Investigating the Reaction of HCl with Water

In summary, when hydrogen chloride (HCl) dissolves in water, it dissociates into H3O+ and Cl- ions, making the solution acidic. To find the pH of this solution, the molar concentration of H3O+ is needed, which can be calculated by dividing the number of moles of HCl by the volume of water. In this case, the molar concentration of H3O+ and Cl- is the same and can be calculated to be 0.05 mol/L, resulting in a pH of 1.3. This calculation is based on the definition of molar concentration as the number of moles of a substance divided by the volume it occupies.
  • #1
chawki
506
0

Homework Statement


When the gas hydrogen chloride (HCl) dissolves in water it acts as a strong acid.

Homework Equations


a) Write the reaction equation for hydrogen chloride dissolving in water.
b) Find the pH of the solution formed when 0.040 mol of hydrogen chloride gas dissolves in
0.80 litres of pure water at a temperature of 298.15 K.

The Attempt at a Solution


a) HCl + H2O ------> H3O+ + Cl-
 
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  • #2
Now apply pH definition.
 
  • #3
yes but we don't know the molar concentration of H3O+
 
  • #4
Ah, so you have been sleeping through the concentration classes. What is the definition of a molar concentration?
 
  • #5
number of moles/volume.
and we don't know any of them
 
  • #6
chawki said:
number of moles/volume.
and we don't know any of them

What can you measure volume in? (units)
 
  • #7
chawki said:
0.040 mol of hydrogen chloride gas dissolves in 0.80 litres of pure water

chawki said:
number of moles/volume.
and we don't know any of them

Which one you are not given in the question?
 
  • #8
Litres of course.
 
  • #9
Borek said:
Which one you are not given in the question?

i don't get it and I'm lost when they give moles with litres
 
  • #10
Molar concentration is number of moles in 1 liter, to calculate concentration you just divide number of moles (expressed in moles) by volume (expressed in liters). It can't be simpler.
 
  • #11
If it was the moles and the litres of the same compound..that would be easy..but we have the moles of HCl and the litres of H2O
 
  • #12
Are you saying that the Molar concentration of H3O+= 0.040/0.8 ?
and that would be 0.05mol/l

and then, PH=-log0.05 =1.3 ?
 
  • #13
chawki said:
Are you saying that the Molar concentration of H3O+= 0.040/0.8 ?
and that would be 0.05mol/l

Right. Told you you were sleeping through concentration classes. While it is possible to calculate concentration of substance in the same substance it is rarely needed and rarely done. In most cases we are interested in concentration of something in a mixture. In this case - concentration of HCl in the solution.

and then, PH=-log0.05 =1.3 ?

OK
 
  • #14
Thank you so much Borek
is the Molar concentration of Cl- same as H3O+
 
  • #15
chawki said:
is the Molar concentration of Cl- same as H3O+

In this case - yes. That's a simple effect of dissociation stoichiometry - there is one Cl- produced per each H3O+.
 

1. What is the chemical equation for the reaction of HCl with water?

The chemical equation for this reaction is HCl + H2O → H3O+ + Cl-.

2. Is this reaction exothermic or endothermic?

This reaction is highly exothermic, meaning it releases a large amount of heat.

3. What is the purpose of adding HCl to water?

The purpose of adding HCl to water is to create a solution of hydrochloric acid, which has many industrial and laboratory uses such as cleaning, pickling, and adjusting pH levels.

4. How does the concentration of HCl affect the reaction with water?

The concentration of HCl affects the reaction with water by determining the speed and extent of the reaction. A higher concentration of HCl will result in a faster and more vigorous reaction.

5. What safety precautions should be taken when working with HCl?

When working with HCl, it is important to wear protective gear such as gloves, eyewear, and a lab coat to prevent skin and eye irritation. HCl should also be handled in a well-ventilated area to avoid inhaling fumes. In case of accidental ingestion, seek medical attention immediately.

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