K Question 5 of 14 > Macmillan Learning For \\( \ce{A-> products} \\), time and concentration data were collected and plotted as shown. WC \bf{\ce{[A]}}\text{\bf{t\text{ (s)}} \\) (M)} \\) \\(0.550 \\) (00.0 \\) \\(0.301 \\) 11( 30.0 \\) \\( 0.208 \\) (60.0 \\) \\(0.158 \\) ( 90.0 \\) Determine the reaction order, the rate constant, and the units of the rate constant. order= 11( k= [A] t (units) 1/[A] t

Chemistry
10th Edition
ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Publisher:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Chapter1: Chemical Foundations
Section: Chapter Questions
Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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Question 5 of 14 >
Macmillan Learning
For \\( \ce{A-> products} \\), time and concentration data were collected and plotted as shown.
W(
\bf{\ce{[A]}}\text{\bf{t\text{
(M)} \\)
\\(0.550 \\)
\\(0.301 \\)
order=
k=
W(
\\( 30.0 \\)
\\( 0.208 \\)
( 60.0 \\)
\\(0.158 \\)
\\( 90.0 \\)
Determine the reaction order, the rate constant, and the units of the rate constant.
H
O
(s)}} \\)
\\(00.0 \\)
[A]
Resources
a
(units)
1/[A]
insert
Hint
delete
Check Answer
12:16 a
24/09/202
Transcribed Image Text:< config.js Question 5 of 14 > Macmillan Learning For \\( \ce{A-> products} \\), time and concentration data were collected and plotted as shown. W( \bf{\ce{[A]}}\text{\bf{t\text{ (M)} \\) \\(0.550 \\) \\(0.301 \\) order= k= W( \\( 30.0 \\) \\( 0.208 \\) ( 60.0 \\) \\(0.158 \\) \\( 90.0 \\) Determine the reaction order, the rate constant, and the units of the rate constant. H O (s)}} \\) \\(00.0 \\) [A] Resources a (units) 1/[A] insert Hint delete Check Answer 12:16 a 24/09/202
14 >
Macmillan Learning
After 72.0 min, 13.0% of a compound has decomposed. What is the half-life of this reaction assuming first-order kinetics?
t1/2 =
Q
Hint
DELL
Check Answ
min
12
D 24/09
Transcribed Image Text:14 > Macmillan Learning After 72.0 min, 13.0% of a compound has decomposed. What is the half-life of this reaction assuming first-order kinetics? t1/2 = Q Hint DELL Check Answ min 12 D 24/09
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