No, in Metaphase the chromosomes align in the center of the cell in association with the spindle fibers, and PREPARE to duplicate during the next phase of Mitosis, which is Anaphhase.
The chromosomes are developing to duplicate throughout all phases of mitosis up until Anaphase when the chromosomes split into two and cytokinesis begins to take place so that two new cells will be formed.
In metaphase of mitosis, the number of chromosomes is equal to the number of duplicated chromosomes. However, in metaphase 2 of meiosis, the number of chromosomes is half that of the duplicated chromosomes, since meiosis involves two rounds of cell division to produce haploid cells.
Chromosomes do not duplicate during metaphase in the cell cycle. Chromosome duplication occurs during the S phase of interphase, before the cell enters mitosis. During metaphase, the duplicated chromosomes align at the center of the cell before separating into two daughter cells during anaphase.
The S phase in the interphase. Chromosomes are copied in the interphase part of the cell cycle S phase would be the answer. It is during Interphase (G1, S, G2) that they are copied. SO dependant on your answers it's either interphase or S.
The stage of mitosis when the chromatids are visible is the metaphase stage. During metaphase, the duplicated chromosomes line up along the center of the cell, with their chromatids attached to the spindle fibers.
Metaphase 1 is the phase of mitosis when the chromosomes line up along the equator. Homologous chromosomes line up in the middle of the cell, then spindle fibers attach onto the homologous chromosome.
Duplicated chromosomes line up across the center of the cell during metaphase of mitosis or metaphase II of meiosis. This alignment is crucial for ensuring that each daughter cell receives the correct number of chromosomes during cell division.
In metaphase of mitosis, the number of chromosomes is equal to the number of duplicated chromosomes. However, in metaphase 2 of meiosis, the number of chromosomes is half that of the duplicated chromosomes, since meiosis involves two rounds of cell division to produce haploid cells.
In prophase they begin to coil, but they forms the X shape and line up on the metaphase plate during metaphase.
This phase of mitosis is called metaphase. During metaphase, the microtubules from opposite poles of the cell attach to the centromeres of the chromosomes. The microtubules then exert force to align the chromosomes at the center of the cell, forming the metaphase plate.
Chromosomes do not duplicate during metaphase in the cell cycle. Chromosome duplication occurs during the S phase of interphase, before the cell enters mitosis. During metaphase, the duplicated chromosomes align at the center of the cell before separating into two daughter cells during anaphase.
metaphase 2
There are two chromosome that are at the metaphase II equator. Chromosomes are already duplicated and are homologous pairs in Metaphase II.
If the spindle fiber were disrupted, the duplicated chromosomes would not be separated.
metaphase
The S phase in the interphase. Chromosomes are copied in the interphase part of the cell cycle S phase would be the answer. It is during Interphase (G1, S, G2) that they are copied. SO dependant on your answers it's either interphase or S.
The stage of mitosis when the chromatids are visible is the metaphase stage. During metaphase, the duplicated chromosomes line up along the center of the cell, with their chromatids attached to the spindle fibers.
The short second phase of mitosis is called the metaphase. During metaphase, the duplicated chromosomes align and attach to the spindle fibers at the center of the cell. This alignment ensures that during the following phase, anaphase, each daughter cell receives an equal number of chromosomes.