What is the difference between getting energy from cellular respiration and getting energy from a log by burning it?

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Answer 1

During cellular respiration, stored chemical energy is gradually released in a series of enzyme-assisted reactions. Burning a log releases the stored chemical energy rapidly as heat and light.

The energy produced by cellular respiration is in the form of chemical bond energy. The energy produced when a log of wood is burned is mainly heat or heat energy and some light energy.

The third phosphate bond of adenosine triphosphate (ATP) is a high-energy bond. It is used to provide energy for metabolic reactions and perform tasks such as muscle contraction. Energy is the ability to execute work. It is electricity obtained from a physical or chemical source and used to provide heat or light or to do work. Forms of energy include chemical, thermal, mechanical, electrical and nuclear energy. Energy can be transformed from one mode to another.

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Related Questions

Where does the light reaction occur in plants?

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The light reactions of plants are the photochemical reactions that take place in the thylakoid membrane of chloroplasts and convert light energy into chemical energy in the form of ATP and NADPH.

Light reactions in plants occur in the thylakoid membranes of organelles referred to as chloroplasts. The light processes are mostly controlled by photosystems, sizable complexes of proteins and pigments (light-absorbing molecules) that are designed to capture light. The light reactions processes include the plants division of water into oxygen, protons, and electrons, and take place in the chloroplast thylakoid membrane. The light reactions occur in the chloroplast thylakoid membrane and involve the splitting of water into oxygen, plants,protons and electrons.

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how is homeostasis maintained in glucose regulation using an example and what culd happen if the homeostasis isnt maintained​

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Answer:

Homeostasis is the maintenance of a stable internal environment within the body. In the case of glucose regulation, the body works to maintain a stable blood glucose level by releasing hormones such as insulin and glucagon. If homeostasis is not maintained in glucose regulation, it can lead to conditions such as hyperglycemia (high blood glucose levels) or hypoglycemia (low blood glucose levels). Both of these conditions can be serious and potentially life-threatening if left untreated. Hyperglycemia can lead to diabetes and other long-term health problems, while hypoglycemia can cause symptoms such as dizziness, weakness, and fainting.

Answer:

Through its various hormones, particularly glucagon and insulin, the pancreas maintains blood glucose levels within a very narrow range of 4–6 mM. This preservation is accomplished by the opposing and balanced actions of glucagon and insulin, referred to as glucose homeostasis

What physical process is important for breathing? ​

Answers

The physical process important for breathing is respiration.

Respiration is the answer

A thoracentesis specimen was collected and sent to the laboratory for testing. What body area was this specimen collected

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The body area where this specimen was collected is thorax when a thoracentesis specimen was collected and sent to the laboratory for testing.

The thorax is the place among the stomach inferiorly and the foundation of the neck superiorly. It paperwork from the thoracic wall, its superficial structures (breast, muscles, and skin) and the thoracic cavity. The location of the frame among the neck and the stomach. The thorax carries important organs, inclusive of the heart, fundamental blood vessels, and lungs. It is supported through the ribs, breastbone, and spine. A skinny muscle referred to as the diaphragm separates the thorax from the stomach. It gives a base for the muscle attachment of the higher extremities, the pinnacle and neck, the vertebral column, and the pelvis. The thorax additionally gives safety for the heart, lungs, and viscera.

Thus, the body area is known as thorax.

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What are examples of genetic and environmental variation?

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Examples of genetic and environmental variation

A dog's weight is influenced by both ambient factors, such as what it consumes, and hereditary factors, such as its genes. A sunflower's height is influenced by its genes as well as how much light and water it receives.

The variety in DNA sequence seen in each of our genomes is referred to as genetic variation. We are all different from one another in terms of our hair color, complexion tone, and even the form of our features due to genetic variance.

Genes take on various shapes, or alleles, as a result of genetic variation. People with blue eyes, for instance, have one allele of the eye color gene, whereas those with brown eyes will have a different allele of the gene.

It is possible to consider that some genetic control is present in environmental variation (VE), which is variation in phenotype that cannot be accounted for by genetic variation or discernible genetic differences.

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What is the direction of the 4 typhoon?

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4 typhoon means a wind threat that has the high speed of wind can attack 118-184 km/h.

What is a typhoon and what is the direction of the typhoon?

Typhoon is defined as a tropical cyclone with a maximum wind of 34 knots or higher. A tropical cyclone with a maximum wind of fewer than 34 knots is called a tropical depression. The difference between the two types of tropical cyclones is just if the maximum wind is less than or above the threshold of 34 knots.

Tropical cyclones (Typhoon ) form between 5 and 30 degrees North latitude that move toward the west. Sometimes the winds in the middle and upper levels of the atmosphere change and move the cyclone toward the north and northwest direction.

So we can conclude that a typhoon is a tropical cyclone that includes a maximum wind of 34 knots or maybe higher.

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What are the two main types of mutations ?

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The two main types of mutations are, 1.Gametes include germline alterations. 2. Somatic mutations happen in the body's other cells.

These mutations are particularly important since they can be passed down to kids, who will all have the mutation in every cell environmental elements and utterly arbitrary causes Mutations can also be brought on by outside factors like specific chemicals or extreme radiation. Let's learn about many mutations and their sorts now that we are familiar with the definition of mutation and its causes.

Based on the base pair substitution, there are two types of point mutation. It is a point mutation that results from the replacement of one purine or one pyrimidine with another. It is a point mutation that happens when pyrimidine is substituted for purine and vice versa. There are three types of point mutations based on transcriptional characteristics.

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Describe at least 4 concepts learned this unit in genetics. Explain why each concept is important. (Digital biology 10th grade)

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Transcription and gene regulatory networks. coding and noncoding RNA mechanisms of action and function. protein synthesis are 4 concepts learned this unit in genetics.

What is genetics?

The study of genes and heredity, or how particular characteristics or traits are passed from parents to offspring as a result of changes in DNA sequence, is known as genetics. A gene is a section of DNA that has the instructions needed to create one or more molecules that support bodily function. A double helix, or corkscrew-shaped ladder, is how DNA is shaped. The bases are pairs of the four building blocks adenine, thymine, guanine, and cytosine, and the two ladder rails are referred to as the backbones. The instructions for constructing molecules, the majority of which are proteins, are included in the sequences of these nucleotides. According to researchers, there are around 20,000 genes in humans.

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What are the advantage and diadvantage to a plant pecie that i pollinated by only one type of pollinator?

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The advantages of one type pollinator are increased pollination efficiency, reduced competition, and genetic stability, while the disadvantages are high dependency, limited distribution, and low genetic diversity.

A plant species that is pollinated by only one type of pollinator may have increased efficiency, reduced competition during the pollination process, as well as genetic stability. However, it also has a high dependency on that specific pollinator species. If the population of the pollinator declines, the plant species may also decline or become extinct. Additionally, this type of plant species typically has a limited distribution and is more vulnerable to environmental changes that can affect the distribution or abundance of its specific pollinator. It also has low genetic diversity which can make it more vulnerable to disease or other environmental pressures.

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Your question seems incomplete, but I assume the question was:

"What are the advantages and disadvantages to a plant species that is pollinated by only one type of pollinator?"

True or False: Before making any decision (includes environmental), it
necessary to evaluate all risks and make mathematical models

Answers

False. Not all decisions require risk evaluation or mathematical modeling.

What is evaluation?

Evaluation is the process of examining and assessing a product, system, service, or program to determine its worth and effectiveness. It is a systematic process that involves identifying and measuring objectives, gathering information, analyzing data, and drawing conclusions. Evaluation is important to determine if a program is meeting its intended goals and helping to improve outcomes. Evaluation can also be used to inform decisio-making, identify areas of improvement, and provide feedback on performance. Evaluation helps to ensure that resources are being used effectively and efficiently. It can also provide guidance for future investments, help to set objectives and priorities, and provide evidence-based information for the development of policies and programs.

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If a genotype i it heterozygou tate reult in white fur color, what doe it tell u about the white fur trait - i it a dominant trait or receive trait. Explain breifly

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If a genotype it heterozygous trait result in white fur color, it tells you that the white fur trait it is a dominant trait.

One copy of an allele, which might come from just one parent, is called a dominant allele and results in a dominant phenotype in individuals. Having two copies of a recessive allele, one from each parent, is necessary for a recessive phenotype to develop. The dominant phenotype of a gene is present in an individual who carries both one dominant and one recessive allele. Generally speaking, they are referred to as "carriers" of the recessive allele because the recessive allele is present but the recessive phenotype is absent.

When estimating a person's likelihood of acquiring particular phenotypes, particularly genetic illnesses, dominant and recessive inheritance are helpful concepts to understand. is a dominant trait.

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As unwinding of the helix occurs during DNA replication, tension referred to as ________ is created ahead of the replication fork. This tension is relieved by the action of ________.

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As unwinding of the helix occurs during DNA replication, tension referred to as supercoiling; is created ahead of the replication fork. This tension is relieved by the action of DNA gyrase.

DNA replication, as used in molecular biology, is the biological process that creates two identical copies of DNA from a single original DNA molecule.  All living things replicate their DNA, which is the primary mechanism for biological heredity.

This is necessary for cell division during tissue development and repair, and it also guarantees that each new cell gets a copy of the DNA. DNA replication is necessary because the cell's ability to divide makes it different from other organisms.

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How cloud computing reduces energy consumption?

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Cloud computing can reduce energy consumption by optimizing the physical environment (think cloud computing facilities in cold climates), cutting the power spent to cool the servers.

Cloud computing has several advantages. B. Businesses can efficiently store, protect, and analyze large amounts of data. Cloud computing can significantly reduce energy consumption, waste, and greenhouse gas (GHG) emissions. The

data center is best known for cloud computing and contains a collection of servers that store business information and run applications.

Idle servers and resources in data centers waste a lot of energy. Energy is wasted when the server is overloaded. There are few techniques for load balancing, VM virtualization, VM migration, resource allocation, job scheduling, etc. used to solve the problem.

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What is lever rule used for?

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A binary equilibrium phase diagram's mole fraction (xi) or mass fraction (wi) for each phase may be calculated using the lever rule in chemistry.

Who developed the lever theory?

The lever principle, proven in Book I of EP, is applied when two figures are each suspended from the lever at a single point. Archimedes discusses configurations in which two figures are suspended from a straight horizontal lever hanging below it in various ways.

What is another name for the lever rule?

This illustration also explains why these equations are known as the "lever rule." Because you use the "arm" in the (yA-xA) segment closest to the vapor for the calculation of L (liquid) and the "arm" closest to the for the calculation of G (vapor), it is also often referred to as the "reverse arm rule."

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What are the genotypes of the F2 generation?

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Answer:

The genotypes of the F2 generation depend on the genotypes of the parents in the F1 generation.

Explanation:

If the F1 generation is produced by crossing two individuals with different genotypes, the F2 generation will have a variety of genotypes.

For example, if the F1 generation is produced by crossing a homozygous dominant individual (AA) with a homozygous recessive individual (aa), the F2 generation will have a 1:2:1 ratio of genotypes: one quarter will be homozygous dominant (AA), half will be heterozygous (Aa), and one quarter will be homozygous recessive (aa).

If the F1 generation is produced by crossing two heterozygous individuals (Aa and Aa), the F2 generation will have a 3:1 ratio of genotypes: three quarters will be heterozygous (Aa) and one quarter will be homozygous recessive (aa).

It is also possible for the F1 generation to be produced by crossing two individuals with more complex genotypes, in which case the F2 generation will have a variety of genotypes based on the combination of the parents' genotypes.

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Later, heat rising from below causes part of the metamorphic rock to melt, forming magma. what is it?

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Metamorphism occurs when the heat rising from below causes the part of the metamorphic rock to melt, forming magma.

What is metamorphic rock?

Metamorphic rocks are formed from other rocks which substantially changed from their original igneous, sedimentary, or earlier metamorphic form. Metamorphic rocks are formed when the rocks are subjected to high heat, high pressure, hot mineral-rich fluids or, more commonly, the combination of these factors.

Metamorphism occurs when the solid rock undergo changes in the composition and texture without mineral crystals undergoing melting, which is how the igneous rock is generated.

If there is too much heat or pressure applied, the rock will melt and become magma. This will result in the formation of an igneous rock, and not a metamorphic rock.

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What type of reaction is seen when hydrogen peroxide is added to a microbial colony of catalase-producing bacteria

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What type of reaction is seen when hydrogen peroxide is added to a microbial colony of catalase-producing bacteria is the rapid formation of gas bubbles.

Catalase is an enzyme that catalyzes the reaction in which hydrogen peroxide is broken down into water and oxygen This enzyme is able to oxidize 1 molecule of hydrogen peroxide to oxygen. Then simultaneously it can also reduce the second hydrogen peroxide molecule to water

Hydrogen peroxide is one of the breakdown products of every cell that uses oxygen as an energy source in metabolic processes. When hydrogen peroxide is added to microbial colonies it inhibits the growth of one bacterial species by another. Because this compound is added to catalase-producing bacteria, the catalase enzyme neutralizes the bactericidal effect by breaking the compound into water and oxygen or gas bubbles.

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Explain how the agricultural job market today is different than it was 100 years ago

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Agricultural job market today is different than it was 100 years ago because of better technology has allowed farmers to feed more people and requires fewer people to work on farms to feed their families.

The manner that farmers are able to farm and raise food has been greatly impacted by changes in equipment. In the past, farmers had to use hand labour or equipment drawn by horses to complete field work. Over the past 50 years, the agriculture industry has undergone a significant transformation.Farm equipment has become larger, faster, and more productive because to technological advancements, allowing for the more effective cultivation of larger areas. Additionally substantially enhanced, seed, irrigation, and fertilisers have helped farmers boost harvests. The crops on old farms weren't watered by sprinklers. Pesticides to fight off pests and insects weren't available. They lacked tractors.

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Which statement does not accurately describe what occurs during the process of meiosis?

A) Meiosis produces four identical gametes, either egg or sperm.
B) Genetic variation among sexually reproducing organisms is enhanced by meiosis.
C) Meiosis produces gametes with the haploid chromosome number.
D) All stages of meiosis follow DNA replication

Answers

Answer:

D cause not all stages of meiosis follow DNA replication.

What is hypertension with heart disease?

Answers

Hypertensive heart disease is a long-term condition that develops over many years in people with hypertension.

When your high blood pressure (hypertension) is not controlled, it can lead to a variety of health issues, including heart failure and conduction arrhythmias. Hypertensive heart disease is caused by persistently high blood pressure (over 120/80 mmHg). Heart disease risk goes up as people get older and continue to have high blood pressure. People over the age of 65 are more likely to develop heart failure.

Your heart has to work harder to pump blood through your body when you have high blood pressure for an extended period of time.

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What are the 3 factors that cause natural selection?

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Natural selection is founded on three principles: most qualities are inherited inheritance, more children are born than can survive competition, and children with more desirable characteristics will survive and produce more offspring variation.

One of the four fundamental tenets of evolutionary theory, along with mutation, migration, and genetic drift, is natural selection. Populations that exhibit variety in features, such as colour, are subject to natural selection. Its core tenet is that individuals are more likely to reproduce when they possess a characteristic that makes them more likely to survive in a given environment than their counterparts. Four requirements must be met for natural selection to take place: reproduction, inheritance, variety in physical traits, and variation in the number of children produced by each person.

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A large population of rock pocket mice with various fur colors lives in a designated area. Several generations after a volcanic eruption, the frequency of the different colors within the population has changed. What color of rock pocket mice would be most prevalent in the population and why?

Answers

The most prevalent color of the rock pocket mice would be sandy-colored fur, because of the light color of the desert rocks and sand on which they live.

What are rock pocket mice?

The two varieties are light brown and dark brown-black (ancestral variation). Rock pocket mice of a dark tint can be found in environments with a lot of black lava rock.

Mice with light skin tones can be found in environments with sand and light-colored rocks.

Therefore, due to the light hue of the desert rocks and sand where they live, the rock pocket mice' fur would typically be sandy in color.

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How long does it take to be affected by cyanide?

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Answer:

The patient can present with symptoms as quickly as one minute after inhalation and within a few minutes of cyanide ingestion. If the hydrogen cyanide was inhaled, the victim might detect a bitter, almond odor, which is discernible by approximately 60% of the population.

Explanation:

Do whales need oxygen to survive?

Answers

Yes, whales need oxygen to survive. Like us, whales are mammals that breathe air into their lungs. Because they lack gills, they can't breathe underwater like a fish can.

A blowhole, or nostril, on top of their heads, allows them to breathe. While swimming or resting beneath the water, this enables them to take deep breaths by only exposing the tops of their heads to the air. The strong muscles that surround the blowhole close it tightly after each breath to prevent water from entering the lungs of the whale or dolphin.

Dolphins only have one blowhole, whereas large whales, with the exception of the sperm whale, have two blowholes.

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what system works with the respiratory system to circulate blood and oxygen throughout the body

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The circulatory system works with the respiratory system to circulate blood and oxygen throughout the body.

The cardiovascular system (also called the circulatory system) transports blood from the heart to the lungs, where it is oxygenated. After receiving oxygen, blood is pumped out of the heart and into the body's arteries. Veins return blood that is low on oxygen to the heart, where the pumping process can begin again. Your body's organs, muscles, and tissues can't function properly without a strong circulatory system. The job of the circulatory system is to transport blood all over the body. The body's organs, muscles, and tissues would not function to keep you alive if the blood didn't circulate through them.

Getting rid of waste is another function of the circulatory system. Examples of such trash are:

Oxygen used in respiration produces carbon dioxide.

Excretions and waste products from your body's systems.

Food and drink scraps are waste products.

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1. The South thought that it could win the war because a. it had skilled military men and could fight a defensive. b. Great Britain was on its side. c. cold weather in the North would make military training difficult. d. they could arm slaves and send them into battle first.

Answers

Answer: The answer is D.they could arm slaves and send them into battle first.

Explanation: This is the right answer because if you really think and read then this answer will make more sense

Thank you!!!  

PLEASE GIVE CREDIT IF YOU USE MY IDEA (Meaning use this answer)

7. The sporophyte is dominant in the gymnosperm life cycle. Which statement is true regarding the sporophyte generation

Answers

In the gymnosperm life cycle, meiosis is used by the diploid cells to make gametophytes. Therefore, statement b is correct.

A dominating sporophyte generation characterizes the gymnosperm life cycle. Meiosis creates haploid spores from diploid sporophyte cells. A multicellular, haploid gametophyte is produced when each spore undergoes mitotic divisions. The production of gametes within the gametophyte requires mitotic divisions.

Male spores develop inside male cones into male gametophytes. A grain of pollen surrounds each male gametophyte. Female spores develop inside female cones into female gametophytes. Pollen is transported from a male to a female cone during pollination. Inside seeds, zygotes mature into embryos that give rise to the next generation.

The complete question is -

The sporophyte is dominant in the gymnosperm life cycle. Which statement is true regarding the sporophyte generation?

a) The cells are haploid and use mitosis to produce gametophytes.

b) The cells are diploid and use meiosis to produce gametophytes.

c) The cells are haploid and use meiosis to produce gametophytes.

d) The cells are diploid and use mitosis to produce gametophytes.

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Josie partially filled a graduated cylinder with water. she then dropped a rock into the water. the illustration below show what happened to the level of the water inside the graduated cylinder. what is the volume of the rock?

Answers

As the the illustration show volume of the rock is 5ml. The correct option is A.

What is volume?

The space occupied within an object's borders in three dimensions is referred to as its volume.

It is sometimes referred to as the object's capacity. Volume is the amount of space an object or substance occupies.

Volume, which is measured in cubic units, is the 3-dimensional space occupied by matter or encircled by a surface.

Since the graphic shows that 5 ml of water was displaced by the rock, we can infer that the rock's volume is 5 ml.

Thus, the correct option is A.

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Your question seems incomplete, the complete question is:

Josie partially filled a graduated cylinder with water. She then dropped a rock into the water. The illustration below shows what happened to the level of the water inside the graduated cylinder. What is the volume of the rock?

answer choices

5 mL

10 mL

35 mL

40 mL

Why is the root of a plant unable to absorb mineral salt from the soil if it’s given a poison that prevents respiration

Answers

Since the poison prevents respiration from occurring in the root, the energy needed to move mineral salts from the soil through the membranes of the root cells into the root cannot be made

How is most ATP formed during respiration?

Answers

Most of the ATP produced by aerobic cellular respiration is made by oxidative phosphorylation

Oxidative phosphorylation is responsible for the majority of the ATP generated by aerobic cellular respiration. Protons are pumped through a membrane to produce a chemiosmotic potential using the energy released. Then, ATP synthase is engaged by this potential to synthesis ATP from ADP and a phosphate group. During aerobic respiration, glucose and oxygen combine to produce ATP, which the cell can utilise. As products, water and carbon dioxide are produced. In the general equation for aerobic cellular respiration, glucose and oxygen combine to create ATP. Oxidative phosphorylation is the biochemical cycle that generates a most net ATP per molecule of glucose. The majority of ATP synthesis takes place during cellular respiration in the mitochondrial matrix, producing about 32 ATP molecules for every glucose molecule.

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