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      <title>mitosis by Brittany Owings</title>
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      <description>A wall with sections</description>
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      <pubDate>2023-11-21 18:30:31 UTC</pubDate>
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         <title>Interphase: DNA replication occurs.</title>
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         <pubDate>2023-11-21 19:56:43 UTC</pubDate>
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         <title>Interphase: DNA replication occurs.</title>
         <author>brittdj123_</author>
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         <pubDate>2023-11-21 19:57:24 UTC</pubDate>
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         <author>brittdj123_</author>
         <link>https://padlet.com/brittdj123_/d9hzvlnxc7fd0vqu/wish/2798414120</link>
         <description><![CDATA[Prophase II: The nuclear envelope breaks down again.
Metaphase II: Chromosomes line up at the cell's equator.
Anaphase II: Sister chromatids separate and move to opposite poles.
Telophase II: The cell divides again, resulting in four daughter cells, each with half the number of chromosomes of the original cell.]]></description>
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         <pubDate>2023-11-21 20:05:45 UTC</pubDate>
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         <author>brittdj123_</author>
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         <pubDate>2023-11-21 20:07:40 UTC</pubDate>
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         <title></title>
         <author>brittdj123_</author>
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         <description><![CDATA[Interphase: DNA replication occurs.
Prophase: Chromosomes condense, the nuclear envelope breaks down, and spindle fibers form.
Metaphase: Chromosomes align along the cell's equator.
Anaphase: Sister chromatids separate and move to opposite poles of the cell.
Telophase: Chromosomes arrive at the poles, the nuclear envelope reforms, and cytokinesis occurs, resulting in two daughter cells.]]></description>
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         <pubDate>2023-11-21 20:08:17 UTC</pubDate>
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         <description><![CDATA[Crossing over: During prophase I of meiosis, homologous chromosomes pair up and exchange segments of genetic material. This results in the shuffling of genetic information between homologous chromosomes, leading to genetic variation in the resulting gametes.

Independent assortment: During metaphase I of meiosis, homologous pairs of chromosomes line up independently at the cell's equator. The orientation of each pair is random and independent of the orientation of other chromosome pairs. As a result, the combination of maternal and paternal chromosomes that end up in a gamete is random, leading to a wide variety of genetic combinations.


Mendel's law of independent assortment states that the inheritance of one trait is independent of the inheritance of another. This law can be explained by the random orientation of different chromosome pairs during metaphase I of meiosis, leading to the independent assortment of genes located on non-homologous chromosomes. As a result, different genes segregate into gametes independently, contributing to the genetic variation observed in offspring.]]></description>
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         <pubDate>2023-11-21 20:16:20 UTC</pubDate>
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