\"\"

\

The system of equations are \"\", \"\" and \"\".

\

Solve the system of equations by elimination method.

\

Step 1:

\

Eliminate one variable by using two pairs of equations.

\

\"\"

\

Add the 2nd and 3rd equations to eliminate a variable.

\

\"\"

\

Step 2:

\

Solve the system of two equations containing \"\" and \"\" tfind \"\" value.

\

\"\"

\

\"\"                        (Divide each side by \"\")

\

\"\"                                           (Cancel common terms)

\

Substitute \"\" into system of equation of \"\" and \"\" to find \"\" value.

\

\"\"                             (Simplified equation)

\

\"\"                       (Substitute \"\")

\

\"\"                               (Multiply)

\

\"\"               (Add \"\" to each side)

\

\"\"                                       (Apply additive inverse property: \"\")

\

\"\"                                  (Divide each side by \"\")

\

\"\"                                              (Cancel common terms)

\

Step 3:

\

Substitute values of \"\" and \"\" into one of the original equation to find \"\" value.

\

\"\"                     (Second equation)

\

\"\"             (Substitute \"\" and \"\")

\

\"\"                     (Multiply)

\

\"\"                               (Subtract: \"\" )

\

\"\"                   (Subtract \"\" from each side)

\

\"\"                                     (Apply additive inverse property: \"\")

\

\"\"                                (Divide each side by \"\")

\

\"\"                                          (Cancel common terms)

\

Therefore, the solution is \"\", \"\" and \"\".

\

\"\"

\

Check solutions for \"\" and \"\" values.

\

\"\"                     (Second equation)

\

\"\"        (Substitute \"\", \"\" and \"\")

\

\"\"                   (Multiply)

\

\"\"                                (Subtract: \"\")

\

\"\"                                   (Simplify)

\

\"\"

\

The solution of the system is \"\".