QUESTION IMAGE
Question
solving systems of linear elimination day 1
- $-2x - 8y = 10$
$2x - 6y = 18$
- $3x - y = -2$
$-2x + y = 3$
- $2x + 5y = -24$
$3x - 5y = 14$
- $-6x + 2y = 8$
$6x + 3y = -3$
- $-2x + 3y = -23$
$x - 3y = 16$
- $6x - 3y = 12$
$-5x + 3y = -5$
Problem 1: Solve \(
$$\begin{cases}-2x - 8y = 10\\2x - 6y = 18\end{cases}$$
\)
Step 1: Eliminate \(x\) by adding the two equations.
Adding \(-2x - 8y = 10\) and \(2x - 6y = 18\):
$$
LATEXBLOCK0
$$
Step 2: Solve for \(y\).
Divide both sides by \(-14\):
$$
y = \frac{28}{-14} = -2
$$
Step 3: Substitute \(y = -2\) into one of the original equations (e.g., \(2x - 6y = 18\)) to solve for \(x\).
$$
LATEXBLOCK1
$$
Step 1: Eliminate \(y\) by adding the two equations.
Adding \(3x - y = -2\) and \(-2x + y = 3\):
$$
LATEXBLOCK0
$$
Step 2: Substitute \(x = 1\) into one of the original equations (e.g., \(3x - y = -2\)) to solve for \(y\).
$$
LATEXBLOCK1
$$
Step 1: Eliminate \(y\) by adding the two equations.
Adding \(2x + 5y = -24\) and \(3x - 5y = 14\):
$$
LATEXBLOCK0
$$
Step 2: Solve for \(x\).
Divide both sides by \(5\):
$$
x = \frac{-10}{5} = -2
$$
Step 3: Substitute \(x = -2\) into one of the original equations (e.g., \(2x + 5y = -24\)) to solve for \(y\).
$$
LATEXBLOCK1
$$
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\((3, -2)\)
Problem 2: Solve \(
$$\begin{cases}3x - y = -2\\-2x + y = 3\end{cases}$$
\)