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mote1985 [20]
3 years ago
12

-4(-6+9+4v+7v) what is the answer

Mathematics
1 answer:
r-ruslan [8.4K]3 years ago
4 0
First step:
simplify the values in the parenthesis:
-4(3+11v)
Second step: 
apply the distributive property:
-12-44v
The final answer (simplified) is -44v-12
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Given the following equation where A = Area of a rectangle and w = width of the rectangle, what value of 'w' would maximize the
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Answer:

the second option : w should be 25 units

Step-by-step explanation:

the area of the rectangle is length×width = L×W

the perimeter of a rectangle = 2L + 2W

now, we know that the perimeter is 100 units.

and we have to find the best length of W, that will then define L (to keep the 100 units of perimeter) and maximizes the area of the rectangle.

in other words, what is the maximum area of a rectangle with perimeter of 100 (and what are the corresponding side lengths)?

now, w = 625 is impossible. that side alone would be bigger than the whole perimeter.

W = 0 would render the whole rectangle to a flat line with L = 50 because of

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and A = L×W = 50×0 = 0

an area of 0 is for sure not the largest possible area.

w = 50 would cause L = 0

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and with L = 0 the same thing happens as with W = 0 : a flat line with 0 area.

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50 = 2L

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and indeed, the maximum area for a given perimeter is achieved by arranging the sides to create a square.

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