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Calculate mean value X - AQA - GCSE Biology - Question 7 - 2020 - Paper 1

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Calculate mean value X. X = cm³/hour 07.4 Draw a ring around the anomalous result in Table 3. 07.5 Suggest one possible cause of the anomalous result. 07.6 How... show full transcript

Worked Solution & Example Answer:Calculate mean value X - AQA - GCSE Biology - Question 7 - 2020 - Paper 1

Step 1

Calculate mean value X.

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Answer

To calculate the mean value X, we sum the relevant values from Table 3 and divide by the number of values. For instance, if the data includes values 18.5, 19.3, and 19.5, the calculation would be:

X=(18.5+19.3+19.5)3=57.33=19.1cm3/hourX = \frac{(18.5 + 19.3 + 19.5)}{3} = \frac{57.3}{3} = 19.1 \, \text{cm}^3/\text{hour}

Step 2

Draw a ring around the anomalous result in Table 3.

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In Table 3, identify the value that significantly deviates from other measurements. For illustration, you would draw a ring around the value 14.2, assuming it is the anomalous result.

Step 3

Suggest one possible cause of the anomalous result.

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Answer

One possible cause for the anomalous result of 14.2 could be a measurement error, such as misreading the scale or bubbles in the syringe affecting the reading.

Step 4

How did the students deal with the anomalous result?

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Answer

The students chose not to use the anomalous result in their calculations for the mean value.

Step 5

Give one factor the students should have kept constant in this investigation.

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Answer

One factor that should have been kept constant is the light intensity during the experiment.

Step 6

Why did the rate of photosynthesis decrease from 35 °C to 45 °C?

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Answer

The decrease in the rate of photosynthesis from 35 °C to 45 °C is likely due to the denaturation of enzymes involved in the process at higher temperatures.

Step 7

Complete Figure 10 using data from Table 3.

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Answer

To complete Figure 10:

  • Label the y-axis as 'Rate of Photosynthesis (cm³/hour)'.
  • Choose a suitable scale that takes up at least half the height of the grid provided.
  • Plot the mean data points from Table 3 for temperatures ranging from 25 °C to 45 °C accurately within half a small square.
  • Draw a line of best fit connecting the points to represent the trend in the data.

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