Part A There are several factors that affect the rate of a reaction. These factors include temperature, activation energy, steric factors (orientation), and also collision frequency, which changes with concentration and phase. All the factors that affect reaction rate can be summarized in an equation called the Arrhenius equation: A certain reaction has an activation energy of 64.0 kJ mol and a frequency factor of Aj = 7.40x1012 k = Ae E/RT Express your answer with the appropriate units. Indicate the multiplication of units explicitly eithe where k is the rate constant, A is the frequency factor, E, is the activation energy, R= 8.314 J mol- K-1 is the gas constant, and T is the absolute temperature. HÀ ? k = Value Units The linear form of the Arrhenius equation The Arrhenius equation can be rearranged to a form that resembles the equation for a straight line: In k -(#) 4) (7) y = z is , and b is the y-intercept or In A. The linearity of this equati- m E. where y is In k, m is the slope or - Part B

Chemistry: The Molecular Science
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Author:John W. Moore, Conrad L. Stanitski
Publisher:John W. Moore, Conrad L. Stanitski
Chapter11: Chemical Kinetics: Rates Of Reactions
Section: Chapter Questions
Problem 11.ACP: (Section 11-5) A rule of thumb is that for a typical reaction, if concentrations are unchanged, a...
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Part A
There are several factors that affect the rate of a reaction. These factors include
temperature, activation energy, steric factors (orientation), and also collision
frequency, which changes with concentration and phase. All the factors that affect
reaction rate can be summarized in an equation called the Arrhenius equation:
A certain reaction has an activation energy of 64.0 kJ mol-1 and a frequency factor of A1 = 7.40x1012 L mol-1 s-1. What is the rate constant, k, of this reaction at 24.0 °C ?
k = Ae-Ea/RT
Express your answer with the appropriate units. Indicate the multiplication of units explicitly either with a multiplication dot (asterisk) or a dash.
where k is the rate constant, A is the frequency factor, E, is the activation
energy, R = 8.314 J mol-1 K-l is the gas constant, and T is the absolute
temperature.
HA
k =
Value
Units
The linear form of the Arrhenius equation
The Arrhenius equation can be rearranged to a form that resembles the equation for a straight line:
Ea
R
() (주) + In A
In k
m
+
E
where y is In k, m is the slope or –
, and b is the y-intercept or ln A. The linearity of this equation is illustrated graphically in the image.(Figure 1)
R, x is
Part B
An unknown reaction was observed, and the following data were collected:
T
k
(K)
(L mol- s)
352
109
426
185
Determine the activation energy for this reaction.
Figure
< 1 of 1
Express your answer with the appropriate units.
HA
Value
Units
slope =
In k
Submit
Request Answer
Provide Feedback
Ne
1/T (к1)
2 Pearson
నా 5
Transcribed Image Text:Part A There are several factors that affect the rate of a reaction. These factors include temperature, activation energy, steric factors (orientation), and also collision frequency, which changes with concentration and phase. All the factors that affect reaction rate can be summarized in an equation called the Arrhenius equation: A certain reaction has an activation energy of 64.0 kJ mol-1 and a frequency factor of A1 = 7.40x1012 L mol-1 s-1. What is the rate constant, k, of this reaction at 24.0 °C ? k = Ae-Ea/RT Express your answer with the appropriate units. Indicate the multiplication of units explicitly either with a multiplication dot (asterisk) or a dash. where k is the rate constant, A is the frequency factor, E, is the activation energy, R = 8.314 J mol-1 K-l is the gas constant, and T is the absolute temperature. HA k = Value Units The linear form of the Arrhenius equation The Arrhenius equation can be rearranged to a form that resembles the equation for a straight line: Ea R () (주) + In A In k m + E where y is In k, m is the slope or – , and b is the y-intercept or ln A. The linearity of this equation is illustrated graphically in the image.(Figure 1) R, x is Part B An unknown reaction was observed, and the following data were collected: T k (K) (L mol- s) 352 109 426 185 Determine the activation energy for this reaction. Figure < 1 of 1 Express your answer with the appropriate units. HA Value Units slope = In k Submit Request Answer Provide Feedback Ne 1/T (к1) 2 Pearson నా 5
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