QUESTION IMAGE
Question
how many moles of oxygen must be placed in a 3.00 l container to exert a pressure of 2.00 atm at 25.0 °c?
formula: \\(pv = nrt\\) (\\(r = 0.0821 \frac{\text{l}\cdot\text{atm}}{\text{mol}\cdot\text{k}}\\))
which variables are given? choose three correct answers.
- pressure
- moles
- volume
- temperature
which variables are unknown?
- volume
- temperature
- pressure
- moles
select the correct algebraic form for the equation to be used for this calculation.
- \\(n = \frac{rv}{pt}\\)
- \\(n = \frac{pv}{rt}\\)
- \\(n = \frac{rt}{pv}\\)
solve the problem for the moles of oxygen:
\\(\text{mol } \text{o}_2\\)
Identify given variables
Using the Pressure-Volume-Temperature Relationships knowledge point:
- Volume \(V = 3.00\text{ L}\)
- Pressure \(P = 2.00\text{ atm}\)
- Temperature \(T = 25.0^\circ\text{C} = 298.15\text{ K}\)
Thus, the given variables are pressure, volume, and temperature.
Identify unknown variables
Using the Gas Laws knowledge point:
- The question asks "How many moles of oxygen...".
- Therefore, the unknown variable is moles (\(n\)).
Rearrange the ideal gas law
Using the Gas Laws knowledge point:
- Start with the ideal gas law:
- Isolate \(n\) by dividing both sides by \(RT\):
Calculate the moles of oxygen
Using the Gas Laws knowledge point:
- Substitute the values into the rearranged equation:
- Compute the value:
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Question 1: Which variables are given? Choose three correct answers.
- pressure
- volume
- temperature
Question 2: Which variables are unknown?
- moles
Question 3: Select the correct algebraic form for the equation to be used for this calculation.
Question 4: Solve the problem for the moles of oxygen.
\(0.245\text{ mol O}_2\)