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2.5.6 Pearson's product-moment correlation coefficient

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Question 45

A marine biologist is investigating the relationship between water depth and the concentration of a specific dissolved mineral in a coastal lake. The concentration, c c\,c mg/L, was measured at various depths, d d\,d metres, below the lake surface. The results for a random sample of 8 measurements are summarised in the table below.

Depth (d d\,d m)1020304050607080
Concentration (c c\,c mg/L)15.214.112.811.510.28.87.56.3

[You may use: ∑d=360\sum d = 360∑d=360, ∑c=86.4\sum c = 86.4∑c=86.4, ∑d2=20400\sum d^2 = 20400∑d2=20400, ∑dc=3345\sum dc = 3345∑dc=3345]

a.

Calculate SddS_{dd}Sdd​ and SdcS_{dc}Sdc​.

[2]
b.

Find the equation of the least squares regression line of c c\,c on d d\,d in the form c=a+bdc = a + bdc=a+bd.

[3]
c.

Give a practical interpretation of the gradient of your regression line in the context of this study.

[1]
d.

A technician takes a measurement at a depth of 45 metres. Predict the mineral concentration at this depth.

[1]
e.

A researcher suggests that at a depth of 150 metres, the mineral concentration will have decreased to less than 2.0 mg/L. Comment on the validity of this claim.

[2]

2.5.6 Pearson's product-moment correlation coefficient Questions

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  3. /2.5.6 Pearson's product-moment correlation coefficient