Photo AI

A pH 3.0 solution of HCl(aq) is diluted by adding water to produce a pH 5.0 solution - HSC - SSCE Chemistry - Question 15 - 2013 - Paper 1

Question icon

Question 15

A-pH-3.0-solution-of-HCl(aq)-is-diluted-by-adding-water-to-produce-a-pH-5.0-solution-HSC-SSCE Chemistry-Question 15-2013-Paper 1.png

A pH 3.0 solution of HCl(aq) is diluted by adding water to produce a pH 5.0 solution. Which row in the following table correctly identifies an appropriate volume of... show full transcript

Worked Solution & Example Answer:A pH 3.0 solution of HCl(aq) is diluted by adding water to produce a pH 5.0 solution - HSC - SSCE Chemistry - Question 15 - 2013 - Paper 1

Step 1

Volume of original solution (mL): 10

96%

114 rated

Answer

To calculate the volume of water needed to achieve a pH of 5.0 starting from a pH of 3.0, we can use the relationship between pH and hydrogen ion concentration:

The formula for pH is given by: extpH=extlog[H+] ext{pH} = - ext{log}[H^+]

For pH 3.0, the hydrogen ion concentration is: [H+]=103extmol/L[H^+] = 10^{-3} ext{ mol/L}

And for pH 5.0, it is: [H+]=105extmol/L[H^+] = 10^{-5} ext{ mol/L}

To dilute HCl from pH 3.0 to pH 5.0, the dilution factor required is: extDilutionFactor=[H+](3.0)[H+](5.0)=103105=100 times ext{Dilution Factor} = \frac{[H^+](3.0)}{[H^+](5.0)} = \frac{10^{-3}}{10^{-5}} = 100\text{ times}

Assuming we take 10 mL of the pH 3.0 solution, we need 990 mL of water to dilute it, leading us to the following total volumes:

extTotalVolume=extOriginalVolume+extWaterVolume=10extmL+990extmL=1000extmL ext{Total Volume} = ext{Original Volume} + ext{Water Volume} = 10 ext{ mL} + 990 ext{ mL} = 1000 ext{ mL}

Thus, the correct choice is (C): 10 mL of the original solution and 990 mL of water added.

Join the SSCE students using SimpleStudy...

97% of Students

Report Improved Results

98% of Students

Recommend to friends

100,000+

Students Supported

1 Million+

Questions answered

;