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RSB [31]
3 years ago
13

PLEASE PLEASE PLEASE HELP MEEE

Mathematics
1 answer:
NISA [10]3 years ago
5 0

Answer:

c

Step-by-step explanation:

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According to a 2013 study by the Pew Research Center, 15% of adults in the United States do not use the Internet (Pew Research C
Lisa [10]

Answer:

Step-by-step explanation:

Hello!

The study states that 15% of adults in the U.S. do not use the internet.

A sample of 10 adults was taken.

The study variable is:

X: Number of adults of the U.S. that do not use the internet.

a.

To see if this is a binomial experiment, we have to check if it follows the binomial criteria.

This variable has two possible outcomes, that "the adult doesn't use the internet", this will be the success of the experiment, and that "the adult uses the internet", this will be the failure of the experiment.

The number of observations of the trial is fixed. n= 10 adults.

Each observation in the trial is independent, this means that none of the trials will affect the probability of the next trial. There is no information to suggest otherwise and adults were chosen randomly so we will consider them independent of each other.

The probability of success in the same from one trial to another. The proportion of adults that don't use the internet is p=0.15

All conditions are met, so we can say this is a binomial experiment and the variable has binomial distribution So X≈ Bi (n;ρ)

b. You need to calculate the probability that none of the adults uses the internet in a sample of 10 since our variable counts the adults that do not use the internet, we need to calculate the probability of X=10:

Note: you can calculate this manually or use tables of cumulative probabilities for the binomial distribution. If you have the tables on hand, it is easier and faster to calculate the asked probabilities with the tables:

P(X=10)= P(X≤10) - P(X≤9)

To calculate the probability of an observation of the variable, you have to look for the accumulated probability until that number and subtract what's accumulated until the previous integer.

P(X=10)= P(X≤10) - P(X≤9)= 1 - 0.9999= 0.0001

c.

You need to calculate the probability of 3 adults using the internet, this means that if 3 out of 10 use the internet, then 7 do not use the internet.

Let Y be the number of adults that uses the internet (This variable is the complement of X), then:

P(Y=3) = P(X=7)

P(X=7)= P(X≤7) - P(X≤6)= 0.9999 - 0.9998= 0.0001

d.

You need to calculate the probability of at least one adult using the internet, symbolically Y ≥ 1. Now if "at least 1 adult uses the internet" then we will expect that "at most 9 adults don't use the internet", symbolically X ≤ 9.

P(Y ≥ 1)= P(X ≤ 9)= 0.9999

I hope it helps!

8 0
3 years ago
What is the estimate height of 129.3
Anika [276]
129 .................
8 0
2 years ago
How am I supposed to figure this out if csc Theta(0) has a radical number on the top?
Harman [31]
\bf csc(\theta)=\cfrac{hypotenuse}{opposite}\implies csc(\theta)=\cfrac{\sqrt{7}}{2}\cfrac{\leftarrow hypotenuse=c}{\leftarrow opposite=b}\\\\
-----------------------------\\\\
\textit{so hmm using the pythagorean theorem, we can say that}\\\\
c^2=a^2+b^2\implies \pm \sqrt{c^2-b^2}=a\qquad 
\begin{cases}
c=hypotenuse\\
b=opposite\\
a=adjacent
\end{cases}\\\\
\textit{we'll assume is the + of the root, since you're not}\\
\textit{given further info on it, that means the I quadrant}\\\\


\bf -----------------------------\\\\
cos(\theta)=\cfrac{a}{c}\qquad sec(\theta)=\cfrac{c}{a}\qquad tan(\theta)=\cfrac{b}{a}\qquad cot(\theta)\cfrac{a}{b}


so just find the "adjacent" side, using the pythagorean theorem, and even though the square root can give you +/-, use the positive one, assuming the angle is in the 1st quadrant

keeping in mind, that the 2nd quadrant is feasible as well, since the opposite side of +2 can also be in the 2nd quadrant

but anyhow, use the I quadrant

7 0
3 years ago
If 1=2 what conclusions can u draw about m 3 and m 4
BlackZzzverrR [31]

Answer: second one

Step-by-step explanation:

5 0
3 years ago
Explain how to find an estimate for the quotient 3.4 ÷ 6
vovikov84 [41]
To estimate this we can do it like this:-
<span>
Way #1

3.4 = 3
6 = 6 

3 </span>÷ 6 = <span>0.5

So, to estimate 3.4 </span>÷ 6 we round 3.4 to the nearest whole number and den divide. Den d answer is our estimated answer!

3.4 ÷ 6 = 0.5

Hope I helped ya!! 
3 0
4 years ago
Read 2 more answers
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