 2 3 ? || Initial [NO] (mol/L) 0.10 ? 0.20 Initial [Cl₂] (mol/L) 0.10 0.20 ?? ?? Rate of production of NOCI (mol/(L.s)) 1.8 x 10-² 3.6 x 10-² 1.43 x 10-¹

Chemistry & Chemical Reactivity
9th Edition
ISBN:9781133949640
Author:John C. Kotz, Paul M. Treichel, John Townsend, David Treichel
Publisher:John C. Kotz, Paul M. Treichel, John Townsend, David Treichel
Chapter14: Chemical Kinetics: The Rates Of Chemical Reactions
Section14.6: Reaction Mechanisms
Problem 2RC: A reaction is believed to occur by the following mechanism: Stepl: 2AI (Fast equilibrium) Step 2: I...
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12.
Consider the reaction of nitric oxide with chlorine gas to yield NOCI. The rate law equation for
this reaction was determined to be rate = k [Cl₂][NO] 2, where k = 18L²/(mol².s). Find the
unknown information in the table below:
Trial
1
2
3
?
Initial [NO]
(mol/L)
0.10
?
0.20
Initial [Cl₂]
(mol/L)
0.10
0.20
??
??
||
Rate of production of NOCI
(mol/(L.s))
1.8 x 10-²
3.6 x 10-²
1.43 x 10-¹
Transcribed Image Text:12. Consider the reaction of nitric oxide with chlorine gas to yield NOCI. The rate law equation for this reaction was determined to be rate = k [Cl₂][NO] 2, where k = 18L²/(mol².s). Find the unknown information in the table below: Trial 1 2 3 ? Initial [NO] (mol/L) 0.10 ? 0.20 Initial [Cl₂] (mol/L) 0.10 0.20 ?? ?? || Rate of production of NOCI (mol/(L.s)) 1.8 x 10-² 3.6 x 10-² 1.43 x 10-¹
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