Answer: -0.5.
Step-by-step explanation:
The constant of variation k for the direct variation is given by:-
![k= \dfrac{f(x_2)}{x_2}=\dfrac{f(x_1)}{x_1}](https://tex.z-dn.net/?f=k%3D%20%5Cdfrac%7Bf%28x_2%29%7D%7Bx_2%7D%3D%5Cdfrac%7Bf%28x_1%29%7D%7Bx_1%7D)
The given table:
x f( x )
0 0
2 -1
4 -2
7 -3.5
Then,
![k=\dfrac{-1}{2}=\dfrac{-2}{4}=\dfrac{7}{-3.5}=-0.5](https://tex.z-dn.net/?f=k%3D%5Cdfrac%7B-1%7D%7B2%7D%3D%5Cdfrac%7B-2%7D%7B4%7D%3D%5Cdfrac%7B7%7D%7B-3.5%7D%3D-0.5)
Hence, the constant of variation k for the direct variation is -0.5.
You've got five different problems in this photo ... four on top and the word problem on the bottom ... and they're all exactly the same thing: Taking two points and finding the slope of the line that goes through them.
In every case, the procedure is the same.
If the two points are (x₁ , y₁) and (x₂ , y₂) , then
the slope of the line that goes through them is
Slope = (y₂ - y₁) / (x₂ - x₁) .
This is important, and you should memorize it.
#1). (8, 10) and (-7, 14)
Slope = (14 - 10) / (-7 - 8) = 4 / -15
#2). (-3, 1) and (-17, 2)
Slope = (2 - 1) / (-17 - -3) = (2 - 1) / (-17 + 3) = 1 / -14
#3). (-20, -4) and (-12, -10)
Slope = [ -10 - (-4) ] / [ -12 - (-20) ]
=========================================
The word problem:
This question only gives you one point on the graph,
and then it wants to know what's the slope ?
What are you going to do for another point ?
A "proportional relationship" always passes through the origin,
so another point on the line is (0, 0) .
Now you have two points on THAT line too, and you can easily
find its slope.
Answer: 9
Step-by-step explanation:
M=3 and the equation is 3m so your going to multiply. So the equation would be 3*3 and 3*3=9 so that's your answer
Step-by-step explanation:
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