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REY [17]
3 years ago
14

The ratio of 6th-grade students to 8th-grade students in a school is 4 to 5. How many 6th grade students are there if a school h

as 360 8th grade students
Mathematics
1 answer:
myrzilka [38]3 years ago
6 0

Answer: 288

Step-by-step explanation: 360/5 is 72 so multiply the 6th graders times 72 and you get 288

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The total surface area of a solid cylinder is 484cm square. If it's base has a diameter of 14 cm . Find the length take(22/7)
Elenna [48]

Answer:

I believe that the answer is 22.

Step-by-step explanation:

The height would be 22, because the radius is 22, and 484/22 is 22, so I THINK this is the answer.

5 0
3 years ago
What is the perimeter of a rectangle with a length of 3.5 yd and a width of 9 yd?
Alchen [17]

3.5 + 3.5 +9+9 = 25. ;) i gotchu again.

3 0
4 years ago
What would this be I don’t get it
faltersainse [42]

Since BE bisects angle ABC, you know that angles ABE and EBC are congruent and have the same measure. This means

2x + 20 = 4x - 6

Solve for x:

(2x + 20) - 2x + 6 = (4x - 6) - 2x + 6

26 = 2x

26/2 = 2x/2

13 = x

Then angle ABE has measure 2*13 + 20 = 46º.

4 0
3 years ago
In a sample of 1100 U.S.​ adults, 208 think that most celebrities are good role models. Two U.S. adults are selected from this s
DedPeter [7]

Answer:

a) 3.56% probability that both adults think most celebrities are good role models.

b) 65.74% probability that neither adult thinks most celebrities are good role models.

c) 34.26% probability that at least one of the two adults thinks most celebrities are good role models.

Step-by-step explanation:

A probability is the number of desired outcomes divided by the number of total outcomes.

The order in which the adults are chosen is not important. So we use the combinations formula to solve this question.

Combinations formula:

C_{n,x} is the number of different combinations of x objects from a set of n elements, given by the following formula.

C_{n,x} = \frac{n!}{x!(n-x)!}

​(a) Find the probability that both adults think most celebrities are good role models.

Desired outcomes:

Think most celebrities are good role models, so 2 from a set of 208. Then

D = C_{208,2} = \frac{208!}{2!(208-2)!} = 21528

Total outcomes:

Two adults from a set of 1100. Then

T = C_{1100,2} = \frac{1100!}{2!(1100-2)!} = 604450

Probability:

p = \frac{D}{T} = \frac{21528}{604450} = 0.0356

3.56% probability that both adults think most celebrities are good role models.

(b) Find the probability that neither adult thinks most celebrities are good role models.

Desired outcomes:

2 from a set of 1100 - 208 = 892. Then

D = C_{892,2} = \frac{892!}{2!(892-2)!} = 397386

Total outcomes:

Two adults from a set of 1100. Then

T = C_{1100,2} = \frac{1100!}{2!(1100-2)!} = 604450

Probability:

p = \frac{D}{T} = \frac{397386}{604450} = 0.6574

65.74% probability that neither adult thinks most celebrities are good role models.

(c) Find the probability that at least one of the two adults thinks most celebrities are good role models.

Either neither think, or at least one does. The sum of the probabilities of these events is 100%.

From b), 65.74% probability that neither think.

So

65.74 + p = 100

p = 100 - 65.74

p = 34.26

34.26% probability that at least one of the two adults thinks most celebrities are good role models.

8 0
3 years ago
The question is below, plz answer, will give brainliest
Elina [12.6K]

By comparing the right triangle ABC with the triangle XYZ, we will see that:

  • AC = 5
  • BC = 10.

<h3>How to find the given segments?</h3>

So we know that the largest triangle is a dilation of scale factor 2 of the smaller one.

Also, remember that for right triangle we have the relation:

Tan(θ) = (opposite cathetus)/(adjacent cathetus).

Now, the problem tells us that:

tan(x) = 5/2.5

For the angle x, the adjacent cathetus is XY, and the opposite cathetus is YZ.

Then we have:

YZ  = 5

XY = 2.5

Knowing that the correspondent sides in the larger triangle will be 2 times the above ones, we can see that:

AC = 2*XY = 2*2.5 = 5

CB = 2*YZ = 2*5 = 10

If you want to learn more about right triangles, you can read:

brainly.com/question/2217700

5 0
2 years ago
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