Concept explainers
A tank contains a mixture of
Interpretation:
The partial pressure of oxygen and carbon dioxide gas should be calculated.
Concept Introduction:
Dalton’s law of partial pressure: In a container for mixture of gases, the total pressure is equal to the sum of partial pressures of all the gases present in the container. The partial pressure is the pressure exerted by a gas if it is the only gas present in the container.
Let a mixture of three gases with partial pressures
This is the Dalton’s law of partial pressure.
The behaviour of gases is assumed to be ideal thus, partial pressure of gases can be calculated from an ideal gas equation as follows:
Here, P is pressure, V is volume, n is number of moles, R is Universal gas constant and T is temperature of the gas.
The pressure exerted by an ideal gas depends on the number of gas particles, this does not depend on the nature of particles of gas. The two important things concluded from it will be:
- The volume of gases is important.
- The forces in between the particles of gas is not important.
Answer to Problem 69QAP
4.84 atm and 4.37 atm.
Explanation of Solution
Calculation:
First calculate the number of moles of each gas as follows:
Since, molar mass of O2 is 32 g/mol thus, number of moles will be:
Similarly, molar mass of
Thus, total number of moles will be:
Putting the values,
From total pressure and number of moles, volume can be calculated using the ideal gas equation as follows:
First convert the temperature from
Thus,
Putting the values,
Thus,
Now from volume, partial pressure of gases can be calculated from ideal gas equation as follows:
Putting the values,
Similarly, partial pressure of
Putting the values,
Thus, partial pressure of oxygen and carbon dioxide gas is 4.84 atm and 4.37 atm respectively.
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Chapter 13 Solutions
Student Solutions Manual for Zumdahl/DeCoste's Introductory Chemistry: A Foundation, 9th
- Reagan is doing an atomic absorption experiment that requires a set of zinc standards in the 0.4- 1.6 ppm range. A 1000 ppm Zn solution was prepared by dissolving the necessary amount of solid Zn(NO3)2 in water. The standards can be prepared by diluting the 1000 ppm Zn solution. Table 1 shows one possible set of serial dilutions (stepwise dilution of a solution) that Reagan could perform to make the necessary standards. Solution A was prepared by diluting 5.00 ml of the 1000 ppm Zn standard to 50.00 ml. Solutions C-E are called "calibration standards" because they will be used to calibrate the atomic absorption spectrometer. Table 1: Dilutions of Zinc Solutions Solution Zinc Solution Volume Diluted Solution Concentration used volume (ppm Zn) (mL) (mL) concentration (ppm Zn) Solution concentration A 1000 5.00 50.00 1.00×10² (ppm Zn(NO3)2) 2.90×10² Solution concentration (M Zn(NO3)2 1.53×10-3 B Solution A 5.00 100.00 5.00 C Solution B 5.00 50.00 0.50 7.65×10-6 D Solution B 10.00 50.00…arrow_forwardNonearrow_forwardNonearrow_forward
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