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olya-2409 [2.1K]
3 years ago
8

PLS HELP ME it’s for my test :)

Mathematics
1 answer:
belka [17]3 years ago
6 0

Answer:

b

Step-by-step explanation:

thr answer is b just cancel the other ones

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PLEASE SOMEONE PLEASE HELP ME PLEASE
kolezko [41]

Answer:

can't see the picture clearly

8 0
3 years ago
Find the new price for the markdown given. Round to the nearest cent if necessary.
algol13

Answer:

The new price is 11.99

Step-by-step explanation:

First find the mark down

14.99 * 20 %

14.99 * .20

2.998

3.00

Subtract the markdown from the price

14.99-3.00

11.99

The new price is 11.99

6 0
4 years ago
Suppose a rectangular pasture is to be constructed using 1 2 linear mile of fencing. The pasture will have one divider parallel
timama [110]

Answer:

\displaystyle A=\frac{1}{192}

Step-by-step explanation:

<u>Maximization With Derivatives</u>

Given a function of one variable A(x), we can find the maximum or minimum value of A by using the derivatives criterion. If A'(x)=0, then A has a probable maximum or minimum value.

We need to find a function for the area of the pasture. Let's assume the dimensions of the pasture are x and y, and one divider goes parallel to the sides named y, and two dividers go parallel to x.

The two divisions parallel to x have lengths y, thus the fencing will take 4x. The three dividers parallel to y have lengths x, thus the fencing will take 3y.

The amount of fence needed to enclose the external and the internal divisions is

P=4x+3y

We know the total fencing is 1/2 miles long, thus

\displaystyle 4x+3y=\frac{1}{2}

Solving for x

\displaystyle x=\frac{\frac{1}{2}-3y}{4}

The total area of the pasture is

A=x.y

Substituting x

\displaystyle A=\frac{\frac{1}{2}-3y}{4}.y

\displaystyle A=\frac{\frac{1}{2}y-3y^2}{4}

Differentiating with respect to y

\displaystyle A'=\frac{\frac{1}{2}-6y}{4}

Equate to 0

\displaystyle \frac{\frac{1}{2}-6y}{4}=0

Solving for y

\displaystyle y=\frac{1}{12}

And also

\displaystyle x=\frac{\frac{1}{2}-3\cdot \frac{1}{12}}{4}=\frac{1}{16}

Compute the second derivative

\displaystyle A''=-\frac{3}{2}.

Since it's always negative, the point is a maximum

Thus, the maximum area is

\displaystyle A=\frac{1}{12}\cdot \frac{1}{16}=\frac{1}{192}

6 0
3 years ago
What is the quotient 10 ÷ (-5)?<br> A) -2 <br> B) 2 <br> C) -12<br> D) 12
Degger [83]
10 ÷(-5)= -2

The answer is A
7 0
4 years ago
Help? im not really sure how to do this :(
ICE Princess25 [194]

Answer: doritos

Step-by-step explanation: mmmm doritos

4 0
3 years ago
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