what happens to some of these carbon atoms when a plant respires

Answers

Answer 1

Answer:

exit the leaf as carbon dioxide

Explanation:

hope this helps


Related Questions

what is the main difference from a energy point of view between photosynthesis and biological nitrogen fixation​

Answers

Answer:

hey mate here is your answer

Photosynthesis harvests and stores energy, whereas biological nitrogen fixation requires energy.

please mark me as a brainliest

is ATP a high, mid or low level energy carrier? Why?

Answers

ATP is a High level energy carrier.

ATP or Adenine triphosphate is considered a high-level energy carrier because it contains a significant amount of energy that can be readily released and utilized by the cell for various metabolic processes. This is because ATP has three phosphate groups that are negatively charged and repel each other, creating a high-energy bond between them. The high energy bond between each phosphate group is known as the phosphoric anhydride bond. On hydrolyzing a phosphate group that is the removal of the phosphate group results in the release of higher energy. Therefore, ATP is an essential molecule for providing energy to the cell and maintaining its metabolic functions.

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brainliest!! Which of the following can be found at a divergent boundary, but not a convergent boundary?

Volcanoes

Earthquakes

Rift Valleys

Mountain Ranges

Answers

Answer:

Rift valleys cannot be found at convergent boundaries

C. Rift valleys I think I’m not sure

Which of the following does not support the idea of descent with modification? A. Organisms and the cells that they are composed of arise from DNA
B. When organisms reproduce they generate new copies of DNA to pass down to their offspring
C. We inherit traits from our ancestors because in possess molecules of their DNA that you received from your parents
D. In the process of DNA replication, mutations occur with the goal of increasing an organism's fitness

Answers

I think that the answer is D. In the process of DNA replication, mutations occur with the goal of increasing an organism's fitness.

Mutations can occur during DNA replication, however, there is no correlation between mutation and increasing an organism’s fitness. It is also important to acknowledge, that mutations can be both harmful, beneficial, and non-effective to organisms and their physiology.

9. A finch population has genetic diversity. Some of the finches have an allele that gives them
longer beaks. Due to pollution, the ecosystem changes and seeds become harder to find. The
finches with long beaks can dig the seeds out more easily than the finches with short beaks.
a) Which type of bird is selected for in the polluted ecosystem?
b) How will the allele frequency change in the finch population?
c) is this an example of natural selection explain

Answers

Answer:

A) the finch with the longer beak

B) the allele will continue to become more prominent as the smaller beak birds die off

C) Yes, the birds with the longer beaks will continue to live on because the birds with the smaller beaks can’t find the seeds as easily.

Explanation:

Seeds are harder to find, so finches with larger beaks get selected in a polluted environment. This is a natural selection. If this continues, then the alleles for short beak will vanish.

What is natural selection?

Natural selection is a process in which nature selects an organism that can fit well. If an allele is selected in a population and present for a longer time, then it replaces other alleles in that population. Example: In a population, both short-beaked and long-beaked finches are present.

Due to pollution, long-beaked finches are able to find more seeds than short-beaked finches. Here, nature favors long-beaked finches over short-beaked finches. If this continues for a longer generation, then alleles for the short beak will vanish. Only alleles for long beaks will be in the population.

Hence, long-beaked finches are selected. It is an example of natural selection. The allele frequency of the long beak will increase while decreasing for the short beak.

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After twenty-five payments, how much of the principal has been paid off?




a. $2,669. 28



b. $10,353. 25



c. $9,543. 97



d. $12,213. 25

Answers

Interest rate, or loan terms. Without these specifics, it's not possible to calculate the exact amount. Loan payments consist of two components: principal and interest.

The principal refers to the original amount borrowed, while the interest is the cost of borrowing. The specific payment amounts and proportions allocated to principal and interest depend on the terms of the loan. If we assume that each payment made is evenly split between principal and interest, we can estimate the amount of the principal that has been paid off after twenty-five payments. However, this estimation may not be accurate without knowing the specific terms of the loan.

Let's consider the answer choices provided:

a. $2,669.28

b. $10,353.25

c. $9,543.97

d. $12,213.25

Without more context or calculations, it is impossible to determine which of these options represents the correct amount of principal paid off after twenty-five payments.

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Complete the sentence:-
1-A
is a cold mixture of dust and ice that gives up a long trail of light as it
approaches the sun.
2-Star is a giant ball of hot gas mainly composed of
and
3- A................... is a group of stars that people imagined to represent a figure, animal or object.
4-
is a body that orbits a planet. The moon is Earth's only
satellite.
5-......
is an object that orbits around the sun due to force of gravitation. There are
planets, among them
are visible from the Earth without a telescope
they are Mercury, venus, Mars, Jupiter, and Saturn.
I
6-A ............ is the streak of light produced when a small object burns up entering Earth's
atmosphere. You can see a meteor on almost any night.
Answer the questions

Answers

Answer:

3)constellations

4moon

5) among them Venus

6)lightining

1- Comet
2- Hydrogen and Helium

Explain the DNA Replication diagram above with all the great terms from this chapter. This is a BIG ANSWER.​

Explain the DNA Replication diagram above with all the great terms from this chapter. This is a BIG ANSWER.

Answers

DNA replication or duplication is the process of making copies of DNA by the cell. It involves a series of steps and various enzymes required for the completion of the process.

What is the process of DNA replication?

DNA replication has several steps along with some proteins called replication enzymes as well as RNA.

The process of replication is as follows:

Replication fork: It is made by unzipping DNA into two strands. It is done by break of the purine and pyrimidine bond accomplished by an enzyme called DNA helicase.

Primer binding: After this unzipping, a short piece of RNA which is called as a primer binds to the 3' end of the DNA strand. The primer bound is the starting point for replication. Primers are generated by the enzyme referred to as DNA primase.

Elongation: DNA polymerase aids in the elongation process in DNA replication. As the replication moves in the 5' to 3' direction on the leading strand, the newly formed strand will be continuous. But in the case of the lagging strand replication starts by binding with multiple primers which involve DNA polymerase and then adds pieces of DNA, called Okazaki fragments, to the strand between primers.

Termination: On the formation of both the strands, Exonuclease removes all RNA primers followed by proofreading and then the adhesion of the Okazaki fragments by enzyme DNA ligase.

Thus, these were the steps involved in the process of DNA replication.

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What determines human ABO blood types?
Group of answer choices
a. regulatory genes
b. structural genes
c. multiple genes
d. homeotic genes

Answers

Human ABO blood types are determined by c. multiple genes,

Specifically the ABO gene located on chromosome 9, this gene contains instructions for creating glycosyltransferase enzymes that add sugar molecules to the surface of red blood cells. The ABO gene has three different alleles: A, B, and O. These alleles code for different versions of the glycosyltransferase enzyme, resulting in the four blood types: A, B, AB, and O. The A allele produces the A antigen, the B allele produces the B antigen, the AB allele produces both A and B antigens, and the O allele produces neither antigen.

The presence or absence of these antigens on the surface of red blood cells determines blood type. The inheritance pattern for ABO blood types is autosomal codominant, meaning both alleles contribute equally to the phenotype.

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What is the main indicator of fecal microbiological contamination?

Answers

The main indicator of fecal microbiological contamination is the presence of coliform bacteria in the sample. Coliforms are a group of bacteria that includes Escherichia coli (E. coli), which are commonly found in the feces of humans and animals. Coliforms are used as an indicator of fecal contamination because their presence suggests the possible presence of other harmful microorganisms in the water or food sample.

Fungi compose a very minor component of life in marine ecosystems yet are vital to the health of terrestrial ones. This is primarily due to their ability to:

Answers

Answer:

Break down lignin.

Explanation:

The continual slow degradation of the phenolic portions of lignin (humic acids) provides a long-term supply of nutrients to plants. Phytoplankton (the primary producers in aquatic systems) do not synthesize appreciable amounts of lignin, and so fungi are not necessary to decompose it!

What are the 3 factors of production give an example of each?

Answers

Land, labor, and capital are the three main categories used to organize the productive factors. The first type of resource is one whose availability is constrained by demand and cannot be raised through production.

What are the components of production and what are some examples of each?

Land, labor, capital goods, and entrepreneurship are common examples of factors of production. Entrepreneurship is a factor of production that can interact with all other elements and is frequently regarded as essential for increasing economies.

What are the four production factors, along with a brief description of each?

All of the commodities and services that make up an economy are produced by the four factors of production: land, labor, capital, and entrepreneurship.

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I only have 10 minutes pls. In newborn babies, only the first two lines of defence are ready to fight pathogens. Explain why the third line of defence develops slowly over time.

Answers

When a newborn is born, their immune system is still developing. When the infant gets older, it gets stronger. During our lives, the immune system fights pathogens that might cause disease.

The third task fights germs in what ways?

Your immune system's three layer is made up of cells that are specifically designed to eradicate the bacteria that have infected your tissue. The link among innate and adaptive immune system is a special type of cell known as a dendritic cell.

What is the infection's first, second, and third lines of protection?

Several coping strategies make the immune system function properly. Infection-prevention measures comprise the primary defence system. Responses to disease that are common to all pathogens make up the protective factor. Immunization against those infections is provided only through the third layer of protection.

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Both glycolysis and gluconeogenesis are controlled by ________ in response to hormones.

Answers

Both glycolysis and gluconeogenesis are controlled by key regulatory enzymes in response to hormones.

Glycolysis and gluconeogenesis are metabolic pathways involved in the regulation of glucose metabolism in cells. Glycolysis is the process by which glucose is broken down to produce energy (ATP), while gluconeogenesis is the synthesis of glucose from non-carbohydrate precursors.

The control of these pathways is crucial for maintaining glucose homeostasis in the body. Hormones play a significant role in regulating glycolysis and gluconeogenesis. Insulin, a hormone released by the pancreas in response to high blood glucose levels, promotes glycolysis by stimulating the activity of enzymes involved in this pathway. Insulin also inhibits enzymes involved in gluconeogenesis, thus reducing glucose production.

On the other hand, glucagon, another hormone produced by the pancreas, has the opposite effect. It promotes gluconeogenesis by activating key enzymes in this pathway and inhibits glycolysis. Glucagon is released when blood glucose levels are low, signaling the body to produce glucose to meet energy demands.

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Ocean floor rocks are ______________ continental rocks.

the same age as

younger than

more eroded than

older than

Answers

Answer:

younger than the continental rocks

Answer: Ocean floor rocks are younger than continental rocks.

Explanation: The oldest oceanic crust is about 260 million years old. This might sound old but is actually very young compared to the oldest continental rocks, which are 4 billion years old.  

Imagine you are a CEO of a company that makes wires using mostly copper.
As a part of a new green initiative, you would like to adopt a solution that will
help reduce the amount of copper mined every year. Which of the solutions
should your company adopt? Explain your reasoning.

Please help me with this question

Answers

As part of the new green initiative, recycling copper from waste streams would be most efficient in reducing the amount of copper mined each year.

How can copper mining become more sustainable?

Copper mining can be sustained through the adoption of greener ways to minimize the harmful effects of mining. Eco-friendly equipment such as solar powered tools can be introduced to reduce carbon emissions and improve energy efficiency.

Other ways include recycling copper from waste streams to reduce the amount mined each year, cleaning out waste and using lower impact mining techniques to improve the environment.

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Why does mining have such an impact on the environment? a. Mining only affects the living parts of the environment. B. Because minerals are within the Earth’s surface, extraction causes destruction. C. Mining requires the absolute destruction of an area to be cost-effective. D. Areas that are mined can never again sustain plant life.

Answers

Answer:

I think it's B

Explanation:

Sorry if wrong :')

Answer:

B

Explanation:

I got it right

A factor that lends assistance to, supplements, or adds to a condition or disease is a(n):__________

Answers

A factor that lends assistance to, supplements, or adds to a condition or disease is a Contributing factor.

Contributing factor- Practices used in food preparation, human actions, and environmental circumstances all play a part in the viruses' entry into or growth in food, which can result in outbreaks.

Supplements- Something that completes or adds is defined as

1.) dietary augmentation.

2.) a section that is added to or published as a continuation of a book or magazine in order to add information or fix errors.

3.) It is an angle or arc that, when added to another, produces a 180° supplement.

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What might an elevated skin temperature indicate beside a fever from a cold, flu, or other typical viral disease? How might you test for an elevated temperature?

Answers

Answer: Fever is a common symptom of illness. The Centers for Disease Control and Prevention (CDC) defines fever as a temperature above 100.4° F, though children often run higher fevers than adults.

Many types of infection can cause fever, as your body will increase temperature to effectively fight off the virus or bacteria causing the infection. These fevers will usually resolve themselves as your body works to get rid of the foreign invader.

Explanation:

Fever is one of the common symptoms of different illnesses and is also a defense mechanism of the body. A temperature above 100.4° F is considered as fever.

Fever can be caused due to:

1. The rise in the skin temperature is generally due to the infection from bacteria or viruses that can result in the flu, cold, or certain viral diseases. The fever can be an indication of any infection or inflammation in any part of the body.

2. The activities like exercising can also lead to an increase the body temperature. The contraction of muscles releases 20% energy and the rest 80% is converted into heat energy. The heat is then circulated to different parts of the body, causing an increase in the temperature.

3. The rise in the temperature can be measured by the thermometer. It is a device that measures body temperature either digitally or traditionally.

Thus, the cause of fever can be a defense mechanism, exercise, and infection from the pathogen.

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if atp breakdown (hydrolysis) is inhibited, which of the following types of movement across cell membranes is also inhibited? responses movement of oxygen into a cell movement of oxygen into a cell movement of water through aquaporins movement of water through aquaporins passage of a solute against its concentration gradient passage of a solute against its concentration gradient facilitated diffusion of a permeable substance

Answers

The passage of a solute against its concentration gradient is also inhibited, if ATP breakdown (hydrolysis) is inhibited. Since, the transport against the concentration gradient is termed as active transport and it needs energy in the form of ATP to occur.

Active transport comes under category of transport which occur across biological membranes. Against the concentration gradient. The transport of substances occur across biological membranes from a region of low concentration to a region of high concentration. This type of transport (active transport) requires energy, often in the form of ATP(Adenosine triphosphate). ATP is hydrolyzed into ADP, and further to AMP, and free inorganic phosphate groups to release energy. It is also called energy currency of the cell. Therefore, the passage of a solute against its concentration gradient is also inhibited, if ATP breakdown (hydrolysis) is Inhibited is the correct answer among the given options. Since, the transport against the concentration gradient is termed as active transport and it needs energy in the form of ATP to occur.

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PLEASE HELP SO EASY!!!!

PLEASE HELP SO EASY!!!!

Answers

The specialization between muscle cells and bone cells occurs because C. different genes are active in muscle cells than are active in bone cells.

Why do muscle cells get specialized ?

All living cells carry identical genetic details, although some genes are exclusive to assorted types of cells. Distinct genes are deregulated in distinctive cells, thus prompting specialization and distinguishing variations among them.

DNA's governing domains dictate the gene causality standards that either activate or inhibit certain genetic functions at specific times. As for muscle tissue specifically, only myofibrillar protein-producing genes - such as actin and myosin- endure activation, while any uninvolved genes remain dormant within bone cells.

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Where can the process of lactic-acid fermentation be found

Answers

Answer:

Lactic fermentation is a minor process which occurs after glycolysis in anaerobic respiration.

Explanation:

In it, an enzyme found in most every organism called lactate dehydrogenase catalyzes a reaction between the NADH produced from glycolysis with the pyruvate molecules to create the NAD+ necessary to begin glycolysis

With properly selected cultivars and timely mowing, fertilization, and irrigation, which of the following diseases still have the potential to decimate a lawn on a site that receives ample sunlight? (multiple)
- brown patch
- powdery mildew
- red thread
- pythium blight
- slime mold
- fuzzy leaf

Answers

The diseases that still have the potential to decimate a lawn that receives ample sunlight are brown patch, powdery mildew, pythium blight, and slime mold.

Which diseases can decimate the lawn?

Brown patch is a common summer lawn disease caused by Rhizoctonia solani. It usually appears as circular patches in the lawn. It can be prevented with proper fertilization, proper watering, and proper mowing. Powdery mildew is a fungal disease that affects many plants, including grasses. It appears as a white, powdery coating on the blades of grass.  

Pythium blight is a common disease of grass that can cause significant damage to lawns. It is caused by a fungus that thrives in warm, wet conditions. It can be prevented by maintaining proper watering and mowing practices. Slime mold is a type of fungus that can cause a slimy, moldy substance to form on the surface of grass blades. It can be prevented by keeping the grass dry, avoiding over-fertilizing, and pruning trees and shrubs to allow for good air circulation.

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after fertilization what process increases the number of cells in an embryo

Answers

After fertilization, the process that increases the number of cells in an embryo is cell division.

What is cell division?

Cell division is the process in which a parent cell divides into two or more daughter cells. It is the basis of all cell growth, development and repair in living things.

Cell division results in an increase in the number of cells and is responsible for the growth and development of an embryo after fertilization. During this process, the zygote undergoes several rounds of cell division to form a ball of cells known as a blastula.

Fertilization is a process that occurs in sexual reproduction when male and female gametes combine to produce a new organism. When a sperm fertilizes an egg, the nuclei of the two cells combine, forming a zygote.

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Natural selection will only lead to evolution if it allows for an organism to:

a) Possess advantageous traits
b) Compete for resources
c) Produce offspring
d) All of the above

Answers

d)all of the above i think

If a donor cat was black and the surrogate mother was white, then the cloned cat would likely be

Answers

I would say mixed with black and white or the cat would just be black because of the donor

The color coat of the cat would be black as the donor cat because the color coat does not depend on the coat color of the surrogate mother.

What is surrogacy?

Surrogacy is a process in which a woman carries a pregnancy and gives birth to a child on behalf of another person or couple. This can be done using the intended mother's or a donor's eggs, fertilized with the intended father's sperm, or using a donated embryo.

Surrogacy may be used in cases where the intended mother is unable to carry a pregnancy due to medical reasons. It is also used when a same-sex male couple or a single man wishes to have a biological child.

It may also be used in cases where the intended parents have experienced multiple failed attempts at assisted reproductive technologies, such as in vitro fertilization (IVF).

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16. Describe the process of dune formation and colonization by plants: Name some of the plant species we would expect to see from those closest to the beaches & as we moved through the dunes on a barrier island on the Georgia Coast, and indicate where they would be found (which of the portion of the successional stages? You need at least 3 different portions of the dune community/stages of dune formation and 1-2 plants per area/subcommunity) What type of succession is this?

Answers

Dunes form from sediment deposition on the beach in response to wind and ocean currents. When sand grains are transported by the wind, they settle on the leeward slope and accumulate over time to form dunes. Dunes start as embryonic foredunes and develop into mature and stabilized sand dunes as a result of plant colonization.

The formation of dunes is a result of a process called dune building. Sand dunes on barrier islands are formed in successive stages. The first stage is the embryonic stage where the sand dunes begin to form. The second stage is the foredune stage where sand dunes form close to the beach. The third stage is the backdune stage where sand dunes are farther from the beach and the vegetation has grown more.

The last stage is the climax stage where the sand dunes have reached their final height and the vegetation is at its fullest. There are various plant species that can be seen as one moves through the dunes on a barrier island on the Georgia Coast. These include: Beach morning glory (Ipomoea pes-caprae) on the foredune in the embryonic stageSea oats (Uniola paniculata) and sea rocket (Cakile edentula) on the foredune in the foredune stageSouthern live oak (Quercus virginiana), yaupon holly (Ilex vomitoria), and American beachgrass (Ammophila breviligulata) in the backdune in the backdune stage Saltmeadow cordgrass (Spartina patens) and marsh elder (Iva frutescens) in the climax dunes in the climax stage.

This type of succession is known as primary succession, which is the development of plant communities in areas that have not previously supported life.

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5. You are working for a Risk & Quality Design Company and are asked to compare the effect of two different fertilizers (Fertilizer A & Fertilizer B) on plant growth. Write the hypothesis statement, regarding this investigation, that would be included in your report to your boss.

Answers

Answer:

Explanation:

There are two major hypothesis used in scientific research; null hypothesis and alternate hypothesis. Null hypothesis is an hypothesis used in research that assumes that there is no difference between two variables or set of variables in a comparison. While alternate hypothesis is the hypothesis that is in consistent or agreement with the aim or title of an experiment.

In research, the most widely used type of hypothesis proffered in new research is the null hypothesis. The null hypothesis for the research described in the question is stated below;

There is no significant difference between the effect of the two fertilizers (fertilizer A and fertilizer B) on plant growth.

Describe the relationship between DNA,
chromosomes, and genes.
RETRY

Describe the relationship between DNA,chromosomes, and genes.RETRY

Answers

Answer:

In the nucleus of each cell, the DNA molecule is packaged into thread-like structures called chromosomes. Each chromosome is made up of DNA tightly coiled many times around proteins called histones that support its structure.

Explanation:

so the relationship between.

Answer:   Chromosomes > DNA > Genes

Chromosomes are thread-like structures of DNA coiled around proteins. Genes are specific portions of DNA that code for the production of proteins that are used and/or expressed by a body.

How many Half-lives does it take for C14 to decay until 6. 25% remains?

Answers

It takes 4 half-lives for C14 to decay until 6.25% remains.

How to solve for the half life

The decay of C14 follows an exponential decay model, with a half-life of approximately 5,700 years. This means that after each half-life, half of the remaining C14 will have decayed.

To determine the number of half-lives it takes for C14 to decay until 6.25% remains, we can use the following formula:

N = N0 (1/2)^n

where N is the final amount of C14, N0 is the initial amount of C14 (which we can set to 100%), and n is the number of half-lives.

If we set N to 6.25%, or 0.0625, we get:

0.0625 = 1 (1/2)^n

Simplifying this equation, we get:

(1/2)^n = 0.0625

Taking the logarithm of both sides, we get:

n log(1/2) = log(0.0625)

n = log(0.0625) / log(1/2)

n = 4

Therefore, it takes 4 half-lives for C14 to decay until 6.25% remains.

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