TRUE OR FALSE the critical value of a hypothesis test is based on the researcher's selected level of significance.

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Answer 1

Answer:

the answer is true. may I get brainliest

Answer 2

TRUE. The critical value of a hypothesis test is based on the researcher's selected level of significance.

     

The critical value of a hypothesis test is based on the researcher's selected level of significance. The level of significance represents the probability of rejecting a true null hypothesis, and it determines the critical value, which is the point beyond which we reject the null hypothesis. Therefore, the higher the level of significance, the lower the critical value, and the easier it is to reject the null hypothesis.
True, the critical value of a hypothesis test is based on the researcher's selected level of significance. The level of significance determines the threshold for rejecting or failing to reject the null hypothesis, and the critical value is a point on the test statistic's distribution that corresponds to this threshold.

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Related Questions

Raj has 180 sweets and splits them 1:4 with his freind

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The total number of sweets after considering the ratio with both Raj and his friend is 180 sweets.

Total number of sweets = 180

The ratio in which sweets are split = 1:4

Calculating Raj's share -

1 part out of 1+4

= 1/5 of the total sweets

1/5 of 180

= (1/5) x 180

= 36

Similarly,

Calculating the friend's share -

4 parts out of 1+4

= 4/5 of the total sweets

4/5 of 180

= (4/5) x 180

= 144

Total sweets with both Raj and his friend:

Raj's share + Friend's share

= 36 + 144

= 180

Complete Question:

Raj has 180 sweets and splits them 1:4 with his friend. What is the total number of sweets with both?

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c . main 2.7.1: sphere volume. given sphereradius, compute the volume of a sphere and assign spherevolume with the result. use (4.0 / 3.0) to perform floating-point division, instead of (4 / 3) which performs integer division. volume of sphere

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sphere volume = (4.0 / 3.0) * 3.14159 * sphere radius ** 3

Here's a step-by-step explanation using the terms "radius", "volume", and "division":

1. Given the sphere's radius (sphere radius), we'll use the formula for calculating the volume of a sphere: V = (4.0 / 3.0) * π * r^3, where V is the sphere's volume and r is its radius.

2. Perform floating-point division by using (4.0 / 3.0) instead of (4 / 3). The floating-point division ensures a more accurate result since it retains decimal values.        
   
3. Compute the sphere's volume (sphere volume) using the formula: sphere volume = (4.0 / 3.0) * π * (sphere radius)^3.

4. Assign the calculated value to the sphere volume.      

By following these steps and using the given formula, you can calculate the volume of a sphere with the specified radius.

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a check of dorm rooms on a large college campus revealed that 38% had refrigerators, 52% had tvs, and 21% had both a tv and a refrigerator. what's the probability that a randomly selected dorm room has either a refrigerator or a tv (or both)? please enter your answer as a decimal, rounded to two places after the decimal point.

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The probability that a randomly selected dorm room has either a refrigerator or a TV (or both) is 0.69, or 69% (rounded to two decimal places).

The probability of a aimlessly  named dorm room having either a refrigerator or a television( or both) is0.69, as calculated from the given data. This implies that  nearly 70 of the dorm apartments have at least one of these amenities. We can also interpret this as saying that having a television or a refrigerator is a  fairly common  circumstance in the dorm apartments on this particular  council lot.

P(R) = 0.38 (38% had refrigerators)

P(T) = 0.52 (52% had TVs)

P(R and T) = 0.21 (21% had both a TV and a refrigerator)

Substituting these values into the equation, we get:

P(R or T) = 0.38 + 0.52 - 0.21

P(R or T) = 0.69

  It's worth noting that having both a television and a refrigerator in a dorm room isn't as common, with only 21 of the apartments having both amenities. This could be due to a number of factors,  similar as space constraints or  particular preference. still, it's still important to fete  that having both amenities can  give  fresh convenience and comfort to the  scholars living in these apartments.

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Student groups are given a six-sided die, with each side labeled a number 1 through 6. Each student group rolls the die 75 times and records the number that is rolled. If there are 8 groups of students participating in this activity, which of the following is most likely the total number of times a 4 was rolled?
A: 98
B: 154
C: 75
D: 13

Answers

The expected value of rolling a 4 on a six-sided die is 1/6. Therefore, in a single roll, we can expect to see a 4 appear approximately 1/6 of the time. Each group of students rolls the die 75 times, so we can expect each group to roll a 4 approximately (1/6)*75 = 12.5 times.
With 8 groups participating, we can expect a total of approximately 8*12.5 = 100 times that a 4 is rolled.

To find the most likely total number of times a 4 was rolled, follow these steps:

1. Determine the probability of rolling a 4 on a six-sided die: There is 1 favorable outcome (rolling a 4) and 6 possible outcomes (rolling a number 1 through 6). So, the probability of rolling a 4 is 1/6.

2. Calculate the expected number of times a 4 is rolled in a single group: Since each student group rolls the die 75 times, the expected number of times a 4 is rolled in one group is the probability of rolling a 4 multiplied by the number of rolls: (1/6) * 75 = 12.5.

3. Determine the most likely total number of times a 4 was rolled across all 8 groups: Multiply the expected number of times a 4 is rolled in one group by the total number of groups: 12.5 * 8 = 100.

Since 100 is not one of the options provided, choose the closest option, which is:

A: 98

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In Exercises 17-22, determine which sets of vectors are orthonormal. If a set is only orthogonal, normalize the vectors to produce an orthonormal set.22 [ 1/√18] [ 1/√2 ] [ -2/3 ] [ 4/√18] [ 0 ] [ -2/3]1/√18 -1/√2 -2/3

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The set of vectors {[1/√18], [1/√2], [-2/3]} and {[4/√18], [0], [-2/3]} is an orthonormal set.

To verify whether a set of vectors is orthonormal, we need to check two conditions: orthogonality and normalization. Orthogonality means that the dot product of any two distinct vectors in the set is zero. Normalization means that the magnitude or length of each vector is 1.

First, we check for orthogonality. The dot product of the first and second vectors is:
[1/√18] * [4/√18] + [1/√2] * [0] + [-2/3] * [-2/3] = 4/18 + 0 + 4/9 = 8/18

The dot product of the first and third vectors is:
[1/√18] * [1/√2] + [1/√2] * [(-2/3)] + [-2/3] * [(-1/√18)] = 1/√36 - 2/3√2 - 2/3√2 = 0

The dot product of the second and third vectors is:
[4/√18] * [1/√2] + [0] * [-2/3] + [-2/3] * [(-1/√18)] = 2/√36 + 2/√36 = 4/√36

Since the dot product of any two distinct vectors is not always zero, the set is not orthogonal. We need to normalize the vectors to produce an orthonormal set.

To normalize a vector, we divide it by its magnitude. The magnitude of a vector [a, b, c] is √(a^2 + b^2 + c^2). Thus, the normalized version of the first vector is:
[1/√18, 1/√2, -2/3] / √[(1/18) + (1/2) + (4/9)] = [1/√2, √(2/9), -2/√9]

The normalized version of the second vector is:
[4/√18, 0, -2/3] / √[(16/18) + 0 + (4/9)] = [2/√9, 0, -2/√9]

The normalized version of the third vector is:
[1/√18, -1/√2, -2/3] / √[(1/18) + (1/2) + (4/9)] = [1/√2, -√(2/9), -2/√9]

We can now check for orthogonality again:

The dot product of the first and second vectors is:
[1/√2] * [2/√9] + [√(2/9)] * [0] + [-2/√9] * [(-2/√9)] = 0

The dot product of the first and third vectors is:
[1/√2] * [1/√2] + [-√(2/9)] * [-2/√9] + [-2/√9] * [-2/√9] = 1/2 + 2/9 + 4/9 = 1

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slope fields on page 3 of differential equations 7.1 to 7.5

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A slope field is a graphical representation of the slopes of the tangent lines to the solutions of a first-order differential equation, dy/dx = f(x, y).

The goal of a slope field is to provide a visual representation of the behavior of the solutions to the differential equation, without necessarily solving the equation analytically.

To create a slope field, follow these steps:

1. Write down the given first-order differential equation, dy/dx = f(x, y).

2. For each point (x, y) in the field, calculate the slope f(x, y) using the differential equation.

3. At each point (x, y), draw a short line segment with the slope calculated in step 2.

4. Repeat steps 2 and 3 for various points on the field to get a complete visual representation.

5. Observe the overall behavior of the slopes in the field, which can help you understand the behavior of the solution curves.

In summary, a slope field is a useful tool to visualize the behavior of solutions to differential equations. By analyzing the slopes of tangent lines at various points, you can gain insights into the characteristics of the solution curves without solving the equation analytically.

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a caterer is competing for a company's business, the caterer selects a simple random sample of entrees, a simple random sample of sides, and a simple random sample of desserts for a tasting. the sample is a sample.

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The sample is a three-stage cluster sample

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Only the answer no explanation

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Answer:

The slope for these to points would be -9/7 (rise/run)

Find the zeros and describe the behavior of the graph at each zero. x^4 - 16x^3 + 63x^2

Answers

The zeros of the polynomial given are 9, 7, 0.

Given that a polynomial, x⁴-16x³+63x² we need to find its zeros,

The zeros are,

x⁴-16x³+63x² = 0

x²(x²-16x+63) = 0

x²(x²-9x-7x+63) = 0

x²(x-9)(x-7) = 0

Therefore, the zeros are 9, 7, 0

The end behavior of a function f (x) describes the behavior of the function as x approaches + ∞ and as x approaches -∞.

Hence, the zeros of the polynomial given are 9, 7, 0.

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does the point (-3,3) lie inside, outside, or on the circle? the center of the circle is (-5,1) and the radius is 3. you must prove this ALGEBRAICALLY

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yessss because as you can see the answer is what it is

2
Select the correct answer from each drop-down menu.
The base of pyramid A is a rectangle with a length of 10 meters and a width of 20 meters. The base of pyramid B is a square with 10-meter sides.
The heights of the pyramids are the same.
The volume of pyramid A is
volume of pyramid B is
the volume of pyramid B. If the height of pyramid B increases to twice that of pyramid A, the new
the volume of pyramid A.

Answers

The volume of pyramid A is twice the volume of pyramid B. If the height of pyramid B increases to twice that of pyramid A, the new volume of pyramid B is equal to the volume of pyramid A.

How to calculate the volume of a pyramid?

In Mathematics and Geometry, the volume of a pyramid can be calculated by using the following formula:

Volume = 1/3 × b × h

Where:

h represent the height of a pyramid.b represent the base area of a pyramid.

Volume of pyramid A = (10 × 20 × h)/3 = 200h/3

Volume of pyramid B = (10 × 10 × h)/3 = 100h/3

Since the heights of the two (2) pyramids are equal, we would substitute them as follows;

Volume of pyramid A = (200 × 3 × Volume of pyramid B)/(100 × 3)

Volume of pyramid A = 2 × Volume B

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Complete Question;

The base of pyramid A is a rectangle with a length of 10 meters and a width of 20 meters. The base of pyramid B is a square with 10-meter sides. The heights of the pyramids are the same.

The volume of pyramid A is ____ the volume of pyramid B. If the height of pyramid B increases to twice that of pyramid A, the new volume of pyramid B is ______the volume of pyramid A.

In a hypothesis test problem, testing if the population proportion is less than 0.75, you are given the following values:n=p-value =9400.0735
28 Which of the following is the correct statement of the hypotheses?
A. a H0:π≥0.75 H0:π>0.75
B. H0:π<0.75 H0:π≤0.75
C. H1:π<0.75 H1:π≤0.75 D. H1:π≥0.75H1:π>0.75

Answers

The correct statement of the hypotheses is option B: H0:π≥0.75 and H1:π<0.75.

In a hypothesis test problem, the null hypothesis (H0) represents the status quo or the default assumption, while the alternative hypothesis (H1) represents the claim or the research question that the investigator wants to test.

In this problem, the null hypothesis is that the population proportion (π) is greater than or equal to 0.75 (i.e., H0:π≥0.75). The alternative hypothesis is that the population proportion is less than 0.75 (i.e., H1:π<0.75), which is what we are testing for.

The p-value of 0.0735 represents the probability of obtaining a sample proportion as extreme as the one observed or more extreme, assuming that the null hypothesis is true. Since the p-value is less than the significance level (usually set at 0.05), we reject the null hypothesis and conclude that there is sufficient evidence to support the alternative hypothesis. Therefore, the correct statement of the hypotheses is option B.

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: For each of the functions below, indicate whether the function is onto, one-to-one, neither or both. If the function is not onto or not one- to-one, give an example showing why. (a) f: R + R. f(x) = x2 (b) g: R → R. g(x) = x3 ((c) h: Z - Z. h(x) = x3 (d) f. 2+2, f(x) = - 4

Answers

One-to-one: Since f(2) = f(-2) = -4, the function is not one-to-one.

(a) f: R → R. f(x) = x^2

The function f is neither onto nor one-to-one. To see why, consider the following:

Onto: A function is onto if every element of the co-domain has at least one pre-image in the domain. In this case, f(x) = x^2 can never be negative, so it does not take on every value in the co-domain R (since R includes negative numbers). Therefore, the function is not onto.

One-to-one: A function is one-to-one if each element in the co-domain corresponds to exactly one element in the domain. However, since f(-x) = f(x) for all x, the function is not one-to-one. For example, f(2) = f(-2) = 4.

(b) g: R → R. g(x) = x^3

The function g is both onto and one-to-one. To see why:

Onto: For any y in the co-domain R, we can find x in the domain R such that g(x) = y by taking the cube root of y. Therefore, g is onto.

One-to-one: Suppose g(a) = g(b) for some a, b in the domain R. Then, we have a^3 = b^3, which implies a = b. Therefore, g is one-to-one.

(c) h: Z → Z. h(x) = x^3

The function h is onto but not one-to-one. To see why:

Onto: For any y in the co-domain Z, we can find x in the domain Z such that h(x) = y by taking the cube root of y. Therefore, h is onto.

Not one-to-one: For example, h(-1) = (-1)^3 = -1 and h(1) = 1^3 = 1, so h is not one-to-one.

(d) f. 2+2, f(x) = -4

The function f is neither onto nor one-to-one. To see why:

Onto: The co-domain is not specified, so it is not clear whether the function is onto or not.

Not one-to-one: Since f(2) = f(-2) = -4, the function is not one-to-one.

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SOMEONE HELP PLEASE!! giving brainlist to anyone

Answers

Answer:

Arianys:

[tex]61000 {e}^{.07125 \times 14} = 165401.17[/tex]

Yusuf:

[tex]61000( {1 + \frac{.07625}{12} )}^{12 \times 14} = 176796.02[/tex]

$176,796.02 - $165,401.17 = $11,394.85

After 14 years, Yusuf's account will have $11,395 more than Arianys's account.

in july 2008, the united states had a population of approximately 302,000,000 people. how many americans were there in july 2009, if the estimated 2008 growth rate was 0.88%? group of answer choices 567,760,000 304,657,600 2,657,600 304,000,000

Answers

There were approximately 304,657,600 Americans in July 2009. The correct answer is 304,657,600.  In July 2009, the estimated population of the United States would be 304,657,600 people. To calculate this, we need to take the 2008 population of 302,000,000 and multiply it by the growth rate of 0.88%.

First, we need to find the amount of growth that occurred between 2008 and 2009. We can do this by multiplying the 2008 population by the growth rate:

302,000,000 x 0.88% = 2,657,600

This tells us that the population increased by 2,657,600 people from 2008 to 2009. To find the total population in 2009, we need to add this growth to the 2008 population:

302,000,000 + 2,657,600 = 304,657,600

Therefore, in July 2009, the estimated population of the United States would be 304,657,600 people, based on a growth rate of 0.88%.

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in an experiment, the post-test measures: question 10 options: a) the dependent variable b) the independent variable c) the experimental group d) the control group

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The post-test measures the dependent variable.

In an experiment, the post-test measures refer to the data collected after the intervention or treatment has been given to the participants. Question 10 options may include choices related to the variables and groups involved in the experiment. Option a) the dependent variable is the variable being measured and is often affected by the independent variable. Option b) the independent variable is the variable being manipulated by the researcher to see its effect on the dependent variable. Option c) the experimental group is the group that receives the treatment or intervention, and option d) the control group is the group that does not receive the treatment or intervention and is used as a comparison to the experimental group. The question 10 options can help researchers determine the effects of the content loaded in an experiment on the variables and groups involved.


In an experiment, the post-test measures:

Question 10 options:
a) the dependent variable

Your answer: The post-test measures the dependent variable. This is because the dependent variable is the outcome that researchers are interested in measuring, and the post-test is conducted after the experiment to assess the effects of the independent variable on the dependent variable.

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Part of the population of 4,750 elk at a wildlife preserve is infected with a parasite. A random sample of 50 elk shows that 2 of them are infected. How many elk are likely to be infected?

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There are likely to be 190 elk infected with the parasite in the population of 4,750 elk at the wildlife preserve.

Now, To estimate the number of elk that are likely to be infected, we can use the sample proportion of infected elk to the total population of elk.

Hence, The sample proportion of infected elk is,

⇒ 2/50 = 0.04.

We can use this proportion to estimate the proportion of infected elk in the entire population of ;

4,750: 0.04 = x/4750

Solving for x, we get:

x = 0.04 × 4750

x = 190

Therefore, there are likely to be 190 elk infected with the parasite in the population of 4,750 elk at the wildlife preserve.

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two cheeseburgers and one small order of fries contain a total of 1350 calories. three cheeseburgers and two small orders of fries contain a total of 2140 calories. find the caloric content of each item.

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Two cheeseburgers contain a total of 1120 calories (2 x 560) and one small order of fries contains 230 calories. And three cheeseburgers contain a total of 1680 calories (3 x 560) and two small orders of fries contain a total of 460 calories (2 x 230).

Let's use a system of equations to solve for the caloric content of each item.

Let x be the number of calories in one cheeseburger and y be the number of calories in one small order of fries.

From the first statement, we know that:

2x + y = 1350

From the second statement, we know that:

3x + 2y = 2140

We can use these two equations to solve for x and y. First, we'll solve for y in terms of x by rearranging the first equation:

y = 1350 - 2x

Now we can substitute thisn expression for y into the second equation:

3x + 2(1350 - 2x) = 2140

Simplifying this equation, we get:

3x + 2700 - 4x = 2140

-x = -560

x = 560

So one cheeseburger contains 560 calories. We can plug this value back into either of the original equations to solve for y:

2(560) + y = 1350

y = 230

So one small order of fries contains 230 calories.

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Please solve #8
Multiply each rational expression and simplify

Answers

The simplified expression is  (x + 7)/(5x² + 30x + 45).

What is the simplification of the expressions?

The simplification of the expressions is calculated as follows;

(x² - 3x + 9)/(5x² - 20x - 105) x (x² - 49)/(x³ + 27)

Factorize each expression as follows;

5x² - 20x - 105

5(x² - 4x - 21)

5(x² - 7x + 3x - 21)

5(x(x -7) + 3(x - 7))

5(x-7)(x+3)

x² - 49

apply difference of two squares;

= x² - 7²

= (x - 7)(x + 7)

x³ + 27

apply sum of two cubes;

= x³ + 3³

= (x + 3)(x² - 3x + 9)

The faction is simplified as follows;

(x² - 3x + 9)/5(x-7)(x+3)     x    (x - 7)(x + 7)/(x + 3)(x² - 3x + 9)

= (x + 7)/(5(x + 3)(x + 3))

= (x + 7)/(5(x + 3)²)

= (x + 7)/(5(x² + 6x + 9)

= (x + 7)/(5x² + 30x + 45)

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a car travels at an average speed of 68 miles per hour. how long does it take to travel 612 miles

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It takes 9 hours for the car to travel 612 miles at an average speed of 68 miles per hour.

To find the time it takes for the car to travel 612 miles at an average speed of 68 miles per hour, we can use the formula:

time = distance ÷ speed

Plugging in the given values, we get:

time = 612 miles ÷ 68 miles per hour

Therefore, the time it would take the car to travel 612 miles is: Time = 612 miles / 68 miles per hour Time = 9 hours.  So, it would take the car approximately 9 hours to travel a distance of 612 miles if it maintains an average speed of 68 miles per hour.

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We survey 100 retired baseball players and 20 of them indicate that they used steroids.
Obtain a 95% confidence interval to estimate the population proportion of retired baseball players who used steroids.

Answers

A 95% confidence interval to estimate the population proportion of retired baseball players who used steroids is: (1.9216, 0.2784)

How to find the confidence interval?

The formula for confidence interval for proportion is:

CI = p ± z√(p(1 - p)/n)

where:

p is sample proportion

n is sample size

z is z-score at confidence level

n = 100

p = 20/100 = 0.2

z-score at 95% CL = 1.96

Thus:

CI = 0.2 ± 1.96√(0.2(1 - 0.2)/100)

CI = 0.2 ± 0.0784

CI = (1.9216, 0.2784)

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A factory makes 8000 tubs of ice cream, each tub contains 500 millilitres. How many litres of ice cream does the factory make?

Answers

Answer:

4,000 L (4 thousand)

Step-by-step explanation:

1 tub = 500 mL

2 tub = 1000 mL = 1 L

8000 tubs = 4,000,000 mL = 4,000 L
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Confidence Intervals Using the T-Distribution LEARNING OBJECTIVE: Calculate a confidence interval using the t-distribution. Morgan sampled 101 students and calculated an average of 6.5 hours of sleep each night with a standard deviation of 2.14. Using a 90% confidence level, she also found that t = 1.660. confidence interval = t* s/n A 90% confidence interval calculates that the average number of hours of sleep for working college students is between _________ hours. Answer choices are rounded to the hundredths place. O a.) 6.15 and 6.85 O b.) 6.46 and 6.85 O c.) 6.08 and 6.92 O d.) 6.46 and 6.54

Answers

Rounded to the hundredth place, this gives us answer choice (D), which is the correct answer. So we can say with 90% confidence that the average number of hours of sleep for working college students is between 6.46 and 6.54 hours.

To calculate the confidence interval using the t-distribution, we use the formula:

Confidence interval = sample mean ± (t-score)*(standard error)

where the standard error is calculated as the standard deviation divided by the square root of the sample size, i.e.,

standard error = standard deviation / sqrt(sample size)

In this case, Morgan sampled 101 students and found an average of 6.5 hours of sleep with a standard deviation of 2.14. So the standard error is:

standard error = 2.14 / sqrt(101) = 0.213

The t-score for a 90% confidence level with 100 degrees of freedom (n-1) is 1.660, as given in the problem.

Therefore, the confidence interval is:

Confidence interval = 6.5 ± (1.660)*(0.213) = (6.46, 6.54).

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The graph of the function y = 2x2 + bx + 8 is shown. What is the value of b? Enter your answer in the box. In the xy graph, the range of the x axis is minus three to five by increment of one. The range of the y axis is minus ten to six by increment of two. On x axis minus two, two, and four are labeled and on the y axis minus eight, minus four, and four are labeled. The curve is parabola open upwards. The vertex of the parabola is (3, -10), The parabola passes through the points (2, -8) and (4, -8). b =

Answers

The value of b in the given function is 4.

How to calculate the value

Since we know that the coefficient of the term is 2, we can plug in the values of a and b into the equation for the axis of symmetry.

We also know that the vertex of the parabola lies on the axis of symmetry, and we can see from the graph that the vertex is at the point.

Since x = -1 and y = 6, this will be;

6 = 2(-1)² + b(-1) + 8

b = 4

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A piece of clothing contains 6% spandex. Write the percent as a decimal

Answers

Answer:60%

Step-by-step explanation: To convert a percentage to a decimal, divide by 100. So 25% is 25/100, or 0.25. To convert a decimal to a percentage, multiply by 100 (just move the decimal point 2 places to the right).

I need help please I'm stuck on this question

Answers

Answer:

84.3%

Step-by-step explanation:

Percentage of people completed the task under 40 s is(rounded) 84.3%

the cost per item at a supermarket follows an exponential distribution. there are many inexpensive items and a few relatively expensive ones. the mean cost per item is $13.5. what is the percentage of items that cost: a. less than $10.5?

Answers

The percentage of items that cost less than $10.5 is 44.78%.

To solve this problem, we need to use the properties of the exponential distribution. We know that the mean cost per item is $13.5, which means that the parameter λ (the rate parameter) of the exponential distribution is 1/13.5 = 0.0741.

To find the percentage of items that cost less than $10.5, we need to calculate the cumulative distribution function (CDF) of the exponential distribution at $10.5:

CDF($10.5$) = 1 - e^(-λ*$10.5$) = 1 - e^(-0.0741*$10.5$) = 0.4478

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when parallel parked along a curb, the front and rear bumpers of your vehicle must be how far away from other vehicles? 6 inches. 1 foot. 2 feet. 4 feet.

Answers

When parallel parked along a curb, the front and rear bumpers of your vehicle must be no more than 12 inches or one foot away from other vehicles. This distance is to ensure that there is enough space for other vehicles to maneuver around your car and to prevent any accidental collisions or damage.

It is important to note that this distance may vary depending on local laws and regulations, so it is always best to check with your local authorities for specific guidelines. In addition, it is crucial to use your mirrors and signals when parallel parking to ensure that you are not blocking traffic or causing any hazards on the road. By following these guidelines and being mindful of others on the road, you can safely and effectively parallel park your vehicle.

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Help!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!

Answers

Answer:

3052.08

Step-by-step explanation:

v = 4/3[tex]\pi r^{3}[/tex]

v = [tex]\frac{4(3.14)9^{3} }{3}[/tex]

v = [tex]\frac{4(3.14)(729)}{3}[/tex]

v = [tex]\frac{9156.24}{3}[/tex]

v = 3052.08

Helping in the name of Jesus.

Answer:

The answer for Volume is 3052.08in³

Step-by-step explanation:

Volume of sphere=4/3pir³

V=4_3×3.14×9³

V=4/3×9×9×9×3.14

V=4×3×9×9×3.14

V=12×81×3.14

V=3052.08in³

as a manager, when faced with ethical crises you shouldmultiple choice a. focus on issues most relevant to stockholders only. b. wait for the other party to make the first move. c. take the initiative to address the problem.d. cover up as much as possible.

Answers

As a manager, when faced with ethical crises in time, you should:
C. Take the initiative to address the problem.

As a manager, when faced with ethical crises in time, you should take the initiative to address the problem.

It is important to consider the impact on multiple stakeholders, including employees, customers, and the community. Ignoring the issue or attempting to cover it up can lead to further complications and damage to the company's reputation.

It is important to address the issue head-on and take appropriate actions to prevent similar situations from occurring in the future.
This approach ensures that you proactively identify and resolve ethical issues in a timely and responsible manner, rather than focusing only on stockholders, waiting for others to act, or attempting to cover up the situation.

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