\"\"

\

The function is \"\".

\

Differentiate the function with respect to \"\".

\

\"\".

\

Newtons approximation method formula : \"\".

\

\"\".

\

Perform newton approximation for \"\".

\

Newton Formula : \"\"

\

\"\"

\

\"\"

\

Similarly perform newton approximation for \"\".

\

Newton formula : \"\".

\

\"\"

\

Similarly Perform newton approximation for \"\".

\

Newton formula : \"\".

\

\"\"

\

\"\"

\

Newtons approximation method formula : \"\".

\

Perform newton approximation for \"\".

\

Newton Formula : \"\"

\

\"\"

\

Similarly perform newton approximation for \"\".

\

Newton formula : \"\".

\

\"\"

\

Similarly perform newton approximation for \"\".

\

Newton formula : \"\".

\

\"\"

\

\"\"

\

Graph :

\

Draw a coordinate plane.

\

Graph the function \"\".

\

\"\"

\

Observe the graph :

\

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

\

\

\"\"

\

\

The zeros of the function are \"\" and \"\".