How does changing the concentration affect the rate of reaction?
Investigating the Effect of Concentration on Reaction Rate
Aim:
I want to investigate how concentration effects the reaction rate.
Equipment:
Conical Flask
Beaker
Measuring Cylinder
Stopwatch
Paper with a black cross "X"
0.1mol/L Sodium Thiosulfate
2.0mol/L Hydrochloric Acid
Method:
- Put the piece of paper with the X on the bench and put the conical flask on it.
- Measure 10mL of Sodium Thiosulfate and put it into the conical flask.
- Measure 40mL of Water and put it into the conical flask. Swirl to mix.
- Measure 5mL of HCl.
- Pour the HCl into the conical flask, start the timer and swirl the flask.
- Stop timing when the you can't see the cross on the paper.
- Wash out the flask thoroughly.
- Repeat experiment 20mL of Sodium Thiosulfate and 30mL of Water.
- Repeat experiment 30mL of Sodium Thiosulfate and 20mL of Water.
- Repeat experiment 40mL of Sodium Thiosulfate and 10mL of Water.
- Repeat experiment 50mL of Sodium Thiosulfate and no Water.
Results:
10mL Thiosulfate/40mL Water took 239sec for the X to disappear.
20mL Thiosulfate/30mL Water took 119sec for the X to disappear.
30mL Thiosulfate/20mL Water took 64sec for the X to disappear.
40mL Thiosulfate/10mL Water took 45sec for the X to disappear.
50mL Thiosulfate/0mL Water took 32sec for the X to disappear.
Analysis:
Conclusion:
A chemical reaction is when two reactant particles collide.
They must collide with enough force and in the correct orientation.
As I increased the concentration of the reactants, there were more reactant particles that were able to react. The more particles, the higher the chance of a successful collision.
This means the rate of reaction will increase.