Explain what would happen to the number of rats if the eagles died from a disease.

Explain What Would Happen To The Number Of Rats If The Eagles Died From A Disease.

Answers

Answer 1

Answer:

If eagles died of disease, the number of snakes that prey on rats will increase, which will decrease the number of rats. Also, eagles will cause the and rabbit population to increase, decreasing the plant population and therefore decreasing the rat population because of the lack of food.

tldr; rats will decrease if eagles died of disease.

Answer 2

Answer:

The rabbit population willl increase because the eagles are not present to feaast on them. The population of the snake will also increase since the Eagles are not present and the rat's population will increase as welll because it's only 1 animal who is eating them.

Explanation:


Related Questions

is Human Bone a Plant / Animal / Neither

Answers

Answer:

Neither

Explanation:

A human bone is a non living organism therefore it cannot be a plant or an animal because those are living organisms.

When did the first life appear?(how many years ago?)​

Answers

The earliest life forms we know of were microscopic organisms (microbes) that left signals of their presence in rocks about 3.7 billion years old.
Alc alc no se pero bendición carnal

Question in the picture

Question in the picture

Answers

Answer:

bbbb

bbbbbbbbbbbbbbbbbbbbbb

The Sun was formed from a large cloud of gas. What caused this gas to come together and form the Sun? A. The atoms of gas were attracted to the center of a black hole. B. The magnetic forces from stars moved the atoms of gas together. C. The planets pushed the atoms of gas toward each other. D. The atoms of gas were pulled together by the force of gravity.

Answers

Answer:

B

Explanation:

the magnetic force created the sun

Hydrogen bonds explain
Group of answer choices

The cohesiveness of liquid water

All answers are correct

The moderation of temperature of water

The capillary effect of water in a narrow capillary

The stability of ice

Answers

Hydrogen bonds explain all of the following except more than 100:More than 100 is not a valid answer option in this case. However, the hydrogen bond has a few properties that play a vital role in the behavior of water.

The hydrogen bond, which is a weak chemical bond, accounts for many of water's unique physical characteristics, such as its high surface tension, low vapor pressure, and high boiling point. As a result, all of the above statements are correct, with the exception of the answer option "More than 100." So, the correct answer is All answers are correct.

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There is a normal distribution of traits seen in natural selection where the medium trait is favored.

Answers

Answer:

Hello your question is incomplete attached below is the complete question

There is a normal distribution of traits seen in natural selection, where the medium trait is favored. However, the distribution of traits is altered when factors in the environment change and influence natural selection. These environmental factors alter the selection of traits passed to generations and can have an effect on the biodiversity on Earth.

Answer : Total variety of organisms on Earth

Explanation:

The Alteration of medium traits by environmental factors and its influence on the natural selection process will bring about a total variety of organisms on the Earth

for each phenotype, list the genotypes (Remember to use the letter of the dominant trait)
* Straight hair is dominant to curly:
_____Straight
_____Straight
_____Curly
*Tail spikes are dominant to plain tails:
_____pointed
_____pointed
_____round​

Answers

Straight- Ss
Straight- SS
Curly- ss
Pointed- PP
Pointed- Pp
Round- pp

what is the part of the brain that controls emotions

Answers

Answer:

limbic system, which is located in the temporal lobe.

Answer:

limbic system

Explanation:

contains hypothalamus, thalamus, hippocampus, amygdala, frontal lobe, and olfactory bulb.

thermoreceptors in the hypothalamus sense the temperature of the blood. when blood temperature begins to decrease, the hypothalamus releases trh, which stimulates the release of tsh from the anterior pituitary gland. tsh stimulates the thyroid gland to release thyroid hormone (th). th stimulates an increase in body temperature, which causes the hypothalamus to decrease the release of trh. in this reflex pathway, what is the response?

Answers

Increased body temperature is the response in a reflex pathway which causes hypothalamus to decrease the release of TRH.

The hypothalamus is the body's thermostat because it controls and maintains body temperature by reacting to signals or stimuli from outside the body, keeping it within one to two degrees of 98.6 degrees. The term "neuroendocrine response" refers to the reaction of hormones and thermoreceptors. It is described as a complicated response when the hypothalamus involves two or more hormones and multiple processes.

The temperature of the blood is detected by thermoreceptors in the hypothalamus. When the blood temperature starts to drop, the hypothalamus releases TRH, which prompts the anterior pituitary gland to release TSH. The thyroid gland is stimulated by TSH to release thyroid hormone (TH). The hypothalamus reduces the release of TRH when TH drives an increase in body temperature.

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A parent cell has 24 chromosomes at the beginning of interphase. How many chromatids will it have during prophase? 48 24 12 06 Which of the following best describes a major difference between plant cells and animal cells? O Only plant cells use cellular respiration. Only plant cells have a nucleus containing DNA. Unlike plant cells, animal cells cannot make their own food. Only animal cells have a cell wall.

Answers

During prophase, the parent cell will have 48 chromatids. This is because during interphase, the DNA replicates, resulting in each chromosome consisting of two sister chromatids.

Therefore, if the parent cell has 24 chromosomes, it will have a total of 48 chromatids during prophase.

Regarding the major difference between plant cells and animal cells, the most accurate statement is: "Only plant cells have a cell wall." Plant cells have a rigid cell wall made of cellulose, which provides structural support and protection to the cell. Animal cells, on the other hand, do not have a cell wall. Hence option D is correct.

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help me pleaseeeeeeeeeeeee

help me pleaseeeeeeeeeeeee

Answers

Answer:

Explanation:

waste products leaving the cell because it has to push through the cell membrane to be expelled.

Sarah performs an experiment to determine the effect of nitrogen on plants. She studies the effect of nitrogen on the growth of the root hair, height of the plants, and nodule formation.which factor is an independent variable

Answers

The answer that is accurate is (a) Amount of Nitrogen.

The amount of nitrogen Sarah administers in this situation is an independent variable because it is not influenced by any other variables. However, the amount of nitrogen a plant receives affects its height as well as the development of nodules and roots. To guarantee that energy is available when and where the plant needs it to maximize output, nitrogen plays a crucial role within the plant. Even the roots contain this essential vitamin because proteins and enzymes control water and nutrient intake. Actually, the most crucial element for promoting plant growth is nitrogen. The chlorophyll molecule, which gives plants their green color, contains nitrogen. Nitrogen also plays a role in the plant's ability to produce nourishment.

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Which statement best describes the relationship of photosynthesis and energy?
The process of photosynthesis is energy-storing because the process converts light energy into chemical ene
stored in the bonds of glucose.
The process of photosynthesis is energy-releasing because the process converts light energy into free energy
used for cell functions.
The process of photosynthesis is energy-conserving because no energy is used throughout the process of for
glucose and oxygen molecules.
The process of photosynthesis is energy-wasting because photosynthesis is an inefficient process that deplet
energy stored in the bonds of glucose.

Answers

Answer:

The process of photosynthesis is energy-releasing because the process converts light energy into free energy

used for cell functions.


What are the four types of adaptations?

Answers

behavioral

physiological

structural

Explanation:

sorry I only know three

Answer: There are three types of adaptations: Behavioral, Physiological, and Structural.

The movement of water across cellular membranes from a hypotonic to hypertonic environments through aquaporins, which are channel proteins, can be defined as both

A: simple diffusion and active transport.
B: active transport and facilitated diffusion.
C: osmosis and facilitated diffusion.
D: endocytosis and active transport.

Answers

C: osmosis and facilitated diffusion

Abiotic factors in an ecosystem are....

Answers

Answer:

The nonliving components of an ecosystem that an organism or population requires for development, maintenance, and reproduction are known as abiotic factors. Sunlight, tides, water, temperature, pH, minerals, and events such as volcanic eruptions and storms are examples of abiotic forces.

Explanation:

Hope It Helped :)

HELPPPPPPP ASAPPPPPPP PLSSSSS

HELPPPPPPP ASAPPPPPPP PLSSSSS

Answers

The answer is a I just did that test

How do the functions of DNA and RNA differ? *
1 point
DNA directs protein transport, while RNA aids in energy production.
DNA aids in energy production, while RNA directs protein transport.
O
DNA stores genetic information, while RNA relays genetic information for protein
synthesis.
DNA relays genetic information for protein synthesis, while RNA stores genetic
information.

Answers

DNA STORES GENERIC INFORMATION WHILE RNA RELAYS GENETIC INFORMATION FOR PROTEIN.

1
Which of the following is true about the locations of earthquakes, volcanoes, and tectonic plate boundaries?

A. Earthquakes are commonly located near plate boundaries, but volcanoes are not.

B. Volcanoes are commonly located near plate boundaries, but earthquakes are not.

C. Earthquakes and volcanoes are both commonly located near plate boundaries.

D.
Neither earthquakes nor volcanoes are located near plate boundaries.

Answers

D is correct volcanoes are commonly located near plate boundaries but earthquakes are not

Answer:

Weird.. My answer was both of them were close. Huh.

Explanation:

Which two factors will increase the rate of a stream’s flow?

Answers

Answer:

Flood Erosion and Deposition: As flood waters rise, the slope of the stream as it flows to its base level (e.g., the ocean or a lake) increases. Also, as stream depth increases, the hydraulic radius increases thereby making the stream more free flowing. Both of these factors lead to an increase in stream velocity.

Explanation:

Flood erosion and deposition, as flood waters rise, the stream's slope rises as it descends to its base level, which may be an ocean or a lake.

What is the stream’s flow?

Additionally, when stream depth rises, the hydraulic radius rises as well, increasing the stream's ability to flow freely, these two elements cause the stream velocity to rise.

The volume of water flowing into a stream channel from the watershed directly affects the stream's flow. The weather has an impact on it; it rises during downpours and falls during dry spells.

The force of gravity, which pushes water downhill, is what gives moving river water its energy. A river will flow more quickly and with greater energy at a higher slope.

Therefore, flood erosion and deposition factors will increase the rate of a stream’s flow.

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Xylem is a plant tissue made up of elongated cells stacked end to end the length of the plant's stem. How does xylem help a plant survive?

A) exchange gases with the atmosphere

B)pulls water and nutrients up the stem from the soil

C)collects sunlight for the plant to use during photosynthesis

D)transports glucose made during photosynthesis to cells throughout the plant

Answers

Answer:

B) pulls water and nutrients up the stem from the soil.

Explanation:

Xylem is a specialized tissue that mechanically supports plants and allows them to suck water and nutrients from the soil, almost like you would use a straw.

carbon dioxide is transported in different forms in the blood. what is the most common form?

Answers

Bicarbonate ions (\(HCO^{-} _{3}\)) are the most common form of carbon dioxide transport in the blood.

Carbon dioxide diffuses from the tissues into the bloodstream, where it reacts with water (\(H_{2}O\)) to form carbonic acid (\(H_{2}CO_{3}\)), which then dissociates into bicarbonate ions (\(HCO^{-} _{3}\)) and hydrogen ions (\(H^{+}\)). The majority of the bicarbonate ions are then transported in the plasma, while some are taken up by red blood cells, where they are exchanged for chloride ions in a process called the chloride shift. This allows for the efficient transport of carbon dioxide from the tissues to the lungs, where it is then expelled from the body during exhalation. Other forms of carbon dioxide transport in the blood include physically dissolved carbon dioxide and carbamino compounds, which are formed by the binding of carbon dioxide to hemoglobin. However, these forms are much less abundant than bicarbonate ions.

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A team of scientists altered the DNA of pseudomonas bacteria. The bacteria thus developed had the ability to eat up oil. What could be the likely impact of this biotechnology on the environment and the society?

Toxic gases would be released, causing large-scale pollution.
Damage to marine flora and fauna due to oil spills could be prevented.
The consumption of nonrenewable energy sources would be increased.
The process of oil exploration would become simpler and more economical.

Answers

The alteration of pseudomonas bacteria's DNA to enable them to consume oil could have both positive and negative impacts on the environment and society.

Firstly, the potential benefits include the ability to mitigate oil spills and minimize damage to marine flora and fauna. These genetically modified bacteria could be used in oil spill cleanup efforts, helping to break down and digest the spilled oil more effectively, thus reducing the environmental impact.

On the other hand, there are also potential risks associated with this biotechnology. If the modified bacteria were released into the environment unintentionally or without proper control, there could be adverse consequences. The uncontrolled spread of these bacteria could result in unintended pollution as they consume not only spilled oil but also other hydrocarbon sources, leading to the release of toxic gases and further environmental damage.

Moreover, the introduction of such bacteria could disrupt natural ecosystems, potentially affecting other microorganisms and organisms that depend on oil for survival. The long-term effects on the balance of ecosystems are uncertain and would require thorough evaluation before any large-scale implementation.

In terms of society, the development of these bacteria could have economic implications. The cleanup of oil spills could become more efficient and cost-effective, potentially reducing the financial burden on affected industries and governments. However, it is important to consider the potential risks and unintended consequences of relying solely on this biotechnology, as it may discourage the development of alternative, cleaner energy sources.

Overall, the impact of genetically modified pseudomonas bacteria with oil-consuming abilities on the environment and society would depend on how the technology is deployed, regulated, and monitored. It is crucial to carefully evaluate the potential risks and benefits to ensure responsible and sustainable implementation.

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Q 2. In fruit flie, red eye (A) are dominant to black eye (a) and long wing are dominant to hort wing. Aume that a cro wa made between fruit flie of genotype AAbb (red-eyed with hort wing) and thoe of genotype aaBB (black eye with long wing). Give the Punnett quare for the expected F2 progeny (offpring) type

Answers

Red eyes are more prevalent than green eyes in fruit flies. AaBb x aabb would be the offspring of a cross between such a short-winged, green-eyed fly as well as a long-winged, red-eyed fly.

The parents are homogeneous for these recessive features because red eyes are dominant over green eyes and large wings were dominant over small wings. A short-winged, green-eyed parent's genotype is aabb, and a long-winged, red-eyed parent's genotype is AaBb.

Red-eyed and green-eyed offspring are produced in a ratio of 1:1, as are offspring with long and short wings. One dominant and one recessive offspring result from a cross involving heterozygous dominant & homozygous recessive genes. This indicates that the parent fly's large wings and red eyes are heterozygous for the color of the eye.

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In the origin of the cell, why would the formation of a simple lipid bilayer membrane not be sufficient? & what else would have to be apart of such membrane?

Answers

The formation of a simple lipid bilayer membrane would not be sufficient for the origin of the cell because a cell requires more than just a physical barrier to separate itself from the environment. While a lipid bilayer can provide a basic barrier to separate the internal and external environments, it cannot perform essential functions required for cellular life.

For instance, in order for a cell to survive, it needs to have the ability to maintain a stable internal environment, a process known as homeostasis. A lipid bilayer alone cannot regulate the flow of molecules and ions across the membrane to maintain a stable internal environment. Therefore, the membrane would need to have specialized proteins that allow for the selective transport of molecules and ions in and out of the cell.

Additionally, a lipid bilayer alone cannot carry out metabolic reactions required for cellular functions. Enzymes and other proteins are required for cellular metabolism, which would need to be present within or attached to the membrane.

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garfield the cat has a diploid number of 38. how many combinations are possible in garfield’s gametes without crossovers?

Answers

The number of possible combinations in Garfield's gametes without crossovers, calculated using the formula 2^n, where n is the number of homologous pairs (19 pairs for Garfield), is indeed 2^19, which equals 524,288.

This means that Garfield has the potential to produce 524,288 different combinations of genetic material in his gametes without any genetic recombination or crossover events occurring between homologous chromosomes during meiosis. Each gamete can have a unique assortment of alleles inherited from each parent chromosome.

These combinations result from the independent assortment of chromosomes during meiosis, where homologous chromosomes segregate randomly into daughter cells. The vast number of possible combinations reflects the genetic diversity that can be generated in a population, contributing to the potential for variation and adaptation.

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There are 524,288 possible combinations of chromosomes in Garfield's gametes without considering crossovers.

Chromosomes are structures found in the nucleus of cells that carry genetic information in the form of genes. They are composed of DNA molecules tightly coiled and packaged with proteins. Chromosomes are responsible for transmitting hereditary traits from one generation to the next.

In humans, each cell typically contains 23 pairs of chromosomes, for a total of 46 chromosomes. Of these, 22 pairs are autosomes, which determine most of an individual's traits, and one pair consists of sex chromosomes (X and Y), which determine the person's biological sex.

To determine the number of possible combinations in Garfield's gametes without crossovers, we need to consider the concept of independent assortment during gamete formation.

Garfield's diploid number is 38, which means he has 38 chromosomes in his cells. During gamete formation, the chromosomes segregate independently, leading to different combinations of chromosomes in the resulting gametes.

Since there are two copies of each chromosome in Garfield's diploid cells, we need to consider the possible combinations of these chromosome pairs. The total number of combinations can be calculated using the formula 2^n, where n is the number of chromosome pairs.

In Garfield's case, since he has a diploid number of 38 chromosomes, he has 19 pairs of chromosomes. Therefore, the number of possible combinations in Garfield's gametes without crossovers is:

2¹⁹ = 524,288

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here's is a table please complete it ​

here's is a table please complete it

Answers

U NEED TO BE GIVEN AN AWARD FOR THIS PIC ! U GOT GREAT POTENIAL TO BECOME A PHOTOGRAPHER ! (--_--)

a koala named stich is heterozygous for blue fur(Bb). A koala named angel is homozygous recessive for pink fur(bb) The fur color trait is represented with the letter B. What is the genotype and phenotype of Stich and Angels offspring

Answers

Answer:

Bb, Bb, bb, bb
Blue and pink

Explanation:

   B       b

b  Bb    bb

b  Bb    bb

The genotypes of their offsprings are: Bb, Bb, bb, bb

Since you would need to have at one B to receive blue fur, there is a 50% chance that their offsprings with be blue and a 50% chance that there offsprings will be pink.

prior knowledge questions (do these before using the gizmo.) dna is an incredible molecule that forms the basis of life on earth. dna molecules contain instructions for building every living organism on earth, from the tiniest bacterium to a massive blue whale. dna also has the ability to make copies of itself. this allows living things to grow and reproduce. look at the dna molecule shown at right. what does it look like?

Answers

That's because a DNA molecule seems shaped with a doubled helix twist, it will appear to be a ladder.

Where can you find DNA?

In eukaryotic species, DNA is found on the inside of the core, a distinct area of the cell. Because organisms have many Molecules per cell and because cells are so small, individual DNA molecule requires to be well wrapped. The designation for this packed DNA is a chromosomes.

What makes DNA important?

DNA is crucial for human development, reproduction, and health. It contains the instructions required by your cells to produce the proteins that affect a number of biological functions and processes. Because DNA is so important, damage or anomalies can occasionally cause disease to manifest.

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Parent 1 has a recessive phenotype of blue eyes. Parent two has a homozygous phenotype of brown eyes. What is the genotype for parent 1? ____________ Parent 2? ____________ In the space below, create a Punnett Square.
What percent of offspring will have blue eyes? ____________ What percent of offspring will have brown eyes? ____________ What percent of offspring will be heterozygous? ____________ What percent of offspring will be homozygous? ____________

Parent 1 has a recessive phenotype of blue eyes. Parent two has a homozygous phenotype of brown eyes.

Answers

There will be 50% blue eyes (genotype bb) and 50% brown eyes in the offspring (genotype Bb). There will be 50% homozygous dominant offspring and 50% heterozygous offspring (genotype Bb) (genotype BB).

What are the chances that a child with a homozygous brown-eyed mother and a blue-eyed father will have blue eyes?

Blue eye color is subordinate to brown eye color. Consequently, it is possible that both parents of a child with blue eyes and brown eyes have the heterozygous genotype Bb. Consequently, it is evident from the square below that there is a 25% chance of having a blue-eyed (bb) child.

What are the odds of having a child that is homozygous recessive from two homozygous dominant parents?

The Punnett square below shows that there is a 25% chance of having a healthy homozygous (AA) child, a 50% chance of having a healthy heterozygous (Aa) carrier child, and a 25% chance of having an abnormal homozygous (AA) child at each birth.

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