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Nutka1998 [239]
3 years ago
14

The maximum height of a vehicle that can safely pass under a bridge is 12 feet 5 inches. A truck measures 162 inches in height.

Which best explains whether or not the truck can pass safely under the bridge? The truck can pass safely under the bridge. The truck is 13 inches shorter than the maximum height. The truck cannot pass safely under the bridge. The truck is 13 inches taller than the maximum height. The truck can pass safely under the bridge. The truck is 12 inches shorter than the maximum height.  The truck cannot pass safely under the bridge. The truck is 12 inches taller than the maximum height. 
Mathematics
2 answers:
faust18 [17]3 years ago
7 0
The answer would be the truck is 13 inches taller than the maximum height. The truck cannot safely go under the bridge!
Nat2105 [25]3 years ago
5 0
The correct answer is The truck cannot pass safely under the bridge. The truck is 13 inches taller than the maximum height.
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Answer:

Explained below.

Step-by-step explanation:

The information provided is as follows:

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(1)

A single mean test is to be performed in this case.

As the population standard deviation is not provided, a one-sample <em>t</em>-test will be used.

The correct option is b.

(2)

The null hypothesis is:

<em>H</em>₀: The average temperature in the population is 98.6°F, i.e. <em>μ </em>= 98.6°F.

The correct option is b.

(3)

The alternative hypothesis is:

<em>Hₐ</em>: The average temperature in the population is less than 98.6°F, i.e. <em>μ </em>< 98.6°F.

The correct option is c.

(4)

The standard deviation of the sample mean is as follows:

SD_{\bar x}=\frac{s}{\sqrt{n}}=\frac{0.9}{\sqrt{9}}=0.3^{o}F

Thus, the value of SD is 0.3°F.

(5)

Compute the value of test statistic as follows:

t=\frac{\bar x-\mu}{SD_{\bar x}}

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(6)

The degrees of freedom of the test are:

df = n - 1

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Thus, the degrees of freedom of the test is 8.

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Answer:

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