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Standard XII
Chemistry
Azeotropic Mixtures
The half life...
Question
The half life period of the following first order reaction is (\log 3 = 0.4771) C2H4O2(g) → CH4(g) + CO2(g) Given that initial pressure of C2H4O2(g) is 84 mm and total pressure at the end of 16 minutes is 110 mm (\log 3 = 0.4771)
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Similar questions
Q.
Calculate the half-life of the first order reaction
C
2
H
4
O
2
(
g
)
⟶
C
H
4
(
g
)
+
C
O
2
(
g
)
if the initial pressure of
C
2
H
4
O
(
g
)
is
84
mm and the total pressure at the end of
16
min is
110
mm.
Q.
What is the half-life of the first order reaction
C
H
3
C
H
O
(
g
)
→
C
H
4
(
g
)
+
C
O
(
g
)
, if an initial pressure of
C
H
3
C
H
O
(
g
)
is 80 mm and the total pressure at the end of 20 minutes is 120 mm?
Q.
Calculate the half-life of the first-order reaction,
C
2
H
4
O
(
g
)
→
C
H
4
(
g
)
+
C
O
(
g
)
, if the initial pressure of
C
2
H
4
O
(
g
)
is 80 mm and the total pressure at the end of 20 minutes is 120 mm.
Q.
If the initial pressure of
C
H
3
C
H
O
(
g
)
is 80 mm and
the total pressure at the end of 20 min is 120 mm.
C
H
3
C
H
O
(
g
)
→
C
H
4
(
g
)
+
C
O
(
g
)
What is the half-life of the first-order reaction?
Q.
For the first order reaction,
A
(
g
)
→
2
B
(
g
)
+
C
(
g
)
, the initial pressure is
P
A
=
90
mm Hg. Then pressure after 10 minutes is found to be 180 mm Hg. The half-life period of the reaction is:
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