(a)
Interpretation: To determine the volume of the gases at STP.
Concept Introduction: Ideal gas equation give the relation between temperature, pressure, and volume. The ideal gas equation is shown as,
(a)
Answer to Problem 67A
The volume will be
Explanation of Solution
At STP,
Temperature (T) = 273 K
Pressure (P) = 1 atm
Given: Number of Mole = 7.64 moles
According to the ideal gas equation,
Put the given value in equation (i).
Therefore, the volume will be
(b)
Interpretation: To determine the volume of the gases at STP.
Concept Introduction: Ideal gas equation give the relation between temperature, pressure, and volume. The ideal gas equation is shown as,
(b)
Answer to Problem 67A
The volume will be 29.26L:
Explanation of Solution
At STP,
Temperature (T) = 273 K
Pressure (P) = 1 atm
Given: Number of Mole = 1.34 moles
According to the ideal gas equation,
Put the given value in equation (i).
Therefore, the volume will be 29.26L.
(c)
Interpretation: To determine the volume of the gases at STP.
Concept Introduction: Ideal gas equation give the relation between temperature, pressure, and volume. The ideal gas equation is shown as,
(c)
Answer to Problem 67A
The volume will be 9.21L:
Explanation of Solution
At STP,
Temperature (T) = 273 K
Pressure (P) = 1 atm
Given: Number of Mole = 0.422 moles
To find,
Volume =?
According to the ideal gas equation,
Put the given value in the equation (i).
Therefore, the volume will be 9.21L.
(d)
Interpretation: To determine the volume of the gases at STP.
Concept Introduction: Ideal gas equation give the relation between temperature, pressure, and volume. The ideal gas equation is shown as,
(d)
Answer to Problem 67A
The volume will be 53.9L:
Explanation of Solution
At STP,
Temperature (T) = 273 K
Pressure (P) = 1 atm
Given: Number of Mole =
According to the ideal gas equation,
Put the given value in equation (i).
Therefore, the volume will be 53.9L.
Chapter 10 Solutions
Chemistry 2012 Student Edition (hard Cover) Grade 11
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