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Sagot :
Sure! Let's determine the value of [tex]\( f(3) \)[/tex] using the provided table.
We have the following values in the table:
[tex]\[ \begin{array}{|c|c|} \hline x & f(x) \\ \hline -3 & -9 \\ \hline -2 & -6 \\ \hline -1 & -3 \\ \hline 0 & 0 \\ \hline 1 & 3 \\ \hline 2 & 6 \\ \hline 3 & 9 \\ \hline \end{array} \][/tex]
To find [tex]\( f(3) \)[/tex], we locate the row where [tex]\( x = 3 \)[/tex] and find the corresponding [tex]\( f(x) \)[/tex]:
When [tex]\( x = 3 \)[/tex], the value of [tex]\( f(x) \)[/tex] is 9.
Thus, [tex]\( f(3) = 9 \)[/tex].
Among the given choices, the correct answer is:
[tex]\[ \boxed{9} \][/tex]
We have the following values in the table:
[tex]\[ \begin{array}{|c|c|} \hline x & f(x) \\ \hline -3 & -9 \\ \hline -2 & -6 \\ \hline -1 & -3 \\ \hline 0 & 0 \\ \hline 1 & 3 \\ \hline 2 & 6 \\ \hline 3 & 9 \\ \hline \end{array} \][/tex]
To find [tex]\( f(3) \)[/tex], we locate the row where [tex]\( x = 3 \)[/tex] and find the corresponding [tex]\( f(x) \)[/tex]:
When [tex]\( x = 3 \)[/tex], the value of [tex]\( f(x) \)[/tex] is 9.
Thus, [tex]\( f(3) = 9 \)[/tex].
Among the given choices, the correct answer is:
[tex]\[ \boxed{9} \][/tex]
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