Given the initial rate data for the reaction A + B ---> C, determine the rate expression for the reaction and determine what K (initial rate) for the reaction will be. ([] is measured in moles/liter). If the concentrations of A and B were both .5, what would be the IRR? [A] 0.30 0.10 0.10 [B] 0.35 0.35 0.70 a. IRR = K[A]¹[B]² b. IRR=k [A]³[B]⁰ c. IRR = k [A]²[B]⁰ d. IRR=k [A]²[B]¹ IRR 9.00 1.00 1.00

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Given the initial rate data for the reaction A + B ---> C, determine the rate expression for the reaction and determine what K (initial rate) for the reaction will be. ([ ] is measured in moles/liter).  If the concentrations of A and B were both .5, 

[A].      [B].    IRR

0.30   0.35.  9.00

0.10   0.35.  1.00

0.10   0.70   1.00

what would be the IRR?

a. IRR = k[A]1[B]2

b. IRR = k [A]3[B]0

c. IRR = k [A]2[B]0

d. IRR = k [A]2[B]1

Given the initial rate data for the reaction A + B ---> C, determine the rate expression for
the reaction and determine what K (initial rate) for the reaction will be. ([] is measured in
moles/liter). If the concentrations of A and B were both .5, what would be the IRR?
[A]
0.30
0.10
0.10
[B]
0.35
0.35
0.70
b.
a. IRR = K[A]¹[B]²
IRR = k [A]³[B]⁰
c. IRR = k [A]²[B]⁰
IRR=k [A]²[B]¹
d.
IRR
9.00
1.00
1.00
Transcribed Image Text:Given the initial rate data for the reaction A + B ---> C, determine the rate expression for the reaction and determine what K (initial rate) for the reaction will be. ([] is measured in moles/liter). If the concentrations of A and B were both .5, what would be the IRR? [A] 0.30 0.10 0.10 [B] 0.35 0.35 0.70 b. a. IRR = K[A]¹[B]² IRR = k [A]³[B]⁰ c. IRR = k [A]²[B]⁰ IRR=k [A]²[B]¹ d. IRR 9.00 1.00 1.00
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