Membrane proteins are among the most important proteins biologically because they allow the cells to communicate with their environments. These membrane proteins are responsible for ALL BUT which process?
A) triggering ion channels
B) identifying foreign cells
C) regulating intake of oxygen
D) activating growth hormone reactions

Answers

Answer 1
The correct answer is C, regulating intake of oxygen. Hope that this answer was a help.
Answer 2

Membrane proteins are the proteins responsible for the interaction with the biological membrane. It is associated with triggering ion channels, identifying foreign cells, and activating growth hormone reactions.

What are the functions of membrane proteins?

Membrane proteins have a large number of functions, including the following:

It helps cells to communicate with each other.Maintain the shape of cells.Work according to the changes done by chemical messengers.Transport and share the material through the cell membrane.Activate several reactions.

It is not involved in regulating the intake of oxygen.

Thus, the correct option is C.

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Related Questions

The crops grown in a small Midwestern farming community are being destroyed by grasshoppers. The farmers have banded together and have decided to spray pesticides to reduce the grasshopper population. What is likely to happen in the future as a result of this spraying?

Answers

**a decrease in the bird population
**an increase in crops harvested
**reduced quality of groundwater
an increase in the snake population
increased precipitation

The 3 choices that have stars are the correct answers.

Hope I helped.
Ms.Weasley

explain how electromagnetic radiation helps scientists study the universe.

Answers

All stars have their own EM radiation, which makes their EM spectrum and from that scientist can know if star is approaching us or going away from us by "Blue shift" and "Red Shift" respectively. By this spectrum, they also can find out anything about star like it's heat, light, temperature etc.

Hope this helps!

Answer:

The answer is: Electromagnetic radiation helps scientists to study the universe through detectors and the cosmic microwave background.

Explanation:

The most important electromagnetic radiation is the one that comes from the Sun. It is the one that we can measure more accurately. It is very important to have detectors to be able to deepen the knowledge of the Sun and the surrounding atmosphere and how they influence the environment in which they are immersed.

Within the electromagnetic radiation is the "Cosmic microwave background", a background of light in the spectrum from which it comes from all directions, has a very low energy, has no impact on everyday life. Today it is known that it is a reflection of how the Universe was born, what happened after the Big Bang, which started in a very hot spot and expanded very quickly, gradually cooling.

The answer is: Electromagnetic radiation helps scientists to study the universe through detectors and the cosmic microwave background.

in a multicellular organism what accounts for the differences between the different types of cells

Answers

Cell Specialization. Cells become specialized when they activate (turn on/use) specific parts of the organism's DNA stored in the cell nucleus.

Final answer:

The differences between cell types in multicellular organisms are due to specialization, where cells follow different sets of instructions, leading to distinct tissue and organ development. This process is regulated by transcription factors and growth factors, resulting in varied gene expression and proteomes across cell types.

Explanation:

In multicellular organisms, the differentiation in cell types can be attributed to the specialized functions of different types of cells. Although all cells share the same genetic material, control processes ensure that cells follow distinct sets of instructions. This specialization is essential for the development of complex multicellularity, which includes the organization of cells into tissues, tissues into organs, and organs into organ systems. The organization and differentiation that give rise to the diversity of cell types is a critical aspect of development in multicellular organisms. Cell differentiation is tightly regulated by transcription factors and growth factors, leading to distinct gene expression profiles and proteomes between cell types, which in turn informs their specific functions and roles within the organism.

As a result of the Law of Conservation of Energy, a fish cannot gain more energy than it consumes. Which method, using an isolated system of fish in an aquarium, would best test this hypothesis?
a) Measure the total energy in the fish, the aquarium, and the energy of the food fed to the fish. Then measure the energy in the fish and the aquarium after feeding and determine the difference.
b) Measure the total energy in the fish before feeding and the energy of the food fed to the fish. Then measure the energy in the fish after feeding and determine the difference.
c) Measure the total energy of the aquarium before feeding and the energy of the food fed to the fish. Then measure the energy in the aquarium after feeding and determine the difference.
d) Measure the total energy of the food before feeding and the energy of the fish after feeding. Then measure the energy in the aquarium after feeding and determine the difference.

Answers

Correct answer: C) . Measure the total energy of the aquarium before feeding and the energy of the food fed to the fish. Then measure the energy in the aquarium after feeding and determine the difference.  

An isolated system is a system in which neither the energy nor the matter can enter or leave the system. As a result of that,  the total mass of the system remains unchanged.

There is a change in the species present, But, the total mass present will not change based on the law of conservation of matter and energy.






Which type of mutation results in an extra copy of all or part of a chromosome?
a. duplication
b. insertion
c. inversion
d. translocation

Answers

The best and most correct answer among the choices provided by your question is the first choice or letter A.

Duplication is type of mutation results in an extra copy of all or part of a chromosome.

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!

A) Duplication  results in an extra copy

what is the relationship between skin, sunlight, bones, and vitamin d ?

Answers

Here is the answer to the given question above. Vitamin D is the vitamin that is essential in managing calcium in your blood, bones and gut and helps cells all over your body to communicate properly. This vitamin D is being absorbed through the skin once it is exposed in sunlight. After that, the body would undergo some chemical processes. This is the reason why it is necessary in the formation of bones. Hope this answer helps.
Final answer:

Sunlight activates the production of vitaminD in the skin,which is important for strong bones.

Explanation:

The relationship between skin, sunlight, bones, and vitamin D is that sunlight activates a chemical in the skin called 7-dehydrocholesterol, which is converted into vitamin D. This vitamin D is then transported to the liver and kidneys where it is converted into its active form. The active form of vitamin D helps the body absorb calcium and phosphorus from the diet, which are essential for strong and healthy bones.



Without enough sunlight exposure, vitamin D deficiency can occur, leading to weak and brittle bones, a condition known as rickets in children and osteomalacia in adults. Sunlight is the main source of vitamin D, but it can also be obtained from certain foods and supplements.



In summary, sunlight activates the production of vitamin D in the skin, and vitamin D is important for strong bones by aiding in the absorption of calcium and phosphorus.

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What holds the two strands of DNA molecules to each other

Answers

What holds the two strands of DNA molecules to each other. Hydrogen Bonds

Answer:

The correct answer would be a hydrogen bond.

The two strands of the DNA are held together with the help of hydrogen bonds formed between the nitrogenous bases or base pairs.

The adenine (A) base pairs or makes a hydrogen bond with thymine (T) and guanine (G) base pairs or makes a hydrogen bond with cytosine (C).

2 hydrogen bonds are present between the A and T whereas 3 hydrogen bonds are present between G and C.

You were driving through the great plains of Nebraska to Northern Idaho. Gradually, the grassland gave way to tall conifers. Through which biomes did you travel?

Answers

i think the biomes that you traveled was a Grassland. This are places where hot, dry climates that are perfect for growing food and trees. And the conifers are the best example in your question. I hope you are satisfied with my answer and feel free to ask for more 

IN YOUROWN WORDS explain what is hypnosis?

Answers

the induction of a state of consciousness in which a person apparently loses the power of voluntary action and is highly responsive to suggestion or direction. Its use in therapy, typically to recover suppressed memories or to allow modification of behavior by suggestion, has been revived but is still controversial.

Hypnosis is a trance-like state of heightened suggestibility, deep relaxation, and intense focus, often induced by hypnotic induction. It is used therapeutically to address unconscious desires and change unwanted behaviors.

Hypnosis is a trance-like state of consciousness that is typically induced by a procedure known as hypnotic induction.

It is often used therapeutically to bring unconscious desires and emotions to the conscious mind, making them easier to address. For example, hypnosis is frequently applied to help individuals modify unwanted behaviors, such as reducing smoking, improving eating habits, or managing alcohol abuse. Famous psychologist Sigmund Freud highlighted its use in psychological therapy.

Additionally, brain imaging studies have shown that hypnotic states are associated with global changes in brain functioning, underscoring its potential efficacy in therapeutic settings.

Suppose that a when a cell phone store charges 16$ for a car charger, it sells 92 units. When it drops the price to 15$ it sells 96 units. Assume that demand is a linear function of price.

If each phone charger costs 1$ to make, what price should the store charge to maximize its profit?
If x is the number of times the price is reduced by one dollar.

Find a function for total profit with respect to x. A negative value for x will mean the price is increased. ...?

Answers

Final answer:

To maximize profit, determine the optimal price by comparing revenues and costs. The function for total profit with respect to x can be expressed as Profit = (P-1)*Q - 1*Q.

Explanation:

Determine the optimal price:

Calculate the revenues at each price point ($16 and $15).

Find the profit by subtracting the cost of production from the revenue generated.

Identify the price that yields the highest profit.

Function for total profit with respect to x: Profit = (P-1)*Q - 1*Q, where P is the price, Q is the quantity sold, and x represents how many times the price is reduced by one dollar.

Changes in the trilobite exoskeleton can be attributed to ____.
a.
changing environments
c.
inter-species mating
b.
competition for survival
d.
both a and b

Answers

D. Both A and B is the correct answer

It Would be D. Both a and b

In one to three sentences, describe what happens during the carbon fixation stage of the Calvin cycle.

Answers

In fixation, the first stage of the Calvin cycle, light-independent reactions are initiated; CO2 is fixed from an inorganic to an organic molecule. In the second stage, ATP and NADPH are used to reduce 3-PGA into G3P; then ATP and NADPH are converted to ADP and NADP +, respectively.

What did you include in your answer?


Carbon dioxide (CO2) combines with a five-carbon compound


3-phosphoglycerate (PGA) is formed.

which organism depends on an external source of organic compounds

Answers

Final answer:

A chemoheterotroph is an organism that requires external sources of organic compounds for energy and carbon, as it lives in environments without light and cannot perform photosynthesis.

Explanation:

The organism that depends on an external source of organic compounds is known as a chemoheterotroph. Such organisms rely on chemical sources of energy and consume organic compounds for their carbon source, as they cannot photosynthesize due to living in lightless environments. The term heterotroph comes into play here because these organisms obtain their carbon from organic compounds other than carbon dioxide, which differentiates them from autotrophs that can use inorganic carbon dioxide to synthesize their own food.

The organism that depends on an external source of organic compounds is a heterotroph. Heterotrophs rely on complex organic carbon compounds as nutrients, which are initially provided by autotrophs. Many organisms, including humans and prokaryotes, are heterotrophic.

DNA is aspiral ladder shaped structure with the sides of the ladder representing which components

Answers

DNA is made up of six smaller molecules; a five carbon sugar called deoxyribose, a phosphate molecule, and four different nitrogenous bases (adenine, thymine, cytosine and guanine). The model is known as a double helix because two long strands twist around each other like a "twisted ladder." The rails of the ladder are made of alternating sugar and phosphate molecules. The steps of the ladder are made of two bases joined together.

The sides of the DNA ladder are represented by the sugar-phosphate backbone.

The structure of DNA, as discovered by James Watson and Francis Crick, is often described as a double helix, which can be visualized as a twisted ladder or spiral staircase.

The sides of this ladder are composed of alternating sugar and phosphate groups, which form the backbone of the DNA molecule. Each sugar (deoxyribose) is linked to a phosphate group, and these sugar-phosphate chains run in opposite directions on the two strands of the DNA double helix.

The rungs of the ladder are formed by pairs of nitrogenous bases that bridge the two sugar-phosphate backbones.

These bases are adenine (A), thymine (T), cytosine (C), and guanine (G). Adenine always pairs with thymine, and cytosine always pairs with guanine, through hydrogen bonds. These specific base pairs are crucial for the replication and expression of genetic information.

In summary, the sides of the DNA ladder, which give the molecule its structural integrity, are made up of the sugar-phosphate backbone, while the rungs are composed of the nitrogenous base pairs.

Roan cattle show codominance for the color of their hair. There are alleles for red hair and white hair. What would you expect a heterozygous roan bull to look like if the trait showed incomplete dominance instead?
A It would be red.
B It would be white.
C It would be spotted.
D It would be pink.

Answers

The right answer is D.

* Incomplete dominance is when hybrids of the F1 generation have an intermediate phenotype (between the two phenotypes) compared to the parental generation P1. This phenomenon occurs in heterozygous individuals.

We have an example of an incomplete dominanace in this case, where we have a mixture of the two colors of the two alleles. The pink color obtained in the F1 generation is incomplete dominance. These species are heterozygous.

* For codominance it is different, There are some cases where the two alleles of a gene are completely and independently manifested in the phenotype in a heterozygous individual. Both of these alleles are said to be codominant.

For example, a chicken with a variegated plumage that was obtained by crossing a white hen with a black rooster. One might expect gray offspring, but since we have a dominant allele for the black color and a dominant allele for the white color, we obtain a white and black plumage.

A heterozygous roan bull would look like pink. Hence, option D is correct.

Further Explanation:

Codominance is known to be the relationship between the two versions of the gene. People get one version of a gene, known as allele, from each parent. When the alleles are not same, then dominant allele generally expresses while the effect of the other allele (recessive allele) is masked. The common example of this kind of dominance is observed in ABO blood group.

Incomplete dominance occurs when the dominant allele or form of the gene which does not fully masks the effects of recessive allele and displays the blending of both alleles in physical appearance. This is also called as partial or semi-dominance. The common example of this is observed in roses. The red color works as a dominant trait while recessive trait is white. However, the heterozygous roses are pink. This is different from codominance, which is when both alleles are expressed at one time. Hence, in the given case, heterozygous roan bull will display pink color.

Learn More:

Learn more about the fibrous skeleton of the heart https://brainly.com/question/7301375 Learn more about blood cells bring oxygen and take carbon dioxide away https://brainly.com/question/1213217 Learn more about the system prepares food for absorption into the bloodstream https://brainly.com/question/310282

Answer Details:

Grade: High school

Subject: Biology

Chapter: Genetics

Keywords:

Roan bull, codominance, incomplete dominance, red color, dominant allele, a recessive allele, masking, blending, pink, white, ABO blood grouping, roses.

Gametes are produced by the process of
a. mitosis.
b. meiosis.
c. crossing-over.
d. replication.

Answers

Pretty sure it's B, meiosis.

Gametes are produced by the process of meiosis.

Gametes are produced by the process of meiosis. This is a type of cell division specific to the production of haploid cells. During meiosis, genetic information is halved, and the resulting daughter cells contain one chromosome from each chromosomal pair, differentiating them from the diploid parent cells. Meiosis happens in two stages: meiosis I and meiosis II, which include the phases of prophase, metaphase, anaphase, and telophase. This process ensures genetic diversity through mechanisms such as crossing-over during prophase I and random assortment of chromosomes.

Meiosis is distinct from mitosis, which is another form of cell division that results in daughter cells with the same number of chromosomes as the parent cell, maintaining the diploid state. Unlike mitosis, meiosis involves a reduction in chromosome number, leading to haploid gametes that are essential in sexual reproduction for the formation of a diploid zygote upon fertilisation.

Crossing-over does occur in meiosis, not mitosis, allowing for a genetic recombination and ultimately contributing to genetic variation. Also, replication of DNA occurs before meiosis begins during the S-phase of the cell cycle, forming sister chromatids. Post-meiotically, gametogenesis takes place where cells mature into sperm through spermatogenesis or eggs through oogenesis, depending on the sex of the organism.

Which technique could be used to determine the relative number of bases in fragments taken from a sample of DNA

Answers

Gel electrophoresis can be used to determine the relative number of bases in fragments taken from a sample of DNA.

Gel Electrophoresis, Chain-Termination Sequencing, and RFLPs are techniques used to analyze DNA fragments and determine the relative number of bases.

Gel Electrophoresis: Gel electrophoresis is a technique used to separate nucleic acid fragments based on size.

Chain-Termination Sequencing: This technique sequences DNA fragments by incorporating di deoxy nucleotides, allowing for the determination of the relative ordering of bases.

Restriction Fragment Length Polymorphisms (RFLPs): These unique patterns of DNA fragments are used to determine the relative number of bases in fragments obtained from DNA samples.

List all the ways that a single tree may be involved in the carbon cycle.

Answers

Answer:

A tree can be involved in the carbon cycle as follows:

-Photosynthesis: energy from the Sun to convert CO2 into carbohydrates and oxygen

-Respiration: convert carbohydrates and oxygen to produce energy

-If the tree dies: oxygen use and CO2 release

Explanation:

Carbon dioxide is a greenhouse gas. Its quantity is controlled by the carbon cycle. The first step of the carbon cycle is photosynthesis and respiration in plants, through the following chemical reaction:

CO2 + H2O + energy «CH2O (carbohydrates) + O2

In the day, plants use the sun's energy to transform CO2 plus water into carbohydrates and oxygen, known as photosynthesis. At night, they use carbohydrates plus oxygen to generate energy, called breathing. If the plants burn or die and decompose, the reaction takes the path on the left; use of oxygen and CO2 release. If organic matter (dead trees) is deposited in sediments, CO2 that belongs to the atmosphere is stored

Final answer:

Trees participate in the carbon cycle through photosynthesis, respiration, decomposition, and carbon storage, significantly influencing climate by regulating atmospheric CO₂. Human activities, such as deforestation, further impact this cycle and climate change.

Explanation:

Trees play a crucial role in the carbon cycle, a fundamental process vital for life on Earth. They are involved in several key processes:

Photosynthesis: Trees absorb carbon dioxide (CO₂) from the atmosphere and use sunlight to convert it into organic compounds like glucose, thereby storing carbon in their biomass.Respiration: Trees release CO₂ back into the atmosphere as a byproduct of converting stored energy in biomass back into energy they can use.Decomposition: When trees die, decomposers break down the organic compounds in the tree, releasing CO₂ back into the atmosphere.Carbon Storage: Trees lock away carbon in their biomass over their lifetimes, reducing atmospheric CO₂ and mitigating the greenhouse effect and climate change.

Additionally, human activities like deforestation and burning fossil fuels impact the natural balance of the carbon cycle by increasing atmospheric CO₂ levels, driving climate change.

What role does cellular respiration play in the water cycle?
It removes H2O from the atmosphere during glycolysis.
It removes H2O from the atmosphere during acetyl CoA formation.
It releases H2O to the atmosphere during the citric acid cycle.
It releases H2O to the atmosphere during electron transport.

Answers

the answer would be D 

The right answer is It releases H2O to the atmosphere during electron transport.

Respiration was defined following Lavoisier's work as a mode of gaseous exchange by which a living being releases carbon dioxide in exchange for an absorption of oxygen.

It is usually the oxygen of the air that intervenes: activated, it will combine with protons to form the metabolic water excreted during breathing in the atmosphere.

Why do the cells in all living things need energy?

A.
to fuel their chemical reactions

B.
to help them decompose

C.
to communicate with other cells

D.
so they can block sunlight

Answers

A.
to fuel their chemical reactions

The orbital radius of Venus is 0.72 AU what is the distance in kilometers?

Answers

1.0771E+8

i love Venus it is my most favorite planet.
Its 228 in Kilometers

Many of the biochemical reactions that occur within your cells are catalyzed by enzymes. Which of the following statements is true about most enzyme-assisted reactions? A) They can take place only within a ribosome. B) They occur more quickly than reactions without enzymes. C) Enzymes are quickly used up during the reactions. D) They can take place at any temperature or pH.

Answers

Final answer:

Enzyme-assisted reactions occur more quickly than those without enzymes because they lower the activation energy needed for the reactions, are not consumed in the process, and are reused multiple times. Therefore the correct answer is option b.

Explanation:

Many of the biochemical reactions that occur within your cells are catalyzed by enzymes. The true statement about most enzyme-assisted reactions is that B) They occur more quickly than reactions without enzymes. Enzymes function as biological catalysts, significantly lowering the amount of activation energy needed, which in turn speeds up reactions. Contrary to taking place exclusively within ribosomes or being quickly used up during reactions, enzymes are not consumed and can act upon substrates multiple times. However, enzymatic reactions are very sensitive to their environment and do not take place effectively at any temperature or pH, as they have optimal conditions in which they function best.

In fruit flies, bar-shaped eyes are dominant to normal-shaped eyes. Male offspring from parents that contained only bar-shaped alleles will have bar eyes. If this male (fly#1) is crossed with a normal-eyed female (fly#2) only the female offspring have bar-shaped eyes. If a normal-eyed (fly#3) is crossed with a bar-eyed female (fly#4), whose parents contained only bar-shaped alleles, all their offspring will have bar-shaped eyes. Explain this results and give the phenotypes of the numbered flies in this problem.

Answers

The answer is
fly #1: Genotype: XBY, phenotype: male with bar-shaped eyes
fly #2: Genotype: XbXb, phenotype: female with normal-shaped eyes
fly #3: Genotype: XBY, phenotype: male with bar-shaped eyes
fly #4: Genotype: XBXB, phenotype: female with bar-shaped eyes

Since there is difference in inheritance, bar-shaped eyes must be X-linked dominant trait.
XB - dominant allele on X chromosome for bar-shaped eyes 
Xb - recessive allele on X chromosome for normal-shaped eyes.

Let's see:
Male offspring from parents that contained only bar-shaped alleles will have bar eyes:
                   Father             Mother
Parents:        XBY       x        XBXB
Male offspring: XBY
fly#1: XBY

Fly#1 is crossed with a normal-eyed female (fly#2) only the female offspring have bar-shaped eyes:
                     Father            Mother
Parents:        XBY        x      XbXb
Female offspring:     XBXb
fly#2: XbXb

If a normal-eyed (fly#3) is crossed with a bar-eyed female (fly#4), whose parents contained only bar-shaped alleles, all their offspring will have bar-shaped eyes.:
                    Father          Mother
Parents:        XbY       x      XBXB (since her parents were: XBY and XBXB)
Offspring:      XBXb   XBXb    XBY     XBY

One characteristics of all living organisms is that they

Answers

Breath oxygen and they are made up of 1+ living cells

Answer:

maintain homeostasis

Explanation:

The seven characteristics of life include:

responsiveness to the environment;

growth and change;

ability to reproduce;

have a metabolism and breathe;

maintain homeostasis;

being made of cells; and.

passing traits onto offspring.

Seed X has 20 chromosomes. How many chromosomes will daughter cells have after meiosis? I'll upvote you

Answers

10 because after meiosis, the number of chromosomes have to be divided by two.

A marine biologist is studying dolphin calls and notices that sometimes the calls sound louder based on the background noise in the water. What wave property of the dolphin's call is changing because of the background noise?
1.Amplitude
2.Frequency
3.Speed
4.Wavelength

Answers

Answer:

The correct answer is option 1. "Amplitude".

Explanation:

Waves of sound have different properties, among them amplitude is the one that determines the loudness or volume of the sound. The amplitude is the  height of the wave, measured in meters, or in other word the maximum displacement of the sound's particle from its position of equilibrium. If a dolphin calling sounds louder because of the background noise, the waves of the sound that the dolphin produces would have a higher amplitude.

Answer:

Option C, Speed

Explanation:

Sounds travel faster in water. Their speed in water is five times of their speed in air.  

With such high speed, sound waves instead of going through ossicles bones (in the inner ears) directly vibrate the heavy bone behind the ears. Due to this reason, a person below water hears sound waves of higher frequency.  

However, while travelling through air sound waves reaches at lower frequency

Hence, option C is correct

for a living organism, which of the following are true? select all that apply
A the ratio of C-14 to C-12 remains constant.
B the ratio of C-14 to C-12 increases over time.
C the ratio of C-14 to C-12 decreases over time.
D the amount of C-14 is less than the amount of C-12.

Answers

C the ratio of C-14 to C-12 decreases over time.

D the amount of C-14 is less than the amount of C-12.

They both are correct so, they both are your answer.

Hope this helps!

If all of the offspring of a particular cross have the genotype Gg, what must the genotype of the parents be?

Answers

GG and gg, that's the only way to end up with all Gg

If all of the offspring of a particular cross have the genotype Gg, the genotype of the parents be GG and gg.

What is genotype ?

A genotype is the total set of heritable genes which is  transferred from parents to offspring; These genes involve in encoding specific features and the characteristics can be physically expressed in an organism called as phenotype.

The genotypes of the gene can be present in three form on the basis of allele arrangement such as homozygous dominant (PP), Heterozygous (Pp) and Homozygous recessive (pp).

Genotyping method is used to determine the genotype of an individual by using biological assay and the techniques used are, DNA fragment analysis, PCR, allele-specific oligonucleotide (ASO) probes, nucleic acid hybridization to DNA microarrays or beads, and DNA sequencing.

The term genotype of the gene is unclear and complex than phenotype. A height, color, and skin tone are examples of phenotype.

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Identify the type of chemical reaction

H2CO3 -> H2O + CO2

A) Decomposition
B) Exchange
C) Reversible
D) Synthesis

Answers

A. Decompostion :) :) :) :) :)
exchange...........................

mitochondria and chloroplastsare two types of what

Answers

two types of organelles that produce energy
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