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Question 2
It is said that the number of times that a cricket chirps in a minute gives a very good indication of the air temperature (in °C). The table below shows the informat... show full transcript
Step 1
Answer
To represent the data, plot the number of chirps per minute (x-axis) against the corresponding air temperature (y-axis). For each pair of values, mark a point on the grid. Ensure that the axes are correctly labeled with appropriate scales to reflect the data, allowing for clear visualization of the relationship between chirps and temperature.
Step 2
Answer
The claim that the number of cricket chirps gives a good indication of air temperature is supported by the data observed. As the number of chirps increases, there is a corresponding increase in temperature. This linear relationship suggests a strong correlation, indicating that the chirp rate can reflect changes in temperature accurately. Moreover, studies in the field of bioacoustics have shown that various species of crickets exhibit increased chirping rates at warmer temperatures.
Step 3
Answer
To determine the equation of the least squares regression line, we need to calculate the slope (m) and the y-intercept (b). The equation can be expressed as:
where:
Using the provided data, calculate these values to arrive at the regression line, which can be used for predictions.
Step 4
Answer
Using the regression line equation derived from step 2.3, substitute x = 80 into the equation to predict the air temperature. Solve for y:
This calculation will yield the estimated air temperature in °C corresponding to 80 chirps per minute.
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