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        <datestamp>2022-10-06T13:26:47Z</datestamp>
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              <creatorName>Lo, Sharp C. Y.</creatorName>
              <givenName>Sharp C. Y.</givenName>
              <familyName>Lo</familyName>
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            <creator>
              <creatorName>McCullough, Jon</creatorName>
              <givenName>Jon</givenName>
              <familyName>McCullough</familyName>
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            <creator>
              <creatorName>Coveney, Peter</creatorName>
              <givenName>Peter</givenName>
              <familyName>Coveney</familyName>
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          <titles>
            <title><![CDATA[Supplementary Figures]]></title>
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          <subjects>
            <subject>Computational methods in fluid flow, heat and mass transfer (incl. computational fluid dynamics)</subject>
            <subject>Biomedical engineering not elsewhere classified</subject>
            <subject>supplementary materials</subject>
            <subject>Computational Fluid Dynamics</subject>
            <subject>Biomedical Engineering not elsewhere classified</subject>
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            <date dateType="Created">2022-11-10</date>
            <date dateType="Updated">2023-06-14</date>
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          <publicationYear>2022</publicationYear>
          <publisher>University College London</publisher>
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            <description descriptionType="Abstract"><![CDATA[<p>This document presents additional figures supporting the analysis given in the main text of the referenced paper.</p>
<p><br></p>
<p>Here we show the effects of the capacitance (C) and grid resolution on the temporal average of the flow rate (Q) ratios, and the effects of C on the convergence rates of the Q ratios.</p>]]></description>
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