42.) The rate expression for a reaction is Rate = 0.400 M to 0.200 M, and the initial concentration [Blo is increased from 0.200 M to 0.600 M, the initial rate will increase by which of the following factors? k[A][B]³. If the initial concentration [A]o is decreased from А.) 1.50 В.) 4.50 C.) 0.0741 D.) 13.5 E.) 0.667

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I would like help with problem 42 in the image attached.

D.) 3.00 x 10-3 s
E.) 231. s
42.) The rate expression for a reaction is Rate = k[A][B]3. If the initial concentration [A]o is decreased from
0.400 M to 0.200 M, and the initial concentration [B]o is increased from 0.200 M to 0.600 M, the initial rate
will increase by which of the following factors?
%3D
A.) 1.50
В.) 4.50
C.) 0.0741
D.) 13.5
E.) 0.667
43.) The N20 decomposition, 2 N20 (g) → 2 N, (g) + O, (g), is a zero order reaction that has a reaction
rate constant of 2.00 x 10-3 M/s. Initially, 2.00 moles of NoO gas are infused into a 1.00 L vessel at 300. K.
Calculate the pressure inside the vessel at 100. seconds after the start of the reaction. Temperature is held
Transcribed Image Text:D.) 3.00 x 10-3 s E.) 231. s 42.) The rate expression for a reaction is Rate = k[A][B]3. If the initial concentration [A]o is decreased from 0.400 M to 0.200 M, and the initial concentration [B]o is increased from 0.200 M to 0.600 M, the initial rate will increase by which of the following factors? %3D A.) 1.50 В.) 4.50 C.) 0.0741 D.) 13.5 E.) 0.667 43.) The N20 decomposition, 2 N20 (g) → 2 N, (g) + O, (g), is a zero order reaction that has a reaction rate constant of 2.00 x 10-3 M/s. Initially, 2.00 moles of NoO gas are infused into a 1.00 L vessel at 300. K. Calculate the pressure inside the vessel at 100. seconds after the start of the reaction. Temperature is held
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