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By observing a set of data values, Tasha used a calculator for the tire diameter at the tread and circumference data and obtained an equation for the least-squares line:

[tex]\hat{y} = 0.1 + 3.1x[/tex]

Based on this information, select the statement that is TRUE.

A. A tire with a 30-inch diameter at the tread will have a circumference of 93.1 inches.

B. A tire with a 28-inch diameter at the tread will have a circumference of 99.3 inches.

C. A tire with a 32-inch diameter at the tread will have a circumference of 86.9 inches.

D. A tire with a 35-inch diameter at the tread will have a circumference of 124.1 inches.

Answer :

To find out which statement is true regarding the tire diameters and their circumferences, we use the given equation for the least-squares line:

[tex]\[
\hat{y} = 0.1 + 3.1x
\][/tex]

The values in the equation are:
- [tex]\(0.1\)[/tex] is the intercept.
- [tex]\(3.1\)[/tex] is the slope.

Let's calculate the circumference ([tex]\(\hat{y}\)[/tex]) for each tire diameter ([tex]\(x\)[/tex]):

1. For a 30-inch diameter tire:
[tex]\[
\hat{y} = 0.1 + 3.1 \times 30 = 0.1 + 93 = 93.1
\][/tex]
- This matches statement (a).

2. For a 28-inch diameter tire:
[tex]\[
\hat{y} = 0.1 + 3.1 \times 28 = 0.1 + 86.8 = 86.9
\][/tex]
- This does not match statement (b), which claims a circumference of 99.3 inches.

3. For a 32-inch diameter tire:
[tex]\[
\hat{y} = 0.1 + 3.1 \times 32 = 0.1 + 99.2 = 99.3
\][/tex]
- This matches statement (c), but statement (c) claims a different diameter-circumference pair of 86.9 inches, so it's incorrect in its statement.

4. For a 35-inch diameter tire:
[tex]\[
\hat{y} = 0.1 + 3.1 \times 35 = 0.1 + 108.5 = 108.6
\][/tex]
- This does not match statement (d), which claims a circumference of 124.1 inches.

Based on the calculations, the true statement is:

- a.) A tire with a 30-inch diameter at the tread will have a circumference of 93.1 inches.

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Rewritten by : Barada