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Metaphase 1
The nuclear membrane is reformed and the spindle disappears, cytokinesis occurs and the result is four haploid cells
The spindle forms and the duplicated chromosomes move towards the middle of the cell
Growth Phase
Sister chromatids join and make homologous pairs, crossing over
homologous pairs line up at the center of the cell, spindle fibers attach
centromeres split, chromatids move toward opposite sides of the cell
chromosomes are on the opposite sides of the cell, membrane reforms, spindle fiber disappear
DNA is copied prior to division
Prophase II
The nuclear membrane is reformed and the spindle disappears, cytokinesis occurs and the result is four haploid cells
The spindle forms and the duplicated chromosomes move towards the middle of the cell
Growth Phase
Sister chromatids join and make homologous pairs, crossing over
homologous pairs line up at the center of the cell, spindle fibers attach
centromeres split, chromatids move toward opposite sides of the cell
chromosomes are on the opposite sides of the cell, membrane reforms, spindle fiber disappear
DNA is copied prior to division
Telophase II
The nuclear membrane is reformed and the spindle disappears, cytokinesis occurs and the result is four haploid cells
The spindle forms and the duplicated chromosomes move towards the middle of the cell
Growth Phase
Sister chromatids join and make homologous pairs, crossing over
homologous pairs line up at the center of the cell, spindle fibers attach
centromeres split, chromatids move toward opposite sides of the cell
chromosomes are on the opposite sides of the cell, membrane reforms, spindle fiber disappear
DNA is copied prior to division
Telophase
The nuclear membrane is reformed and the spindle disappears, cytokinesis occurs and the result is four haploid cells
The spindle forms and the duplicated chromosomes move towards the middle of the cell
Growth Phase
Sister chromatids join and make homologous pairs, crossing over
homologous pairs line up at the center of the cell, spindle fibers attach
centromeres split, chromatids move toward opposite sides of the cell
chromosomes are on the opposite sides of the cell, membrane reforms, spindle fiber disappear
DNA is copied prior to division
Interphase 1
The nuclear membrane is reformed and the spindle disappears, cytokinesis occurs and the result is four haploid cells
The spindle forms and the duplicated chromosomes move towards the middle of the cell
Growth Phase
Sister chromatids join and make homologous pairs, crossing over
homologous pairs line up at the center of the cell, spindle fibers attach
centromeres split, chromatids move toward opposite sides of the cell
chromosomes are on the opposite sides of the cell, membrane reforms, spindle fiber disappear
DNA is copied prior to division
Anaphase
The nuclear membrane is reformed and the spindle disappears, cytokinesis occurs and the result is four haploid cells
The spindle forms and the duplicated chromosomes move towards the middle of the cell
Growth Phase
Sister chromatids join and make homologous pairs, crossing over
homologous pairs line up at the center of the cell, spindle fibers attach
centromeres split, chromatids move toward opposite sides of the cell
chromosomes are on the opposite sides of the cell, membrane reforms, spindle fiber disappear
DNA is copied prior to division
Prophase 1
The nuclear membrane is reformed and the spindle disappears, cytokinesis occurs and the result is four haploid cells
The spindle forms and the duplicated chromosomes move towards the middle of the cell
Growth Phase
Sister chromatids join and make homologous pairs, crossing over
homologous pairs line up at the center of the cell, spindle fibers attach
centromeres split, chromatids move toward opposite sides of the cell
chromosomes are on the opposite sides of the cell, membrane reforms, spindle fiber disappear
DNA is copied prior to division
G1
The nuclear membrane is reformed and the spindle disappears, cytokinesis occurs and the result is four haploid cells
The spindle forms and the duplicated chromosomes move towards the middle of the cell
Growth Phase
Sister chromatids join and make homologous pairs, crossing over
homologous pairs line up at the center of the cell, spindle fibers attach
centromeres split, chromatids move toward opposite sides of the cell
chromosomes are on the opposite sides of the cell, membrane reforms, spindle fiber disappear
DNA is copied prior to division
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