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vlada-n [284]
3 years ago
7

Determine the values of the variables in the binomial probability formula for the following statement: What is the probability o

f getting exactly 5 “heads” in 10 coin flips? n = p = k =
Mathematics
2 answers:
NeX [460]3 years ago
8 0

Answer:

n=10

p=0.5

k=5

n represents = number of trials

p represents = probability of success

k represents = number of successes

suter [353]3 years ago
4 0

Answer:

k = 5  

n = 10

p = 0.5

Step-by-step explanation:

Let X be a discrete random variable. The binomial probability formula is used to calculate the probability of obtaining k-successes in "n" independent trials for an experiment with probability of success p and probability of failure q.

The binomial formula is the following:

P(X=k) = \frac{n!}{k!(n-k)!}p^kq^{n-k}

Where:

k = number of successes

n = number of trials

p = probability of success

q = probability of failure.

So, for the given problem

k = 5 Because you want to get the probability of getting 5 "heads"

n = 10 Because the experiment is repeated 10 times

p = 0.5 Because the probability of obtaining a "heads" when flipping a coin is 50%

q = 0.5

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The distribution of heights for adult men in a certain population is approximately normal with mean 70 inches and standard devia
KengaRu [80]

Answer:

The interval (meassured in Inches) that represent the middle 80% of the heights is [64.88, 75.12]

Step-by-step explanation:

I beleive those options corresponds to another question, i will ignore them. We want to know an interval in which the probability that a height falls there is 0.8.

In such interval, the probability that a value is higher than the right end of the interval is (1-0.8)/2 = 0.1

If X is the distribuition of heights, then we want z such that P(X > z) = 0.1. We will take W, the standarization of X, wth distribution N(0,1)

W = \frac{X-\mu}{\sigma} = \frac{X-70}{4}

The values of the cumulative distribution function of W, denoted by \phi , can be found in the attached file. Lets call y = \frac{z-70}{4} . We have

0.1 = P(X > z) = P(\frac{X-70}{4} > \frac{z-70}{4}) = P(W > y) = 1-\phi(y)

Thus

\phi(y) = 1-0.1 = 0.9

by looking at the table, we find that y = 1.28, therefore

\frac{z-70}{4} = 1.28\\z = 1.28*4+70 = 75.12

The other end of the interval is the symmetrical of 75.12 respect to 70, hence it is 70- (75.12-70) = 64.88.

The interval (meassured in Inches) that represent the middle 80% of the heights is [64.88, 75.12] .

Download pdf
8 0
3 years ago
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