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Elenna [48]
3 years ago
13

Hi does anyone know what m+20=6, please show work with it

Mathematics
1 answer:
erik [133]3 years ago
8 0
So your equation is m + 20 = 6

The first think you do is subtract 20 from both sides in order to get “m” alone, since that’s the variable you’re solving for. So what you’ll you have next is
m + 20 - 20 = 6-20

Since 20 subtracted by itself is zero, you’ll be left with
m + 0 = -14

Or more simply

m = -14
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Suppose that A and B are points on the number line.
oksian1 [2.3K]

Answer:

Suppose that A and B are points on the number line.

If AB=11 and A lies at 6, where could B be located?

If there is more than one location, separate them with commas

Step-by-step explanation:

Suppose that A and B are points on the number line.

If AB=11 and A lies at 6, where could B be located?

If there is more than one location, separate them with commas

4 0
3 years ago
Find the slope of the line graphed below.​
Finger [1]

to get the equation of any straight line, we simply need two points off of it, let's use the ones provided in the picture below.

(\stackrel{x_1}{1}~,~\stackrel{y_1}{4})\qquad (\stackrel{x_2}{3}~,~\stackrel{y_2}{-3}) ~\hfill \stackrel{slope}{m}\implies \cfrac{\stackrel{rise} {\stackrel{y_2}{-3}-\stackrel{y1}{4}}}{\underset{run} {\underset{x_2}{3}-\underset{x_1}{1}}} \implies \cfrac{-7}{2}

\begin{array}{|c|ll} \cline{1-1} \textit{point-slope form}\\ \cline{1-1} \\ y-y_1=m(x-x_1) \\\\ \cline{1-1} \end{array}\implies y-\stackrel{y_1}{4}=\stackrel{m}{-\cfrac{7}{2}}(x-\stackrel{x_1}{1}) \\\\\\ y-4=-\cfrac{7}{2}x+\cfrac{7}{2}\implies y=-\cfrac{7}{2}x+\cfrac{7}{2}+4\implies y=-\cfrac{7}{2}x+\cfrac{15}{2}

8 0
2 years ago
Asdhfj,..kjdsaDzfxhj,jhsaZ
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Step-by-step explanation:

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3 years ago
If P(A)=0.6, P(B)=0.3, and P(A and B)=0.18, find P(A or B).
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Answer:

The value of P(AUB) = 0.72

Step-by-step explanation:

As

  • P(A) = 0.6
  • P(B) = 0.3
  • P(A∩B) = 0.18

We can determine the value of P(A∩B) Using the formula

P(AUB) = P(A) + P(B) - P(A∩B)

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Therefore, the value of P(AUB) = 0.72

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4 years ago
What is the simplest form of of this expression?
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Step-by-step explanation:

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