Answer:
It is a caldera formed from a vent collapsing. It is a mud pot formed from pools of boiling, acidic mud. ... It is a geyser that formed due to water heated by magma erupting at Earth
Explanation:
It is a caldera formed from a vent collapsing. It is a mud pot formed from pools of boiling, acidic mud. ... It is a geyser that formed due to water heated by magma erupting at Earth
Answer:
<em>The organism will not be able to adapt, and the species will go extinct.</em>
Explanation:
I feel like we could rule out these two because they don´t make much sense.
The organism will not be able to adapt, and the species will evolve into a new species.
The organism will adapt, and the species will evolve into a new species.
so that leaves us with the other two answers and I believe the first one is the most fitting
An example I found to support this is that polar bears could disappear by 2100 due to melting ice, In this case, the polar bears are the species, and the melting ice is the rapid change. since they are so well adapted to their environment, they cannot adjust from such a major change.
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Answer:
The frequency of the dominant A allele is 0,4 or 40%.
Explanation:
In this population, we have:
- "A" red body color Dominant
- "a" yellow doy color Recessive
So, individuals AA and Aa will be red and trouts aa will be yellow. In this case, 64% of the fish are red, so they are AA or Aa.
If the population is in Hardy-Weinberg equilibrium the following will be true:

Where:
frequency of AA
frequency of Aa
frequency of aa
It is known that 64% of population is red, in other words:

Or AA+Aa=0,64
So, it is possible to find the value of
(aa):




Now, there are two alleles in this population, therefore their frequencies will be:

So, from
it is possible to find q and p:



And:

Answer:
30...365; observe the ratio.