The number one difference among those sorts of organisms is that eukaryotic cells have a membrane-certain nucleus and prokaryotic cells do not. The nucleus is wherein eukaryotes save their genetic information.
Prokaryotic cells lack a nucleus surrounded with the aid of using a complicated nuclear membrane and typically have a single, round chromosome positioned in a nucleoid.
Eukaryotic cells have a nucleus surrounded with the aid of using a complicated nuclear membrane that includes multiple, rod-fashioned chromosomes.DNA is loosely contained with inside the nucleoid region, eukaryotic cells own a nucleus, that's surrounded through a complicated nuclear membrane that homes the DNA genome.
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What specifically separates during meiosis i?
a) homologous chromosomes
b) sister chromatids
c) the cytoplasm
d) the genome
The correct option is (a) homologous chromosomes
Homologous chromosomes specifically separates during meiosis I.
What are the stages in Meiosis?
There are two divisions in meiosis, and they both proceed through the same stages as mitosis (prophase, metaphase, anaphase, telophase). Interphase, during which DNA is duplicated to create chromosomes made up of two sister chromatids, comes before meiosis. Between meiosis I and II, a second growth phase known as interkinesis may take place; however, no DNA replication happens during this phase.
1. Meiosis
A reduction division (diploid haploid) occurs during the first meiotic division, separating homologous chromosomes.
P-I: Homologous chromosomes form bivalents, chromosomes condense, the nuclear membrane melts, and crossing over takes place.M-I: Bivalents (at centromeres) are aligned along the centre of the cell by spindle fibers from opposing centrosomes.A-I: Bivalent, homologous chromosomes travel to the opposing poles of the cell as spindle fibers compress and separate them.T-I: Cell divides (cytokinesis) to produce two haploid daughter cells, nuclear membrane may reconstruct, and chromosomes decondense.2. Meiosis
Sister chromatids are separated by the second division (these chromatids may not be identical due to crossing over in prophase I)
P-II: Centrosomes shift to opposing poles, nuclear membrane dissolves, and chromosomes condense (perpendicular to before)M-II: Chromosomes are aligned along the cell equator by spindle fibers from opposing centrosomes that bind to them at the centromere.A-II: Sister chromatids are split apart by contracting spindle fibers, and chromatids (now known as chromosomes) migrate to opposing poles.T-II: Cells divide (cytokinesis) to produce four haploid daughter cells, the nuclear membrane reforms, and the chromosomes decondense.Learn more about the Meiosis with the help of the given link:
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what is RNA stand for
A living microbe with reduced virulence that is used for vaccination is considered _____.
A living microbe with reduced virulence that is used for vaccination is considered as attentuated vaccine.
Vaccination is the process of immunization in which the immune response is stimulated by introducing either the weakened microbe or a its part into our body.
A vaccine can be developed from the various methods. Firstly a weakened or inactivated bacteria is introduced into the body of the individual which generated the immune response but will not cause disease. It is also called attentuated vaccine.
Secondly a part of the microbe may be a protein or cell wall is introduced in the form of antigen to initiate immune response.
Thirdly the genetic material of the microbe including the DNA or RNA.
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A client with a diagnosis of anemia is receiving packed red blood cells. which nursing action is important when administering the transfusion?
The nursing action that is important when administering the transfusion is Monitoring the client's response, particularly within the first 10 minutes.
What is anemia?Anemia is defined as the absence of functional red blood cells in the blood or its drastic reduction following an on going deficiency.
Blood transfusion is the procedure that involves the transfer of blood or blood products from a screened donor to its recipient.
Transfusion reactions are those side effects that a recipient experiences few minutes into transfusion of blood.
Therefore, the nursing action that is important when administering the transfusion is Monitoring the client's response, particularly within the first 10 minutes.
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In his cross, what did mendel do?
a) he did not use pure-breeding plants in his crosses.
b) he used plants that were heterozygous in his initial crosses.
c) he studied traits controlled by a single gene.
In his cross, Mendel studied traits that are typically controlled by a single gene. Thus, the correct option for this question is C.
Who is Mendel?John Gregor Mendel is known as the father of genetics. He performed his experiments on pea plants. But initially, he tried his experiments on honey bees, mice, and hawkweed.
Later, he selected 34 varieties of pea plants and works for 2 years, and then he selected one out of 34 i.e. Pisum sativum. The most important concept of his experiments is that he only studied traits controlled by a single gene. For example, seed color, seed coat, flower color, stem length, etc. The genes of these are located on differents sets of chromosomes.
Therefore, in his cross, Mendel studied traits that are typically controlled by a single gene. Thus, the correct option for this question is C.
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During the isothermal heat rejection process of an ideal carnot cycle, the entropy of the working fluid:______.
The working fluid's entropy drops during the isothermal heat rejection phase of an ideal Carnot cycle.
What is entropy ?
The quantity of energy that cannot be used to perform work is measured by an object's entropy. The number of alternative arrangements that the atoms in a system can have is also measured by entropy. Entropy is a measure of uncertainty or unpredictability in this sense.
What is carnot cycle?
The term "Carnot cycle" refers to an ideal, reversible closed thermodynamic cycle in which the working substance undergoes the four operations of isothermal expansion to a desired point, adiabatic expansion to a desired point, isothermal compression, and adiabatic compression back to its initial state.
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In their resting state, all body cells exhibit a resting membrane potential; therefore, all cells are polarized. True or false?.
The given statement "In their resting state, all body cells exhibit a resting membrane potential; therefore, all cells are polarized." is True.
What is resting membrane potential?The ground value for trans-membrane voltage, which is a relatively static membrane potential. As opposed to the specific dynamic electrochemical processes known as action potential and graded membrane potential, quiescent cells' relatively static membrane potential is referred to as the resting membrane potential (or resting voltage). The different membrane permeabilities for potassium, sodium, calcium, and chloride ions, which in turn result from the functional activity of numerous ion channels, ion transporters, and exchangers, are what cause the resting potential to exist. According to conventional definitions, the transmembrane voltage during resting membrane potential in animal and plant cells is a relatively steady, ground value.Learn more about the resting membrane potential with the help of the given link:
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A test that combines radioactive chemicals and antibodies to detect minute quantities of substances in a patient's blood?
Radioimmunoassay (RIA) is a test that combines radioactive chemicals and antibodies to detect minute quantities of substances in a patient's blood.
In 1959, biophysicist Rosalyn Yalow and physician Solomon A. Berson developed a sensitive method for measuring very small amounts of a substance in the blood called radioimmunoassay (RIA).
Radioimmunoassay (RIA) is a technique that make use of radioisotopes, usually iodine-125, as a tag or label for the detection of antigen. This technique determines the concentration of an antigen based on the competitive binding between radiolabeled and unlabeled antigen for its specific high affinity antibody.
It is very sensitive that it can measure concentrations up to 0.001 μg/ml.
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Choose the reason(s) why plants need fertilizer. (there may be more than one answer.)
One of the major reason that plants needs fertilizers is : Fertilizers are food for plants. Fertilizers replace the nutrients that crops remove from the soil. Without the addition of fertilizers, nature struggles to replenish the nutrients in the soil and agricultural productivity would be significantly reduced.
Fertilizers can be defined as a natural or synthetic substance that contains chemical components that enhance plant growth and productivity. Fertilizers either restore chemical elements that previous crops removed from the soil or increase the soil's natural fertility.
In total, plants require a minimum of 16 different elements, the most crucial of which are carbon, hydrogen, oxygen, and phosphorus. Other nutrients are absorbed from the soil, while plants obtain, carbon from the atmosphere, hydrogen, and oxygen from water.
Overall chemical analyses show that the total amount of nutrients in soils is typically higher than what crop plants need. The absence of a particular nutrient becomes a limiting factor in plant growth when the supply of that nutrient is exhausted.
Because of this, we add nutrients to the soil in the form of fertilizers, which feed the plants and make sure that there is never a shortage of any element required for a healthy crop production.
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WILL GIVE BAINLESTTTT
The algae beads provide a convenient experimental system because they are uniform in size and contain roughly the same number of algal cells per bead. Why are these advantages for the experiments you will perform?
Answer:
We will be measuring rates of photosynthesis and cellular respiration and these rates will depend on the number of organelles, or cells, that we use. The algae beads are easy to see, manipulate, and count. A consistent number of beads queal a consistent number of alga cells.
Explanation:
Plant and Animal cells share the following membrane bound organelles.
a
cell wall, plasma membrane, endoplasmic reticulum, mitochondria and a nucleus
b
chloroplasts, plasma membrane, endoplasmic reticulum, mitochondria and a nucleus
c
cilia, plasma membrane, endoplasmic reticulum, mitochondria and a nucleus
d
golgi apparatus, plasma membrane, endoplasmic reticulum, mitochondria and a nucleus
Answer: They both contain membrane-bound organelles such as the nucleus, mitochondria, endoplasmic reticulum, Golgi apparatus, lysosomes, and peroxisomes. Both also contain similar membranes, cytosol, and cytoskeletal elements.
Explanation:
Answer:A or D
Explanation:
Prior to the work of _________blank, scientists did not distinguish between members of the archaea and the bacteria.
Answer:
Prior to the work of Carl Woese blank, scientists did not distinguish between members of the archaea and the bacteria.
Explanation:
Prokaryotes, which comprise two very different species i-e bacteria and archaea, may be found practically everywhere, including within human bodies as well as on every surface of the dwellings. Some inhabit habitats that are too harsh for other types of life, such as the warm pores on the seafloor. Prokaryotes are everywhere, yet they may be challenging to find, quantify, and categorize. Only a small portion of the prokaryotic on the planet that are predicted to exist are represented by those that we now learn about. In reality, in the environment of prokaryotes, the concept of a "species" itself becomes complex. Prokaryotes, meanwhile, are separated into two different branches, or lines of derivation, known as Archaea and Bacteria, according to research done in the mid-1970s by biologist Carl Woese.
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Hypodermoclysis is used to treat:_________
a. increased acetone level
b. circulatory failure
c. serum alkalosis
d. mild to moderate dehydration
The correct option is (d) mild to moderate dehydration.
Hypodermoclysis is used to treat mild to moderate dehydration.
What is Hypodermoclysis?A simple procedure for injecting fluid into subcutaneous tissue is called hypodermoclysis. Subcutaneous fluid administration is technically simpler than intravenous fluid administration. It prevents the requirement for venous access in individuals who frequently have very weak veins at the end of life. Normal saline is the preferable solution, although it is also possible to utilize other solutions such 50% normal saline, glucose and saline, or 5% glucose. If necessary, potassium chloride can be added to the solution bag. Additionally, hyaluronidase can be administered to improve fluid absorption.
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For soap molecules to remove and dissolve oil in water, what molecular features are needed?
Soap needs to possess two distinct characteristics in order to remove dissolved oil from water. It must have a charged and/or positive end at a non-polar end, I'm sorry. Each pin-shaped molecule that makes up soap has a hydrophilic head that easily forms bonds with water and a hydrophobic tail that avoids water and favors forming bonds with fats and oils.
Because it draws water, the sodium or potassium end of the chain is hydrophilic. Soap's cleansing abilities come from its distinctive structure. When your hands are unclean, it's typically because oils have drawn dirt particles to them, making them stick to your hands.
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Forming the cell walls of stems, leaves, and roots, what compound is the primary structural constituent of plant tissues? group of answer choices
a. protein
b. chlorophyll
c. enzymes
d. cellulose (carbohydrates)
Forming the cell walls of stems, leaves, and roots, the Cellulose compound is the primary structural constituent of plant tissues. the correct answer is option(d).
The polysaccharide cellulose, an organic molecule with the formula n, is made up of a linear chain of several hundred to many thousands of D-glucose units that are covalently bonded. Green plants, numerous types of algae, and oomycetes all have basic cell walls that contain cellulose as an essential structural element.
Because it gives the plant cell wall stability and mechanical and tensile strength, cellulose is crucial for plant cell walls. The maintenance and control of plant cell growth and development are based on the configuration of microfibrils (cellulose). The fundamental structural element of the cell wall, cellulose, is largely responsible for its mechanical strength. Cellular activity is influenced by the positioning of cellulose microfibrils within the cell wall.
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During osmosis, water diffuses across a selectively permeable membrane from the region of higher.
In osmosis, water moves from their region of higher concentration to lower concentration, through selectively- permeable membrane.
This process takes place until the concentration is equal or it reached equilibrium. The movement of nutrients and the discharge of metabolic waste products are both influenced by osmosis. It Is in charge of absorbing water from the soil and transferring it through the xylem to the plant’s upper portions.
There are three types of osmotic solution, they are:-
Isotonic solutionHypertonic solutionHypotonic solutionWhen a semipermeable membrane separates a solution from pure water, the pressure that must be supplied to the solution side to cease fluid movement is known as osmotic pressure.
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If you lift a heavy weight and hold it in your arms, close to your body, how would the bone matrix in the femur be affected?.
Answer:
The lateral sides of the diaphysis would stretch.
Explanation:
Describe the femur.
A femur is just the bone in the thigh. That is the longest and sturdiest bone in the human body. The capacity to stand + walk depends on it. Numerous crucial muscles, ligaments, tendons, other components of the circulatory system are supported by the femur as well.
How bad is a fractured femur?
A fractured femur is a dangerous injury that has to be treated immediately by a doctor. Treatment for broken femurs includes surgery plus physical therapy. The broken femur may need several months to recover. A vehicle accident, a tumble, or even being shot all have the potential to fracture the femur. The majority of femoral fractures recover fully in around four to six months, however one should be capable of returning to most movements before then.
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Egg is composed of the shell, egg white and egg yolk
yr own word please
Agree or disagree explain why
Can the nucleus be seen in the whole mount of the fern cells in the microscope slide?
No, the nucleus cannot be seen in the whole mount of the fern cells in the microscope slide.
What is nucleus?The nucleus is an organelle in cell biology that is membrane-bound and is present in eukaryotic cells. Eukaryotes typically have a single nucleus, but some cell types, like mammalian red blood cells, don't have any, and some others, like osteoclasts, have numerous nuclei. The nuclear envelope, a double membrane enclosing the entire organelle and separating its contents from the cellular cytoplasm, and the nuclear matrix, a network within the nucleus that adds mechanical support, much like the cytoskeleton supports the cell as a whole, are the two main components of the nucleus.
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Functional groups help define the properties of macromolecules. the _____ functional group(s) is/are found within amino acids, while carbohydrates contain the _____ functional group(s).
Functional groups help define the properties of macromolecules. the amino and carboxyl functional group(s) is/are found within amino acids, while carbohydrates contain the hydroxyl functional group(s).
Because it is made up of two functional groups—a carboxyl group and a hydroxyl group attached to a carbonyl group—the carboxyl functional group that distinguishes carboxylic acids is uncommon. It is frequently written as -CO2H or -COOH in condensed form.A functional group with the chemical formula -OH and consisting of one oxygen atom covalently linked to one hydrogen atom is known as a hydroxy or hydroxyl group. Alcohols and carboxylic acids both include one or more hydroxy groups in organic chemistry.A macromolecule, such as a protein or nucleic acid, is a very big molecule crucial to biophysical processes. It is made up of many atoms that are covalently bound.To learn more about Functional groups.
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By studying people with brain damage in certain regions of the brain, we gain a better understanding that?
By studying people with brain damage in certain regions of the brain, we gain a better understanding that the cognitive processes rely on the brain.
Brain is the one of the most essential organ of the body that controls the emotions, memory, touch, thought process, motor skills, breathing, body temperature, hunger and all other processes that regulates our body.
Brain along with spinal cord and its extension consists of the Central nervous systems.
Any injury or harm that can cause damage to brain cell is called brain damage. It could lead to stroke, shock, blood clots formation or other problems in the brain.
Cognitive process is the ability to make judgement and perception. It can be lost due to brain damage.
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What is the theoretical diffraction limit of resolution of a light microscope used to look at a sample through oil?
The theoretical resolution limit of a light microscope being used examine a sample while it is in oil is 261 nm.
A light microscope's resolution is limited to between 0.4 and 0.7 micrometers, or half the wavelength of visible light. The objects are at most 0.2 m away when we can see green light (0.5 m).
Using a green light of 514 nm, an oil immersion objective with such a NA of 1.45, and a condenser with a NA of 0.95, the (theoretical) limit of resolution is 261 nm. As was already said, more detail can be resolved when imaging a specimen with a shorter wavelength of light in a microscope.
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Climate mitigation involves both reducing emissions sources and increasing emissions sinks. True or false?.
True: Climate mitigation involves both reducing emissions sources and increasing emissions sinks.
Climate change is one of the worst issues we are facing globally. Climate mitigation is one of the most effective measures to control this change. It involves reducing emission sources and increasing emission sinks so as to improve the situation. Climate change refers to the long-term changes in temperature and weather patterns. Although it may occur naturally, but is most probably caused by humans today. The emission of greenhouse gases is the primary source contributing to climate change, especially global warming. One of the most common greenhouse gas is Carbon dioxide which is released due to the emission of fuels, vehicles, reduced trees, etc.
We can control climate change by having two approaches: climate mitigation and adaptation. Reducing the emission of greenhouse gases in the atmosphere is referred to as climate mitigation. Adaptation refers to adapting to the climate change already persistent.
Climate mitigation involves reducing the release of heat-trapping greenhouse gases in the atmosphere, either by reducing the use of their sources like burning fossil fuels or by increasing the emission sinks that store these gases, such as rivers, forests, etc.
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Event-driven propagation:_______.
a. provides a means to duplicate data for events.
b. pushes data to duplicate sites as an event occurs.
c. pulls duplicate data from redundant sites.
d. triggers a virus.
Event-driven propagation pushes data to duplicate sites as an event occurs.
An event-driven architecture prevalent in modern applications developed with microservices uses events to trigger and interact between decoupled services. An event is a state change or an update, such as an item being added to a checkout process on an e-commerce webpage. Event-driven propagation pushes data to duplicate sites as an event occurs.
A data and application event-driven propagation is a contemporary design approach centered on data that describes "events," something that just happened. The taking of a measurement, pressing a button, or swiping a credit card are all examples of events.
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The organelle within the cytoplasm that is involved in the oxidative conversion of foodstuffs into usable cellular energy is the _____.
The cell organelle in the cytoplasm involved in the oxidative conversion of foodstuffs into cellular energy is the mitochondria.
Mitochondria are sausage-shaped, double- membrane bound cell organelles in the cytoplasm of eukaryotic organisms responsible for producing energy for the cell in the form of Adenosine Triphosphate (ATP). They are also called the powerhouse of the cell.
The mitochondrion is filled with many folds that form a layered structure called the cristae. This is to increase surface area to aid in the production of more ATP molecules.
Mitochondria produce energy through a process called oxidative phosphorylation.
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A client with myocardial infarction is developing cardiogenic shock. what condition should the nurse carefully assess the client for?
A client with myocardial infarction is developing cardiogenic shock. Rationale condition should the nurse carefully assess for the client.
Briefing :As the consequences of the severe left ventricular failure became more apparent, the central venous pressure would increase. Decreased oxygenation and serious injury to more than 40% of the myocardium frequently lead to dysrhythmias.
Myocardial infarction :A restriction in the blood supply to the cardiac muscle.
A heart attack is an urgent medical situation. A blood clot usually causes a heart attack by obstructing the heart's blood supply. Without blood, tissue dehydrates and deteriorates.
A tightness or soreness in the chest, neck, back, or arms, along with weariness, dizziness, an irregular heartbeat, and anxiety, are some symptoms. A typical symptoms are more common in women than in males.
Treatment options include everything from medication, stents, and bypass surgery to dietary adjustments and cardiac rehabilitation.
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Produced in the nucleus, this molecule specifies the exact sequence of amino acids of the protein to be made. group of answer choices
a. synthetase enzymes
b. transfer rna
c. ribosomal rna
d. messenger rna
e. atp
The exact sequence of amino acids of the protein to be made messenger RNA option (d) is correct.
What is an amino acid?Proteins are made of substances named amino acids. Antibodies and amino acid sequences are the elements of living.
The messenger RNA functions as a copy of chromosomal DNA and dictates the sequence of amino acids in proteins.
Produced in the nucleus, this molecule specifies the exact sequence of amino acids.
Thus, the exact sequence of amino acids of the protein to be made messenger RNA option (d) is correct.
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Proteins that are embedded within, and extend across, the phospholipid bilayer are called _____ proteins. rev: 02_22_2014_qc_45534
Proteins that are embedded within, and extend across, the phospholipid bilayer are called Integral Protein.
Integral Protein- Any protein containing a unique functional area for the purpose of ensuring its location within the cellular membrane is referred to as an integral protein, which is also referred to as an integral membrane protein. Or, to put it another way, an integral protein seizes the cellular membrane.
Cellular membrane- All cells have a cell membrane, also known as a plasma membrane, which divides the inside of the cell from the external environment. A semipermeable lipid bilayer makes up the cell membrane. The movement of materials into and out of the cell is controlled by the cell membrane.
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The growing area of genetics and gene therapy may allow psychologists to focus on ______ of psychological disorders rather than on ______ only.
The growing area of genetics and gene therapy may allow psychologists to focus on prevention of psychological disorders rather than on treatment only.
What is gene therapy?Utilizing a gene or genes to treat, prevent, or cure a disease or medical condition is known as gene therapy. Gene therapy frequently involves replacing a damaged gene in a patient's cells with a healthy copy of that gene or inserting new copies of a damaged gene. Ex vivo, in vivo, and in situ gene therapy are the three main subtypes. Ex vivo gene therapy involves removing the patient's affected cells and modifying them genetically, either by introducing the therapeutic gene or through other means, to rectify the disease's phenotype. Gene therapy aims to address genetically based disorders (the source).Learn more about the Gene therapy with the help of the given link:
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Why is it beneficial for cells to use atp rather than energy directly from the bonds of carbohydrates? what are the greatest drawbacks to harnessing energy directly from the bonds of several different compounds?.
It is beneficial for cells to use ATP rather than energy directly from the bonds of carbohydrates because ATP effectively supplies energy, it is advantageous for cells to use it as opposed to directly using the energy contained in the bonds of carbohydrates.
Adenosine triphosphate, sometimes known as ATP, is the cellular currency of energy. Cells may quickly access them when needed and they are conveniently stored. The key benefit is that it consistently and effectively supplies energy to the body's cells.
ATP gives the cell a method for effectively managing energy. It is possible to charge, store, and use the molecule as required. Additionally, ATP hydrolysis produces a steady flow of energy.
Different amounts of energy would be delivered if energy were captured from the bonds of several different molecules also the energy driving process from the bonds of the carbohydrates will require much time and because all metabolic processes are fast the requirement of energy is needed rapidly and hence direct consumption of ATP is beneficial to cell.
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