Which of the following scenarios can be classified as a negative feedback loop?
a increase in blood pressure to reduce heart rate
b increase in testosterone to help increase a fight-or-flight response
c increase in oxytocin caused by increased contractions
d increase in platelet production to help increase blood clotting

Answers

Answer 1

Answer:

The scenario that can be considered an example of a negative feedback loop is increase in platelet production to help increase blood clotting (option d).

Explanation:

Negative feedback loop is what occurs when a change occurs in the body, producing a response that decreases or stops that change, with the intention of maintaining homeostasis.

When there is a wound that produces bleeding, a series of mechanisms are activated, the coagulation cascade, which promotes the release of factors that allow the formation of clots. The increased release of platelets implies negative feedback because it helps to stop the change that occurs in the body, the loss of blood, through the formation of clots.

One thing that can cause confusion is the fact that this response also involves positive, though limited, feedback that promotes the production of clotting factors and platelets to increase clot formation. What really happens is that the positive feedback promotes the general feedback, which is the negative feedback: clot formation to stop the bleeding, restoring homeostasis.

The other options are not correct because:

    a. Increase in blood pressure to reduce heart rate is not possible.

    b. In the fight and flight response the hormones involved are cortisol and adrenaline, not testosterone.

    c. Increased oxytocin in response to uterine contractions is positive feedback.

Answer 2

Answer:

A is the answer Not D

increase in blood pressure to reduce heart rate

Explanation:


Related Questions

During division, the code for the protein cytochrome-C had the code for proline
changed to the code for leucine. This type of change in the genetic material is
known as a -

A. redundant mutation

B. frameshift mutation

C. point mutation

D. chromosomal mutation

Answers

Answer:

Point Mutation

Explanation:

The type of change described, where the code for proline is changed to the code for leucine during division, is known as a point mutation. The correct option is C.

A point mutation refers to a change in a single nucleotide base of the genetic material (DNA or RNA).

In this case, the change occurred at a specific position in the genetic code, resulting in the substitution of one nucleotide for another. This substitution led to a different amino acid being incorporated into the protein sequence.

Thus, based on the description provided, the correct answer is C. point mutation, as it involves the specific substitution of one nucleotide for another in the genetic code.

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Please help me with this it’s the last one I need

Answers

Answer:

species

Explanation:

please mark me brainliest and 5 star

Please please help...what will happen to these glands if they strike?​

Answers

Answer:

gurl it would've been gangsta

Explanation:

I would be like what organs is this?

it would make you incomplete like

Under it, it may get worst since our stomach is made of acids, foods that we've swallowed may cause inflammation inside, our brain would've stop doing its thing, and lastly reproductive glands....Yes goodluck with that you might wanna get some transplant:>

A scientist is studying specialized cells that help pump blood. Which cells is she most likely studying?

neurons, which are a type of muscle cell
cardiac cells, which are a type of muscle cell
epithelial cells, which are a type of blood cell
white blood cells, which are a type of blood cell

Answers

Answer:

Cell specialization, also known as cell differentiation, is the process by which generic cells change into specific cells meant to do certain tasks within the body. Cell specialization is most important in the development of embryos.

Explanation:

Neurons. Neurons are specialized cells that carry messages within the human brain

Muscle Cells. Muscle cells make movement possible

Sperm Cells. Specialized sperm cells are necessary for human reproduction

Red Blood Cells

Leukocyte. and those are some

WILL MARK BRAINLIST PLS HELP
An animal welfare group is curious if the effects of selectively breeding goats to produce more milk is bad for the goats. What would be the BEST question that the welfare group could ask to determine the effects of selectively breeding the goats?

A.
What does the milk of the selectively bred goats taste like?

B.
What is the diet the goats are fed in order to produce milk?

C.
Can you make more money by producing the goats with the desired traits?

D.
Are there negative traits in the selected traits on the goat population?

Answers

Answer:

d

Explanation:

its not a, the question doesn't ask anything about the taste, its not b, it doesn't say anything about the diet, it isn't c, the money isn't what it asks either. its most likely d, because d is about the effects on the goats.

Which of the following statements correctly describes a kingdom of classification?

A.Both Protista and Fungi have single-celled members.

B.Only the kingdom fungi have members that reproduce asexually.

C.Only the members of the kingdom Animalia have membrane-bound organelles.

D.All kingdoms contain members that store energy produced from photosynthesis.

Answers

Answer: A. Both protista and fungi have single celled members.

Explanation:

please help, thank u. ​

Answers

I think it’s b or d or c

If the weather map below shows today's forecast, how is the weather in
the two cities pictured most likely going to change in the next 24 hours?

Answers

Is there supposed to be a picture or something? Oh and HI BABEYDOLL

Ok that was weird- Imao

Please help! I’ll give brainist

Answers

ummm actually ur right

13. What does DNA stand for?
14. What does the information contained in DNA determine?
15. What does DNA code for?
16. What are the monomers of DNA called?
17. What are the four nitrogen bases contained in DNA?
р
Nucleotide
Base
a.
b.
S
C.
d.
18. What phrase is used to describe the structure of DNA?
19. What is the backbone of DNA composed of?
20. Which base pairs with adenine?
Which base pairs with cytosine?

Answers

Answer:

13. deoxyribonucleic acids

14. DNA provides instructions for how each part of an organism will develop

15. instructions needed to make the proteins and molecules essential for our growth

16. nucleotides

17. adenine, guanine, cytosine, thymine

18. double helix

19. alternating sugar and phosphate groups

20. adenine pairs with guanine and cytosine pairs with thymine

The study of genes is called genetics.

The correct answer is mentioned below.

What is DNA?

It is a component that stores all the genetic information of the human.

According to the question,

13. deoxyribonucleic acids

14. DNA provides instructions for how each part of an organism will develop

15. instructions needed to make the proteins and molecules essential for our growth

16. nucleotides

17. adenine, guanine, cytosine, thymine

18. double helix

19. alternating sugar and phosphate groups

20. adenine pairs with guanine and cytosine pairs with thymine

Hence, the correct answer to the question is described.

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Read through the list of organisms below. Of the organisms below, which ones are autotrophs? . aquatic photosynthetic bacteria a blue whale cheetah green-winged macaw honeybee humans maple tree phytoplankton rye grass tulips​

Answers

Answer:

aquatic photosynthetic bacteria, maple tree, phytoplankton rye grass tulips

Explanation:

All are plants or does phtosynthesis which is what autotrophs are.

How are ocean currents formed?

Answers


Ocean currents can be caused by wind, density differences in water masses caused by temperature and salinity variations, gravity, and events such as earthquakes or storms. Currents are cohesive streams of seawater that circulate through the ocean.

Answer:

by wind and density

Explanation:

Pick only ONE sentence Which sentence from the section shows why the right temperature is important for plants? (A) Temperature can also affect a plant (B) As with any living thing, a plant has an optimal temperature range at which it grows and preforms best (C) It may not be able to take in enough water and nutrients through it's roots (D) Too much heat can cause plant cells to break down, a process called denaturation.

Answers

Answer:

The correct answer is - (B) As with any living thing, a plant has an optimal temperature range at which it grows and performs best.

Explanation:

Like any other or most of the living organism, plants also required an optimal temperature range as they also required appropriate temperature for their growth and development and perform their functions at their best.

Optimum temperature range is a temperature range at which something performs its best similarly plants perform their cellular functions like photosynthesis, metabolism, reproduction, and many other functions that require a particular temperature range.

All of the following describe outcomes of urbanization except
O decreased soil pollution
O food chain disruption in a natural habitat
O increased wastewater from sewage drainage
O loss of plant biodiversity

Answers

Answer:

O decreased soil pollution

Explanation:

Urbanization does not lead to decreased soil pollution.

Pollution is the introduction of contaminants into the environments. As urbanization progresses and the population of people in a place increases, soil pollution increases.

Also, industrial expansion causes increased production of wastes. So, some of these wastes find their way into the environment of which the soil is a main component. There is an increased amount of soil pollution.

What type of nerves in the nervous system carry signals to the brain to tell it about what is going on in the outside world?

Motor neurons

Sensory neurons

Answers

Answer:

sensory neurons

Explanation:

Sensory nerves - The second type of nerves are called sensory nerves. These nerves carry signals to the brain to tell it about what is going on in the outside world. They come from our skin (touch), eyes (sight), tongue (taste), nose (smell), and ears (hear).

in which way are photosynthesis and cellular respiration different

Answers

Answer:

Cellular respiration produces oxygen, while photosynthesis uses oxygen. Photosynthesis releases energy, while cellular respiration stores energy. ... Oxygen is produced during cellular respiration and stored during photosynthesis. Carbon dioxide and water released by cellular respiration are used in photosynthesis.

Explanation:

Cellular respiration produces oxygen, while photosynthesis uses oxygen. Photosynthesis releases energy, while cellular respiration stores energy. ... Oxygen is produced during cellular respiration and stored during photosynthesis. Carbon dioxide and water released by cellular respiration are used in photosynthesis

Raymond is a social worker who works with abused children. Which type of empathy is it important that Raymond have?
Group of answer choices

Pity

Feeling

Cognitive

Affective

Answers

I believe it is Feeling

The fusion of haploid gametes is called
Your answer:
A. gametogenesis.
B. meiosis.
C. reassortment.
D. fertilization.

Answers

Answer:

B

Explanation:

plz help asap!!! i’ll give brainlest!

Answers

the answer is carbohydrate

Answer:

Carbs

Explanation:

Lipids take to long to break down so that leaves carbs.

If all cells in your body contain the same DNA why do they perform different functions. Pls help

Answers

Answer: These cells are different because they use the same set of genes differently. So even though each of our cells has the same genes, each cell can select which ones it wants to "turn on" and which ones it wants to keep "turned off". So when everything is working properly, each cell type only reads the genes it needs.

Explanation:

They are differentiated based on the genes that's why they perform different function.

it involves a switch from one pattern of gene expression to another.

What are genes? Gene is the basic physical and functional unit of heredity. Genes are made up of DNA. Some genes act as instructions to make molecules called.Many genes do not code for proteins.

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_____inherited traits that increase an organisms chance of survival, also determine an organism’s niche.

Answers

Answer:

Adaptations are inherited traits that increase an organism's chance of survival, also determine an organism’s niche.

Explanation:

Adaptations can be defined as inherited traits that increase an organism's chance of survival and determine its niche. An organism's niche is the place it has in an ecosystem it inhabits - how it lives and survives in it and how it affects it and other species.

Adaptations are a necessary occurrence. As the organism's habitat changes, it has to change as well. In order words, it has to adapt. This process is supported by natural selection - the mechanism that ensures that an advantageous characteristic will become the most common one.

An example of adaptation is what an animal's teeth look like. The shape of an animal's teeth heavily depends on its diet. If it's a herbivore, it will have many molars for chewing grass and plants, and if it's a carnivore, it will have sharp canines to help it tear meat.

What is a species of bacteria in your body that helps protect you?

From the passage:
Human Microbiome: The Role Of Microbes in Human Health

Answers

Answer:

Bacillus Subtillis

Explanation:

There are many, many types of bacteria that protect us. But for me, the main one would be Bacillus Subtillis. Its found on our skin, and it uses poison to fight off other microbes. In alot of cases, this bacetria can be found in a ton of antibiotics.

A diagram of the carbon cycle is shown to the left.
Which of the following best explains the roles plants and
animals play in recycling carbon?

a.
Plants and animals both take in carbon through
respiration. They return it to the cycle through
decomposition.

b. Plants take in carbon through photosynthesis and
decomposition. Animals produce carbon through respiration.

C. Animals produce carbon through exhaling. Plants take in
carbon for photosynthesis.

d. Plants produce carbon through photosynthesis. Animals
take in carbon for breathing.

Answers

Answer:

b

Explanation:

animals poop which feeds the ground lol

Photosynthesis and respiration recycle carbon in plants. Animals get carbon from plants and exhale it. Therefore, option (B) is correct.

What is carbon cycle?

The biogeochemical process known as the carbon cycle involves the transfer of carbon between the biosphere, pedosphere, geosphere, hydrosphere, and atmosphere of the Earth. Carbon is the most common element found in organic compounds, and it also plays a significant role in the chemical makeup of numerous minerals, including limestone.

Through the process of photosynthesis, plants take in carbon from their surroundings and then release it during the process of respiration. Plants are the source of carbon for animals, and animals exhale carbon during the process of respiration.

Therefore , option (B) best explains the roles plants and animals play in recycling carbon.

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in a chemical reaction bonds in the reactants molecules are broken and new bonds are formed to yield products. how does an enzyme make this happen an optimal rate in a cell?

Answers

Answer:

A. It increases the amount of energy needed to break the bonds in the substrate.

Explanation:

Enzymes are known to be protein-based catalyst. It helps to speed up the chemical reactions that take place in the human body. They actually bind molecules and work in ways to alter chemical reactions. These enzymes are needed for food digestion, reproduction, healing diseases, blood coagulation, etc.

Enzymes help to increase the rate of reaction by lowering the activation energy. Certain enzymes can work to convert substrate to product at million of times faster. As a catalyst, it increases the energy needed to break bonds found in the substrate. This makes the reaction to occur at a faster rate.

Describe an example of fermentation that occurs in beneficial bacterial cells within animals and explain why it is important.

Answers

Fermentation is an anaerobic process in which energy can be released from glucose even though oxygen is not available. Fermentation occurs in yeast cells, and a form of fermentation takes place in bacteria and in the muscle cells of animals. In these situations, your working muscles generate ATP anaerobically (i.e., without oxygen) using a process called fermentation. Fermentation is beneficial in that it can generate ATP quickly for working muscle cells when oxygen is scarce. Fermentation helps break down nutrients in food, making them easier to digest than their unfermented counterparts. For example, lactose — the natural sugar in milk — is broken down during fermentation into simpler sugars — glucose and galactose ( 20 ).

Microbial fermentation takes place within the gastrointestinal tract of the majority of the animals by the bacterial cells, this helps in the process of digestion and in the synthesis of certain essential components like vitamins.

• The enzymatic decomposition and the usage of food components, mainly carbohydrates by the help of microbes like bacteria anaerobically is termed microbial fermentation.  

• Within the gastrointestinal tract of the majority of animals, the process of fermentation takes place, however, the intensity of fermentation depends on the quantity of bacterial cells present, which is usually greatest in the intestine.  

• The process of fermentation within the intestine by bacteria primarily helps in the  process of metabolism and digestion of carbohydrates that does not get digested in the small intestine like residual starch and cellulose.  

• Apart from this, microbial fermentation also helps in the production of vitamin K and some B vitamins.  

Thus, microbial fermentation within the intestine of the majority of the animals performs essential functions like digestion and production of vitamins.

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In a certain species of plant, the color purple (P) is dominant to the color white (p). According to the Punnett Square, what is the probability of an offspring being purple?

Answers

Answer:

If both are (PP and ww) and one is dominant the other is recessive then it is 100%  purple.

IF both are heterozygous (pw) then it is 75% purple and 25% white

if one is Hetro(pw) and the other is (ww) 50% white 50% purple

Explanation:

Someone plllsss help

Answers

Answer:

They will most likely be immune to the treatment.

Explanation:

This is the same as a viruse evolving to survive the vaccine for it.

Do animal cells always have to be placed in isotonic solutions? Why?

Answers

Explanation:

because If a cell is placed in an isotonic solution, there will be no net flow of water into or out of the cell, and the cell's volume will remain stable

What would happen if you did an experiment in which the iodine solution was placed in a baggie, and the starch solution was in the beaker?

Answers

The iodine would move out of the baggie and the starch would change color

If the iodine solution was placed in a baggie and the starch solution was in the beaker, and the baggie was then submerged in the beaker, a specific chemical reaction called the iodine-starch reaction would occur.

The iodine-starch reaction is a well-known test used to detect the presence of starch in a solution. Normally, when iodine solution (iodine dissolved in water) comes into contact with starch, it forms a dark blue or black color complex.

This reaction is due to the formation of an inclusion complex between the iodine molecules and the helical structure of starch.

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Compare what happens to chromosomes during anaphase 1 and anaphase 2

Answers

Answer:

Compare what happens to chromosomes during anaphase I and anaphase II. In anaphase I the two pairs of chromatids of each similar pair move away from each other to opposite ends of the cell. In anaphase II the centromere divides and the chromatids separated and move to opposite ends of the cell.

Explanation:

hope it helps, please mark as brainliest

In anaphase I the two pairs of chromatids of each similar pair move away from each other to opposite ends of the cell. In anaphase II the centromere divides and the chromatids separated and move to opposite ends of the cell.

Credits to the other person

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