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adelina 88 [10]
4 years ago
6

How to solve this problem

Mathematics
1 answer:
lorasvet [3.4K]4 years ago
4 0
14) (9.1*10^-5)^-6=9.1*10^-9

15) (2.19*10^4)^-6=2.19*10^-2
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Which of the following angles is an alternate ne angle to angle
Kitty [74]

Answer:

<7

Step-by-step explanation:

<7

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3 years ago
Can somebody help me? anybody know the answer
tigry1 [53]

Answer:

  25 = c

Step-by-step explanation:

You had a good start on filling in the values in the Pythagorean Theorem. The work needed to be finished.

  a^2 +b^2 = c^2\\\\20^2 +15^2=c^2\\\\400+225=c^2\\\\625=c^2\\\\\sqrt{625}=\sqrt{c^2}\\\\\boxed{25=c}

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Step-by-step explanation:

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Find the maximum and minimum values of the objective function f(x, y) and for what values of x and y they occur, subject to the
Lady_Fox [76]

Given that <em>f(x, y)</em> is a linear function, and the constraints themselves are also linear, it follows that the vertices of the feasible region are the sites of extrema of <em>f(x, y)</em>. So just find where each boundary line intersects with another line, and check the value of <em>f(x, y)</em> at each intersection.

We have

• <em>x</em> = 0 and <em>y</em> = 0   ===>   (0, 0)

• <em>x</em> = 0 and 2<em>x</em> + 7<em>y</em> = 70   ===>   <em>y</em> = 10   ===>   (0, 10)

• <em>y</em> = 0 and 8<em>x</em> + 4<em>y</em> = 136   ===>   <em>x</em> = 17   ===>   (17, 0)

• 2<em>x</em> + 7<em>y</em> = 70 and 8<em>x</em> + 4<em>y</em> = 136   ===>   (14, 6)

At these points, we respectively get

• <em>f</em> (0, 0) = 0

• <em>f</em> (0, 10) = 60

• <em>f</em> (17, 0) = 34

• <em>f</em> (14, 6) = 64

Then max <em>f(x)</em> = 64 at (14, 6) and min <em>f(x)</em> = 0 at (0, 0).

5 0
3 years ago
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