Hemorrhage means _____.internal bleeding
red pigment
infection
tissue damage

Answers

Answer 1
Answer: It is internal bleeding


Absolutely terrible and is the common cause for most miscarriages :(

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You discover a certain species of weed growing in soil contaminated with toxic PCBs, and later determine that the PCB resistance is due to a single dominant allele.A)If 45% of the seeds from a randomly mating population of resistant weeds will germinate in contaminated soil, what is the frequency of the PCB-resistance allele?
B)Among all the plants that germinate, what proportion will be heterozygous?
C)What proportion will be homozygous dominant?

Answers

Answer: In a population with a single dominant allele responsible for PCB resistance, if 45% of seeds from a randomly mating population of resistant weeds germinate in contaminated soil, the frequency of the resistance allele (R) is approximately 0.6 or 60%.

Explanation: To calculate the frequency of the resistance allele, we can use the square root rule. Since resistance is due to a dominant allele, the proportion of the resistant homozygotes (RR) and heterozygotes (Rr) in the population equals the frequency of the resistance allele (R).

Let p represent the frequency of the resistance allele (R). The proportion of homozygous resistant individuals (RR) would be, p * p = p^2.

The proportion of heterozygous individuals (Rr) would be 2 * p * (1 - p).

Given that 45% of seeds germinate in contaminated soil (Rr + RR = 0.45), We can solve for,p:

- p^2 + 2 * p * (1 - p)

 = 0.45.

Solving the quadratic equation,

we get p ≈ 0.6.

Therefore, the frequency of the resistance allele (R) is about 60%.

To find the proportions of heterozygous and homozygous dominant individuals, we can substitute the value of p back into the formulas.

The proportion of heterozygotes (Rr) is ,

2 * 0.6 * (1 - 0.6) = 0.48, and

the proportion of homozygous dominants (RR) is ,

0.6^2 = 0.36.

In conclusion, when 45% of seeds from a population of resistant weeds germinate in contaminated soil, the frequency of the PCB-resistance allele (R) is about 60%. Among all germinating plants, approximately 48% will be heterozygous (Rr), and about 36% will be homozygous dominant (RR).

To know more about Resistance Allele;

brainly.com/question/22916798

Final answer:

The frequency of the PCB-resistance allele is approximately 0.67. Approximately 44% of the plants that germinate will be heterozygous, and approximately 45% of the plants that germinate will be homozygous dominant.

Explanation:

To calculate the frequency of the PCB-resistance allele, we can use the Hardy-Weinberg equation. Let's assume that the frequency of the PCB-resistance allele is represented by 'p'.

According to the question, 45% of the seeds from a randomly mating population of resistant weeds will germinate in contaminated soil. This means that the germination rate of the resistant seeds is 0.45.

Since the resistance to PCBs is controlled by a single dominant allele, the frequency of the resistant genotype (RR) can be calculated using the equation p^2, where p is the frequency of the PCB-resistance allele.

Therefore, p^2 = 0.45.

Taking the square root of both sides, we get p = √0.45 ≈ 0.67.

So, the frequency of the PCB-resistance allele is approximately 0.67.

To calculate the proportion of heterozygous individuals, we can use the equation 2pq, where p is the frequency of the PCB-resistance allele and q is the frequency of the recessive allele.

Since there is only one dominant allele (PCB-resistance allele), the recessive allele frequency (q) can be calculated as 1 - p.

Therefore, q = 1 - 0.67 = 0.33.

Using the equation 2pq, we can calculate the proportion of heterozygous individuals as 2 * 0.67 * 0.33 = 0.44.

So, approximately 44% of the plants that germinate will be heterozygous.

To calculate the proportion of homozygous dominant individuals, we can use the equation p^2, where p is the frequency of the PCB-resistance allele.

Using the frequency of the PCB-resistance allele (p = 0.67), we can calculate the proportion of homozygous dominant individuals as 0.67^2 = 0.45.

So, approximately 45% of the plants that germinate will be homozygous dominant.

Explore PCB-resistance allele frequency and dominant plant proportions in resistant weed populations. Learn more here.

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Stacie was adopted. Her adoptive mother is a talented painter. Stacie also enjoys painting and drawing. Which kind of trait is Stacie's interest in art?A. inherited
B. acquired
C. heritable
D. genetic

Answers

I think the correct answer from the choices listed above is option B. The kind of trait that results to Stacie's interest in art is an acquired trait. This trait. This trait is caused by the environment where one is subjected to.
B) acquired

Hope it helps 

suppose that your friend is moving far away and describing his new location. He mentioned that Derreck gets a lot of precipitation for most of the year, except for the summer, which is cool and dry. He also noted that his house is surrounded by flowering trees in conifers and that he saw at least 3 camouflaged animals more quickly than his sister could. Which biome well his new home be part of?

Answers

To me this Biome sounds like a Tropical Forest i may be wrong.

Which best describes genetic mutations? Some inherited genetic mutations can be good for the offspring. Different genetic mutations cause few forms of cancer. Somatic mutations can be inherited from parents or acquired during life. Genetic mutations that cause diseases are always passed on to offspring.

Answers

Genetic mutations are the changes in the genetic code and composition of organisms.

Genetic mutation can occur due to many factors like insertion, deletion, inversion of chromosomes.

The correct answer is:

Option A. Some inherited genetic mutations can be good for the offspring.

  • Mutations can be advantageous, inert or dangerous based upon the location of the genes.

  • Some mutations like in the case of sicklecell anemia in some communities conferred them resistance towards malaria disease.

  • The mutation can be beneficial as it can raise the chance of survival of the offspring.

Therefore, some inherited geneticmutations can be good for the offspring.

To learn more about genetic mutation follow the given link:

brainly.com/question/16609187

Answer:

Your answer is A.Some inherited genetic mutations can be good for the offspring.

Explanation:

Explain why animals have specialized excretory organs but plants do not. ...?

Answers

They consume food and they have much higher metabolism. That means that more waste products are produced. Plants can use much of the waste produced and it is in fact raw material. Animals don't normally produce their own chemicals from scratch like plants normally do so they can't just recycle the waste. They need to remove it. About the only waste plants need to get rid of is excess oxygen produced during the day. That is actually three reasons but recycling is related to plants not consuming but making their own chemicals from scratch. In a way it pretty much comes down to one main reason.


I hope my answer has come to your help. Thank you for posting your question here in Brainly. We hope to answer more of your questions and inquiries soon. Have a nice day ahead!

Answer:

animals are active than plants

Explanation:

i hope my answer has helped

An atom contains 15 electrons. How many energy levels would it have?

Answers

It would have 8 energy levels

Answer: i'm pretty sure its 3!

Explanation: