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Standard XII
Chemistry
Liquids in Liquids
34. 2X(g) giv...
Question
34. 2X(g) gives 3Y(g)+2Z(g) a)Time(in min). |0. |100. |200 | b)Partial pressure |800| 400. | 200| of X(in mm of Hg). Assuming ideal gas conditions calculate a)Total pressure when px=700mm.
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Similar questions
Q.
A constant temperature and volume
X
decomposes as,
2
X
(
g
)
⟶
3
Y
(
g
)
+
2
Z
(
g
)
P
X
is the partial pressure of
X
.
Observation No.
Time
(
m
i
n
)
P
X
(
i
n
m
m
H
g
)
1
0
800
2
100
400
3
200
200
(
i
)
What is the order of the reaction with respect to
X
?
(
i
i
)
Find the rate constant.
(
i
i
i
)
Find the time for
75
% completion of the reaction.
(
i
v
)
Find the total pressure when pressure of
X
is
700
m
m
H
g
.
Q.
Observation No.
Time (in minute)
P
x
(in mm of Hg)
1
0
800
2
100
400
3
200
200
At constant temperature and volume
X
decomposes as
2
X
(
g
)
→
3
Y
(
g
)
+
2
Z
(
g
)
, where
P
x
is the partial pressure of
X
. What is the order of reaction with respect to
X
?
(i) Find the rate constant.
(ii) Find the time for 75% completion of the reaction.
(iii) Find total pressure when pressure of
X
is 700 mm of Hg.
Q.
For the reaction
2
X
(
g
)
→
2
Y
(
g
)
+
2
Z
(
g
)
Time in min.
0
100
200
The partial pressure of X in mm of Hg
800
400
200
Assuming ideal gas nature,
calculate, the order of reaction:
Q.
400 mL of hydrogen gas at a pressure of 300 mm
H
g
and 200 mL of hydrogen chloride gas at a pressure of 600 mm
H
g
are mixed in a one litre evacuated flask. Calculate the resulting pressure (in
mm Hg
) of the mixture at the same temperature.
Q.
400 mL of hydrogen gas at a pressure of 300 mm
H
g
and 200 mL of hydrogen chloride gas at a pressure of 600 mm
H
g
are mixed in a one litre evacuated flask. Calculate the resulting pressure (in
mm Hg
) of the mixture at the same temperature.
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