X° +110° = 180* . . . . . "linear" angles
x = 70
x° +112° +y* +88° = 360° . . . . . sum of interior angles of a quadrilateral
y° +270° = 360°
y = 90
The values of the variables are
.. x = 70
.. y = 90
This would practically be very reliable of course. We can see in the sentence above that y and x, and x and y are both depending on each other. So, now that this has been considered, we can see that whenever "x" would be a certain number, this would show you that "y" would also be a certain number, and depending how much "x" or "y" would move, it would also change these variable no matter how they move.
This would be a matter of division. As we can see above on how 9 and 15 could be divisible down the line as they multiply.
Therefore, we would then see how many times would "x" which is 9, how many times that would go in 33.
Let's start!

We take this "3.6" away from this, and we would plug it into "y".
We then do the following:

Therefore, when "x" = 33, "y" would then equal 55.
Your answer:
Answer: C
Step-by-step explanation: The standard equation is Ax + By = C
To solve for this, first solve for the slope: y2 - y1 / x2 - x1
0 - 5 / 4 - 0 = -5 / 4
Plug the slope and ordered pair of (0, 5) into the equation y - y1 = m(x - x1)
y - 5 = -5/4(x - 0)
Add 5 to both sides: y = -5/4x + 5
Subtract y and 5: -5 = -5/4x - y
Multiply the entire equation by 4: -20 = -5x - 4y
(or multiply entire equation by -4 to get 20 = 5x + 4y)
J = 9 because 2007 / 223 = 9, and when you multiply 223 x 9, you get 2007
Answer:
B
Step-by-step explanation: