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<div class="moz-cite-prefix">I meant to ask:</div>
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<div class="moz-cite-prefix">"What is the role the new 10.6 GeV data
play in the extrapolation from 4.5GeV^2 to 6GeV^2 ?"</div>
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<div class="moz-cite-prefix">V.</div>
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<div class="moz-cite-prefix">On 1/10/20 3:50 PM, burkert wrote:<br>
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<blockquote type="cite"
cite="mid:bece5869-9c31-9688-7154-db7cd70a5222@jlab.org">
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<div class="moz-cite-prefix">From 4.5GeV^2 to 6GeV^2 is a more
modest extrapolation. But is the role the 10.6 GeV data then
play in that extrapolation?</div>
<div class="moz-cite-prefix">V.</div>
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<div class="moz-cite-prefix">On 1/10/20 3:47 PM, Viktor Mokeev
wrote:<br>
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<blockquote type="cite"
cite="mid:BY5PR09MB385800E176B578994FD90404B4380@BY5PR09MB3858.namprd09.prod.outlook.com">
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<div style="font-family: Calibri, Arial, Helvetica, sans-serif;
font-size: 12pt; color: rgb(0, 0, 0);"> Hi Volker and Ken,</div>
<div style="font-family: Calibri, Arial, Helvetica, sans-serif;
font-size: 12pt; color: rgb(0, 0, 0);"> <br>
</div>
<div style="font-family: Calibri, Arial, Helvetica, sans-serif;
font-size: 12pt; color: rgb(0, 0, 0);"> Our framework
published in PRC does allow us to extrapolate the N*
contribution towards Q^2=6.0 GeV^2. I propose Ken change the
upper boundary for the resonant contribution extrapolation.</div>
<div style="font-family: Calibri, Arial, Helvetica, sans-serif;
font-size: 12pt; color: rgb(0, 0, 0);"> <br>
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<div style="font-family: Calibri, Arial, Helvetica, sans-serif;
font-size: 12pt; color: rgb(0, 0, 0);"> Best Regards,<br>
</div>
<div style="font-family: Calibri, Arial, Helvetica, sans-serif;
font-size: 12pt; color: rgb(0, 0, 0);"> <br>
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<div style="font-family: Calibri, Arial, Helvetica, sans-serif;
font-size: 12pt; color: rgb(0, 0, 0);">
Victor<br>
</div>
<div style="font-family: Calibri, Arial, Helvetica, sans-serif;
font-size: 12pt; color: rgb(0, 0, 0);"> <br>
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<hr style="display:inline-block;width:98%" tabindex="-1">
<div id="divRplyFwdMsg" dir="ltr"><font style="font-size:11pt"
face="Calibri, sans-serif" color="#000000"><b>From:</b>
Clas12_first_exp <a class="moz-txt-link-rfc2396E"
href="mailto:clas12_first_exp-bounces@jlab.org"
moz-do-not-send="true"><clas12_first_exp-bounces@jlab.org></a>
on behalf of burkert <a class="moz-txt-link-rfc2396E"
href="mailto:burkert@jlab.org" moz-do-not-send="true"><burkert@jlab.org></a><br>
<b>Sent:</b> Friday, January 10, 2020 3:43 PM<br>
<b>To:</b> <a class="moz-txt-link-abbreviated"
href="mailto:clas12_first_exp@jlab.org"
moz-do-not-send="true">clas12_first_exp@jlab.org</a> <a
class="moz-txt-link-rfc2396E"
href="mailto:clas12_first_exp@jlab.org"
moz-do-not-send="true"><clas12_first_exp@jlab.org></a><br>
<b>Subject:</b> Re: [Clas12_first_exp] APS abstract from Ken</font>
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<div class="x_moz-cite-prefix">I am sorry, but I seem to miss
some part in that abstract. <br>
</div>
<div class="x_moz-cite-prefix">What framework enables us to <b>extrapolate</b>
the resonance contribution at Q^2 up to<b> 4.5GeV^2 </b>to
a Q^2 up to <b>1</b><b>0GeV^2 </b>and <b>with small
systematic uncertainties? <br>
</b></div>
<div class="x_moz-cite-prefix"><br>
</div>
<div class="x_moz-cite-prefix">Volker</div>
<div class="x_moz-cite-prefix"><b><br>
</b></div>
<div class="x_moz-cite-prefix"><br>
</div>
<div class="x_moz-cite-prefix"><br>
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<div class="x_moz-cite-prefix"><br>
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<div class="x_moz-cite-prefix">On 1/10/20 3:27 PM, Latifa
Elouadrhiri wrote:<br>
</div>
<blockquote type="cite">Dear all, <br>
<br>
Please see in the link below the abstract to APS from Ken
for your review and comment. <br>
<br>
<a class="x_moz-txt-link-freetext"
href="https://userweb.jlab.org/~hicks/Hicks_Abstract_April2020.rtf"
moz-do-not-send="true">https://userweb.jlab.org/~hicks/Hicks_Abstract_April2020.rtf</a>
<br>
Best regards, <br>
<br>
Latifa <br>
<br>
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<br>
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<pre class="moz-quote-pre" wrap="">_______________________________________________
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<a class="moz-txt-link-freetext" href="https://mailman.jlab.org/mailman/listinfo/clas12_first_exp">https://mailman.jlab.org/mailman/listinfo/clas12_first_exp</a>
</pre>
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