select molecules that have stored potential energy and that can be used in aerobic respiration to generate atp.

Answers

Answer 1

Carbohydrates, lipids, and protein have potential energy, and can be used in aerobic respiration to generate .

Carbohydrate- A carbohydrate is a naturally occurring substance or a derivative of one, made composed of molecules of carbon, hydrogen, and oxygen. The most prevalent organic compound is a carbohydrate, and all life depends on them.

Lipids- Fatty, waxy, or oily molecules are referred to as lipids. They are soluble in organic solvents but insoluble in polar solvents like water.

Amino acids: Amino acids can be used to generate ATP in aerobic respiration as well. They are broken down into intermediates that can enter the Krebs cycle to generate ATP.

Protein- Large, intricate molecules known as proteins serve a variety of vital functions in the body. They are crucial for the construction, operation, and control of the body's tissues and organs and carry out the majority of their job inside cells

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The following question may be like this:

Select all the molecules that have stored potential energy and that can be used in aerobic respiration to generate atp.

a) lipids carbohydrates

b) water proteins

c) carbon dioxide


Related Questions

To which side of the kidney does the ureter connect?

A. Proximal
B. Superior
C. Medial
D. Axial

Answers

The ureter connects to the C.) medial side of each kidney.

What is the function of kidney?

Kidneys' primary function is to remove toxins from the blood and convert waste products into urine. The average kidney weighs 160 grammes and excretes 1.5 litres of urine every day. Every 24 hours, two kidneys work together to filter 200 litres of fluid.

The kidneys aid to maintain the body's chemical balance by excreting waste and excess water from the blood as urine and removing excess salt, potassium, and calcium. Additionally, they produce hormones that encourage bone marrow to produce red blood cells, which is referred to as renal function. They also assist manage blood pressure.

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The Localistic Model of brain function was first hypothesized by Earnest Aubertin. Which of the following statement(s) is/are true regarding this model?
[mark all correct answers]
a.
The Localistic Model states that a particular region of the brain is dedicated to a specific task.
b.
The Localistic Model has been thoroughly discredited by science.
c.
It is also known as the Distributed Model, popularized by Pierre Gratiolet.
d.
Science supports many aspects of the Localistic Model. However this model does not entirely explain how the brain works.
e.
The Localistic Model explains that different regions work together to accomplish various different functions.

Answers

According to the Localistic Model, a specific area of the brain is saved for a clear activity. Numerous facets of the Localistic Model are backed by science. Yet, the brain's workings are not fully defined by this model. The correct answer is (A, D).

The study of the nervous system and the brain is referred to as "neuroscience," while the study of how the nervous system influences behavior is referred to as "biological psychology."

Signals are sent from the brain to the rest of the body, including internal organs, by the nervous system. The activity of the nervous system controls the ability to move, breathe, see, and think, among other things.

The scientific study of the nervous system—the brain, spinal cord, and peripheral nervous system—and how it works is known as neuroscience.

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which of the following favors filtration into the bowman's or glomerular capsule of nephron? multiple select question.

Answers

the answer is: Large glomerular surface area High Hydrostatic pressure of the blood

Mark brainliest please

Weathering by abrasion, could
occur with what

Answers

Moving water causes abrasion as particles in the water collide and bump against one another.

Use Sammi's model as an example to explain why cells are the building blocks for human bodies.

Answers

Since each of a cell's various sections performs a particular job, cells serve as the fundamental units of the human body. The tiniest and most fundamental part of life is called a cell. To represent the various components of the circulatory system, the model uses everyday objects.

What is the circulatory system?The heart, blood vessels, and blood itself circulate throughout the entire body of a human or other vertebrate through the blood circulatory system. It contains the circulatory system, also known as the vascular system, which is made up of the heart and blood arteries. Blood veins in the circulatory system are responsible for moving blood away from and back toward the heart. Blood is transported away from the heart by arteries and returned via veins. Oxygen, nutrients, and hormones are delivered to cells by the circulatory system, which also eliminates wastes like carbon dioxide. Service for the body's cells is provided by the heart, blood, and blood vessels.

Therefore,

As can be observed from the image, the heart, blood vessels, capillaries, and digestive tract are just a few of the components that are portrayed. This demonstrates how various organs have distinct duties to play in pumping blood into the body, just as different types of cells in the human body have various responsibilities to play.

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please help need this soon

Answers

Frequency of dominant allele: 0.99

Frequency of recessive allele: 0.01

% homozygous dominant: 98.01%

% homozygous recessive: 0.01%

% heterozygous: 1.98%

What is Hardy -Weinberg equation?

The Hardy-Weinberg equation is a mathematical model that describes the relationship between the frequencies of alleles and genotypes in a population. It is based on the assumptions of a large population size, random mating, no migration, no mutation, and no natural selection.

The equation is:

p² + 2pq + q² = 1

where:

p = frequency of the dominant allele

q = frequency of the recessive allele

p² = frequency of the homozygous dominant genotype

q² = frequency of the homozygous recessive genotype

2pq = frequency of the heterozygous genotype.

Given that cystic fibrosis is a homozygous recessive condition that affects 1 in 10,000 of the Hispanic population in the US, we can assume that the frequency of the recessive allele is q = √(1/10000) = 0.01.

To calculate the frequency of the dominant allele, we can use p = 1 - q = 1 - 0.01 = 0.99.

Now we can use the Hardy-Weinberg equation to calculate the frequencies of the different genotypes:

p² = (0.99)² = 0.9801 = 98.01% homozygous dominant

2pq = 2(0.99)(0.01) = 0.0198 = 1.98% heterozygous

q² = (0.01)² = 0.0001 = 0.01% homozygous recessive

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Which statement would be MOST important to include in a summary of the article?


A
Models are used to represent objects and events in the real world.

B
Maps can be created on paper as well as digitally in people's phones.

C
Scales on maps use measurements in miles or kilometers.

D
Microscopes use lenses that bend light to make objects appear larger.

Answers

Answer:

D.) Microscopes use lenses that bend light to make objects appear larger.

Explanation:

I believe this is correct because it gives more detail in its sentence providing more information on a subject.

clostridium tetani, the bacterium that causes tetanus, can only survive in soil away from oxygen. it is considered which of the following?

Answers

Tetanus-causing bacteria Clostridium tetani is regarded as an obligate anaerobe. It can only exist in surroundings devoid of oxygen, which means that it cannot thrive in the presence of oxygen.

What allows Clostridium tetani to endure?

The creature is heat-sensitive and is incapable of surviving in an oxygen-rich environment. In contrast, the spores are remarkably resistant to heat and common antiseptics.

Can the tetanus-causing Clostridium tetani bacterium only endure in oxygen-free soil?

The bacteria Clostridium tetani produces a toxin (poison) that causes tetanus. Oxygen prevents the C. tetani bacteria from surviving. Because to their resistance to heat and other chemicals, they develop spores that are particularly challenging to eradicate.

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Which of the following occurs if the load attempted is equal to or greater than the force generated by a muscle? Isometric muscle contraction occurs.

Answers

Isometric muscle contraction occurs when the muscle generates force but there is no change in muscle length, meaning that the muscle does not undergo any movement.

In this type of contraction, the force generated by the muscle is equal to the external load, but the muscle fibers remain static. This type of contraction is important for maintaining posture and stabilizing joints.

In contrast, isotonic muscle contraction occurs when the muscle generates force and there is a change in muscle length, resulting in movement. This type of contraction can be further classified into concentric and eccentric contractions. Concentric contractions occur when the muscle shortens as it generates force, while eccentric contractions occur when the muscle lengthens as it generates force.

Overall, the key difference between isometric and isotonic contractions is whether or not there is movement in the muscle. Isometric contractions do not result in movement, while isotonic contractions do.

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Full Question ;

"What occurs if the load attempted is equal to or greater than the force generated by a muscle? Isometric muscle contraction occurs. Can you explain what isometric muscle contraction is and how it differs from isotonic muscle contraction?"

fill in the blank. in order to transform the___of atp into ___ to do work, the bonds of atp must be broken into adp and an available phosphate group.

Answers

In order to transform the energy of ATP into work, the bonds of ATP must be broken into ADP and an available phosphate group.

ATP is a nucleotide that contains a ribose sugar molecule, a nitrogen-containing adenine molecule, and three phosphate groups that are negatively charged.

ATP, or adenosine triphosphate, is a high-energy molecule that serves as the primary energy source for cellular functions. It acts as the power source for all biological activities in cells by supplying energy.

It is produced during cellular respiration, a process that converts glucose and oxygen into energy in the form of ATP. The energy stored in the high-energy bonds of ATP can be utilized to carry out a variety of cellular functions, such as transporting molecules across cell membranes, synthesizing complex molecules, and moving cells.

When ATP is used to accomplish work, it is converted to ADP (adenosine diphosphate) and an available phosphate group, and the energy stored in its bonds is released to do work. This process is referred to as hydrolysis.

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Please help me with this
Develop a plan for building a fish pond and include what kinds of fish and plants are suitable for the pond fish.

Answers

Building a fish pond can be a great addition to a backyard or garden and can provide an opportunity to keep and cultivate fish for recreational or commercial purposes.

How do you build a fish pond?

Here's a plan for building a fish pond, along with some suggestions for suitable fish and plants:

Choose a suitable location: The first step in building a fish pond is to choose a suitable location. Look for a spot that is level and receives a good amount of sunlight. Avoid areas that are too close to trees or other sources of debris, as falling leaves and branches can contaminate the water.

Determine the size of the pond: The size of the pond will depend on the number and size of fish you plan to keep. A good rule of thumb is to have at least 100 gallons of water for every one inch of fish.

Dig the pond: Once you've determined the location and size of the pond, it's time to start digging. Use a shovel or backhoe to excavate the soil and create the shape of the pond. The depth of the pond should be at least 3-4 feet to ensure adequate water circulation and temperature regulation.

Install a liner: Once the pond is dug, install a liner to prevent water from seeping into the soil. Choose a high-quality liner made of EPDM or PVC to ensure durability and longevity.

Install a filtration system: To keep the water clean and healthy for fish, install a filtration system that includes a pump, filter, and UV clarifier. These components work together to remove debris, harmful bacteria, and other contaminants from the water.

Add suitable fish: When choosing fish for your pond, consider the size, temperature requirements, and compatibility of different species. Some suitable fish for a backyard pond include koi, goldfish, and trout.

Add aquatic plants: Aquatic plants can help to oxygenate the water and provide a natural habitat for fish. Some suitable plants for a fish pond include water lilies, water hyacinths, and duckweed.

Add decorations and lighting: To make the pond more attractive and enjoyable, consider adding decorative elements such as rocks, statues, and lighting.

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Color blindness is an X-linked recessive trait. A color-blind man marries a homozygous normal female. They have two children, both with what is known as Turner Syndrome (monosomy X or X0 or X_). One child has normal vision and one is color-blind. Did nondisjunction occur in the mother or father for the child with normal vision? Explain.

Answers

Men are more likely than women to have red-green color blindness because it is inherited on the X chromosome. This is due to Only one X chromosome coming from a male's mother.

Red-green color blindness will occur if that X chromosome, as opposed to a normal X chromosome, contains the gene for the condition.

He would have a Y and an Xc, both of which contain DNA that can cause color blindness; that is, all of his Xs would cause color blindness. Because of this, he probably doesn't see colors. There is a 50% chance that each daughter will carry the disease, and there is a 50% chance that each son will be color blind.

Red-green color blindness and hemophilia A are two examples of X-linked recessive conditions: Color blindness that is red-green. A person with red-green color blindness is able to see normally but cannot differentiate between blue-green and red shades.

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with respect to developmental differences in metacognition, which of the following statements is most accurate

Answers

The most accurate statement with respect to developmental differences in metacognition is only minimally developed in early childhood and reaches maturity during adolescence. Here option B is the correct answer.

Metacognition refers to our ability to monitor, regulate, and direct our own learning and thinking processes. It involves being aware of what we know and what we don't know, setting goals, planning and monitoring our progress, and evaluating our own performance.

Research has shown that metacognitive abilities develop gradually over time and continue to improve throughout childhood and adolescence. Young children are able to use basic metacognitive strategies such as rehearsal and elaboration, but they are not able to fully control their own learning.

As children grow older and gain more experience, they become better able to regulate their own learning and use more complex metacognitive strategies. However, the development of metacognition can vary across individuals and is influenced by a variety of factors such as cognitive abilities, motivation, and cultural background.

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Complete question:

With respect to developmental differences in metacognition, which of the following statements is most accurate

A. Metacognition is fully developed at birth and remains stable throughout life

B. Metacognition is only minimally developed in early childhood and reaches maturity during adolescence

C. Metacognition is primarily a function of intelligence, and individual differences remain stable throughout life

D. Metacognition is a skill that develops at a relatively constant rate throughout the lifespan

E. Metacognition is heavily influenced by culture, and individual differences are not consistent across different cultural contexts.

t/f a condition that occurs when warm air traps cooler air at the surface of the earth is greenhouse gases.

Answers

False. A condition that occurs when warm air traps cooler air at the surface of the earth is greenhouse gases called an inversion.

When a layer of warm air forms above a layer of cooler air, pollutants and other particles near to the earth are effectively trapped. This can result in the buildup of smog, particulate matter, and other harmful substances, all of which can damage human health and the environment.

These gases, which include carbon dioxide, methane, and water vapor, trap heat in the atmosphere and add to global warming. The greenhouse effect is a natural process that is required for life to exist on Earth.

However, human actions such as the use of fossil fuels and deforestation have increased greenhouse gas emissions, causing global temperatures to rise and resulting in climate change.

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Complete question

A condition that occurs when warm air traps cooler air at the surface of the earth is greenhouse gases is Inversion. True or False

complete the following chart to describe the characteristics of the fungal phyla. each label can only be used once.

Answers

The six fungal phyla with their key features and methods of reproduction,

a. Ascomycota - Ascus with spores, sexual.

b. Basidiomycota - Basidiocarp fruiting body, sexual.

c. Chytridiomycota - Zoospores, the life cycle is an alternation of generations.

d. Neocallimastigomycota - Zoospores, strictly anaerobic.

e. Glomeromycota - Spores, asexual.

f. Blastocladiomycota - Zoospores, some exhibit alternation of generations.

This is a list of the six fungal phyla with their key features and methods of reproduction are:

a. Phylum - Ascomycota

Reproduction - Ascus with spores, sexual

Key Features - Ascocarp fruiting body (mushroom), yeasts, molds

b. Phylum - Basidiomycota

Reproduction - Basidiocarp fruiting body, sexual

Key Features - Symbiotic with plants, decomposers

c. Phylum - Chytridiomycota

Reproduction - In zoospores, the life cycle is an alternation of generations

Key Features - Simplest fungi, aquatic

d. Phylum - Neocallimastigomycota

Reproduction - Zoospores, strictly anaerobic

Key Features - Lack mitochondria; live exclusively in the guts of herbivores

e. Phylum - Glomeromycota

Reproduction - Spores, asexual

Key Features - Symbiotic with plants, mycorrhizal fungi

f. Phylum - Blastocladiomycota

Reproduction - Zoospores, some exhibit alternation of generations

Key Features - Terrestrial or aquatic; includes Physoderma plant pathogen

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The question is -

Complete the following chart to describe the characteristics of the fungal phyla. Each label can only be used once.

In what type of organisms can the CRISPR/Cas system be found naturally?

Answers

Bacteria and archaea

when was electricity first ever made

Answers

Answer:

In 1800

Explanation:

Finally, in 1800, Alessandro Volta, an Italian scientist, made a great discovery. He soaked paper in salt water, placed zinc and copper on opposite sides of the paper, and watched the chemical reaction produce an electric current. Volta had created the first electric cell.

What fields if natural science are present in this passage about Snows work in anesthesiology

Answers

In this chapter about Snow's work in anesthesiology, the subjects of medical sciences and chemistry are mentioned.

What is meant by anesthesiology?Anesthesiology is the area of medicine that focuses on treating pain before, during, or following surgery. Anesthesia is the name used for the drugs used, and anesthesiologists are medical professionals with this type of training.The medical discipline known as anesthesiology, anaesthesiology, or anaesthesia is focused with providing patients with comprehensive perioperative care prior to, during, and following surgery. Anesthesia, intensive care medicine, life-threatening emergencies, and pain management are all included. The patient's vital bodily processes, such as heartbeat and rhythm, respiration, blood pressure, body temperature, and fluid balance, must be monitored and managed. To ensure the right conditions are present for a safe and successful surgery, manage the patient's pain and degree of consciousness.

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How was the dependent variable in the catalase experiment measured?

Answers

The rate of the reaction is the dependent variable. The concentrations of the enzyme, substrate, temperature and the presence of an inhibitor are the independent variables.

What is a catalase experiment?The impact of substrate concentration on reaction rate is investigated in this experiment. In a beaker containing hydrogen peroxide, porous filter paper discs are first dipped in a catalase solution. Oxygen bubbles begin as little ones and grow in size as the process progresses.Students can assess the effects of temperature and pH on the effectiveness of catalase using a typical enzyme lab. The enzyme catalase converts hydrogen peroxide (H2O2) into oxygen and water, and it is present in practically all living things. A common source of catalase used by educators is raw chicken liver or potato. By adding hydrogen peroxide to the bacteria, it is easy to detect whether they make catalase.

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ANSWERRRRRR PLSSSS ASAPP

Answers

Answer:

1) whole wheat

2) yeast

3) so the bread can rise

4) it makes it rise and expand by the particles vibrating (dont know if this is right)

5) nutrients

whole wheat, yeast, rising, expands, and nutrients

as characteristized in lecture, an oil spill is an example of: question 12 options: competition antagonism ammensalism commensalism

Answers

Antagonism can take one of two forms: competitive and non-competitive. Ketamine, on the other hand, is a non-competitive foe of the NMDA-glutamate receptor, whereas naloxone is a competitive foe of all opioid receptors. The correct answer is Antagonism.

Competitive antagonism is based on the idea that an agonist or antagonist can bind to the same recognition site(s) on the receptor and compete for those sites when they are present simultaneously.

A competitive antagonist blocks the agonist's action by binding to the same site as the agonist but not activating it. To prevent the receptor from being activated, a non-competitive antagonist binds to an allosteric (non-agonist) site on the receptor.

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PLEASE HELP! Thank you! Website doesn’t work

Answers

The Bacteria and what their features represent include bacillus ( rod shaped ), coccus ( spherical), spirillum ( spiral ), diplo ( pairs ), strepto (chains), and staphylo (clusters).

What are some types of bacteria ?

There are various types of bacteria that occur in nature and some of them include:

bacillus - Rod-shaped bacteriacoccus - Spherical-shaped bacteriaspirillum - Spiral-shaped bacteriadiplo - Bacteria that occur in pairsstrepto - Bacteria that occur in chainsstaphylo - Bacteria that occur in clusters or groups

How do Bacillus occur in nature?

The bacteria in the diagram include:

Diagram 1: BacillusDiagram 2: DiplococcusDiagram 3: StreptococcusDiagram 4: CoccusDiagram 5: StreptococcusDiagram 6: BacillusDiagram 7: SpirillumDiagram 8: StaphylococcusDiagram 9: Bacillus

Bacillus occurs in nature in various forms, including soil, water, and air. They are commonly found in soil, where they play a vital role in decomposing organic matter. Bacillus also occurs naturally in water, including freshwater and saltwater.

Some Bacillus species are known to survive extreme environmental conditions, including high temperatures, radiation, and desiccation, allowing them to exist in a dormant state for extended periods.

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Image transcribed:

Use the following website: http://biology.clc.uc.edu/courses/bio106/bacteria.htm or your notes to fill in the meaning of the term on the line next to the term.

1. bacillus

2. coccus

3. spirillum

4. diplo

5. strepto

6. staphylo

Use the terms you defined above to name the bacteria in each diagram below. Write the name on the line below each diagram. Note: Some names will combine two of the terms. For instance, a chain (strepto) of round (coccus) bacteria is called streptococcus.

Why are climate change and global warming environmental problems

Answers

Answer:

Increased temperatures, droughts, and bug outbreaks are all results of climate change. Wildfires have become more frequent and intense as a result of these changes. Moreover, the warmer environment has led to a decrease in water resources, decreased agricultural output, and heat-related health effects in urban areas.

Explanation:

Climate change has made it harder for both people and wild animals to survive. Droughts that are more frequent and extreme, storms, heat waves, rising sea levels, melting glaciers, and warmer oceans can all directly injure animals, destroy the habitats they rely on for survival, and have a disastrous impact on people's way of life and communities.

which of the following can defend the body by either opsonizing bacteria, lysing bacteria, and/or promoting inflammation

Answers

The components that can defend the body by either opsonizing bacteria, lysing bacteria, and/or promoting inflammation are Alpha and beta interferons; option D.

What are Alpha and beta interferons?

Alpha and beta interferons are types of proteins produced by cells of the immune system in response to viral infections, tumors, and other challenges to the immune system. They are part of the interferon family of cytokines and are involved in the body's innate immune response.

Alpha interferon (IFN-α) is produced by leukocytes, such as monocytes and macrophages, while beta interferon (IFN-β) is produced by fibroblasts and other cells.

Both types of interferons play a role in activating immune cells, such as natural killer cells and T cells, to attack infected cells and prevent the spread of viruses and bacteria.

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Cmplete question:

Which of the following can defend the body by either opsonizing bacteria, lysing bacteria, and/or promoting inflammation?

Neutrophils

Macrophages

Activation of the complement system

Alpha and beta interferons

What does receiver bee stand over???

Answers

Answer:

The flower.

Explanation:

It eats the nectar and the pollen sticks onto its fur, so that it can pollinate other flowers.

Fish respiration and plant photosynthesis simulation

Answers

Photosynthesis, cellular respiration, and ecological output can all be studied using this program. Set the plant number to 0 to try the fish only. Set the fish to 0 to try only vegetation. Set the light level to 0 to monitor plant cellular respiration. The simulation will execute immediately whenever a variable is modified.

Aquatic plants, like land plants, engage in photosynthesis and internal metabolism. When marine autotrophs release oxygen as a result of photosynthesis, it dissolves in water. Dissolved oxygen can be detected directly to determine whether aquatic plants engage in photosynthesis or cellular respiration under various circumstances.

Finding a consistent supply of aquatic plants can be challenging because some species are only accessible periodically and others are invasive. As a result, for this novel exercise,We suggest Java moss (Vesicularia dubyana) or Christmas moss (Vesicularia montagnei), two watery aquaria-friendly aquatic bryophytes. As evidenced by our findings, Java moss experiences cellular respiration in the dark, resulting in a decrease in dissolved oxygen, and rapidly changes to photosynthesis when subjected to an LED or halogen plant light. Using this tough aquatic plant, students can simply adjust light levels to learn more about photosynthesis and cellular respiration.

What is the difference between Interphase-GAP1, Synthesis, Gap2, Mitosis(PMAT), and Cytokinesis?

Answers

Interphase is the longest phase of the cell cycle, which is further divided into three stages: G1 (Gap 1), S (Synthesis), and G2 (Gap 2).

What is the difference between Interphase-GAP1, Synthesis, Gap2, Mitosis(PMAT) and Cytokinesis?

G1 Phase: This is the phase where cell is growing and carrying out its normal metabolic functions. During this phase, cell prepares for DNA replication and checks for DNA damage before progressing to next stage.

S Phase: This is the phase where DNA replication occurs and the cell synthesizes new DNA by copying the existing DNA, resulting in two identical copies of DNA.

G2 Phase: This is the phase where cell checks for errors and ensures that DNA replication is complete before entering mitosis.

After interphase, cell enters the M phase or the mitotic phase, which includes mitosis and cytokinesis.

Mitosis: Mitosis is the process of cell division where replicated DNA is separated into two identical nuclei. It is further divided into four stages: prophase, metaphase, anaphase and telophase (PMAT).

Cytokinesis: Cytokinesis is the process of cell division where cytoplasm divides resulting in two daughter cells with identical genetic material.

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Skeletal muscles usually consist of several distinct types of muscle fibers. Different muscle fiber types in the same muscle become apparent when certain dyes are applied, as seen in the stained micrograph on the right. Consider the three muscle fiber types labeled Type A Type B, and Type C. -Type C Type B Type A Dr. Gladden Willis / Visuals Unlimited, Inc./Getty Images Each muscle ber type has a unique set of contractile properties. The following graphs plot the force of muscle fiber contractions in response to a single stimulus (a single action potential, shown as one black arrowhead), a short burst of stimull (a rapid succession of action potentials, shown as a sequence of black arrowheads), and repeated bursts of stimull (a sustained succession of action potentials, shown as a continuous black bar). Force produced due to a single stimulus Force produced due to a short burst of stimuli Force produced due to repeated bursts of stimuli 0.5 0.5- Force produced due to a single stimulus Force produced due to a short burst of stimuli Force produced due to repeated bursts of stimuli 0.5- 0.5- 0.4 0.4 0.3 0.3- Force (N) 0.2- 0.2- 0.1 0.1- 0 0- 0 50 100 150 200 250 300 Time (msec) 0 0 2 60 500 1000 1500 Time (msec) 4 6 Time (min) In each row of the following table, identify the muscle fiber type or types described by each statement. Check all that apply. Type A Type В Type с When these muscle fibers experience a short burst of stimuli, fatigue sets in within 750 milliseconds of the first stimulus. s This muscle fiber type can still generate force after 60 minutes of repeated stimulation. This muscle fiber type produces the strongest possible peak force. In other words, it has the strongest contractile activity Based on how these three muscle fiber types respond to different stimull, Type B y fibers are most likely to be abundant in muscles that contract very strongly but only for a short period of time. These fibers are also known as fast aerobic muscle fibers.

Answers

Skeletal muscle fibres come in two varieties: type I slow-twitch and type II fast-twitch (type II). Fast-twitch muscle fibres assist short, strong actions like sprinting or weightlifting.

While slow-twitch muscle fibres support long distance endurance sports like marathon running. The majority of skeletal muscles in humans contain a mix of fibre types: postural and endurance muscles have a higher proportion of MHC I fibres, whereas muscles involved in quick, powerful, short-duration movements have a higher proportion of MHC IIA and IIX fibres. More mitochondria are present in type 1 ("slow twitch") fibres, which enables them to create more energy and makes them ideal for prolonged, aerobic activity.

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What are two different types of muscle fibres that can be found in skeletal muscles name some characteristics?

the organelles found in modern eukaryotic cells which are responsible for providing energy for the cell are ___________ and _____________.

Answers

The organelles found in modern eukaryotic cells which are responsible for providing energy for the cell are mitochondria and chloroplasts.

Mitochondria are known as the "powerhouse" of the cell as they convert energy from food molecules into a form the cell can use, known as ATP. Chloroplasts are responsible for photosynthesis, which captures the energy from sunlight and converts it into a form the cell can use The organelles found in modern eukaryotic cells which are responsible for providing energy for the cell are mitochondria and chloroplasts.Eukaryotic cells are organisms whose cells have a nucleus and other organelles enclosed by a plasma membrane.

The organelles found in modern eukaryotic cells that are responsible for providing energy for the cell are mitochondria and chloroplasts.The majority of eukaryotes have mitochondria, which are responsible for cellular respiration. Mitochondria are an essential part of cellular respiration, which generates ATP, the molecule that supplies the cell with energy. Chloroplasts, on the other hand, are responsible for photosynthesis in plants and algae.The answer is: Mitochondria and chloroplasts.

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If a person has a mutation in the GLUT-1 gene that results in diminished transport capacity, which of the following is most likely to result?A. Cognitive difficultiesB. Type I diabetes mellitusC. Type II diabetes mellitusD. An increase in the production of GLUT-2 transport proteins in the body

Answers

Cognitive problems are almost certainly going to result from a glut-1 gene mutation that causes diminished transport capacity.Most people refer to it as GLUT1 deficient syndrome.

Developmental delay, intellectual incapacity, mobility issues, and frequent seizures are just a few of the neurological symptoms that can result from this condition (epilepsy). The function of the GLUT1 protein is diminished or lost as a result of the mutations that produce GLUT1 deficiency syndrome.

The head size of infants with common GLUT1 deficiency syndrome is normal at birth, but the brain and skull generally grow slowly, which might cause an abnormally small head size (microcephaly ). Some symptoms of GLUT1 deficient syndrome can include intellectual impairment or developmental delay.

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