The initial rate for a reaction is equal to the slope of the tangent line at t ≈ 0 in a plot of [A] versus time. From calculus, initial rate = − d [ A ] d t . Therefore. the differential rate law for a reaction is Rate = − d [ A ] d t = k [ A ] n . Assuming you have some calculus in your background, derive the zero-, first-, and second-order integrated rate laws using the differential rate law.
The initial rate for a reaction is equal to the slope of the tangent line at t ≈ 0 in a plot of [A] versus time. From calculus, initial rate = − d [ A ] d t . Therefore. the differential rate law for a reaction is Rate = − d [ A ] d t = k [ A ] n . Assuming you have some calculus in your background, derive the zero-, first-, and second-order integrated rate laws using the differential rate law.
Solution Summary: The author explains that the initial rate for a reaction is equal to the slope of the tangent line at tapprox 0. The zero-, first- and second-order integrated rate
The initial rate for a reaction is equal to the slope of the tangent line at t ≈ 0 in a plot of [A] versus time. From calculus, initial rate =
−
d
[
A
]
d
t
. Therefore. the differential rate law for a reaction is Rate =
−
d
[
A
]
d
t
=
k
[
A
]
n
.
Assuming you have some calculus in your background, derive the zero-, first-, and second-order integrated rate laws using the differential rate law.
Definition Definition Study of the speed of chemical reactions and other factors that affect the rate of reaction. It also extends toward the mechanism involved in the reaction.
1. This experiment is more about understanding the colligative properties of a solution rather than the determination of
the molar mass of a solid.
a. Define colligative properties.
b. Which of the following solutes has the greatest effect on the colligative properties for a given mass of pure water?
Explain.
(i) 0.01 mol of CaCl2
(ii) 0.01 mol of KNO3
(iii) 0.01 mol of CO(NH2)2
(an electrolyte)
(an electrolyte)
(a nonelectrolyte)
5. b. For Trials 2 and 3, the molar mass of the solute was 151 g/mol and 143 g/mol respectively.
a. What is the average molar mass of the solute ?
b. What are the standard deviation and the relative standard deviation (%RSD) for the molar mass of the solute ?
Show work. Don't give Ai generated solution
Chapter 11 Solutions
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