\"\"

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The equation is \"\".

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Solve the equation.

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\"\"                               (Original equation)

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

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

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\"\"                       (Square on each side)

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\"\"                               (Cancel square and root)

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\"\"                        (Apply difference of squares: \"\")

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\"\"                       (Evaluate power \"\")

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

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

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

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

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\"\"                     (Factors of equation)

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\"\"                    (Factors of group terms)

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\"\"                           (Take out common terms)

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\"\" and \"\"                 (Separate solutions)

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\"\" and \"\"                            (Simplify)

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Therefore, the value of \"\" are \"\" and \"\".

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\"\"

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Check the solution for \"\"-values:

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Case(i): \"\"

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\"\"                              (Original equation) 

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\"\"                          (Substitute \"\" in the equation)

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\"\"                              (Multiply)

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

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\"\"                                       (Substitute: \"\")

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\"\"                                             (Substitute: \"\")

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Therefore the value of \"\" is \"\" does not satisified the equation.

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Case(ii): \"\"

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\"\"                            (Original equation) 

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\"\"                   (Substitute \"\" in the equation)

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\"\"                       (Multiply)

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

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\"\"                                  (Substitute: \"\")

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\"\"                                      (Substitute: \"\")

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Therefore, the value of \"\" is \"\" satisified the equation.

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\"\"

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The value of \"\" is \"\".