ClaT igmie besnt Sleir wolk Todmon ololw 1e16on orh cirtt bruion bne Calculate the rate constant, k, by using the orders, a, b, and c, that you calculated above, the rate and concentration data from Trial 1. Remember that a rate constant must have units. OLoo4 on 5-1 roled anoulea cooola Eoro7 M1² [o.006M Ms-! lotx105s- -1 ms k%3D 3. Write the full rate law for the reaction below including all the numbers you just calculated. Part 1-Determination of the Rate Law: Write the rate laws for both Trials 1 and 2 below making sure to include the rates and concentrations of each reactant that you calculated in the table above. Don't forget the exponents a, b, and c, since you will be solving for those using this data. For Trial 2 Q, v0V = CGrbia Jr ogs]° cou0ojo For Trial 1 O. 90 4 = Co .c04ja coLoojb Coyo636 %3D Now divide the rate expression for Trial 2 by that for Trial 1 and simplify. 105=0.5 Now solve for a, and round this to the nearest whole number. 1. a = roda boisiuolso oV Iso bns d robno sri giau vd al overi lad J0s c0o sten od otchol bm otn o aT6Iedi odasmst Use Trials 1 and 3 to determine b, and Trials 1 and 4 to determine c. Show your calculations below. Eyp 3 0:04 O,023-1 Evpl leyo Id^3 2. b=2.3d C= Expt O,00 8 boiyoleo %3D C =1

Organic Chemistry: A Guided Inquiry
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Author:Andrei Straumanis
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Chapter8: Addition Via Carbocation
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I found the rate law and now I must find the constant k. I'm just not sure if the units being s^-1 M^-3 (calculate rate law question) 

ClaT
igmie besnt
Sleir
wolk
Todmon ololw 1e16on orh
cirtt bruion bne
Calculate the rate constant, k, by using the orders, a, b, and c, that you calculated above,
the rate and concentration data from Trial 1. Remember that a rate constant must have
units.
OLoo4 on 5-1
roled anoulea
cooola Eoro7
M1² [o.006M
Ms-!
lotx105s-
-1 ms
k%3D
3.
Write the full rate law for the reaction below including all the numbers you just
calculated.
Transcribed Image Text:ClaT igmie besnt Sleir wolk Todmon ololw 1e16on orh cirtt bruion bne Calculate the rate constant, k, by using the orders, a, b, and c, that you calculated above, the rate and concentration data from Trial 1. Remember that a rate constant must have units. OLoo4 on 5-1 roled anoulea cooola Eoro7 M1² [o.006M Ms-! lotx105s- -1 ms k%3D 3. Write the full rate law for the reaction below including all the numbers you just calculated.
Part 1-Determination of the Rate Law:
Write the rate laws for both Trials 1 and 2 below making sure to include the rates and
concentrations of each reactant that you calculated in the table above. Don't forget the
exponents a, b, and c, since you will be solving for those using this data.
For Trial 2 Q, v0V = CGrbia Jr ogs]° cou0ojo
For Trial 1 O. 90 4 = Co .c04ja coLoojb Coyo636
%3D
Now divide the rate expression for Trial 2 by that for Trial 1 and simplify.
105=0.5
Now solve for a, and round this to the nearest whole number.
1.
a =
roda boisiuolso oV Iso bns d robno sri giau vd al
overi lad J0s
c0o sten od otchol
bm otn o
aT6Iedi odasmst
Use Trials 1 and 3 to determine b, and Trials 1 and 4 to determine c. Show your
calculations below.
Eyp 3
0:04
O,023-1
Evpl leyo
Id^3
2.
b=2.3d
C= Expt
O,00 8
boiyoleo
%3D
C =1
Transcribed Image Text:Part 1-Determination of the Rate Law: Write the rate laws for both Trials 1 and 2 below making sure to include the rates and concentrations of each reactant that you calculated in the table above. Don't forget the exponents a, b, and c, since you will be solving for those using this data. For Trial 2 Q, v0V = CGrbia Jr ogs]° cou0ojo For Trial 1 O. 90 4 = Co .c04ja coLoojb Coyo636 %3D Now divide the rate expression for Trial 2 by that for Trial 1 and simplify. 105=0.5 Now solve for a, and round this to the nearest whole number. 1. a = roda boisiuolso oV Iso bns d robno sri giau vd al overi lad J0s c0o sten od otchol bm otn o aT6Iedi odasmst Use Trials 1 and 3 to determine b, and Trials 1 and 4 to determine c. Show your calculations below. Eyp 3 0:04 O,023-1 Evpl leyo Id^3 2. b=2.3d C= Expt O,00 8 boiyoleo %3D C =1
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