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<p>in a certain neighborhood of a point  with  odd and , is that   for  and . Then  has a point of inflection at .<br/>
# Another more general sufficient existence condition requires  and  to have opposite signs in the neighborhood of&nbsp; (<a href="page.php?w=Bronshtein_and_Semendyayev">Bronshtein and Semendyayev</a> 2004, p.&nbsp;231).</p>

<p><big>Categorization of points of inflection</big></p>
<p><a href="page.php?w=Image%3AX_to_the_4th_minus_x.svg">thumb</a>Points of inflection can also be categorized according to whether  is zero or nonzero.<br/>
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