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olga55 [171]
1 year ago
7

Hardy-weinberg equilibrium requires that the population size is and that mating is:________

Physics
1 answer:
Usimov [2.4K]1 year ago
3 0

In order for Hardy-Weinberg equilibrium to exist, a large population size and random mating are necessary.

<h3>How does Hardy-Weinberg equilibrium differ depending on population size?</h3>
  • Hardy-Weinberg equilibrium requires an extremely huge population, one of indefinite size.
  • To counteract the effects of genetic drift, this condition is necessary.
  • Genetic drift is defined as a shift in a population's allele frequencies that happens by chance rather than as a result of natural selection.
<h3>In a Hardy-Weinberg equilibrium, does random mating occur?</h3>

The Hardy-Weinberg Law asserts that both allele frequencies and genotype frequencies stay constant from generation to generation in a large, random-mating population that is not impacted by the evolutionary processes of mutation, migration, or selection.

learn more about Hardy-Weinberg equilibrium here

brainly.com/question/3406634

#SPJ4

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Hurricane Katrina and hurricane Rita are similar in what way? (I will give brainliest to the correct answer) :)
RoseWind [281]

Answer:

Rita and Katrina both followed similar paths into the Gulf.

Explanation:

4 0
3 years ago
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A bird is flying east at 5.2 kilometers/hour relative to the air. There's a crosswind blowing at 3.1 kilometers/hour toward the
alexandr402 [8]

Answer:

r=6.05km/hr

z=59.1 degree to the horizontal

Explanation:

A bird is flying east at 5.2 kilometers/hour relative to the air. There's a crosswind blowing at 3.1 kilometers/hour toward the south relative to the ground. What is the bird's velocity relative to the ground? State your answer to one decimal place

can be solved using pythagoras theorem

r^2=o^2+a^2

r^2=5.2^2+3.1^2

r^2=36.65

r=6.1km/hr is te birds velocity relative to the ground

tanz=5.2/3.1

z=tan^-1(5,2/3.1)

z=59.1 degree to the horizontal

7 0
3 years ago
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faltersainse [42]
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4 0
3 years ago
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According to Newton's third law, if you push on a wall, the wall ?
Lady bird [3.3K]

The wall will push back, in exactly the opposite direction, and with
exactly the same size force.

That's why the net force on the palm of your hand is zero, and that
in turn is the reason that your hand doesn't accelerate.

If you keep increasing the strength of your push, then eventually you
exceed the force that the wall is capable of delivering.  Then the wall
crumbles and falls, your hand accelerates in the direction you're pushing,
and the crowd goes wild !


3 0
3 years ago
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A circuit consists of one 330 ohm resistor in series with two other resistors (470 ohms and 220 ohms) connected in parallel. Wha
umka21 [38]

Answer:

power drain on an ideal battery, P = 0.017 W

Given:

R_{1} = 330\ohm

R_{2} = 470\ohm

R_{3} = 220\ohm

Since, R_{2} = 470\ohm and R_{3} = 220\ohm are in parallel and this combination is in series with R_{1} = 330\ohm, so,

Equivalent resistance of the circuit is given by:

R_{eq} = \frac{R_{2}R_{3}}{R_{2} + R_{3}} + R_{1}

R_{eq} = \frac{470\times 220}{470 + 220} + 330

R_{eq} = 149.85 + 330 = 479.85 \ohm

power drain on an ideal battery, P = \frac{V^{2}}{R_{eq}}

                                                      P = \frac{2.9^{2}}{479.85}

                                                      P = 0.017 W

4 0
4 years ago
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