Population growth is limited by density-dependent factors such as _____.

predation and disease
volcanoes and earthquakes
droughts and floods
biotic and abiotic factors

Answers

Answer 1
predation and disease are big factors. birth rate and death rate are also key
Answer 2

The correct answer is predation and disease.

Density dependent factors are those factors, which are directly influenced by the  density of a population. These factors directly influence the size and the growth of the population.

The predation and the disease are density dependent factors, as predation of a small density population would cause a significant decrease in number, so, predation is the limiting factor for the growth of the population. Same for diseases, the disease can affect most of the members of the population, and limiting its growth.

The changes in the environment and the natural calamities  are density independent factor.


Related Questions

Mr. Adams asked his students to write the chemical symbol for the element zinc. He wrote the students’ answers on the whiteboard. Which answer is correct?
A) zn
B) Zn
C) ZN
D) zN

Answers

The answer is b. The second letter (if there is one) is always written as lowercase
The correct option of the four would be letter B. Zn.

Which of the following is an example of where archaebacteria can be found?

A. in drinking water
B. in hot springs
C. in food
D. in the air

Answers

archaebacteria are most found in hot springs
Archaebacteria is the correct andwer

What is the function of a cell's premeable plasma membrane?

Answers

The function of the plasma membrane is to only allow certain items through, while blocking the rest.

Explain why a population of Mouflon in the Indian Ocean descended from only two individual that had not experienced a loss of genetic diversity was so surprising to scientists.

Answers

A population is reduced in size suggests the theory of genetic drift. This meaning a loss of genetic diversity would be expected. However, this did not stay true as scientists soon discovered. The genetic diversity in the Mouflon was not lost due to environmental pressures of the island.

The surprising aspect of a population of Mouflon in the Indian Ocean descending from only two individuals without experiencing a loss of genetic diversity is rooted in the principles of population genetics, particularly the concept of the founder effect and genetic drift.

When a new population is established by a very small number of individuals, this is known as a founder event. The genetic diversity of this new population is limited to the genetic variation present in the founders. This typically results in a population with reduced genetic diversity compared to the source population, a phenomenon known as the founder effect. Over time, genetic drift, which is the random change in the frequency of alleles (gene variants) in a population, can further reduce genetic diversity, especially in small populations.

The expectation, therefore, is that a population founded by only two individuals would have very low genetic diversity, making it more susceptible to inbreeding depression (reduced biological fitness due to inbreeding) and less able to adapt to changing environmental conditions. This lack of diversity can also lead to an increased frequency of harmful recessive traits.

However, if scientists observed that the Mouflon population did not suffer from a loss of genetic diversity, despite its origin from only two founders, it would suggest one or more of the following:

1. High Genetic Variability in Founders: The two founding individuals may have had unusually high genetic variability themselves, possibly carrying a wide range of alleles that could be passed on to their offspring.

2. Balancing Selection: There could have been some form of balancing selection acting on the population, which maintains genetic diversity within a population by selecting for heterozygous individuals (those with two different alleles of a gene).

3. Hybridization: The population may have interbred with other related species or populations, introducing new genetic variation.

4. Rapid Population Growth: A rapid increase in population size following the founder event could have minimized the effects of genetic drift, allowing more alleles to be preserved in the gene pool.

5. Mutations: The population could have experienced a higher than usual rate of new mutations, which introduced new genetic variation.

6. Gene Flow: There might have been occasional migration and successful breeding with other populations, which would also increase genetic diversity.

The observation of a Mouflon population with healthy genetic diversity despite its small founding size would challenge the typical expectations of population genetics and would be of great interest to scientists. It could provide insights into the mechanisms that maintain genetic diversity and the resilience of species to extreme genetic bottlenecks. Such a scenario could also have implications for conservation biology, as it would suggest that small founder populations might not always be as genetically doomed as previously thought, provided certain conditions are met to preserve or enhance their genetic diversity.

Which layer of the earth is mostly made of iron and nickel?

Answers

This layer of the earth lies between the mantle and the solid inner core. It is the only liquid layer, a sea of mostly iron and nickel about 1,400 miles (2,300 km) thick.

What would most likely happen to the chipmunk population in 2014 if the population went up to 22 million in 2013?

The chipmunk population would continue to increase.

The carrying capacity would increase.

The chipmunk population would crash.

The death rate would decrease.

Answers

the chipmunk population would crash because every other year it crashes after an increase making hills on the graph

Answer:

The correct answer would be The chipmunk population would crash.  

It can be explained with the help of carrying capacity.

The carrying capacity of a particular region refers to the number of organisms, people, or crops it can support without facing environment degradation.

If the population of chipmunks would increase up to 22 million, it would have passed the carrying capacity of the area.

Consequently, all the resources would start decreasing at a very fast rate.

After some time, the population of chipmunks would crash due to the scarcity of resources such as food.

how does light travel?
A. light only travels in a vacuum and travels faster when the sound is moving
B. light on only travels in a medium and light travels faster when a Sound Source is stationary
C. light can travel in a vacuum in the speed varies depending on whether the source is moving or stationary
D. light can travel in the air or a vacuum and the speed is constant weather the light source is stationary or moving

Answers

D, light can travel in the air or a vacuum and the speed is constant whether the light source is stationary or moving.

Answer: The correct answer is option(D).

Explanation:

Light travels in a straight line as a wave. It does not require any medium or material to travel like sound waves which means it can travel in vacuum.The speed of the light  from the special theory of relativity is a constant value of  [tex]34\times 10^{8} m/second[/tex].

Hence, the correct answer is option (D).

Why does darkness affect the light-independent reactions of photosynthesis?

Plants stop their daytime activities and rest during the night much like animals do.

Light independent reactions need more heat energy than nighttime temperatures often provide.

Light independent reactions require the energy gathered in the thylakoids.

Mitochondria produce sugars more effectively in the darkness than chloroplasts do.

Answers

Light independent reactions require the energy gathered in the thylakoids.

The right answer is Light independent reactions require the energy gathered in the thylakoids.

* The dark phase corresponds to the phase of assimilation of CO2 which uses the energy molecules produced during the clear phase and which is carried out cyclically. This cycle is called the Calvin cycle and it takes place in the stroma of the chloroplast.

The assimilation of CO2 is done in four main stages, the first three of which take place within the Calvin cycle:

-CO2 fixation (carboxylation).

-Carbon reduction fixed.

-Regeneration of the CO2 acceptor.

-Synthesis of sugars.

* A thylakoid, or thylakoid membrane, in a chloroplast, is a flat membranous sac containing chlorophyll, or in other words, it is a cell membrane within the plant chloroplast that photosynthesizes. The thylakoid of a bacterium is also called the chromatophore.

A thylakoid is a membrane compartment within chloroplasts and cyanobacteria. They are the place of light-dependent reactions of photosynthesis. The thylakoids consist of a thylakoid membrane surrounding a thylakoid lumen (in the biological sense).

When during the cell cycle do chromosomes first become visible?

a.) during interphase
b.) during cytokinesis
c.) during prophase
d.) during the G1 phase

Answers

Answer;

C.) during prophase

Explanation;

-Prophase is the first phase of mitosis, the process of cell division in which a parent cell divides into two daughter cells that are similar to the parent cell, and is separated into four stages.

-During this phase of mitosis each chromosome becomes condensed and more visible, and there is the breakdown of the nuclear membrane and appearance of spindle fibers.

-Initially, prior to prophase, the chromosomes were long strands of DNA material called 'chromatin', which then curls up into tightly wound shapes called chromosomes.

Chromosomes first become visible during: c.) Prophase Prophase is a phase in the cell cycle and mitosis, that is a process of cell division.

What is the cell cycle

Prophase is the first part of cell division called mitosis or meiosis. During prophase, the DNA strands called chromatin become more compact and twist together tightly to form visible chromosomes.

At this point, the chromosomes get smaller and can be seen using a microscope. During the beginning stage of cell division, chromosomes come together and condense. This is important because it helps them line up correctly and separate properly later on.

Hence option c is correct.

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Prokaryotic cells have a nucleus

Answers

no they do not have defined nucleus
this is a false statement as they do not have one.

hope this helps you

Which diagram best represents mitotic cell division?

Answers

Below is a detailed description on cell division 

The diagram that best represents mitotic cell division is diagram C. 2n -> 2n, 2n. The correct option is c.

What is mitotic division?

The cell cycle phase known as mitosis is when a cell's nucleus divides into two daughter nuclei, each of which contains an equal amount of genetic material.

A single cell divides into two identical daughter cells during the process of mitosis (cell division). One diploid cell divides once into two identical cells during mitosis. Mitosis is primarily used for cell growth and the replacement of worn-out cells.

The first option is fertilization, which involves joining two haploid gametes to create a diploid zygote. The second is meiosis I, which produces only two haploid daughter cells from a single diploid cell.

Therefore, the correct option is diagram c.

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The question is incomplete. Your most probably complete question is given below: the missing diagram is added.

Why do you think plasmids and bacterial cells are such important tools in genetic engineering?

Answers

Plasmids contain extra nucleoid genitic material. By virtue of plasmids bacteria have won their battle againt the miracle drugs like penicillin, streptromycin, asprin etc. Well genitic engineering retrieves their adapted and evolved tendencies to be applied for a long lasting cure.


I hope my answers has come to your help. God bless and have a nice day ahead!

Final answer:

Plasmids and bacterial cells are crucial in genetic engineering as they can be manipulated to introduce foreign DNA fragments and carry specific genes. Bacterial cells act as hosts for plasmids, enabling the replication and production of desired molecules.

Explanation:

Plasmids and bacterial cells are important tools in genetic engineering because they can be easily manipulated to introduce foreign DNA fragments. Plasmids are circular DNA molecules that occur naturally in bacteria and can be engineered to carry specific genes or traits, such as antibiotic resistance. They have a multiple cloning site (MCS) where foreign DNA can be inserted using restriction enzymes and ligases. Bacterial cells serve as hosts for plasmids, allowing for the replication and production of desired molecules, such as insulin and human growth hormone.

Which of the following masses is the greatest?

A) 0.002 kilograms
B) 4.2 gigagrams
C) 45 grams
D) 400 milligrams

Answers

The answer of this is B
B. 4.2 gigagrams.
A gigagram is 1,000,000 grams.

what process most contributes to genetic variation in a population

Answers

Genetic variation can be caused by mutation (which can create entirely new alleles in a population), random mating, random fertilization, and recombination between homologous chromosomes during meiosis (which reshuffles alleles within an organism's offspring).

Answer:

Crossing over during meiosis.

Explanation:

Hope this will helps

ASAP

Which statement best describes a characteristic of a scientific theory?

A) Supported by mathematics to explain a principle of nature
B) A readily demonstrable fact that cannot be disproven
C) An educated guess that is yet to be tested consistently
D) Supported by a substantial body of evidence observed in nature

Answers

c because it is a theory

The best description of a scientific theory is that it is supported by a substantial body of evidence observed in nature, thoroughly tested, and reliable.

The statement that best describes a characteristic of a scientific theory is D) Supported by a substantial body of evidence observed in nature. A scientific theory is much more than an educated guess; it is a thoroughly tested set of explanations for a consistent pattern of facts. Using multiple experiments and observations, theories such as the theory of gravity, the atomic theory of matter, and the germ theory of disease provide reliable accounts of the natural world.

Unlike hypotheses, which are preliminary ideas that are tested against observations, scientific theories are well-substantiated, with a wide array of evidence backing them. Theories can change over time, but this process involves extensive research and substantial new evidence that challenges the established explanations.

what structure takes up the majority of the center space within the plant cells

Answers

Final answer:

The central vacuole is the major structure in plant cells, taking the majority of the space and serving functions like maintaining turgor pressure, storing substances, and facilitating cell growth.

Explanation:

Structure Occupying Majority of Plant Cell's Center

The structure that takes up the majority of the center space within plant cells is known as the central vacuole. This large organelle can occupy more than 30% to as much as 90% of a cell's volume in mature plant cells.

The central vacuole is encased by a membrane called the tonoplast, and its principal functions include maintaining turgor pressure against the cell wall, regulating the water content within the cell, storing pigments and metabolites, and allowing cell expansion without additional cytoplasm production.

Plant cells have three distinctive features: a cell wall, chloroplasts, and a central vacuole. The cell wall is primarily composed of cellulose and is crucial for protection, support, and maintaining cell shape.

Chloroplasts are the site of photosynthesis. The expansive ability of the central vacuole contributes to plant growth and plays a significant role in the plant's response to environmental changes, such as wilting when a plant is not watered and the vacuole shrinks.

Final answer:

The central vacuole is the dominant structure in plant cells, responsible for storing pigments, maintaining turgor pressure, and regulating water balance. Surrounded by the tonoplast membrane, it takes up a significant proportion of the cell's volume.

Explanation:

The structure that occupies the majority of the center space within plant cells is the central vacuole. It is a large organelle, taking up anywhere from more than 30% to as much as 90% of a cell's volume in mature plant cells. The central vacuole's main roles include maintaining turgor pressure against the cell wall, storing pigments that color flowers, and regulating cell volume and water balance. It is enclosed by a membrane called the tonoplast, which allows the vacuole to expand, enabling the cell to get larger without the cost of synthesizing new cytoplasm. This is significant during various environmental conditions, such as drought, where the central vacuole's size can decrease, leading to plant wilting.

How do mitosis and meiosis differ in the division of genetic composition?

Answers

Mitosis is the process in which the chromosome are separated into two identical sets of chromosomes which in the end have their own nucleus. Meiosis is the division in 1/2 and then in 1/2 again causing 4 sets of chromosomes. So, your answer would be mitosis produces two genetically identical daughter cells but meiosis produces four genetically different daughter cells.

Which vegetable is found in chicken divan?

Answers

Broccoli. Hope this helped :)
Broccoli is found in chicken divan

Skin color is determined by three to five gene pairs. this makes skin color

Answers

pigment photosynthesis and the comeellianGene

An organism's _____ is its biological role in the ecosystem. habitat niche life history community

Answers

Assuming this is multiple choice, the answer would be "niche". An organism's niche is where that certain organism fits into an ecosystem, or what their part to play is. 

The process by which a cell splits into two identical units is called _____. division mitosis meiosis splitting

Answers

The process by which a cell splits into two identical units is called "Mitosis"

So, option B is your answer!

Hope this helps!
Final answer:

Mitosis is the process by which a cell divides into two identical units or daughter cells. It involves the division of genetic material and concludes with cytokinesis separating the cytoplasm into the two new cells. It is distinct from meiosis, which results in non-identical daughter cells.

Explanation:

The process by which a cell splits into two identical units is known as division mitosis. During mitosis, the genetic material inside a parent cell is divided equally into two parts, and then, two new cells known as daughter cells are formed, which are genetically identical to the parent cell. The mitotic phase follows a multistep process, beginning with the alignment and separation of duplicated chromosomes, moving to the opposite poles of the cell, and resulting in the cell division into two identical daughter cells. In comparison, meiosis is a nuclear division that results in four unique cells rather than two identical ones, which is norm in mitosis.

Division of genetic material during mitosis leads to the breakdown of the cell nucleus and the formation of two new, fully functional nuclei. Following mitosis, the procedure named cytokinesis physically separates the cytoplasmic components into two daughter cells. While cell division in sex cells, known as meiosis, is similar to mitosis, there are key differences mainly in the number of divisions and genetic similarities in the resulting cells.

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which of the following is the best name for SO3?

Answers

Sulfur trioxide. hope this helps

The best name for SO3 is sulfur trioxide. Option b is the correct answer.

SO3 is a compound of sulfur and oxygen. The prefix "sulfur" indicates that the compound contains sulfur, and the prefix "tri" indicates that the compound contains three oxygen atoms. Therefore, the best name for SO3 is sulfur trioxide.

The other answer choices are incorrect.

(a) Sodium trioxide is the compound NaO3.

(c) Monosodium trioxide does not exist.

(d) Monosulfur trioxide does not exist

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The following question may be like this:

Which of the following is the best name for SO3?

a. sodium trioxide

b. sulfur trioxide

c. monosodium trioxide

d. monosulfur trioxide

An animal cell is growing and is active. The cell is going through which subphase of interphase?
a)G1
b)G2
c)S

Answers

The answer is A. G1. Hope this helps
a)G1 is right..............

The following picture shows the cycle for the production of _______.



a.
soil
b.
igneous rocks (extrusive)
c.
volcanoes
d.
oceans

Answers

igneous rocks (extrusive)

When a hypothesis is proven wrong what would a scientist do next?

Answers

a scientist would look over the experiment to see what went wrong, look for any biases.

they would try and get the same conclusion by doing it all over again.
You take in the data you got from the experiment and make predictions on what is happening.

What did Louis Pasteur's experiment contribute to cell theory?

The fact that all organisms consist of cells

The evidence that cells are the basic unit for all organisms

The proposal that cells are living organisms

The proof that cells only come from other cells

Answers


The proof that cells only come from other cells

He proved it by his "swan-necked flasks" in which nothing formed in sealed flask whereas many organisms were there in open flask.

So, in short, option D is your final answer!

Hope this helps!

Louis Pasteur disproved the theory of spontaneous generation by proving that cells only come from other cells. So the correct option is D.

What is the theory of spontaneous generation?

The theory of spontaneous generation was a baseless theory that suggested that living matter could be produced from nonliving material. It was used to explain the origin of life on earth.

This theory was given by Aristotle. It was challenged by the work of Lazzaro Spallanzani and Francesco Redi. It was finally disproven by Louis Pasteur and John Tyndall.

Louis Pasteur was a French microbiologist and in 1859, he settled the dispute around the spontaneous generation. He did a broth experiment by using Swan neck flasks. As long as the flasks were kept closed, the broth remained clear. It started to become cloudy when the flasks were opened.

This suggested that in an environment where no living matter was allowed to enter, the new living matter was not produced. The new living matter was produced only when flasks were opened and microbes were allowed to enter.

Therefore, Louis Pasteur contributed to the cell theory by disproving the theory of spontaneous generation. So the correct option is D.

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Before a woman is born her body produces the egg cells that she will have for the rest of her life. The production of egg cells is a result of 2 divisions, which create eggs with 23 chromosomes. The process of producing eggs is called __________________.

Answers

Answer:

c: meoisis

Explanation:

unit 9 quiz biology

Dinosaur footprints are original remains.


Please select the best answer from the choices provided

T
F

Answers

this is false they are not original remains.

The answer is false.



What is the reason behind the high surface tension of water?

The density of the water molecule helps it to cohere to nearby water molecules, forming a skin over it.
The polarity of the water molecule helps it to cohere to nearby water molecules, forming a skin over it.
The weight of the water molecule helps it to cohere to nearby water molecules, forming a skin over it.

Answers

Answer - The polarity of the water molecule helps it to cohere to nearby water molecule. Forming a skin over.

Reasoning - Since the polarity is all close and wanting to bond they have a surface tension which come together to making a skin like over.
The correct answer is B

The more oxygen the muscles receive, the more energy you have.

True

False ...?

Answers

The statement is TRUE.

This is partially true. Your energy level has to due with a combination of variables, blood flow (oxygenation of muscles), blood chemistry, physical condition, and many others.


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!

True. The statement 'The more oxygen the muscles receive, the more energy you have' is accurate. With an increased oxygen supply, muscles can more efficiently produce adenosine triphosphate (ATP), the energy currency of the cell, through aerobic metabolism.

During exercise, especially after the first few minutes, your body begins to rely more heavily on aerobic metabolism, which uses oxygen to convert nutrients from the food we eat into energy. ATP is produced through a process known as cellular respiration, which occurs in the mitochondria of cells. Aerobic respiration is significantly more efficient than anaerobic metabolism, producing 18 times more ATP per molecule of glucose. This efficiency explains why an increased heart rate and breathing rate, which supply the muscles with more oxygen, can improve endurance and energy levels. Furthermore, while glycogen and creatine phosphate can provide energy in the absence of oxygen, these sources are limited and not as sustainable as oxygen-rich aerobic metabolism.

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