Concept explainers
(a)
Interpretation:
Whether
(a)
Explanation of Solution
Oxygen is produced by the following reaction:
According to the reaction,
The molar mass of
When
So,
(b)
Interpretation:
Whether the partial pressure of water at at
(b)
Explanation of Solution
When
So, the partial pressure of water at
(c)
Interpretation:
Whether the partial pressure of oxygen is
(c)
Explanation of Solution
The total pressure of the reaction that is the sum of the partial pressure of water and oxygen is
Thus, the partial pressure of oxygen is calculated as shown below:
So, the partial pressure of oxygen is
(d)
Interpretation:
Whether
(d)
Explanation of Solution
According to the reaction,
(e)
Interpretation:
Whether
(e)
Explanation of Solution
According to the reaction,
The molar mass of
So,
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Chapter 9 Solutions
Introduction to Chemistry
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- 95 Some engineering designs call for the use of compressed air for underground work. If water containing iron(II) ions is present, oxygen in the compressed air may react according to the following unbalanced net ionic equation: Fe2++H++O2Fe3++H2O (a) Write the balanced net ionic equation. Remember that the amounts of each substance and the charges must balance. (b) Assume all of the oxygen from 650 L of compressed air at 15°C and 6.5 atm is lost by this reaction. What mass of water would be produced? (The mole fraction of oxygen in air is about 0.21.) (c) What will be the final pressure after the loss of the oxygen?arrow_forwardYou have a gas, one of the three known phosphorus-fluorine compounds (PF3, PF3, and P2F4). To find out which, you have decided to measure its molar mass. (a) First, yon determine that the density of the gas is 5.60 g/L at a pressure of 0.971 atm and a temperature of 18.2 C. Calculate the molar mass and identify the compound. (b) To check the results from part (a), you decide to measure the molar mass based on the relative rales of effusion of the unknown gas and CO2. You find that CO2 effuses at a rate of 0.050 mol/min, whereas the unknown phosphorus fluoride effuses at a rate of 0.028 mol/min. Calculate the molar mass of the unknown gas based on these results.arrow_forwardNitrogen trifluoride is prepared by the reaction of ammonia and fluorine. 4 NH3(g) + 3 F2(g) 3 NH4F(s) + NF3(g) If you mix NH3 with F2 in the correct stoichiometric ratio, and if the total pressure of the mixture is 120 mm Hg, what are the partial pressures of NH3 and F2? When the reactants have been completely consumed, what is the total pressure in the flask? (Assume T is constant.)arrow_forward
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