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\"\"

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The equation is

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\"\"        

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The matrices have the same dimensions and the corresponding elements are equal.

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The equality can be written as a two linear equations

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\"\"                              Equation (1)

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\"\"                              Equation (2)

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\"\"                           Equation (3)

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\"\"

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The first equation is \"\"

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\"\"                   (Add 3 to each side).

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\"\"                        (Additive inverse property: \"\")

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\"\"                              (Additive identity property: \"\")

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\"\"                                 (Add: \"\")

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\"\"                            (Divide each side by 4)

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\"\"                                 (Cancel common terms)

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\"\"                                      (Divide: \"\")

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\"\"

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The second equation is \"\"

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\"\"                          (Divide each side by 3)

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\"\"                              (Cancel common terms))

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\"\"                                   (Divide;\"\")

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\"\"

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The third equation is \"\"

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\"\"                 (Subtract 1 from each side).

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\"\"                       (Additive inverse property: \"\")

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\"\"                             (Additive identity property: \"\")

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

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\"\"                             (Divide each side by 2)

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\"\"                                  (Cancel common terms)

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\"\"                                       (Divide: \"\")

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\"\"

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The solution is \"\"

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