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tia_tia [17]
3 years ago
15

Frederick Griffith made a scientific discovery in 1928. Which best describes

Biology
1 answer:
VladimirAG [237]3 years ago
6 0

Answer:

Frederick Griffith's discovery on the theory of genetics is credited to his experiment on mice. He subjected them to different strains of pneumonia bacteria. He concluded that there is an unidentified force that leads to the formation of different strains from what the mice were subjected to. This leads to the discovery of DNA, the carrier of traits. Scientist before did not know how the trait is passed on not until Griffith's experiment.

Explanation:

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An organism in its niche within an ecosystem is similar to?
Ber [7]

An organism in its niche within an ecosystem is similar to a baseball player in his position on the baseball team.

<h3>NICHE:</h3>

Niche in biology refers to the specific role or position of an organism in its ecosystem or habitat.

The niche of an organism is specific or particular to that organism and this enables it to adapt and survive in its environment.

This explanation shows that niche can be likened to a baseball player in his specific position on the baseball team.

Learn more about niche at: brainly.com/question/814740

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What are synonyms for scientific law
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A structured procedure for collecting information to test a hypothesis is a(n) _____.select one:
almond37 [142]
D. experiment. In the scientific method, after you form a hypothesis, you test your hypothesis with an experiment.
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Critical thinking. I am very tiny and can only be seen under a microscope.
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3 years ago
1. The effect of initial population sizes on the growth of populations of an organism was
ella [17]

When graphing data, we must consider the variables, label axes, define units of measure. In this case, variables are initial population size / final population size, showing an directly proportional relationship.

-------------------------------------

We need to construct a graph illustrating the data in the table.

We can make a <u>dispersion graph</u>. To do it, we need to define variables.

Since we want to know how <em>different initial population sizes affect population growth, </em>

  • the independent variable is the initial population size
  • the dependent variable is the final population size (after 24 hours)

The final population size depends on the initial population size. This is, <em>the number of individuals at the beginning will </em><em>influence</em><em> the final number of individuals</em>.

  • Initial population sizes ⇒X horizontal ax ⇒Unit: Number of individuals
  • Final population sizes ⇒ Y vertical ax ⇒ Unit: Number of individuals

By making a dispersion graph, we can represent the effect of the varying initial population sizes on the final population sizes. We can compare these effects and observe how populations grow as the N₀ increases.

We can also choose a <u>bar graph</u>. In this way, we can compare initial and final population sizes.

This graph will show populations and two bars per population.

  • Blue bar ⇒N₀⇒ Initial population size
  • Red bar ⇒N₁ ⇒ Final population size
  • Different populations ⇒ 1, 2, 3, 4, 5 ⇒ Represented in the X horizontal ax
  • The number of individuals ⇒ from 1 to 324 ⇒ Represented in the Y vertical ax.

By making a bar graph, we can represent initial and final population sizes and compare them. <em>The population that begins with 1 individual, after 24 hours has 4 individuals. The population that begins with 3 individuals, ends with 9 individuals. And so on</em>.

No matter which graph you choose, you will observe a directly proportional relationship between both variables. The bigger is the initial population size, the bigger it ends after 24 hs.

---------------------------------

Related link: brainly.com/question/24827485

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5 0
3 years ago
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