(a)
Interpretation:
The volume of 12.0 M HCl required to get 3.0 mol HCl needs to be calculated.
Concept Introduction :
12.0 M solution means there are 12.0 moles of solute in 1L of the solution.
(a)
Answer to Problem 9E
0.25 L of HCl solution is required to get 3.0 moles of HCl.
Explanation of Solution
Molarity of HCl is 12.0.
12 moles of HCl is present in 1 L solution.
Thus 3.0 moles of HCl is present in 3/12 L solution=0.25 L solution.
(b)
Interpretation:
The volume of 2.0 M HCl required to get 3.0 mol HCl needs to be calculated.
Concept Introduction :
2.0 M solution means there is 2.0 moles of solute in 1L solution.
(b)
Answer to Problem 9E
1.5 L of HCl solution is required to get 3.0 moles of HCl.
Explanation of Solution
Molarity of HCl is 2.0.
2 moles of HCl is present in 1 L solution.
Thus 3.0 moles of HCl is present in 3/2 L solution=1.5 L solution.
(c)
Interpretation:
The volume of 0.5 M HCl required to get 3.0 mol HCl needs to be determined.
Concept Introduction :
0.5 M solution means there is 0.5 mole of solute in 1L solution.
(c)
Answer to Problem 9E
6 L of HCl solution is required to get 3.0 moles of HCl.
Explanation of Solution
Molarity of HCl is 0.5.
0.5 mole of HCl is present in 1 L solution.
Thus 3.0 moles of HCl is present in 3/0.5 L solution=6 L solution.
(d)
Interpretation:
The volume of 0.010 M HCl required to get 3.0 mol HCl needs to be determined.
Concept Introduction :
0.010 M solution means there is 0.010 mole of solute in 1L solution.
(d)
Answer to Problem 9E
300 L of HCl solution is required to get 3.0 moles of HCl.
Explanation of Solution
Molarity of HCl is 0.010.
0.010 mole of HCl is present in 1 L solution.
Thus 3.0 moles of HCl is present in 3/0.010 L solution=300 L solution.
Chapter U4 Solutions
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