While you are sleeping, approximately how much of the energy your cells use is derived from fats?

Answers

Answer 1
While you are sleeping, approximately between 30% and 70% of the energy your cells use is derived from fats, fats and proteins are the main source of energy and the percentage is going to depend on the type of body and metabolism.
Answer 2

The percentage of energy derived from fat while sleeping is 60-70 percent per day.

Further explanation

Calories are units for measuring energy. The energy needed by the body to breathe, to take selfies (which can sometimes be dozens of times a day), fights with girlfriends, eat, and so on.

Fat is an element (compound) that exists in living things (humans, animals, and plants). Fat functions to maintain body temperature, protect internal organs and help the absorption of vitamins A, D, E, and K in our body.

It can be concluded that Calories are a unit of measuring energy, while fat is a compound whose measuring unit is grams. So, the forms of calories and fat are different. Fat is part of the food, while calories are the energy contained in the food.

There are three types of burning of calories in the body which are as follows:

Primary Combustion

Basal Metabolic Rate, to carry out its function so that we stay alive, all internal organs of the human body burn calories, including activities while sleeping. How many? An average of 60-70 percent of the total calories spent a day.

Second Burning

Digestion, which means the process of "transferring" nutrients and energy from food into the body. To digest food, we burn calories. How many? An average of 10-15 percent of the total energy spent a day.

Third Burning

To move, as small as, to high-intensity exercise, we burn calories. On average about 15-30 percent of the total energy, we spend a day.

So, for example, in one day you eat food with a total energy of 2,000 calories. Then it turns out that your BMR is 1,400 calories. Then to digest food, you spend 300 calories, and from exercise that day you spend 300 calories. That means the total energy you spend is 1,400 plus 300 plus 300 calories or 2,000 calories. This means you do not burn fat.

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Class: High School

Subject: Biology

Keyword: Presentation of fat burning while sleeping.


Related Questions

Two parents of normal phenotype have a son with an autosomal recessive linked genetic disorder. What is the most likely cause of this?

a. Both parents must be heterozygous for the disorder, or carriers.

b. Because most of a human's genes are autosomal, it was never noticed that the parents had the condition.

c. Because the condition is on the X chromosome and the child only has one copy of the X.

d, Some environmental effect in the womb caused the child to express the disorder.

Answers

I believe the answer is A

The answer: Both parents must be heterozygous for the disorder, or carriers. I'm positive of this answer because I took the test.

What is the correct order going from the bottom to the top of maslow's hierarchy of needs?

Answers

Physiological, safety, love/belonging, esteem, and self actualization.

The Maslow pyramid has five tiers. Basic needs are made up of the bottom two tiers, safety and physiological demands. The following are psychological needs, often known as social and esteem needs. The Maslow hierarchy of requirements places self-actualization demands at its apex.

What bottoms to the top of maslow's hierarchy of needs?

Maslow divided basic human needs into five groups, including those related to physiology, safety, social interaction, esteem, and self-actualization. Include the absolute necessities for life, such as the need for food, drink, air, and sleep. These include the desires for love, affection, and belonging.

From the bottom of the hierarchy up, needs to include physiological (food and clothing), safety (work security), love and belonging needs (friendship), esteem, and self-actualization.

Therefore, Physiological, safety, love/belonging, esteem, and self actualization.

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Total parenteral nutrition (tpn) should be used cautiously in clients with pancreatitis because such clients:

Answers

Total parenteral nutrition should be used cautiously in clients with pancreatitis because such clients are unable to tolerate high glucose concentration hence TPN should be used cautiously. Additionally they should regulate the consumption of proteins and fats since high proteins intake increases the risk of encephalopathy while fats are difficult to digest. Total parenteral nutrition (PN) is the feeding of a person intravenously, bypassing the usual process of eating and digestion. The individual recieves nutritional formulae that contains nutrients such as glucose amino acids, salts, lipids and added vitamins and dietary minerals.

Total parenteral nutrition (TPN) should be used cautiously in clients with pancreatitis due to possible complications and the necessity of close monitoring for glucose levels. Consideration of quality of life and ethical implications is also vital in the management of such patients.

Total parenteral nutrition (TPN) should be used cautiously in clients with pancreatitis because it can contribute to complications such as higher rates of pressure ulcers and pneumonia, particularly in patients who are bedbound for extended periods. The use of TPN avoids the normal stimulation of the pancreas by enteral nutrition, which can affect the disease course of pancreatitis. It is important to consider the overall quality of life for such patients, as long-term artificial nutrition may lead to ethical dilemmas amongst healthcare personnel and the patient's family members. Implementing TPN requires careful planning and coordination of care.

Moreover, pancreatitis patients often face challenges related to glucose control, as their condition can affect insulin production and release. While insulin injections are a means to manage glucose levels, they cannot perfectly mimic the body's natural regulation of insulin. Therefore, patients receiving TPN must be carefully monitored for potential hyperglycemia or hypoglycemia, which are pathological sequelae of diabetes that can be exacerbated in cases of pancreatitis.

Imagine that your finger is accidentally caught in a closing car door. Describe the path of stimulus and response that would happen in the nervous and musculoskeletal systems.

Help fast please <3

Answers

Sensory neurons in finger will start a chain reaction that is passed through the neurons from the finger tip all the way through the brain. The brain is then capable of interpreting the reaction and will immediately send response back through motor neurons capable of immediately moving the finger. Depending or the severity, swelling and bleeding may occur around the affected area.

Answer:

Sensory neurons in finger will tell the brain it hurts then the brain sends a response back through motor neurons making the finger move. 

Biological recognition is important in processes at the molecular, cellular, and organismal levels. Choose ONE of the following, explain how the process of recognition occurs, and discuss a specific example.

-Neurotransmitters are recognized in the synapse.

-Target cells respond to specific hormones.

Answers

Neurotransmitters are recognized in the synapse. In the event wherein a nerve action potential triggers the release of neurotransmitter containing synaptic vesicles from the axon of a nerve, the dendrites of the receiving nerve will recognize these neurotransmitters and trigger specific actions (i.e. excitatory or inhibitory). For instance, the release of glutamate from the synapse will trigger an excitatory response (depolarization) while the release of GABA will trigger an inhibitory response (hyperpolarization).

Target cells respond to specific hormones. Hormones are endocrine molecules that trigger specific cellular functions such as glucose uptake, urine secretion and reabsorption, etc. Hormones bind to either (1) specific hormone receptor (i.e. insulin receptors), (2) cytoplasmic receptors (i.e. thyroid hormone receptor), and (3) nuclear receptors (i.e. steroid hormones). All of which will trigger a cascade that will eventually lead to new protein synthesis (or the inhibition of such). For example, insulin binds to insulin receptors in muscle cells wherein it would trigger the synthesis of glucose channels which will facilitate the uptake of glucose. 

This gas is formed when nitrogen oxides react with a group of air pollutants known as reactive organic substances in the presence of sunlight. It's presence in the stratosphere is protective but can be toxic in the troposphere.
carbon dioxide


nitrogen


ozone


hydrogen

Answers

Hey, Name's Jessy. I hope, I answer your question.

The answer is Nitrogen.
The Answer would be C or Ozone

Mountains are a geographical feature found in many biomes. the rain shadow effect is where ________.

Answers

Mountains generally act as the headwaters of rivers. Clouds moving along a weather frontal system are advected to a higher altitude when they encounter mountains, causing condensation and rainfall. Unfortunately, in most parts of the world, weather patterns follow a common direction most of the time. Therefore, when the clouds encounter the mountain range, it is usually from one direction. This results in the majority of rainfall falling only on one side of the mountain, and the mountain acting as a barrier preventing cloud systems from carrying moisture across the mountain.

When blood glucose levels drop below normal, hormones signal the breakdown of ______, which releases glucose into the blood?

Answers

When blood glucose levels drop below normal, a condition called hypoglycemia, hormones (glucagon, cortisol, epinephrine) signal the breakdown of _glycogen_, which releases glucose from the liver (where most glycogen is stored) into the bloodstream.

When the level of glucose drops below the normal level there occurs the breakdown of glycogen so as to provide glucose molecule to the body as it acts as the immediate source of energy.

Further Explanation:

Glycogen is the stored form of carbohydrate in the body of living organisms. When the level of glucose in the blood drops down then this stored glycogen is broken down to release glucose in the blood which acts as an immediate source of energy.

Glycogen and Insulin hormone act as the main signals that determine the level of glucose in the bloodstream. Glucagon enhances the level of glucose in the blood while insulin decreases the level of glucose in the blood insulin induces the cells to take of glucose thereby decrease the amount of glucose in the blood. A high level of glucose may cause diabetes.

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2. Learn more about how are mitosis and binary fission similar https://brainly.com/question/6462270

3. Learn more about a dividing eukaryotic cell that is treated with a drug that inhibits the shortening of spindle microtubules. This will cause the cell division cycle to stop at the ____ stage. https://brainly.com/question/10767798

Answer Details:

Grade: Middle school

Chapter: Biomolecule

Subject: Biology

Keywords:

Glucose, glycogen, energy, carbohydrate, living organism, blood, Insulin, bloodstream, glucagon, diabetes.

Select all that apply.

Which of the following statements about Boyle's law are correct?

The temperature and pressure must remain constant for the law to apply.
The temperature and the number of molecules must remain constant for the law to apply.
As the pressure of a gas increases, the volume increases proportionally.
As the pressure of a gas increases, the volume decreases proportionally.

Answers

Boyle's law states that the relationship between pressure and volume of a fixed amount of gas at a fixed temperature is inversely proportional. This means that the higher the pressure, the lower the volume, in a proportional relationship. Therefore, of the statements listed, b: 'the temperature and the number of molecules must remain constant for the law to apply' and d: 'as the pressure of a gas increases, the volume decreases proportionally' are correct.

Final answer:

Boyle's Law states the volume of a gas is inversely proportional to its pressure, provided temperature and the number of gas molecules remain constant. Correct statements about Boyle's Law include the necessity for constant temperature and number of molecules, and that an increase in pressure leads to a proportional decrease in volume.

Explanation:

The question asks for a clarification on statements about Boyle's Law, which is a fundamental principle in physics related to the behavior of gases under varying pressures. Boyle's Law states that for a given amount of gas at a constant temperature, the volume of the gas is inversely proportional to its pressure. This means if pressure increases, the volume decreases, and vice versa, assuming the temperature and the number of molecules of the gas remain unchanged.

The temperature and the number of molecules must remain constant for the law to apply.As the pressure of a gas increases, the volume decreases proportionally.

Therefore, the correct statements relating to Boyle's Law are that the temperature and the number of molecules must remain constant for the law to apply, and as the pressure of a gas increases, the volume decreases proportionally. These principles help in understanding and predicting the behavior of gases under different pressures.

A species is a group of organisms capable of mating and producing offspring. this is another way of saying that a species is ____________ isolated. question 1 options: extremely geographically inductively reproductively

Answers

The correct answer is


reproductively  (isolated)

Answer:

reproductively

Explanation:

A biological species is defined as group of individuals that can interbreed among themselves and can produce fertile progeny. Members of two different species can not interbreed and produce the fertile progeny. Therefore, a species is a group of organisms capable of mating and producing offspring and is reproductively isolated from other species.

In your own words, explain how cladograms provide reliable information about the evolution of organisms based on adaptations.

Answers

a cladogram shows relations among organisms. Therefore, any adaptation process will involve closely related organisms, and how they might have progressed to the point of evolutionary necessity

Answer: Cladogram can be defined as the diagram in which the cladistics shows the relationships among organisms.

It is different from an evolutionary tree as it does not shows how the species are related to their ancestors.

It uses a line that turns into different branches in different directions ending at a clade, which shows a group of organisms with last common ancestors.

A patient with allergic rhinitis is taking a compound product of loratadine/pseudoephedrine [claritin-d] every 12 hours. the patient complains of insomnia. the nurse notes that the patient is restless and anxious. the patient's heart rate is 90 beats per minute, and the blood pressure is 130/85 mm hg. the nurse will contact the provider to:

Answers

discuss using any intranasal glucocorticoid and loratadine. 

Predators of different species competing for the same prey is called ______________ competition.

Answers

The answer is 'inter-species competition'. This is when different species in the same environment complete for the same resource. Examples can be trees in a dense forest competing for sunlight. Those trees able to grow the fastest and tallest will break through the forest canopy and receive the full sunlight. Another example are large predators of different species living on the African Savannah environment, such as lions and leopards, which would be competing for the same prey animals.

Why do some regions specialize in "milk products" like cheese and butter rather than fluid milk? identify some of these important regions?

Answers

This happens because these regions are located further away from urban areas and the milk can easily get spoiled before it is delivered to the consumers. Therefore, dairy farms which are away from urban areas, process the milk in order to produce milk products that can last longer. Milk products such as butter or cheese can stay fresh for a longer period of time and they do not get spoiled before reaching the consumers. New Zealand is a place where this practice is quite common since it is located at a great distance from important markets, such as Europe and North America. Milk can be shipped at such a great distance only in the form of processed milk products.

The characteristic that all lipids have in common is that _____. see concept 5.3 (page 72)

Answers

Final answer:

Lipids all have the characteristic of being hydrophobic, meaning they repel water. They are composed of hydrocarbon chains that do not dissolve in water. Examples include fats and phospholipids.

Explanation:

The characteristic that all lipids have in common is that they are hydrophobic, meaning they repel water. Unlike other biological molecules, such as carbohydrates and proteins, lipids do not dissolve in water. This is because lipids are composed mostly of hydrocarbon chains, which are nonpolar and do not form hydrogen bonds with water molecules.

For example, fats, which are a type of lipid, consist of three fatty acid chains attached to a glycerol molecule. The fatty acid chains are hydrophobic, while the glycerol molecule is hydrophilic. This creates a structure that repels water.

Other types of lipids, such as phospholipids found in cell membranes, also have a hydrophobic region and a hydrophilic region. The hydrophobic tails of phospholipids face inward, away from the watery environment, while the hydrophilic heads face the water. This arrangement helps to form the structure of the cell membrane.

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The round usda inspection stamp on poultry means that the birds are

Answers

It means that they are safe, wholesome, and correctly labeled and packaged.

Select the four statements about plasmodium that are true. view available hint(s) select the four statements about plasmodium that are true. plasmodium cells infect two specific types of cells in humans. the life cycle of plasmodium involves only haploid forms. plasmodium cells are transferred to humans through mosquito saliva. inside an infected mosquito, haploid gametes fuse, forming a haploid zygote that develops into an oocyst. when a mosquito bites a human with malaria, diploid plasmodium cells enter the mosquito. inside an infected mosquito, haploid gametes fuse, forming a diploid zygote that develops into an oocyst. the complete life cycle of plasmodium requires two hosts. submit

Answers

The four statements that are true are:

Plasmodium cells infect two specific types of cells in humans.Plasmodium cells are transferred to humans through mosquito saliva.Inside an infected mosquito, haploid gametes fuse, forming a diploid zygote that develops into an oocyst.The complete life cycle of Plasmodium requires two hosts.

Humans and mosquitoes host Plasmodium. The female Anopheles mosquito injects sporozoites into humans during blood meals. Sporozoites infect liver cells and become schizonts, which burst and release merozoites.

Parasites infect red blood cells after liver replication. Infected mosquitoes fuse haploid gametes into a diploid zygote that becomes an oocyst. The mosquito's salivary glands get sporozoites from the oocyst rupture. Diploid Plasmodium cells penetrate mosquitoes after malaria bites. Plasmodium cells infect human liver and red blood cells.

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Final answer:

Four statements about Plasmodium that are true include its infection of two types of human cells, cell transfer through mosquito saliva, the formation of a diploid zygote in mosquitoes, and its requirement for two hosts to complete its life cycle.

Explanation:

The four true statements about Plasmodium, the parasite that causes malaria, are:

Plasmodium cells infect two specific types of cells in humans - the liver cells during the exoerythrocytic stage and the red blood cells during the erythrocytic stage.Plasmodium cells are transferred to humans through mosquito saliva - when an infected Anopheles mosquito bites a human, it injects sporozoites from its salivary glands into the bloodstream.Inside an infected mosquito, haploid gametes fuse, forming a diploid zygote that develops into an oocyst - this occurs in the mosquito midgut after it ingests gametocytes from an infected human.The complete life cycle of Plasmodium requires two hosts: a vertebrate host (humans) where the parasite develops in liver and red blood cells, and a mosquito vector where sexual reproduction occurs forming sporozoites that are passed on to the next vertebrate host.

The statement that the life cycle of Plasmodium involves only haploid forms is incorrect because the zygote formed when gametes fuse is diploid. Additionally, the statement that inside an infected mosquito, haploid gametes fuse, forming a haploid zygote that develops into an oocyst is also incorrect as the zygote is diploid. Lastly, the statement when a mosquito bites a human with malaria, diploid Plasmodium cells enter the mosquito is incorrect because it is the haploid gametocytes that are ingested by the mosquito, not diploid cells.

What toxic compounds can be found in bottled water? Where do they come from?

Answers

Final answer:

Bottled water can contain harmful compounds like Bisphenol A (BPA), Fluoride, Benzene, Toluene, and Xylene, originating from the manufacturing process and contamination from industrial activities. Chlorinated compounds are used as disinfectants but don't successfully eliminate all organisms. Furthermore, water close to industrial areas often contains contaminants, including chemicals and untreated waste.

Explanation:

Bottled water can contain several toxic compounds, the source of which mostly come from the process of bottling and industrial contamination of water sources. Some notable examples are Bisphenol A (BPA), which is used in the manufacturing of hard plastics and may contaminate the water within the bottle; Fluoride which, although beneficial in small amounts, can have adverse health effects when consumed in large quantities; and harmful chemicals used in the fracking industry, such as Benzene, a carcinogen, Toluene, a system depressant, and Xylene, a neurotoxin.

Chlorinated compounds are used as disinfectants, but they may irritate the skin, eyes, and nasal passages, and they may not completely eliminate certain organisms. Cryptosporidium, for example, is a hardy protozoan parasite that can survive in chlorinated water.

Water in proximity to industrial activities or human settlements often becomes contaminated with chemicals, radioactivity, heat, and untreated waste leading to compromised water quality. Pollutant accumulation from the food chain can result in the ingestion of harmful substances by humans, including carcinogens like mercury.

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Cross a parent that is homozygous recessive for both traits (bbee) with a dihybrid (BbEe). First, draw a Punnett square in your notes. For each offspring in the Punnett square, determine the phenotype. In other words, what are the fur color and eye color? Finally, use that information to fill in the predicted fraction of each phenotype in the data table below. Predict Results with Linked Genes Black Fur and Black Eyes Black Fur and Red Eyes White Fur and Black Eyes White Fur and Red Eyes Predicted Fraction /16 /16 /16 /16

Answers

in this question, one parent is homozygous recessive (bbee) and other parent is  dihybrid (BbEe)
B - black fur dominant trait
b - white fur recessive 
E- black eyes dominant 
e - red eyes recessive

a punnett square shows all the possible combinations of genotypes with the corresponding phenotypes that the offspring could inherit.
the genotypes and their phenotypes for the offspring are given below ;
BBEE / BbEe / BbEE / BBEe  - black fur and black eyes
Bbee / BBee - black fur and red eyes
bbee - white fur and red eyes
bbEe / bbEE - white fur and black eyes

after analysing the punnett square the following results are obtained;
black fur and black eyes - BbEe- 4/16 
black fur and red eyes -Bbee -  4/16
white fur and black eyes - bbEe -  4/16
white fur and red eyes -bbee -  4/16
Answer:

The picture shows the correct answers.

During an action potential, the rapid decrease in sodium ion permeability and the simultaneous and rapid increase in potassium ion permeability is responsible for __________.

Answers

The answer is repolarization. In the first phases of an action potential,
Sodium ions flow into the cell, through the voltage-gated ion channels, causing depolarization from the resting potential of -70 mV. In the later stages of the action potential, the potassium ion selective filter channels open and potassium ions move from inside of the cell to the outside. This repolarizes the cell before sodium ions begin to be pumped out of the cell.
The answer is: the repolarization of the cell.
Muscle and nerve cells use action potentials to communicate and send signals. Nerve cells have a resting membrane potential which is a negative concentration gradient, meaning that there are more positively charged ions outside the cell compared to the inside of the cell. These positively charged ions are sodium ions, therefore, there are more sodium ions outside the cell and more potassium ions inside the cell. Repolarization of the cell is a process that happens during action potential and it comes after the depolarization of the membrane. During repolarization, the membrane potential changes and returns to the negative value of the resting potential. At this phase, the sodium channels close and the potassium channels open, causing the nerve cell to lose positively charged ions.

What physical property determines how warm It needs to be for ice to change to water

Answers

The physical property you're looking for should be the melting point of ice.

Melting point of a substance is a temperature that the substance will change from solid to liquid (melting) , or vice versa (freezing).
Different substances has a different melting point. For example, of ice, the melting point is 0°C, if we keep heating the ice at 0°C, the ice melts and become water.

Make sure don't mix up chemical and physical property, chemical property is the properties that the substance reacts with another substance, such as the property of metals to react with hcl to give out hydrogen gas. while physical properties are the observable properties, and does not gives out new substances such as melting points, boiling points, color, density etc.

What is the primary function of the organelle labeled X in this cell

Answers

They bind messenger RNA and transfer RNA to synthesize polypeptides and proteins.

Which of the four main sources of water contain salt water? contain fresh water?

Answers

The oceans and beaches are regarded as sources of salt water and The rainfall we receive from the rain is known as groundwater.

What is groundwater?

Aquifers are structures that hold groundwater. An aquifer is a geological formation, or a portion of one, made up of permeable material with the capacity to store or yield large amounts of water.

Unconsolidated sands and gravels, permeable sedimentary rocks like sandstones or limestones, fractured volcanic and crystalline rocks, etc. can all be found in aquifers.

Rain and snowmelt as well as water that seeps through the bottom of some lakes and rivers (naturally) recharge the groundwater. When irrigation systems for crops use more water than is necessary or when water delivery systems leak, groundwater can also be refilled.

Therefore, The oceans and beaches are regarded as sources of salt water and The rainfall we receive from the rain is known as groundwater.

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Which is a disadvantage of using aquaculture to produce fish? apes?

Answers

I think one disadvantage of using aquaculture to produce fish is the use of grain for feed for some species. Aquaculture is the farming of fish, crustaceans, molluscs, aquatic plants, algae, and other organisms. It involves cultivating freshwater and salty water populations under controlled conditions, and can be contrasted with commercial fishing, which is the harvesting of wild fish.

With a patient that is administered an injection of erythropoietin (epo) you would expect to see ________.

Answers

If a patient is administered with an injection of erythropoietin or EPO, it is expected to see an increase hematocrit. It is because erythropoietin stimulates red blood cell production in which when there is an over production of red blood cells, this could cause the hematocrit to increase.

Final answer:

Erythropoietin (EPO) injection stimulates the production of red blood cells (RBCs), benefiting patients with anemia and potentially enhancing endurance performance. Careful regulation is required to prevent complications from excessive increase in RBCs.

Explanation:

When a patient is administered an injection of erythropoietin (EPO), you would expect to see an increase in the production of red blood cells (RBCs). EPO is a hormone that stimulates the bone marrow to produce more RBCs, leading to an increase in the total number of RBCs in circulation.

This increase in RBC production can have several beneficial effects. It can help treat conditions like anemia, where there is a decrease in the number of RBCs, and improve oxygen delivery to tissues. Additionally, it can enhance performance in endurance sports as more RBCs mean more oxygen is available to muscles.

However, it is important to note that the administration of EPO should be carefully regulated to prevent excessive increase in RBCs, which can lead to a condition called polycythemia. Polycythemia can increase the risk of blood clots and other complications.

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Hypersecretion of ________ results in increased urinary output and dehydration.

Answers

The correct answer is "atrial natriuretic peptide" or "ANP". ANP is secreted by the the atria and the muscle cells of the heart. ANP primarily functions to increase sodium excretion (hence the term natriuretic) which facilitates osmotic diuresis, since there will be a high amount of solute in the renal tubules, this will exert an osmotic force that draws water and facilitate diuresis. This will eventually result to increased urinary output and dehydration.
Final answer:

Hypersecretion of antidiuretic hormone (ADH) leads to excessive urination (polyuria) and can cause dehydration. This hormone is essential for water retention in the kidneys, and its deficit leads to conditions like diabetes insipidus.

Explanation:

Hypersecretion of antidiuretic hormone (ADH) results in increased urinary output and dehydration. ADH, also known as vasopressin, is crucial for maintaining the body's water balance. It regulates the amount of water excreted by the kidneys by causing reabsorption of water in the kidney tubules. In conditions such as diabetes insipidus or after consuming substances like alcohol, there can be underproduction or inhibition of ADH release. This leads to an inability to retain water, resulting in excessive urination, or polyuria, which can cause dehydration. A healthy person usually produces less than 2.5 liters of urine per day, but conditions that inhibit ADH can increase urine output significantly.

Plants use photosynthesis to meet their survival needs by enabling them to

Answers

I believe plant use photosynthesis to meet their survival needs by enabling them to convert radiant energy into chemical energy. Photosynthesis is the process by which plants makes their own food using energy from sunlight. Green plants capture and store light energy from the sun through this process using chlorophyll. The process of photosynthesis produces the chemical energy that plant's cells need to carry out their activities.

Biotic factors of an ecosystem could include which of the following? A. the quantity of water available B. all animal populations C. all types of plants D.the temperature range

Answers

Hey there!

Your answer is option C.

Biotic factors of an ecosystem could include all types of plants, meaning any types of plants can be included.

Hope this helps you.
Have a great day!
Hello,

Here is your answer:

The proper answer to this question is option C "all animal populations". It includes moss, plants, ferns, basically any type of plant.

Your answer is C.

If you need anymore help feel free to ask me!

Hope this helps!

What happens when blood glucose levels fall below normal? 1. The pancreas releases insulin. 2. The pancreas releases glucagon. 3. The pituitary gland releases insulin. 4. The pituitary gland releases glucagon.

Answers

Answer:

2. the pancreas releases glucagon

Explanation:

its not 1 because insulin is used to decrease blood glucose levels.

its not 3 because the pituitary gland does not produce insulin and insulin is not needed

its not 4 because the pituitary gland does not release glucagon.

it IS 2. because the pancreas DOES produce glucagon and GLUCAGON is needed to move GLUCOSE into the blood stream.

When the levels of sugar levels in the body fall below the normal level, the pancreas releases glucagon. Therefore, option "B" is correct.

What is the function of the glucagon hormone?

Glucagon is a peptide hormone. it is a glucose-regulatory hormone. it is released by the pancreas. When the levels of glucose drop in the blood it works against the insulin by stimulating the hepatic cells for the production of glucose. This results in an increase in levels of glucose to normal levels.

Insulin hormone is released when the levels of sugar are high in the blood to lower it whereas glucagon is released when the levels of sugar are low in the blood to bring it to normal.

Therefore, glucagon increases the levels of glucose when falls below normal levels.

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Ricky notices a similarity between a fried egg and the diagram of a cell. Which cell organelles is Ricky likely to associate with the parts of the egg?

Answers

The nucleus potentially resembling an egg yolk, the main component of a cell. The white of the egg would be the gel inside the cell, can't remember the name of it?

Answer:

The correct answer is nucleus.

Explanation:

A fried egg comprises the yolk portion in the center facing up, and this yolk part is surrounded by the white part known as albumen. An individual on observing the fried egg and the diagram of a cell can see a certain resemblance. That is the yellow portion of the fried egg can be matched easily with the nucleus of the cell, and the white part, that is, the albumen with the cell's cytoplasm. The nucleus refers to a cell organelle that is found within the cells in eukaryotes, while the fluid part found within the cells is known as cytoplasm.

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