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WARRIOR [948]
3 years ago
13

Graph the inverse of the relation shown. Include at least 5 points

Mathematics
1 answer:
prohojiy [21]3 years ago
8 0

Answer:

Step-by-step explanation:

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A circle with area 3/2pi and central angle of 60 degrees. What is the area of the circle
Anika [276]

Answer:

28.28(simplified from 28.2743338834)

Step-by-step explanation:

area of sector= (center angle/360)*area of circle

we are already given the area of sector as 3/2pi

so

3/2pi=(60/360)*x

(x is area of circle)

3/2pi=4.71238898038

4.71238898038=1/6x

divide both sides by "1/6"

28.2743338834=x

hope this helps!

3 0
3 years ago
Which do you think is greater, 4x3 2/5 or 3x4 2/5? How can you tell without multiplying? Explain
OLga [1]

Answer:

They are the same.

Step-by-step explanation:

According to the commutative property, switching the order of this will not change the outcome.

4 0
2 years ago
Factor 64f - 64g + g6 to identify the equivalent expressions choose 2 answers
hram777 [196]

Answer:

here

Step-by-step explanation:

https://doubtnut.s.llnwi.net/answer-1571137507_39149069.mp4

8 0
3 years ago
What is the area of the shaded region?
antiseptic1488 [7]

Answer:

22.5, is the area of the small area of the at the bottom of the triangles.

Step-by-step explanation:

I know that the radius of the circle is 6, which means that the area of the circle is 36\pi.

Now in order to find that small area, we would need to find the area of the triangle and the area of the of the two parts of the circle.

Now, we take half of one of the bottom triangle. This gives a triangle with a hypotenuse of 5 a bottom is 3 (because its total 6 and i divided it by 2) and the other side is 4. This can be found by the Pythagorean theorem. This gives us a base of 3 and height of 4.

Area of the that triangle = \frac{bh}{2} = 6, we have 6 of them that means the total area of the triangles are 24.

The next step is the find the area of the parts of the circle, the only thing we need is to find the angle. Please take a look at the picture.  There are different ways in order to find the angle but the easiest way to find is tan (angle) = \frac{opp}{adj} = \frac{3}{4}, solving for the angle would give us 37.

Now we know that one of the angles is 37 * 4 = 148.

The total degrees of the triangle is 360 degrees, which means that 360 - 148 = 212.

Therefore, the area of the other part of the circle is \pi 6^{2} (\frac{212}{360} ) = 66.6

Now the area of the small part = Area of circle - (area of 4 triangles + area of part of the circle)

Area that we are looking for = 36\pi - (24 + 66.6), where 24 is the area of the four triangles and 66.6 is part of the area of the circle.

Area = 22.5

Great question, thanks for sharing.

3 0
4 years ago
The new ointment was applied to four locations, and a control was applied to the other four. How many different choices were the
lubasha [3.4K]

Answer:

there are 70 possible choices for the four locations to apply the new ointment

Step-by-step explanation:

Since we have a total of 8 locations ( 4 to the new ointment and 4 to the control) ,  each one can be chosen and since the order of the locations that are chosen for the new ointment is not relevant  , then we know that the number of choices is given by the number of combinations of 4 elements in 8

number of combinations = 8 possible locations to the first ointment * 7 possible locations to the second ( since the first one was already located) * 6 to the third * 5 locations for the fourth / number of times the same combination is repeated ( the same locations but in different positions) = 8*7*6*5 / (4 possible positions for the first ointment* 3 possible positions to the second ointment (since the first one was already located * 2 possible positions of the third * 1 possible position of the fourth)

therefore

number of combinations = 8*7*6*5/(4*3*2*1 ) = 8!/((8-4)!*4!) = 70 possible combinations

thus there are 70 possible choices for the four locations to apply the new ointment

6 0
3 years ago
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