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MissTica
4 years ago
8

Consider sampling heights from the population of all female college soccer players in the United States. Assume the mean height

of female college soccer players in the United States is μ = 66 inches and the standard deviation is σ = 3.5 inches. Suppose we randomly sample 100 values from this population and compute the mean, then repeat this sampling process 5,000 times and record all the means we get.
Which of the following is the best approximation for the standard deviation of the 5,000 sample means?

A) .035
B) .35
C) 3.5
Mathematics
1 answer:
BARSIC [14]4 years ago
7 0

Answer:

B) .35

Step-by-step explanation:

The Central Limit Theorem estabilishes that, for a normally distributed random variable X, with mean \mu and standard deviation \sigma, the sampling distribution of the sample means with size n can be approximated to a normal distribution with mean \mu and standard deviation s = \frac{\sigma}{\sqrt{n}}.

For a skewed variable, the Central Limit Theorem can also be applied, as long as n is at least 30.

In this problem:

\sigma = 3.5, n = 100

Then

s = \frac{\sigma}{\sqrt{n}}

s = \frac{3.5}{\sqrt{100}}

s = 0.35

So the correct answer is:

B) .35

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Klio2033 [76]

Given the system of equations. We have:

- For (5,0)

Substitute x = 5 and y = 0 in the equations:

\begin{gathered} 5(5)+4(0)=-1 \\ 25+0=-1 \\ 25\ne-1 \end{gathered}

Answer: No

- For (-7, -8)

x = -7 and y = -8

\begin{gathered} 5(-7)+4(-8)=-1 \\ -35-32=-1 \\ -67\ne-1 \end{gathered}

Answer: No

- For (3, -4)

\begin{gathered} 5(3)+4(-4)=-1 \\ 15-16=-1 \\ -1=-1 \\ \text{and} \\ 3(3)-2(-4)=-5 \\ 9+8=-5 \\ 17\ne-5 \end{gathered}

This is satisfied for the first equation but not for the second. Therefore it is not a solution to the system.

Answer: No

- For (-2, -2)

\begin{gathered} 5(-2)+4(-2)=-1 \\ -10-8=-1 \\ -18\ne-1 \end{gathered}

Answer: No

8 0
1 year ago
Some hot dogs come in packages of 8.why would a baker of hot dog buns package 7 hot dog buns to a package
Nadusha1986 [10]
Not sure what this has to do with maths, but probably because it would mean that people would have to buy 2 packs of hot dog buns just to get 8 hot dog buns, which makes him more money?
7 0
3 years ago
What is the effect on the graph of the function f(x)= x when f(x) is replaced with f(-x)?
yuradex [85]

Answer:

D

Step-by-step explanation:

I will outside some translation and reflection rules below:

Let a function be f(x)

Then,

  • f(x) + a is the function shifted a units up
  • f(x) - a is the function shifted a units down
  • f(x-b) is the function shifted b units right
  • f(x+b) is the function shifted b units left

Now, reflection:

  • f(-x) is the original reflected across y-axis
  • -f(x) is the original reflected in x-axis

It says to replace f(x) with f(-x), according to our rules, it is:

horizontal reflection over y-axis, answer choice D.

If you take a function f(x) = x + 2, then make f(-x), it becomes:

f(-x) = -x + 2

<u />

Graphing, you will see that they are reflections over y-axis. (graph attached).

<u>Note:</u>

<u>f(x) is red</u>

<u>f(-x) is blue</u>

So, answer choice is D

5 0
3 years ago
.Louise completed the work shown below. (5x3 + 3)2 = (5x3)2 + (3)2 = 25x6 + 9 Determine if Louise’s answer is correct. Explain.
kozerog [31]
Louis is wrong as you do the things in the bracket first there for you would do this (5x3+3)2= (15+3)2= (18)2= 18x2 = 36
4 0
4 years ago
Read 2 more answers
A boat rental company recommends a boat that can go 402 miles on LaTeX: \frac{23}{2}23 2 gallons of gasoline. However there are
AveGali [126]

Answer:

See Explanation

Step-by-step explanation:

Given

Distance = 402\ miles

Gasoline = 23/2\ gallons

Required

Determine boats with better rates

This question requires options which are missing. However, I'll give an explanation on how to determine the right answers.

First, determine the rate of the given boat by dividing distance by amount of gasoline.

Rate = Distance/Gasoline

Rate = 402\ miles / \frac{23}{2}\ gallons

Rate = 402\ miles * \frac{2}{23\ gallons}

Rate = \frac{402\ miles * 2}{23\ gallons}

Rate = \frac{804\ miles}{23\ gallons}

Rate = 34.96\ miles/gallon

For the list of mission options, calculate the rate using the same formula used above... then compare the results.

Take for instance, we have a boat with:

Distance = 500\ miles

Gasoline = 10\ gallons

Rate would be:

Rate = 500\ miles/10\ gallons

Rate = 50\ miles/gallons

By comparing these rates, we have that:

50 > 34.96

So, this new boat has a better rate than the given boat.

<em>Apply this on the missing options</em>

5 0
3 years ago
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