The gas phase decomposition of nitrosyl chloride at 400 K NOCI(g) NO(g) + ½ Cl½(g) is second order in NOCI with a rate constant of 5.90×10+ M's'. If the initial concentration of NOCI is 4.60×10 ² M, the concentration of NOCI will be 8.51x10 3M after seconds have passed.
The gas phase decomposition of nitrosyl chloride at 400 K NOCI(g) NO(g) + ½ Cl½(g) is second order in NOCI with a rate constant of 5.90×10+ M's'. If the initial concentration of NOCI is 4.60×10 ² M, the concentration of NOCI will be 8.51x10 3M after seconds have passed.
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![The gas phase decomposition of nitrosyl chloride at 400 K
NOCI(g) NO(g) + ½ Cl½(g)
is second order in NOCI with a rate constant of 5.90×10+ M's'.
If the initial concentration of NOCI is 4.60×10 ² M, the concentration of NOCI will be 8.51x10 3M after
seconds have passed.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F49f4e77f-1c6d-4f3e-85bf-06d6d1c1a91f%2Fefcd997c-60d0-4515-815e-847548d1599e%2F2l2qsk9_reoriented.jpeg&w=3840&q=75)
Transcribed Image Text:The gas phase decomposition of nitrosyl chloride at 400 K
NOCI(g) NO(g) + ½ Cl½(g)
is second order in NOCI with a rate constant of 5.90×10+ M's'.
If the initial concentration of NOCI is 4.60×10 ² M, the concentration of NOCI will be 8.51x10 3M after
seconds have passed.
Expert Solution
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Step 1
For the second-order reaction,
The initial concentration of NOCl, [A]o=4.6 x 10-2 M
The final concentration of NOCl, [A]=8.51 x 10-3 M
The rate constant ,k =5.90 x 10-4 M-1 s-1
The time consumed for the change, t=?
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