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A student decided to investigate the effect of temperature on the rate of the following reaction - VCE - SSCE Chemistry - Question 9 - 2020 - Paper 1

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A student decided to investigate the effect of temperature on the rate of the following reaction. $$2HCl(aq) + CaCO_3(s) \rightarrow CaCl_2(aq) + H_2O(l) + CO_2(g)$... show full transcript

Worked Solution & Example Answer:A student decided to investigate the effect of temperature on the rate of the following reaction - VCE - SSCE Chemistry - Question 9 - 2020 - Paper 1

Step 1

Temperature of the HCl solution.

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Answer

The temperature of the HCl solution is crucial for the experiment, as it directly influences the reaction rate. This temperature must be measured accurately and controlled for each trial to ensure reliable results.

Step 2

The dependent variable is the rate of production of CO₂ gas / rate of the reaction.

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Answer

The dependent variable in this experiment is the rate of production of carbon dioxide gas, CO2CO_2. This can be quantified by measuring how long it takes for the balloon to inflate to a certain volume, indicating how fast the reaction is occurring.

Step 3

As temperature increases, the rate of reaction increases.

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Answer

As temperature increases, the rate of reaction also increases due to a rise in kinetic energy among the molecules. This leads to more frequent collisions between the hydrochloric acid and calcium carbonate particles, resulting in a greater number of successful reactions.

Step 4

Presenting the data graphically.

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Answer

When plotting the data, ensure that the temperature is on the x-axis and the time taken on the y-axis. This visual representation allows for easy interpretation of how varying temperatures affect the rate of the reaction.

Step 5

Interpretation of graph results.

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Answer

The graph should show a trend where higher temperatures correlate with shorter times for the balloon to rise. This indicates a direct relationship between temperature and reaction rate, supporting the premise that increased temperature enhances reactant activity.

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