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goblinko [34]
3 years ago
15

Summer break is usually a time for vacations at the beach, afternoons at the pool, and catching up with friends. Can you imagine

if, instead of rubbing on suntan lotion, you were preparing for a Friday afternoon exam on fractions? Many educators argue that students should be in school all year long instead of out for ten weeks in the summer. Instead of one long break, they recommend short breaks several times a year to help students focus better, raise standardized test scores, and reduce stress. Of course, there are also negatives to this plan like increased utility bills, no summer school for students to use to catch up, and the inevitable student resistance. Based on your experiences, do you believe year round schools are a good idea?
In your essay, take a position on this question. You can choose to argue either side, or you may present a different point of view on this question, but you must use specific reasons and examples to support your position.
SAT
1 answer:
aliina [53]3 years ago
5 0

Answer:

what is this exactly?

Explanation:

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Precalculus with trigonometry: concepts and applications answers
sergejj [24]
Heh jevbeh hvbeb Ivan h be ey at your convenience store if I have time ueurieyey to go to your shop or do you want to come over to your place to get some coffee or whatever you need me and you to do
6 0
2 years ago
Which choice does the author explicitly cite as
mihalych1998 [28]
Choice C is the best answer.
The author notes that in North America “hopping in a car almost always gets you to your destination more quickly” (lines 32-34). This statement suggests that speed is one advantage to driving in North America.
6 0
3 years ago
According to the passage, what is the difference between a poem and a story? a poem is difficult to read, while a story is enter
Sergeeva-Olga [200]

Answer:

A poem is timeless, while a story is tied to a particular place and time.

Explanation:

got it right on edge

6 0
3 years ago
Antique Accents tracks their daily profits and has found that the distribution of profits is approximately normal with a mean of
mezya [45]

Answer;

a) 0.434

b) 0.983

c) 0.367

Explanation:

The exact question with the given parameters wasn't obtained online, but the same question, albeit with different parameters is then obtained. Hopefully, this Helps to solve the complete question with the required parameters.

Antique Accents tracks their daily profits and has found that the distribution of profis is approximately normal with a mean of $17,700.00 and a standard deviation of about $900.00. Using this information, answer the following questions For full marks your answer should be accurate to at least three decimal places. Compute the probability that tomorrow's profit will be

a) less than $16,791 or greater than $18,231

b) greater than $15,783

c) between $17,997 and $20,130

Solution

This is a normal distribution problem with

Mean = μ = $17,700

Standard deviation = σ = $900

a) less than $16,791 or greater than $18,231. P(x < 16,791) or P(X > 18,231) = P(X < 16,791) + P(x > 18,231)

We first standardize 16,791 and 18,231

The standardized score for any value is the value minus the mean then divided by the standard deviation.

For 16791

z = (x - μ)/σ = (16791 - 17700)/900 = - 1.01

For 18231

z = (x - μ)/σ = (18231 - 17700)/900 = 0.59

To determine the required probability

P(X < 16,791) + P(x > 18,231) = P(z < -1.01) + P(z > 0.59)

We'll use data from the normal probability table for these probabilities

P(X < 16,791) + P(x > 18,231) = P(z < -1.01) + P(z > 0.59)

P(z < -1.01) = 0.15625

P(z > 0.59) = 1 - (z ≤ 0.59) = 1 - 0.7224 = 0.2776

P(X < 16,791) + P(x > 18,231) = P(z < -1.01) + P(z > 0.59) = 0.15625 + 0.2776 = 0.43385 = 0.434 to 3 d.p

b) greater than $15,783. P(x > 15783)

We standardize 15783

z = (x - μ)/σ = (15783 - 17700)/900 = -2.13

To determine the required probability

P(x > 15783) = P(z > -2.13)

We'll use data from the normal probability table for this probability

P(x > 15783) = P(z > -2.13) = 1 - P(z ≤ - 2.13)

= 1 - 0.01659 = 0.98341 = 0.983 to 3 d.p.

c) between $17,997 and $20,130.

P(17,997 < x < 20,130)

We first standardize 17,997 and 20,130

The standardized score for any value is the value minus the mean then divided by the standard deviation.

For 17,997

z = (x - μ)/σ = (17,997 - 17700)/900 = 0.33

For 20,130

z = (x - μ)/σ = (20,130 - 17700)/900 = 2.70

To determine the required probability

P(17,997 < x < 20,130) = P(0.33 < x < 2.70)

We'll use data from the normal probability table for these probabilities

P(17,997 < x < 20,130) = P(0.33 < x < 2.70)

= P(z < 2.70) - P(z < 0.33)

= 0.99653 - 0.62930

= 0.36723 = 0.367 to 3 d.p.

Hope this Helps!!!

3 0
3 years ago
Clunker motors inc. Is recalling all vehicles in its extravagant line from model years 1999-2002. Given variables modelyear and
Fittoniya [83]

It can be deduced that the model that  match the recall details will be if(modelYear <=2006 && modelYear >= 2001) {cout << "RECALL" ;}.

<h3>What is a model?</h3>

A computer model simply means an abstract mathematical representation of real-world events, systems, behavior, etc.

A computer model is designed to behave just like the real-life system. In this case, Clunker motors inc. is recalling all vehicles in its extravagant line from the model years. This is depicted above.

Learn more about models on:

brainly.com/question/25640375

6 0
3 years ago
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