I Review | Constants | Periodic Table The integrated rate laws for zero-, first-, and second- order reaction may be arranged such that they resemble the equation for a straight line, y = mI + b. Part A Integrated Rate Law [A] = - kt + [A]o Order Graph Slope The reactant concentration in a zero-order reaction was 0.100 M after 145 s and 4.00x10-2 M after 360 s [A] vs. t ーk What is the rate constant for this reaction? In[A] = -kt + In[A]o In[A] vs. t Express your answer with the appropriate units. Indicate the multiplication of units, as necessary, explicitly either with a multiplication dot or a dash. ーk 內 = kt + vs. t > View Available Hint(s) HA koth = Value M/s Submit Request Answer Part B Complete previous part(s) Part C The reactant concentration in a first-order reaction was 9.80x102 Mafter 35.0 s and 8.60x103 M after 85.0 s What is the rate constant for this reaction?

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Chapter1: Chemical Foundations
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Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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<Chapter 15 Homework
Item 16
16 of 39
I Review | Constants | Periodic Table
The integrated rate laws for zero-, first-, and second-
order reaction may be arranged such that they
resemble the equation for a straight line,
y = mx + b.
Part A
Order
Integrated Rate Law
Graph
Slope
The reactant concentration in a zero-order reaction was 0.100 M after 145 s and 4.00x10-2 M after 360 s
[A] = - kt + [A]o
[A] vs. t
What is the rate constant for this reaction?
In[A] = -kt + In[A]o In[A] vs. t
Express your answer with the appropriate units. Indicate the multiplication of units, as necessary,
explicitly either with a multiplication dot or a dash.
1
-k
= kt +
vs. t
A
k
> View Available Hint(s)
HA
koth =
Value
M/s
Submit
Request Answer
Part B Complete previous part(s)
Part C
The reactant concentration in a first-order reaction was 9.80x 10-2 M after 35.0 s and 8.60x10-3 M after 85.0 s
What is the rate constant for this reaction?
Express vaur answer with the annronriate nits Indicate the munltinlication of units s necessan
Transcribed Image Text:Ecollege.com/course.html?courseld%3D165279228&OpenVellumHMAC364fb9469730f13ff48be237a6623ff51#10001 urance O Cab scholarship O (34) SM Special - E. O MAC+1105++2094. a Amazon.com | DP.. 0O Thailand Veterinary. Free income tax Bailey Family Foun. <Chapter 15 Homework Item 16 16 of 39 I Review | Constants | Periodic Table The integrated rate laws for zero-, first-, and second- order reaction may be arranged such that they resemble the equation for a straight line, y = mx + b. Part A Order Integrated Rate Law Graph Slope The reactant concentration in a zero-order reaction was 0.100 M after 145 s and 4.00x10-2 M after 360 s [A] = - kt + [A]o [A] vs. t What is the rate constant for this reaction? In[A] = -kt + In[A]o In[A] vs. t Express your answer with the appropriate units. Indicate the multiplication of units, as necessary, explicitly either with a multiplication dot or a dash. 1 -k = kt + vs. t A k > View Available Hint(s) HA koth = Value M/s Submit Request Answer Part B Complete previous part(s) Part C The reactant concentration in a first-order reaction was 9.80x 10-2 M after 35.0 s and 8.60x10-3 M after 85.0 s What is the rate constant for this reaction? Express vaur answer with the annronriate nits Indicate the munltinlication of units s necessan
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I Review Constants | Periodic Table
The integrated rate laws for zero-, first-, and second-
order reaction may be arranged such that they
resemble the equation for a straight line,
y = mx + b.
Part C
The reactant concentration in a first-order reaction was 9.80x10-2 Mafter 35.0s and 8.60x10-3 Mafter 85.0 s
What is the rate constant for this reaction?
Order
Integrated Rate Law
Graph
Slope
kt + [A]o
Express your answer with the appropriate units. Indicate the multiplication of units, as necessary,
explicitly either with a multiplication dot or a dash.
[A] =
[A] vs. t
ーk
1
In[A = -kt + ln[A]o In[A] vs. t
ーk
> View Available Hint(s)
= kt + Alo
[A
vs. t
k
kist =
Value
s 1
Submit
Part D
The reactant concentration in a second-order reaction was 0.680 M after 290 s and 1.20x10-2 M after 805 s
What is the rate constant for this reaction?
Express your answer with the appropriate units. Indicate the multiplication of units, as necessary,
explicitly either with a multiplication dot or a dash.
• View Available Hint(s)
P Pearson
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Transcribed Image Text:irhing - G je.com/ course.html?courseld=16527922&OpenVellumHMAC364fb9469730f13ff48be237a6623ff51#10001 S Cab scholarship O (34) SM Special -E.. ance O MAC+1105++2094.. a Amazon.com | D P. 0O Thailand Veterinary.. Free income tax Bailey Family Foun. I Review Constants | Periodic Table The integrated rate laws for zero-, first-, and second- order reaction may be arranged such that they resemble the equation for a straight line, y = mx + b. Part C The reactant concentration in a first-order reaction was 9.80x10-2 Mafter 35.0s and 8.60x10-3 Mafter 85.0 s What is the rate constant for this reaction? Order Integrated Rate Law Graph Slope kt + [A]o Express your answer with the appropriate units. Indicate the multiplication of units, as necessary, explicitly either with a multiplication dot or a dash. [A] = [A] vs. t ーk 1 In[A = -kt + ln[A]o In[A] vs. t ーk > View Available Hint(s) = kt + Alo [A vs. t k kist = Value s 1 Submit Part D The reactant concentration in a second-order reaction was 0.680 M after 290 s and 1.20x10-2 M after 805 s What is the rate constant for this reaction? Express your answer with the appropriate units. Indicate the multiplication of units, as necessary, explicitly either with a multiplication dot or a dash. • View Available Hint(s) P Pearson Copyright © 2021 Pearson Education Inc. All rights reserved. Terms of Use | Privacy Policy I Permissions I Contact Us !
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