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1. collect data: set the cycle length to 10 hours and click play. click…

Question

  1. collect data: set the cycle length to 10 hours and click play. click pause when the maximum number of cells has been reached. on the table tab, click record data.

record the number of cells in each phase of the cell cycle in the table below. then click play, wait for a while, and click record data again. repeat this process until you have recorded four sets of results, and then find the average number of cells in each phase. (add up all 4 trials of each stage and divide by 4 = average)

trialinterphaseprophasemetaphaseanaphasetelophasecytokinesis
2
3
4
avg
  1. analyze

which phase of the cell cycle is longest? interphase. shortest?
explain

Explanation:

Step1: Record data

Record the number of cells in each phase for 4 trials as per the instructions.

Step2: Calculate average

For each phase, add up the number of cells from the 4 trials and divide by 4. For example, if for Inter - phase the counts in 4 trials are $n_1$, $n_2$, $n_3$, $n_4$, the average $\bar{n}=\frac{n_1 + n_2 + n_3 + n_4}{4}$.

Step3: Compare averages

Compare the average number of cells in each phase (Interphase, Prophase, Metaphase, Anaphase, Telophase, Cytokinesis) to determine the longest and shortest phases. Typically, Interphase is the longest phase of the cell - cycle as it is a growth and preparation phase. The shortest phase can vary depending on the cell type, but often Anaphase is relatively short as it is the phase of chromosome separation.

Answer:

The longest phase is usually Interphase. To find the shortest phase, compare the calculated average values for all phases. The explanation for the longest phase being Interphase is that it is a period of cell growth, DNA replication, and preparation for cell division. The shortest phase depends on the data collected, but Anaphase is often among the shortest as it involves the rapid separation of sister chromatids.