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garri49 [273]
3 years ago
8

20 points!!!! What number needs to be added to both sides of the equation in order to complete the square?

Mathematics
2 answers:
notka56 [123]3 years ago
7 0

(x^2 + 16 + 8^2 = 18 + 8^2

shusha [124]3 years ago
3 0
You would add 16 to both sides 
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In a stable matching problem, if every man has a different highest-ranking woman on his preference list, and given that women pr
Phantasy [73]

Answer:

True

Step-by-step explanation:

The statement given above in the question is correct. It is mentioned that men are free to create a list of women's according to their preferences. There will be order sequence of women and men places them in queue of their preference. The men proposes the women with highest ranking in the list then it is possible that all men gets their preferred choice.

7 0
4 years ago
In each figure below find m ∠1 and m∠2, if a||b. Justify with<br> reasons your solution.
Mazyrski [523]

Answer:

m<1 = 130°

m<2 = 50°

Step-by-step explanation:

Since given that line a is parallel to line b, and <1 and 130° are interior angles that alternate each other, therefore:

m<1 = 130° (alternate interior angle theorem)

Also,

130° and <2 lie on same side inside the parallel lines cut across by the transversal, therefore,

m<2 + 130° = 180° (same side interior angles theorem)

m<2 = 180° - 130°

m<2 = 50°

6 0
3 years ago
Find the measure of the angle​
Otrada [13]
The answer is:

explaination:
7 0
3 years ago
Translate the phrase into an algebraic expression.
adell [148]

Answer:

8 + \frac{5}{w}

Step-by-step explanation:

From the phrase, the <em>answer</em> is smaller(less) by 8  when compared(equal (=)) to quotient of 5 and w ...

So:

Answer - 8 = quotient of 5 and w

Here, quotient is the whole number from a <em>division</em>. The division here is \frac{5}{w}

Therefore,

Answer - 8 = \frac{5}{w}

Answer = 8 + \frac{5}{w}

Hence the phrase into algebraic expression is 8 + \frac{5}{w}

4 0
4 years ago
I need help on this question
xz_007 [3.2K]

I can't see your question

7 0
4 years ago
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