give two examples of how plants and animals affect their environment?​

Answers

Answer 1

Answer:

Hey mate....

Explanation:

This is ur answer...

Talk about how plants and animals affect other things and give some examples e.g. squirrels bury acorns to save for winter annd some of them grow into oak trees, litter gets washes into storm drains into the ocean and affects wildife, spraying for mosquitoes kills honey bees that pollinate the flowers of apple trees etc...

Hope it helps!

Brainliest pls!

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Related Questions

Which description best matches the image below of a hand that is using the
right-hand palm rule?
O A. A proton moving away from you in a magnetic field that points left
will experience a force up.
OB. A proton moving left in a magnetic field that points up will
experience a force away from you.
O C. A proton moving away from you in a magnetic field that points up
will experience a force left.
O D. A proton moving up in a magnetic field that points left will
na force away from v

Answers

Answer:

c is correct

Explanation:

This is the Bohr model for which element on the periodic table?

Answers

Answer:

The answer is Beryllium

carbon, it has 6 dots on the bohr model and it’s atomix number is 6

Animals release energy needed for growth and repair through a

Answers

Answer:

The best answer of how animals release energy needed for growth and repair is ( C ) :  A series of chemical reaction during cellular respiration

Animals need energy to function effectively daily and also to repair. one way by which Animals get such energy is through cellular respiration.

during cellular respiration the series of chemical reaction that leads to the release of energy follows this pattern.

Consumed food ( sugar/glucose molecules ) are broken down

The energy released  from the breakdown is then transformed into ATP energy

The transformed ATP energy is then used for Cellular activities  ( growth and repair of animal cells )

Photosynthesis and Cellular respiration are have similar process but the former ( photosynthesis ) occurs in plants not Animals.

Hence we can conclude that animals release energy needed for growth and repair through a series of chemical reaction during cellular respiration.

Explanation:PLSS BRAINLIESTT

The use of drugs at a lower level in feeds than would be used to treat a sick animal is referred to as

Answers

It would be known as subtherapeutic use of and to Anti-microbial’s an animal feeds

What types of organisms do alcohol fermentation ? Summarize this process,

Answers

Answer:Two kinds of organisms can do alcohol fermentation: bacteria and yeast (yeast, by the way, are fungi). Humans “use” alcohol fermentation in another way, co-opting it to make bread, beer, and wine.

Explanation: i took the test

What happens when the thin filament in a muscle fiber slides over the thick filaments?

Answers

Answer:

As the thin filaments slide inward, structures called Z-discs come toward each other and the sarcomere shortens but the lengths of thick and thin filaments do not change. The sliding of the filaments and shortening of the sarcomere cause shortening of the whole muscle fiber and ultimately the entire muscle.

Answer:

Sliding of the filaments and shortening

Explanation:

As the thin filaments slide inward, structures called Z-discs come toward each other and the sarcomere shortens but the lengths of thick and thin filaments do not change. The sliding of the filaments and shortening of the sarcomere cause shortening of the whole muscle fiber and ultimately the entire muscle.

PLS MARK BRAINLIEST

what differentiates amino acids from one another

Answers

Answer:

Every amino acid comprises a hydrogen atom, a carboxyl group, an alpha-amino group and also the R-group (which makes the side chain). The side chain present in every amino acid is different. Therefore, the only primary factor that makes each amino acid different is the presence of R-group.

Explanation:

Maybe this will help..

What happens to most of the precipitation that
falls on land?
a. It evaporates.
c. It seeps into the ground.
b. It becomes runoff, d. It becomes glacial ice.

Answers

Only about a third of the precipitation that falls over land runs off into streams and rivers and is returned to the oceans. The other two-thirds is evaporated, transpired, or soaks (infiltrates) into groundwater. Surface runoff can also be diverted by humans for their own uses.

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Immigration into an existing ecosystem will cause a population to increase if

the birth rate is greater than the death rate
the birth rate and death rate are balanced
the birth rate doubles and the death rate does not
the death rate is greater than the birth rate

Answers

Answer: A or C

Explanation: I just did it

in this environment, the fish represents which type of organism?
A. Heterotroph
B. Producer
C. Autotroph

Answers

Heterotroph, a fish cannot make its own food/energy so that rules out producer and autotroph

Which would conserve more energy if all humans ate only vegetables or ate only meat

Answers

Answer:

There would be more conservation of energy if human beings it only meat.  

Explanation:

this is because meat consists of a significant portion of the fat. The amount of of energy that is liberated per molecule of fat is almost twice the amount of energy that is liberated by carbohydrate or protein. As a result of this the total energy consumption will be more if human being consumes only fat. however it takes more time to digest fat as compared to that of carbohydrate and protein.

Answer:

There would be more conservation of energy if human beings it only meat.

Explanation:

This is because meat consists of a significant portion of the fat. The amount of energy that is liberated per molecule of fat is almost twice the amount of energy that is liberated by carbohydrates or protein.

As a result of this the total energy consumption will be more if human being consumes only fat. However, it takes more time to digest fat as compared to that of carbohydrates and protein.

How do bacteria get the proteins for the soil? (Protein food web thing)

Answers

Answer:

Nitrogen-fixing bacteria convert nitrogen gas from air into a form that plants can use to make proteins. Free-living nitrogen-fixing bacteria are also found in the soil. When they die the nitrogen they have fixed into their biomass is converted into ammonium. 2.

Explanation:

an object weighs 20n it displaces a volume of water that weighs 15n what is the buoyant force on the object

Answers

Answer:

sorry dont no what u say

so bye

5) Choose the best answer.
How does moss prevent landslides?
They adapt to surviving bad weather.
They live in the shade on the ground.
They establish themselves on rocky ground.
They turn brown or black and appear to be dead when times are dry.
They soak up the rain on steep hillsides.

Answers

Answer:

they soak up the rain on steep hillsides

4. Which is an example of a chemical change?
A
Rust forming
C.
Candy bar melting
B.
Water boiling
D.
Pencil breaking

Answers

Answer:

A.

Explanation:

A. Rust forming

is a example of a chemical change

Hope this helped you!!

Answer:

RUST FORMING

Explanation:

because it takes the chemical h2o to form rust

I need help ASAP pleaseee :( also im in 5th grade btw

Answers

Answer:

Ok I will help you what is the problem

Explanation:

What’s the problem I’m in high school so I can help

20 Points!

Question:
Study the illustration. The small blue spheres represent water molecules.

In which direction will water molecules move across the membrane?


Water will move from A to B.


Water will move from B to A.


There will be no net movement of water.

Answers

Given the illustration shown in the image attached to this answer, water molecules will move from B to A.

Osmosis is defined as the movement of water molecules across a semi - permeable membrane from a region of higher concentration to a region of lower concentration. Osmosis usually occurs across the cell membrane.

The cell membrane is an example of a semi - permeable membrane. Hence, water moves from B where it is at a higher concentration to A where it is at a lower concentration according to the definition of osmosis.

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6. Alteration so that some of the proteins original properties are diminished or eliminated is:

a. Activation energy
b. Denatured
C. Catabolism
d. Anabolism

Answers

B, denaturing. Denaturing is the process in which proteins lose their native fold. The native fold is what gives each amino-acid sequence chain their function.

Which statement is true?
O All fungi are multicellular heterotrophs.
O All fungi are single-celled heterotrophs.
O All animals are multicellular heterotrophs.
O All animals are single-celled heterotrophs.

Answers

Answer:

The answer should be the third option. 'All animals are multicellular heterotrophs'

Explanation:

How does anesthesia work?

Answers

anesthetics induce a different sort of anesthetic state, one of general insensibility to pain. The patient loses awareness yet his vital physiologic functions, such as breathing and maintenance of blood pressure, continue to function. Less is known about the mechanism of action of general anesthetics compared to locals, despite their use for more than 150 years. The most commonly used general anesthetic agents are administered by breathing and are thus termed inhalational or volatile anesthetics. They are structurally related to ether, the original anesthetic. Their primary site of action is in the central nervous system, where they inhibit nerve transmission by a mechanism distinct from that of local anesthetics. The general anesthetics cause a reduction in nerve transmission at synapses, the sites at which neurotransmitters are released and exert their initial action in the body.

Explain
4. When are chemical
properties observable?

Answers

they are observable when there is a change in color, smell, temperature, and there is a precipitate or formation of bubbles.

11. A flower produces a seed. Explain why this is an example of sexual reproduction

Answers

Answer:

itrequires genetic material (DNA) from two parents. The parent plants have male and female sex cells, called gametes. ... Seeds produced through fertilization contain genetic material from both parents.

The production of a seed by a flower is an example of sexual reproduction because it involves the fusion of male and female gametes (pollen and ovules) to form a genetically diverse offspring.

Sexual reproduction is a type of reproductive process that involves the combination of genetic material from two parent organisms, resulting in the formation of genetically diverse offspring. In the case of a flower producing a seed, sexual reproduction occurs through a series of specialized reproductive structures and processes.

Male Gamete Production (Pollen): Flowers produce male gametes, or pollen, in structures called anthers. Pollen contains the male reproductive cells necessary for fertilization. When pollen is mature, it is released from the anthers.

Female Gamete Production (Ovules): Flowers also produce female gametes, or ovules, within the ovary. Each ovule contains an egg cell, which is the female reproductive cell. The ovary is located at the base of the flower.

Pollination: Pollination is the process by which pollen from the male reproductive structures (anthers) is transferred to the female reproductive structures (stigma) of the same or a different flower. This can occur through wind, water, insects, birds, or other means.

Fertilization: Once pollen lands on the stigma of a compatible flower, it forms a pollen tube that grows down into the ovary. This tube delivers the male gametes to the ovules, where fertilization occurs. Fertilization is the fusion of a male gamete with a female gamete to form a zygote, which develops into an embryo within the seed.

Seed Formation: After fertilization, the ovule develops into a seed, which contains the embryo, endosperm, and protective seed coat. The embryo carries genetic information from both parent plants, resulting in genetic diversity.

The combination of genetic material from male and female parent plants results in offspring with unique genetic characteristics. This genetic diversity is advantageous for the survival and adaptation of species to changing environments. Therefore, the production of a seed by a flower is a prime example of sexual reproduction, involving the fusion of gametes to create genetically diverse offspring with traits inherited from both parents.

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What process takes place in plant and animal cells that involves chemical reactions with oxygen and releases stored energy? cell division meiosis cellular respiration photosynthesis

Answers

Answer:

cellular respiration

Explanation:

I did the test-

C. cellular respiration

Explanation: Becuase yes.

* I got the quiz*

Which of these questions could BEST be answered with the methods of science?

a. How is Earth different from other planets?
b. What does it mean to be a good person?

c. Will computers make us more or less human?

Answers

Answer:

A

Explanation:

It is about planets and planets are in space.

Help me pleaseeeeee eeee

Answers

Stop it Ben, let people answer this question.

NEED HELP ASAP!!!
The coordinated action of two types of myofilaments, actin and myosin, results in muscle contraction. The muscles contract as actin filaments slide over myosin filaments. When the muscle is in a relaxed state, the myosin heads are ready to bind with the actin filament. However, they are not able to bind due to

a.
the absence of ATP

b.
a high concentration of Ca++ ions

c.
blockage of the attachment site

d.
alcoholic fermentation

Answers

Answer:

I think due to absence of ATP but I'm not sure.. Actin and myosin return to their unbound state causing the muscle to relax. Alternatively relaxation (failure) will also occur when ATP is no longer available.

Myosin heads are ready to bind with the actin filament they are not able to bind due to the absence of ATP.

How two myofilaments involved in muscle contraction?

Muscle contraction results from an intercommunication between the actin and myosin filaments which generate movement relative to one another.

What happens to the actin and myosin filaments when a muscle contracts?

Myosin movement appear to be a kind of molecular hop. The myosin reaches forward, binds to actin, contracts, releases actin, and then reaches forward again to bind actin in a new cycle.

What happens to actin and myosin during muscle relaxation?

Relaxation occurs when nerve stimulation stops. Calcium gets moved back into the sarcoplasmic reticulum shattering the link between actin and myosin. Actin and myosin then return to their unbound state causing the muscle to relax.

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Which of the following statement is true about recombinant DNA

Answers

Answer:

It combines genes from two different organisms.

A de-shelled egg is placed in tap water. The egg grows in size.

What is the best explanation for this change in size?


Ions in the water moved into the cell through diffusion because there were more ions outside the cell than inside the cell.

Water moved into the cell by osmosis because the solute concentration was higher inside the cell than outside the cell.

Water moved out of the cell by osmosis because the solute concentration was higher outside the cell than inside the cell.

Water moved into the cell by diffusion because there is more water inside the cell than outside the cell.

Answers

C I did your test and got 100% I’m a g at this I promise you

The best explanation for the change in the egg's size is that Water moved into the cell by osmosis because the solute concentration was higher inside the cell than outside the cell. Option B.

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

When talking about solutions, we can classify them as follows,

Hypertonic ⇒ A hypertonic solution has a higher concentration of solute than the cell. This means that in the cell interior, the solute concentration is lower than in the solution itself.  

Isotonic ⇒ The solute concentration is the same inside the cell and outside.  

Hypotonic ⇒ A hypotonic solution has a lower concentration of solute than the cell. This means that in the cell interior, the solute concentration is higher than in the solution itself.  

Water is considered to be a hypotonic solution.

When a cell is in a hypotonic solution, through osmosis, water moves toward the cell.  

Note: In this example, the egg is the cell.

Osmosis is the phenomenon that occurs when two dilutions of different concentrations -in this example, the interior of the cell and the solution- are separated by a semipermeable membrane.

The membrane allows the pass of water but not solute. Hence, water can move from the most diluted side to the less diluted one.  

Water tends to go from the hypotonic solution to the cell interior and keeps doing so until concentrations are equal in the cell interior and exterior.

As water enters the cell, the cell begins to enlarge and becomes bigger-sized. And because cells can not limit the amount of water moving in, it keeps swelling until the membrane can not stretch anymore, and lysis occurs. It bursts.  

What we need to consider is

When a cell with a semipermeable membrane is placed in a hypotonic solution, water enters the cell.

When a cell with a semipermeable membrane is placed in an isotonic solution, there is no water movement.  

When a cell with a semipermeable membrane is placed in a hypertonic solution, water gets out of the cell.

So, the best explanation for the change in the egg's size is Water moved into the cell by osmosis because the solute concentration was higher inside the cell than outside the cell. Option B.

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

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Warm water rises because it is ............ than cool water.


a) warmer

b) cooler

c) more dense

d) less dense



**Answer and I will give you brainiliest**​

Answers

Answer:

I'm pretty sure the answer is D.) Less Dense

Explanation:

Answer:

d) less dense

Explanation:

When fluids (liquids and gases) are heated, they expand and therefore become less dense. Any object or substance that is less dense than a fluid will float in that fluid, so hot water rises (floats) in colder water.

How are phospholipids and DNA similr

Answers

Answer:

I think answer is liquid vesicles concentration was 0.3 mg/ ml

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