The decomposition of NH 3 to N 2 and H 2 was studied on two surfaces: Surface E a (kJ/mol) W 163 Os 197 Without a catalyst, the activation energy is 335 kJ/mol. a. Which surface is the better heterogeneous catalyst for the decomposition of NH 3 ? Why? b. How many times faster is the reaction at 298 K on the W surface compared with the reaction with no catalyst present? Assume that the frequency factor A is the same for each reaction. c. The decomposition reaction on the two surfaces obeys a rate law of the form Rate = k [ NH 3 ] [ H 2 ] How can you explain the inverse dependence of the rate on the H 2 concentration?
The decomposition of NH 3 to N 2 and H 2 was studied on two surfaces: Surface E a (kJ/mol) W 163 Os 197 Without a catalyst, the activation energy is 335 kJ/mol. a. Which surface is the better heterogeneous catalyst for the decomposition of NH 3 ? Why? b. How many times faster is the reaction at 298 K on the W surface compared with the reaction with no catalyst present? Assume that the frequency factor A is the same for each reaction. c. The decomposition reaction on the two surfaces obeys a rate law of the form Rate = k [ NH 3 ] [ H 2 ] How can you explain the inverse dependence of the rate on the H 2 concentration?
Solution Summary: The author explains that the substance that speeds up the rate of reaction without getting consumed itself in a chemical reaction is known as catalyst.
The decomposition of NH3 to N2 and H2 was studied on two surfaces:
Surface
Ea (kJ/mol)
W
163
Os
197
Without a catalyst, the activation energy is 335 kJ/mol.
a. Which surface is the better heterogeneous catalyst for the decomposition of NH3? Why?
b. How many times faster is the reaction at 298 K on the W surface compared with the reaction with no catalyst present? Assume that the frequency factor A is the same for each reaction.
c. The decomposition reaction on the two surfaces obeys a rate law of the form
Rate
=
k
[
NH
3
]
[
H
2
]
How can you explain the inverse dependence of the rate on the H2 concentration?
Cual es la formula semidesarrollada del 3-metil-1-butino?
2. A graph shown below shows first ionization energies for elements from H to Ne.
First ionization energy/kJ mol
2500
2000
1500
1000
500
T
T
T
T
1
2
3
5
6
7
8
9
10
Atomic number
a) Using arguments of electronic structure, explain why ionization energy of Li is much
lower than that of H.
(2 points)
then dips at O.
b) Using the same arguments, explain why ionization energy increases from B to N, and
(3 points)
Give the name of this compound, including stereochemistry if relevant:
CICH2
CH3
Br
CH₂CH=CH2
Write in the product, including stereochemistry where relevant, for these
reactions. See end of ch. 8, p. 301-303.
1. 03
a) 2-methyl-2-pentene
->
2. Zn, H*
Br2
b) 1-ethylcyclopentene
-->
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Author:Steven D. Gammon, Ebbing, Darrell Ebbing, Steven D., Darrell; Gammon, Darrell Ebbing; Steven D. Gammon, Darrell D.; Gammon, Ebbing; Steven D. Gammon; Darrell
Author:Steven D. Gammon, Ebbing, Darrell Ebbing, Steven D., Darrell; Gammon, Darrell Ebbing; Steven D. Gammon, Darrell D.; Gammon, Ebbing; Steven D. Gammon; Darrell