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?
Question 5: Name the following compound in two ways
using side chain and using prefix amine (Common name
and IUPAC name both)
CH3NH2
CH3CH2NHCH3
CH₂CH₂N(CH3)2
Draw the structure of diethyl methyl amine
Question 6. Write the balanced combustion reaction
for:
a. Hexane
b. Propyne
c. 2-pentene
Question 7: Write the following electrophilic
substitution reactions of benzene:
Hint: Use notes if you get confused
a. Halogenation reaction:
b. Nitration reaction :
c. Sulphonation reaction:
d. Alkylation reaction:
e. Aceylation reaction:
Question 4. Name the following structures
○
CH3-C-N-H
H
CH3CH2-C-N-H
H
CH3CH2-C-N-CH3
H
A. Add Water to below compound which 2-methyl 2-butene (addition Reaction)
H₂C
CH₂
CH,
+ H₂O-> ?
Major product?
Minor product?
B. Add Bromine to the compound which 2-methyl 2-butene (addition Reaction)
CH₂
CH₂
+ Br₂→ ?
Major product and Minor product both are same in this?
C. Add Hydrogen Bromide to the compound which 2-methyl 2-butene (addition
Reaction)
H,C
CH₂
CH₂
+ HBr
Major product?
Minor product?
D. Add Hydrogen to the compound which 2-methyl 2-butene (addition Reaction)
CH₂
CH₂
+ H₂
Major product and Minor product both are same in this?
Need a deep-dive on the concept behind this application? Look no further. Learn more about this topic, chemistry and related others by exploring similar questions and additional content below.
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