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Ainat [17]
3 years ago
12

6 more than the quotient of 9 and f​

Mathematics
1 answer:
WARRIOR [948]3 years ago
8 0

Answer:

9/f +6

Write 9/f as a fraction.

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Evaluater 3/7+ 5/8s when r =14s =8.
adell [148]

Answer:

Step-by-step explanation:

Alright, lets get started.

The given expression as :

\frac{3}{7}r + \frac{5}{8}s

r is given as 14 and s is given as 8

Plugging the value of r and s in given expression.

\frac{3}{7}(14) + \frac{5}{8}(8)

3*2 + 5

6+5

11

Hence the answer is 11    :   Answer

Hope it will help :)

3 0
2 years ago
Wou help video
iragen [17]

Answer:

The image is (-18,0)

Step-by-step explanation:

Here, we want to find the image of the given point after dilation by the given scale factor

Mathematically, given a point with the pre-image (x,y) going under the dilation of scale factor k, centered at the origin, the coordinates of the image will be;

(kx , ky)

Applying this in the given scenario, we have

(2(-9) , 2(0))

= (-18,0)

8 0
2 years ago
A rectangle is 3 1/3 ft long and 2 1/3 feet wide. What is the distance around the rectangle?
Sonja [21]
3 1/3= 10/3
2 1/3= 7/3
7/3 + 10/3= 17/3
17/3 (2)+ 34/3
34/3= 11 1/3
final answer = 11 1/3
8 0
3 years ago
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Need Help With this question ASAP please help me
Fiesta28 [93]

Answer:

23.5, 23, 13, 12.5

Step-by-step explanation:

3 0
2 years ago
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A square and a circle intersect so that each side of the square contains a chord of the circle equal in length to the radius of
krek1111 [17]

Answer:

Step-by-step explanation:

it is given that Square contains a chord of of the circle equal to the radius thus from diagram

QR=chord =radius =R

If Chord is equal to radius then triangle PQR is an equilateral Triangle

Thus QO=\frac{R}{2}=RO

In triangle PQO applying Pythagoras theorem

(PQ)^2=(PO)^2+(QO)^2

PO=\sqrt{(PQ)^2-(QO)^2}

PO=\sqrt{R^2-\frac{R^2}{4}}

PO=\frac{\sqrt{3}}{2}R

Thus length of Side of square =2PO=\sqrt{3}R

Area of square=(\sqrt{3}R)^2=3R^2

Area of Circle=\pi R^2

Ratio of square to the circle=\frac{3R^2}{\pi R^2}=\frac{3}{\pi }

5 0
3 years ago
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