\"\"

\

The sum of the two numbers is \"\"and product is \"\".

\

Let \"\" and \"\" are two numbers.

\

Hence the sum of the two numbers is \"\" such that the equation is  \"\".

\

The product of the two numbers is \"\" such that the equation is \"\".

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\"\"                               (Substitute  \"\")

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\"\"                                 (Distributive property)

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\"\"          (Add \"\" on each side)

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

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Consider the related function \"\".

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The standard form of quadratic function \"\", where \"\".

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\"\" and \"\".

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\"\"

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Make a table using \"\" values near \"\".

\ \
\ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \
\"\"\"\"\"\"\"\"\"\"\"\"
\"\"\"\"\"\"\"\"\"\"\"\"
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Graph:

\

Plot the points obtained in the table.

\

Graph the function \"\":

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\"\"

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Observe the graph:

\

The graph touches the \"\"-axis at \"\" and \"\".

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Therefore, the solutions of the equation are \"\" and \"\".

\

\"\"

\

The solutions of the equation are \"\" and \"\".