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What is the pH of the resultant solution after 20.0 mL of 0.20 mol L$^{-1}$ HCl(aq) is mixed with 20.0 mL of 0.50 mol L$^{-1}$ NaOH(aq)? - HSC - SSCE Chemistry - Question 15 - 2021 - Paper 1

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Question 15

What-is-the-pH-of-the-resultant-solution-after-20.0-mL-of-0.20-mol-L$^{-1}$-HCl(aq)-is-mixed-with-20.0-mL-of-0.50-mol-L$^{-1}$-NaOH(aq)?-HSC-SSCE Chemistry-Question 15-2021-Paper 1.png

What is the pH of the resultant solution after 20.0 mL of 0.20 mol L$^{-1}$ HCl(aq) is mixed with 20.0 mL of 0.50 mol L$^{-1}$ NaOH(aq)?

Worked Solution & Example Answer:What is the pH of the resultant solution after 20.0 mL of 0.20 mol L$^{-1}$ HCl(aq) is mixed with 20.0 mL of 0.50 mol L$^{-1}$ NaOH(aq)? - HSC - SSCE Chemistry - Question 15 - 2021 - Paper 1

Step 1

Calculate the moles of HCl

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Answer

To find the moles of HCl, use the formula:

Moles of HCl=Molarity×Volume\text{Moles of HCl} = \text{Molarity} \times \text{Volume}

Substituting the values:

Moles of HCl=0.20mol L1×0.020L=0.004mol\text{Moles of HCl} = 0.20 \: \text{mol L}^{-1} \times 0.020 \: \text{L} = 0.004 \: \text{mol}

Step 2

Calculate the moles of NaOH

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Answer

Likewise, calculate the moles of NaOH:

Moles of NaOH=0.50mol L1×0.020L=0.010mol\text{Moles of NaOH} = 0.50 \: \text{mol L}^{-1} \times 0.020 \: \text{L} = 0.010 \: \text{mol}

Step 3

Determine the limiting reagent

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Answer

When HCl and NaOH react, they do so in a 1:1 ratio.

After mixing, the moles of HCl (0.004 mol) are less than the moles of NaOH (0.010 mol), making HCl the limiting reagent.

Step 4

Calculate the remaining moles of NaOH

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Answer

Subtract the moles of HCl from NaOH:

Remaining moles of NaOH=0.010mol0.004mol=0.006mol\text{Remaining moles of NaOH} = 0.010 \: \text{mol} - 0.004 \: \text{mol} = 0.006 \: \text{mol}

Step 5

Calculate the total volume of the solution

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Answer

The total volume after mixing is:

Total Volume=20.0mL+20.0mL=40.0mL=0.040L\text{Total Volume} = 20.0 \: \text{mL} + 20.0 \: \text{mL} = 40.0 \: \text{mL} = 0.040 \: \text{L}

Step 6

Calculate the concentration of the remaining NaOH

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Answer

The concentration of NaOH is given by:

Concentration=MolesVolume=0.006mol0.040L=0.15mol L1\text{Concentration} = \frac{\text{Moles}}{\text{Volume}} = \frac{0.006 \: \text{mol}}{0.040 \: \text{L}} = 0.15 \: \text{mol L}^{-1}

Step 7

Calculate the pOH and then the pH

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Answer

To find pOH:

pOH=log[0.15]0.823\text{pOH} = -\log[0.15] \approx 0.823

Now convert to pH:

pH+pOH=14pH=140.82313.177\text{pH} + \text{pOH} = 14 \\ \text{pH} = 14 - 0.823 \approx 13.177

Thus, rounding to one decimal place, the resultant pH is approximately 13.2.

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