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    Hi everyone,<br>
    <br>
    the first Journal/Snack Club of 2017 will take place next Wednesday,
    January 18,  at 3:30 in the MOB Theory Room. We'll be discussing a
    paper with the rather long title:<br>
    "Role of the <span class="aps-inline-formula"><span
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                MJXc-TeX-main-R" style="padding-top: 0.417em;
                padding-bottom: 0.348em;">Δ</span></span></span></span></span></span>
    Resonance in the Population of a Four-Nucleon State in the <span
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            id="MJXc-Node-5" class="mjx-mrow"><span id="MJXc-Node-6"
              class="mjx-mrow"><span id="MJXc-Node-7" class="mjx-mrow"><span
                  id="MJXc-Node-8" class="mjx-mmultiscripts"><span
                    class="mjx-presup" style="vertical-align: 0.432em;
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                      id="MJXc-Node-11" class="mjx-mrow"
                      style="font-size: 70.7%;"><span id="MJXc-Node-12"
                        class="mjx-mn"><span class="mjx-char
                          MJXc-TeX-main-R" style="padding-top: 0.382em;
                          padding-bottom: 0.348em;">56</span></span></span></span><span
                    id="MJXc-Node-9" class="mjx-mrow"><span
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                        style="padding-top: 0.382em; padding-bottom:
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                id="MJXc-Node-13" class="mjx-mo MJXc-space3"><span
                  class="mjx-char MJXc-TeX-main-R" style="padding-top:
                  0.209em; padding-bottom: 0.348em;">→</span></span><span
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                  id="MJXc-Node-15" class="mjx-mmultiscripts"><span
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                      id="MJXc-Node-18" class="mjx-mrow"
                      style="font-size: 70.7%;"><span id="MJXc-Node-19"
                        class="mjx-mn"><span class="mjx-char
                          MJXc-TeX-main-R" style="padding-top: 0.382em;
                          padding-bottom: 0.348em;">54</span></span></span></span><span
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                      id="MJXc-Node-17" class="mjx-mi"><span
                        class="mjx-char MJXc-TeX-main-R"
                        style="padding-top: 0.382em; padding-bottom:
                        0.348em;">Fe</span></span></span></span></span></span></span></span></span></span>
    Reaction at Relativistic Energies"
    (<a class="moz-txt-link-freetext" href="http://journals.aps.org/prl/abstract/10.1103/PhysRevLett.117.222302">http://journals.aps.org/prl/abstract/10.1103/PhysRevLett.117.222302</a>)
    <br>
    <br>
    You can find the paper attached.<br>
    <br>
    Some terms that you should probably look up if you don't know them:<br>
    1. <span class="aps-inline-formula"><span
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          class="mjx-math"><span id="MJXc-Node-2" class="mjx-mrow"><span
              id="MJXc-Node-3" class="mjx-mi"><span class="mjx-char
                MJXc-TeX-main-R" style="padding-top: 0.417em;
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    Resonance<br>
    2. Ablation-Abrasion Model<br>
    3. Isomeric state<br>
    4. Fragment separator, magnetic rigidity, and achromatic mode<br>
    <br>
    Questions for the discussion<br>
    1. What is the "Universal Parametrization"?<br>
    2. What are the experimental arguments supporting the 10+-state
    being populated via the <span class="aps-inline-formula"><span
        id="MathJax-Element-1-Frame" class="mjx-chtml MathJax_CHTML"
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          class="mjx-math"><span id="MJXc-Node-2" class="mjx-mrow"><span
              id="MJXc-Node-3" class="mjx-mi"><span class="mjx-char
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    Resonance?<br>
    3. What causes the gigantic error bars in Figure 4?<br>
    4. "Other, higher-lying resonances might also play a role." Which
    ones?<br>
    <br>
    Hope to see you all on Wednesday!<br>
    <br>
    Matthias  <br>
    <br>
    <br>
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