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      <title>meiosis by Elizabeth Smolka</title>
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      <description>Made with love</description>
      <language>en-us</language>
      <pubDate>2018-03-01 13:51:42 UTC</pubDate>
      <lastBuildDate>2018-03-01 14:13:50 UTC</lastBuildDate>
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         <title>Meiosis 1</title>
         <author>elizsmolka</author>
         <link>https://padlet.com/elizsmolka/zxs8rkzoepjo/wish/236895886</link>
         <description><![CDATA[<div><figure class="attachment attachment--preview" data-trix-attachment="{&quot;contentType&quot;:&quot;image&quot;,&quot;height&quot;:206,&quot;url&quot;:&quot;http://1.bp.blogspot.com/-gdcaNJzjusw/UFySk84MFII/AAAAAAAAAXE/a5LrHRHLvxQ/s1600/Meiosis+I.jpg&quot;,&quot;width&quot;:496}" data-trix-content-type="image"><img src="http://1.bp.blogspot.com/-gdcaNJzjusw/UFySk84MFII/AAAAAAAAAXE/a5LrHRHLvxQ/s1600/Meiosis+I.jpg" width="496" height="206"><figcaption class="attachment__caption"></figcaption></figure>Steps of Meisos&nbsp;</div><div>Prophase 1<br>Metaphase 1 <br>Anaphase 1<br>Telophase 1 and Cytokenises <br>Defination of Homologous chromosome: <strong>Homologous chromosomes</strong> are <strong>chromosome</strong> pairs (one from each parent) that are similar in length, gene position, and centromere location<br>Brief description of phases of meiosis 1:<br> Prophase I. The chromosomes condense, and the nuclear envelope breaks down<br>Metaphase I. Pairs of homologous chromosomes move to the equator of the cell<br>Anaphase 1: Homologous chromosomes move to opposite poles of the cell&nbsp;<br>Telophase 1 and cytokensis: Chromosomes gather at the poles of the cells, the cytoplasm divides <br><br></div>]]></description>
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         <pubDate>2018-03-01 13:55:00 UTC</pubDate>
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         <title>Crossing over: </title>
         <author>elizsmolka</author>
         <link>https://padlet.com/elizsmolka/zxs8rkzoepjo/wish/236900038</link>
         <description><![CDATA[<div>Crossing over is process in genetics by which the two chromosomes of a homologous pair exchange equal segments with each other</div>]]></description>
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         <pubDate>2018-03-01 14:02:03 UTC</pubDate>
         <guid>https://padlet.com/elizsmolka/zxs8rkzoepjo/wish/236900038</guid>
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         <title>Haploid Cell </title>
         <author>elizsmolka</author>
         <link>https://padlet.com/elizsmolka/zxs8rkzoepjo/wish/236900968</link>
         <description><![CDATA[<div>an organism or cell having only one complete set of chromosomes, ordinarily half the normal diploid number.</div>]]></description>
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         <pubDate>2018-03-01 14:03:34 UTC</pubDate>
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         <title>Diploid Cell </title>
         <author>elizsmolka</author>
         <link>https://padlet.com/elizsmolka/zxs8rkzoepjo/wish/236901330</link>
         <description><![CDATA[<div>A cell with two sets of chromosomes </div>]]></description>
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         <pubDate>2018-03-01 14:04:12 UTC</pubDate>
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         <title>Meiosis 2 </title>
         <author>elizsmolka</author>
         <link>https://padlet.com/elizsmolka/zxs8rkzoepjo/wish/236902453</link>
         <description><![CDATA[<div><figure class="attachment attachment--preview" data-trix-attachment="{&quot;contentType&quot;:&quot;image&quot;,&quot;height&quot;:245,&quot;url&quot;:&quot;https://images.tutorvista.com/cms/images/123/meiosis-2.jpeg&quot;,&quot;width&quot;:454}" data-trix-content-type="image"><img src="https://images.tutorvista.com/cms/images/123/meiosis-2.jpeg" width="454" height="245"><figcaption class="attachment__caption"></figcaption></figure>Prophase 2: Spindle fibers reform and attach to centromeres in prophase II.</div><div>Metaphase 2: The chromosomes align on the metaphase plate during metaphase II in preparation for centromeres to divide in the next phase.</div><div>Anaphase 2: chromosomes divide at the centromeres (like in mitosis) and the resulting chromosomes, each with one chromatid, move toward opposite poles of the cell.<br>Telophase 2: Division of the cytoplasm during cytokinesis results in four haploid cells<br>Picture of homologous chromsome</div><div><figure class="attachment attachment--preview" data-trix-attachment="{&quot;contentType&quot;:&quot;image&quot;,&quot;height&quot;:285,&quot;url&quot;:&quot;http://www.phschool.com/science/biology_place/labbench/lab3/images/homologs.gif&quot;,&quot;width&quot;:245}" data-trix-content-type="image"><img src="http://www.phschool.com/science/biology_place/labbench/lab3/images/homologs.gif" width="245" height="285"><figcaption class="attachment__caption"></figcaption></figure></div>]]></description>
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         <pubDate>2018-03-01 14:06:13 UTC</pubDate>
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         <title>Picture of crossing over </title>
         <author>elizsmolka</author>
         <link>https://padlet.com/elizsmolka/zxs8rkzoepjo/wish/236905449</link>
         <description><![CDATA[<div><figure class="attachment attachment--preview" data-trix-attachment="{&quot;contentType&quot;:&quot;image&quot;,&quot;height&quot;:386,&quot;url&quot;:&quot;http://ib.bioninja.com.au/_Media/crossing-over_med.jpeg&quot;,&quot;width&quot;:720}" data-trix-content-type="image"><img src="http://ib.bioninja.com.au/_Media/crossing-over_med.jpeg" width="720" height="386"><figcaption class="attachment__caption"></figcaption></figure></div>]]></description>
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         <pubDate>2018-03-01 14:11:40 UTC</pubDate>
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         <title>Picture of haploid and diploid cell </title>
         <author>elizsmolka</author>
         <link>https://padlet.com/elizsmolka/zxs8rkzoepjo/wish/236905942</link>
         <description><![CDATA[<div><figure class="attachment attachment--preview" data-trix-attachment="{&quot;contentType&quot;:&quot;image&quot;,&quot;height&quot;:363,&quot;url&quot;:&quot;http://ib.bioninja.com.au/_Media/haploid-vs-diploid_med.jpeg&quot;,&quot;width&quot;:720}" data-trix-content-type="image"><img src="http://ib.bioninja.com.au/_Media/haploid-vs-diploid_med.jpeg" width="720" height="363"><figcaption class="attachment__caption"></figcaption></figure></div>]]></description>
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         <pubDate>2018-03-01 14:12:25 UTC</pubDate>
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