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<a accesskey="1" href="page.php?w=Volumetric_flow_rate&amp;p=7">1.Previous</a><br />
<a accesskey="3" href="page.php?w=Volumetric_flow_rate&amp;p=9">3.Next</a>
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<p>becomes a <a href="page.php?w=surface_integral">surface integral</a>:<br/>
: </p>

<p>This is the definition used in practice. The <a href="page.php?w=area">area</a> required to calculate the volumetric flow rate is real or imaginary, flat or curved, either as a cross-sectional area or a surface. The <a href="page.php?w=vector_area">vector area</a> is a combination of the magnitude of the area through which the volume passes through, , and a <a href="page.php?w=unit_vector">unit vector</a> normal to the area, . The relation is .</p>

<p><big>Derivation</big></p><p>
<a accesskey="1" href="page.php?w=Volumetric_flow_rate&amp;p=7">1.Previous</a><br />
<a accesskey="3" href="page.php?w=Volumetric_flow_rate&amp;p=9">3.Next</a>
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