This question is about the rate of reaction between calcium carbonate and dilute hydrochloric acid - Edexcel - GCSE Chemistry Combined Science - Question 4 - 2021 - Paper 1
Question 4
This question is about the rate of reaction between calcium carbonate and dilute hydrochloric acid.
The word equation for this reaction is
calcium carbonate + hydr... show full transcript
Worked Solution & Example Answer:This question is about the rate of reaction between calcium carbonate and dilute hydrochloric acid - Edexcel - GCSE Chemistry Combined Science - Question 4 - 2021 - Paper 1
Step 1
Which of the following is the formula for calcium carbonate?
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Answer
The correct formula for calcium carbonate is B CaCO₃.
Step 2
Complete the diagram in Figure 5 to show the apparatus to collect the gas produced and measure its volume.
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Answer
To complete the diagram, it should include:
A delivery tube with a bung connected to the flask.
The other end of the delivery tube should lead to a gas syringe or be submerged in water within an upturned measuring cylinder to collect the gas produced.
Step 3
State what could be used to keep the temperature of the conical flask and its contents at a temperature of 45 °C throughout the reaction.
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A water bath set to 45 °C could be used to maintain the temperature of the conical flask and its contents during the reaction.
Step 4
Draw a tangent at 100 seconds on Figure 6. Use this tangent to calculate the rate of reaction at this time.
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Answer
To calculate the rate of reaction, first draw a tangent line at 100 seconds on the graph from Figure 6. Measure the rise (change in volume) and run (change in time) of this tangent:
Rise: Increase in volume of gas.
Run: 100 seconds (time).
The rate can be calculated as:
extRate=extRunextRise
Ensure to express the result in appropriate units (e.g., cm³/s).
Step 5
State one other variable that needs to be controlled during this investigation.
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One other variable that needs to be controlled is the concentration of the hydrochloric acid used in the reaction.
Step 6
Explain, in terms of particles, how decreasing the temperature affects the rate of this reaction.
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Answer
Decreasing the temperature results in lower kinetic energy of the particles involved in the reaction. This leads to a slower movement of particles, which reduces the frequency of collisions between reactant particles. Consequently, fewer collisions occur with sufficient energy to overcome the activation energy barrier, thereby decreasing the rate of reaction.