A histogram or bar graph is typically used to depict the phenotypes for a typical polygenic trait. Each bar represents a different phenotype, with the height or length of the bar corresponding to the frequency of individuals with that phenotype in the population.
Stabilizing selection would result in a graph showing a peak at the intermediate phenotype, with fewer individuals at the extreme phenotypes. This is because individuals with intermediate phenotypes are favored, leading to the reduction of extreme phenotypes in the population over time.
A histogram or a bell curve would be suitable for representing a polygenic trait, as these traits are influenced by multiple genes and exhibit a continuous range of phenotypic values in a population.
Directional selection is shown on a graph as selection against an extreme. This occurs when individuals at one extreme of a trait distribution have lower fitness than individuals with intermediate phenotypes or those at the opposite extreme. Over time, this can lead to a shift in the average phenotype of a population.
The momentum-time graph is the integral of the force-time graph. that is, it is the area under the curve of the f-t graph.The momentum-time graph is the integral of the force-time graph. that is, it is the area under the curve of the f-t graph.The momentum-time graph is the integral of the force-time graph. that is, it is the area under the curve of the f-t graph.The momentum-time graph is the integral of the force-time graph. that is, it is the area under the curve of the f-t graph.
When graphing the lesson of the Kaibab, the typical shape observed is an "S" curve. This shape represents the population growth of deer on the Kaibab Plateau in response to changes in food availability and predation. Initially, the population increases rapidly, then levels off as it reaches carrying capacity.
The shaped graph that is associated with polygenic inheritance is a bell curve graph. The majority of these graphs are also combined with a bar graph under the curve.
Stabilizing selection would result in a graph showing a peak at the intermediate phenotype, with fewer individuals at the extreme phenotypes. This is because individuals with intermediate phenotypes are favored, leading to the reduction of extreme phenotypes in the population over time.
A histogram or a bell curve would be suitable for representing a polygenic trait, as these traits are influenced by multiple genes and exhibit a continuous range of phenotypic values in a population.
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The horizontal axis of a typical graph would be the "X-axis"
The graph likely shows a bell-shaped distribution of coat colors in the rabbit population, which is characteristic of polygenic traits. This distribution is the result of multiple genes influencing the trait, with most rabbits falling in the middle of the range and fewer at the extremes of the color spectrum.
There's no such thing as an 'average' graph, but we can talk about a typical one.The independent variable of an equation in one variable is typically plotted alongthe x-axis of a typical graph.
Stabilizing selection favors individuals with traits that are average or intermediate, reducing the frequency of extreme phenotypes. As a result, the distribution of phenotypes shifts towards the mean, leading to a narrower and taller bell-shaped curve on the graph. This change indicates a decrease in phenotypic variation, as the extremes are selected against, promoting a more uniform population. Over time, this stabilizing effect can enhance the fitness of the population in a stable environment.
On a typical graph, the vertical line is the y-axis, they horizontal line is the x-axis.
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See the related link to Wikipedia for a typical example. A bar graph - is simply a series of long rectangles representing pieces of data.