QUESTION IMAGE
Question
complete the following practice problems. answers are at the bottom of the page.
- determine the concentration of 0.650 moles of solute in 2.8 l.
- determine the concentration of 1.58 moles of solute in 750 ml.
- determine the volume of solution if 3.85 moles are in a solution with a concentration of 14.3 m.
- determine the number of moles in a 555 ml solution with a concentration of 3.75 m.
- determine the number of moles in a 5.25 l solution with a concentration of 12.5 m.
- how many grams of potassium carbonate are needed to make 200.0 ml of a 2.50 m solution?
- how many liters of 4.0 m solution can be made using 100.0 grams of lithium bromide?
- what is the concentration of an aqueous solution with a volume of 450. ml that contains 200.0 grams of iron (iii) chloride?
- how many grams of copper (ii) fluoride are needed to make 6.70 l of a 1.20 m
Let's solve problem 1 first: "Determine the concentration of 0.650 moles of solute in 2.8 L."
Step1: Recall the formula for molarity (M)
Molarity ($M$) is defined as moles of solute ($n$) divided by volume of solution in liters ($V$), so the formula is $M = \frac{n}{V}$.
Step2: Substitute the given values
We have $n = 0.650$ moles and $V = 2.8$ L. Plugging these into the formula: $M = \frac{0.650}{2.8}$.
Step3: Calculate the result
$\frac{0.650}{2.8} \approx 0.232$ M (rounded to three significant figures).
Step1: Convert volume to liters
Since molarity uses liters, convert 750 mL to liters. There are 1000 mL in 1 L, so $V = \frac{750}{1000} = 0.75$ L.
Step2: Use the molarity formula
$M = \frac{n}{V}$, with $n = 1.58$ moles and $V = 0.75$ L.
Step3: Calculate the molarity
$M = \frac{1.58}{0.75} \approx 2.11$ M (rounded to three significant figures).
Step1: Rearrange the molarity formula for volume
From $M = \frac{n}{V}$, we can solve for $V$: $V = \frac{n}{M}$.
Step2: Substitute the values
We have $n = 3.85$ moles and $M = 14.3$ M. So $V = \frac{3.85}{14.3}$.
Step3: Calculate the volume
$\frac{3.85}{14.3} \approx 0.269$ L (or 269 mL, rounded to three significant figures).
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The concentration is approximately $\boldsymbol{0.232\ \text{M}}$.
Now problem 2: "Determine the concentration of 1.58 moles of solute in 750 mL."