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charle [14.2K]
2 years ago
13

WNAE, an all-news AM station, finds that the distribution of the lengths of time listeners are tuned to the station follows the

normal distribution. The mean of the distribution is 15.0 minutes and the standard deviation is 3.5 minutes.
What is the probability that a particular listener will tune in:
a. More than 20 minutes?
b. For 20 minutes or less?
c. Between 10 and 12 minutes?
Mathematics
1 answer:
azamat2 years ago
5 0

Answer:

a)  P(X>20)=P(\frac{X-\mu}{\sigma}>\frac{20-\mu}{\sigma})=P(Z>\frac{20-15}{3.5})=P(z>1.43)

And we can find this probability using the complement rule, the normal standard distribution or excel or a calculator

P(z>1.43)=1-P(z

b) P(X

And we can find this probability using the normal standard distribution or excel or a calculator

P(z

c) P(

And we can find this probability using the normal standard distribution or excel or a calculator  with the following difference:

P(-1.43

Step-by-step explanation:

Previous concepts

Normal distribution, is a "probability distribution that is symmetric about the mean, showing that data near the mean are more frequent in occurrence than data far from the mean".

The Z-score is "a numerical measurement used in statistics of a value's relationship to the mean (average) of a group of values, measured in terms of standard deviations from the mean".  

Part a

Let X the random variable that represent the lenghts of a population, and for this case we know the distribution for X is given by:

X \sim N(15,3.5)  

Where \mu=15 and \sigma=3.5

We are interested on this probability

P(X>20)

And the best way to solve this problem is using the normal standard distribution and the z score given by:

z=\frac{x-\mu}{\sigma}

If we apply this formula to our probability we got this:

P(X>20)=P(\frac{X-\mu}{\sigma}>\frac{20-\mu}{\sigma})=P(Z>\frac{20-15}{3.5})=P(z>1.43)

And we can find this probability using the complement rule, the normal standard distribution or excel or a calculator

P(z>1.43)=1-P(z

Part b

P(X

And we can find this probability using the normal standard distribution or excel or a calculator

P(z

Part c

P(

And we can find this probability using the normal standard distribution or excel or a calculator  with the following difference:

P(-1.43

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Based on an online poll, 35% of motorists routinely use their cell phone while driving. Tree people are chosen at random from a
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Answer:

The anwerss to the question are

(A) P(No less than two people use their phones while driving) =  0.1225

(B) P(The probability that no more than one person of the three people use their cell phone while driving) = 0.147875

Step-by-step explanation:

The given relations are

Percentage of motorists that routinely drive while sing their phone = 35 %

The probaboloty that if a peerson is random;ty  selected from a group of hudred person routinely uses their phone wjile friving P(phone) = 35

The probability that a  motorist randomly selected fron a set of 100 do not routinely use thir phones while driving = P(No celll phone)  = 65

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P(phone)  = 35/100m = 0.35

P(No celll phone)  = 65/100 = 0.65

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0.35×0.35×0.65 +0.35×0.35×0.35 = 0.1225

(B) The probability of only one person out of three seted use their phones while driving is

(0.35)(0.65)(0.65) = 0.147875

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2 years ago
Malik randomly picked two numbers from 1 to 9 (Includin 1 and 9). the same number could be picked more than once. The first of t
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Answer:

2/9 = 0.22

Step-by-step explanation:

There are two ways to pick the first number odd and less than 5:  1 and 3.

With each of these, the second number drawn can be 1, 2, 3, 4, 5, 6, 7, 8 or 9.

This makes 18 total possibilities.

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Answer:

a. a parameter.

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A parameter is a property that describes the whole population, while a statistic is a property pertaining to a sample or sub-set of the population.

In this example, the average content of 4 ounces pertains to the 121 bottles sample and thus is a statistic. While the standard deviation of the population is mentioned to be 0.22 ounces, therefore 0.22 is a parameter.

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