Watch this short ted talk (its like 6-8 minutes long) and answer the following questions to it (link for it is in the image)

How did Braitman become interested in mental illness in animals?

Why is it not totally surprising that animals can suffer from emotional distress or mental illness?

The video discusses giving animals human medications like anti-anxiety or anti-depression drugs. Do you think animals should be treated with drugs used for mental illness? Why or why not?

Briefly describe at least two of the disorders that Braitman explains animals can suffer from.

Why do veterinarians often ask about an animal’s behaviors and life during an office visit?

Why does Braitman say that we owe our entire psychopharmaceutical arsenal to animals? Explain.

How could thinking about an animal’s mental health influence veterinary care?

Watch This Short Ted Talk (its Like 6-8 Minutes Long) And Answer The Following Questions To It (link

Answers

Answer 1

Braitman became interested in mental illness in animals because she observed that her own pets were displaying symptoms similar to human mental illnesses.

It is not surprising that animals can suffer from emotional distress or mental illness because they are living beings with brains and nervous systems that are capable of experiencing emotions and responding to stressors in similar ways to humans.

The use of human medications for animals is a controversial topic. Some argue that it is necessary to provide animals with the same level of care and treatment as humans, while others argue that animals may have different physiological responses to these drugs and that more research is needed before administering them.

Two disorders that Braitman explains animals can suffer from are separation anxiety and compulsive disorders.

Veterinarians often ask about an animal’s behaviors and life during an office visit because it can provide insight into the animal’s emotional and psychological well-being and can aid in diagnosis and treatment.

Braitman says that we owe our entire psychopharmaceutical arsenal to animals because animals have been used in the testing and development of many of the drugs used to treat human mental illnesses.

Thinking about an animal’s mental health could influence veterinary care by leading to more comprehensive and holistic treatment plans that take into account not just the physical symptoms, but also the emotional and psychological well-being of the animal.

What is the medication about?

Regarding the use of human medications for animals, it is important to consider the potential benefits and risks of administering these drugs to animals. On one hand, administering anti-anxiety or anti-depression drugs to animals could provide relief from symptoms and improve their quality of life.

On the other hand, there is a lack of research on the safety and efficacy of these drugs in animals, and administering them could have unintended consequences. Additionally, animals may have different physiological responses to these drugs than humans, which could lead to ineffective treatment or adverse reactions.

Therefore, Separation anxiety is a disorder in which an animal experiences severe distress and agitation when separated from its owner or primary caregiver. This can manifest as excessive vocalization, destructive behavior, and attempts to escape.

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Related Questions

Most gastric ulcers are caused by _____________.
a. excessive mental stress
b. overuse of aspirin and /or ibuprofen
c. overconsumption of alcohol
d. bacteria

Answers

Most of the gastric ulcers are caused by bacteria.

A sore when forms on the oesophageal, stomach, or small intestine lining. When stomach acid affects the lining of the digestive tract, ulcers develop. It is referred into three distinct ulcers-

An ulcer on the lining of the stomach or the first section of small intestine is referred to as a peptic ulcer.A gastric ulcer is referred to as such if it develops in stomach. Duodenal ulcers are those that occur in the duodenum.

The causative agents of ulcer-

The majority of ulcers are brought on by an infection with the bacteria or germ H. pylori. The mucus that covers the lining of your stomach and the first portion of your small intestine is damaged by this bacteria (the duodenum)Another major reason are NSAIDs (non-steroidal anti-inflammatory drugs). These include over-the-counter painkillers and antipyretics such aspirin, ibuprofen, and naproxenLifestyle factors such as stress and alcohol consumption

The answer to the most causative factor for gastric ulcer is d) bacteria.

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Proteins are polymers produced by linking together amino acids, where the amino group of one will react with the acid group of another. What type of functional group is produced

Answers

The Functional group produced is Amide.

The most typical way to make amides is by reacting an acid chloride with ammonia, a 1o amine, or a 2o amine. In a similar procedure, an amide can be created by reacting an amine with a carboxylic acid using a coupling agent like DCC. An acid anhydride and an amine can be combined to create simple amides. Finally, a carboxylic acid and an amine can directly react to generate amides.

However, because to the severity of the circumstances, this response is not frequently used. Because the Y group of an amide's nitrogen-containing atom has a weak ability to act as a leaving group, amides are comparatively inert to nucleophilic acyl substitutions.

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there are more protons than electrons in a negatively charged atom, true or false
whoever answers this, thank you so much!​

Answers

Answer:

Electrons

Explanation:

Electrons are negatively charged, so if an atom is negatively charged, there will be more

Answer:

False

Explanation:

The answer is False.

Hope this helps!


(b) What are the differences between reproduction in Rhizopus and in maize.

Answers

The Zygomycetes fungal family, which often lives on dead and decaying plant matter, includes Rhizopus, arguably the best-known genus in the group.

Typically, maize is used to make animal feed. It undergoes extensive processing to produce a wide range of goods, including cornmeal, grits, starch, flour, tortillas, snacks, and morning cereals.

How does reproduce Rhizopus and maize?

A fungus's species name is Rhizopus. By producing spores, they reproduce asexually. The hyphae that make up the fungus's body create the sporangium. A swelling structure called the sporangium is at the end of the filaments carrying the spores.Drilling for maize seed should be done evenly and into moisture. For maize to flourish, soil temperatures must be 8C in the morning for four to five days.

The differences between reproduction in Rhizopus and maize:

Rhizopus reproduction:

It reproduces by vegetative, asexual, and sexual mechanisms.

Rhizopus Vegetative Reproduction

The Rhizopus thallus can occasionally shatter into a few fragments by accident or due to other causes, and under the right circumstances, each fragment will grow into a new thallus.

Rhizopus Asexual Reproduction

Both sporangiospores and chlamydospores can be used for asexual reproduction.

Maize reproduction:

Both male and female reproductive organs are present in maize plants, which reproduce through self-pollination and cross-pollination.

The female component (the ear) extends from a central stalk in most commercially viable maize genotypes, whereas the male structure (the tassel) extends from the top of the stalk.

The wind carries pollen from the tassel to other maize plants, where it fertilizes the individual kernels on the ear. Maize can have ears that are anywhere between 2.5 and 45 cm long. The size, shape, and color of the kernels vary greatly as well.

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Rhizopus can reproduce sexually when two compatible and physiologically different mycelia are present.

Maize plants contain both male and female reproductive structures and image by both cross-pollination and self-pollination

How does Rhizopus reproduce?

Rhizopus species reproduce asexually via spores. Rhizopus species reproduce asexually via spores.

How does reproduce Rhizopus and maize?

A fungus's species name is Rhizopus. By producing spores, they reproduce asexually. The hyphae that make up the fungus's body form the sporangium. A swelling system called the sporangium is at the end of the filaments maintaining the spores.

Drilling for maize seed should be done evenly and into water. For maize to grow, soil temperatures must be 8C in the morning for four to five days.

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In a particular plant, leaf color is controlled by gene D. Plants with at least one D allele have dark green leaves and plants with the homozygous recessive dd genotype have light green leaves. A Dd plant is crossed with another Dd plant. The predicted offspring are represented by numbers in the Punnett square. Which box(es) correspond(s) to plants with a heterozygous genotype

Answers

Boxes 2 and 3 will correspond to plants with a heterozygous genotype

An organism with one dominant allele and one recessive allele is said to have a heterozygous genotype.

What is Heterozygous genotype ?

The presence of two different alleles at a particular gene locus. A heterozygous genotype may include one normal allele and one mutated allele or two different mutated alleles (compound heterozygote)

In our example, this genotype is written Bb. Finally, the genotype of an organism with two recessive alleles is called homozygous recessive.

Heterozygotes can get genetic disease, but it depends on the type of disease.

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Global warming would be an example of ___ factor in a firm's external environment.

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Global warming would be an example of ecological factor in a firm's external environment.

Companies' responses have varied as a result of climate change emerging as one of the most significant challenges and causing increased uncertainty in the business community. Internal organisational capacities and external business unpredictability are the two elements that influence the implementation of carbon management practices towards environment . The managers and academics who are thinking about how to identify, design, and manage a firm's activities in response to the global warming challenge both within the organisation and with other organisations can refer to certain principles for sustainability.

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The function of the thyroid cartilage (Adam's apple) is to: Prevent food and liquid from entering the larynx Provide support for the larynx Provide support for the thyroid Separate the lungs in the chest cavity

Answers

The function of the thyroid cartilage (Adam's apple) is to: Provide support for the larynx.

The tough and elastic tissue frames the forward portion of the larynx (voice box). It upholds and safeguards the vocal cords and makes an individual's voice. The thyroid cartilage likewise shapes Adam's apple, which appears as a lump on the front of the neck.

This cartilage is the biggest of these ligaments. It encompasses the front of the voice box and windpipe. It is framed by two laminae (plates of cartilage) that are melded at the front - this structures the V-Shaped thyroid notch of the Adam's Apple. Throat cartilage is more prominent in men than females and serves as a defensive capability. Thyroid Cartilage is adaptable and furthermore serves as a protective function structure inside the Larynx.

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The novel Parkinson's disease linked mutation G51D attenuates in vitro aggregation and membrane binding of alpha-synuclein, and enhances its secretion and nuclear localization in cells

Answers

PD linked mutation may cause neurodegeneration via different mechanism.

What is Novel Parkinson's disease linked mutation ?

A novel mutation in the α-Synuclein (α-Syn) gene "G51D" was recently identified in two familial cases exhibiting features of Parkinson's disease (PD) and multiple system atrophy (MSA)

the G51D mutation significantly attenuates α-Syn aggregation in vitro.

it disrupts local helix formation in the presence of SDS, decreases binding to lipid vesicles C-terminal to the site of mutation and severely inhibits helical folding in the presence of acidic vesicles.

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If this individual is limited in hip flexion due to posterior muscle tension, what could be done to increase hip flexion?

Answers

Kneel along with your left knee on the floor and your right leg at a 90-degree perspective in front of you. Put your hands on your proper knee and hold your back instantly. Keeping your left knee pressed to the floor, lean ahead into your proper hip even as squeezing the muscles to your left buttocks. maintain for 30 seconds.

No longer engaging in everyday bodily activity can result in weak hip flexors. Underuse of the hip muscles can cause the muscle to degenerate and become vulnerable, which is known as muscle atrophy.

The primary hip extensors consist of the gluteus maximus, posterior head of the adductor Magnus, and hamstrings. Within the anatomic role, the posterior head of the adductor Magnus has the best second arm for extension, observed intently by means of the semitendinosus.

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NEED HELP I WILL FAIL

You are an anthropologist analyzing bone remains from the grave of an ancient female human. Within one of the bones, you find an unusually high concentration of collagen. What does this suggest about the ancient female? (2 points)

She broke a bone and then died before it was fully healed.
She broke a bone and then died a few hours later.
She broke a bone at a very young age, but it fully healed.
She broke a bone at a very young age, but it did not fully heal.

Answers

She broke a bone and then died before it was fully healed. Option A

What is collagen?

The collagen is a substance that serves to strengthen the bones. However, if a person gets older, its production reduces thereby making the bones to weaken.

When a person breaks a bone, the body secretes a lot of collagen to help the bone to heal. Therefore, if there is a high concentration of collagen present, it indicates that she broke a bone and then died before it was fully healed. Option A

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How would a biologist explain how an animal became well camouflaged to its environment?

Answers

More camouflaged individuals have the better chances of survival until all the individuals that remain are all well camouflaged.

What s natural selection?

The term natural selection implies that organisms that we well adapted to their environment tend to survive better and have the opportunity to reproduce. This is based on the principle of the survival of the fittest.

These organisms tend to pass on these favorable traits to their offspring and thus the gene pool is changed as only the organisms that have these favorable genes remain.

If camouflage helps an organism to survive better in its habitat, then it follows that more camouflaged individuals have the better chances of survival until all the individuals that remain are all well camouflaged.

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why do you think the process of photosynthesis and respiration are interrelated?

Answers

Answer:

While cellular respiration releases carbon dioxide into the environment, photosynthesis pulls carbon dioxide out of the atmosphere. The exchange of carbon dioxide and oxygen during photosynthesis (Figure below) and cellular respiration worldwide helps to keep atmospheric oxygen and carbon dioxide at stable levels.

In class, your professor shows you the skulls of three mammals. In one, the eye would be fully enclosed by bone. In the second, there is a bony circle around where the eye goes, but it is open in the back. In the third, the place where the eye would be is not encircled by bone at all. This suggests to you that

Answers

This suggests to you that

The first one is an anthropoid primate; the fully enclosed orbit is probably beneficial in an organism that relies heavily on vision.

Anthropoids are a group of primates currently represented by New and Old World monkeys, great apes and humans. They differ from other groups of primates such as strepsirrhines (lemurs) by several dental and cranial features (postorbital closure, shorter muzzles, increased vision due to more frontal eye sockets, fused frontal bone). The common ancestor of living anthropoids - including monkeys, apes and humans - arose in Africa and that the group had already branched into many species at that time.

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A simple protein that makes up approximately 58% of the plasma proteins. Many act as transport molecules.

Answers

Albumin

These are the most abundant and form about 60% of all plasma proteins. They contribute to osmotic pressure, help to control water balance and are involved in the transport of substances in blood including drugs.

What is Plasma protein ?

Plasma protein is the collective term for the proteins present in the blood.

Plasma proteins fall into several different groups and have numerous functions, including maintaining osmotic pressure, and transporting lipids, hormones, vitamins, and minerals.

Immunoglobulins help fight infection and various other small amounts of enzymes, hormones, and vitamins.

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Identify the highlighted artery. Identify the highlighted artery. right coronary marginal circumflex left coronary

Answers

Highlighted artery is right coronary.

What is artery?The blood channels that carry oxygen-rich blood from the heart to the body's tissues are called arteries. Each artery consists of three layers and is a muscular tube bordered by smooth tissue. The endothelium, a smooth tissue, lines the intima, the inner layer.Blood is transported from your heart through arteries.All body parts have arteries, with the exception of the hair, nails, epidermis, cartilages, and cornea. In the limbs, they run along the flexor surface, where they are less vulnerable to injury, and the larger trunks typically occupy the most protected positions.A conduit that carries blood from the heart to the body's extremities is called an artery. Every artery, with the exception of the pulmonary artery, carries oxygenated blood. The ascending aorta, aortic arch, thoracic aorta, and abdominal aorta are the four divisions of the aorta, which is the biggest artery in the body.

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Positive selection tests to see if the ______ of a T-lymphocyte can recognize and bind to an MHC molecule.

Answers

Positive selection tests to see if the TCR of a T-lymphocyte can recognize and bind to an MHC molecule.

What is a T-lymphocyte?

A T-lymphocyte is a special type of immune cell that is generated inside the bone marrow.

The T-cell receptor (abbreviated as TCR) is a protein located on these immune T lymphocytes.

In conclusion, Positive selection identifies if the TCR of a T-lymphocyte can recognize and bind to an MHC molecule.

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the activity of an enzyme might be increased by all of the following except the presence of other enzymes.

Answers

Answer:

the presence of lead

Explanation:

I hope this help

The activity of an enzyme might be increased by all of the following except lead, which is in option D. Lead is a heavy metal that can act as an inhibitor of enzymatic activity, so option D is correct here.

Enzymes are biological catalysts, which means they are molecules that speed up chemical reactions in living organisms without being consumed or altered in the process. Almost all biochemical reactions in cells require enzymes to proceed at a rate that is sufficient for life. They play a crucial role in various metabolic pathways, allowing cells to carry out essential processes such as breaking down nutrients, building cellular structures, and regulating cellular functions. The enzyme-substrate interaction is highly specific, like a lock and key. Only substrates with a complementary shape to the enzyme's active site can bind to it.

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Complete question is below,

The activity of an enzyme might be increased by all of the following except ________?

A. increase in substrate concentration.

B. a vitamin.

C. 2-4 degree increase in temperature.

D. lead.

what is nanotechnology ?​

Answers

Answer:

Nanotechnology is the branch of technology that deals with making structures that are less than 100 nanometres long. Scientists often build these structures using individual molecules of substances.

the branch of technology that deals with dimensions and tolerances of less than 100 nanometres, especially the manipulation of individual atoms and molecules.

Example:

Nanotechnology will give us metals that don't bend, or bend and yet remember their original shape

In the context of joint mobilization techniques, for what are inferior femoral glides at 90 degrees of hip flexion used?

Answers

Hip Inferior Glide is used to improve hip flexion. The technique is performed in supine with the hip flexed to 90°.

This technique can be used for decreasing muscle spasm or pain, and is also useful to increase accessory joint movement for flexion and abduction movements.

By performing the therapy the clinician’s hands can be clasped at the superior proximal femur or a mobilization strap can be used to enhance grip and reduce sliding on subject's skin.  The clinician can simply lean back to impart an inferior force to the femur with a counterforce of the shoulder on the distal femur.

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Which of the following describes way that humans decrease biodiversity?
1. We encroach on habitat.
II. We poach wild animals.
III. We use food resources faster than native species.

OI, II, and III
OI and III
OII and III
Oll only

Answers

Answer:

I, II and III

Explanation:

I believe that all the options given are ways in which humans decrease biodiversity.

Hope it helps!

Have a nice day:)

Answer: 1 2 and 3! no ca

Explanation:

Aseries of images displayed in sequence to create the illusion of movement is called ______________ .

Answers

Animation is the answer.

Animation is a method of manipulating a character and displaying it as a video. In traditional animation, you would draw or draw an image by hand on a transparent celluloid sheet, take a picture, or display it on film. Today, most animations are created using computer-generated images.

Animation is the quick display of a series of images to create the illusion of movement. The most common way to present an animation is as a movie film or video program. Simply put, animation brings our imagination to life.

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A student wanted to look at germination of five different seeds in vermiculite (a soil additive). He planted the seeds in identical containers and left them together in full sunlight. He gave each seed the same amount of water and charted the germination of each seed type. What is the independent variable in this experiment

Answers

The independent variable is the seed type. This cannot be changed while the other variables can be changed such as water, soil additive, and light.

Independent variables:

The variable which is not affected by the change in other variables at the time of study is called the independent variable. It is the cause of study. The dependent variables are the effect and are observed. These are dependent on the change in the independent variables. For example, seed type is an independent variable whereas germination which is the combined effect of light, water, and soil additive that determines the process of germination.  

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If the grasshoppers within a specific ecosystem are unable to detect vibrations, how will it affect that ecosystem?

Answers

If the grasshoppers within a specific ecosystem are unable to detect vibrations, they will not be able to communicate among themselves and defend against predators. This may lead to the loss of grasshoppers from the ecosystem.

What is vibrational communication?Sound is carried in the form of vibrations.Insects have sensory organs which help them to detect these vibrations.They interpret these sounds to communicate with each other and navigate through the environment.Vibrational signaling is the most common form of communication in insects which detects any mechanical disturbances in the surrounding environment.Some insects are even able to sense the sound of predators, thus are able to avoid them.Like many insects, grasshoppers have a pair of tympanal organs. These organs vibrate when they catch sound waves in the air. The larvae of grasshoppers use small stiff hairs called setae to sense sound vibrations.The caterpillars react to vibrations by exhibiting defensive posture.

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_____________ is the idea that an organ or device that evolved for one purpose was available to be used for another purpose.

Answers

Explanation:

the evolution is the idea that an organ or device that evolved for one purpose was available to be used for Another purpose

If a defibrillator manufacturer claims that its device terminates ventricular fibrillation on the first shock 95% of the time, you should:

Answers

If a defibrillator manufacturer claims that its device terminates ventricular fibrillation on the first shock 95% of the time, you should: recognize that this does not mean it will save more lives.

Defibrillator

The purpose of defibrillators is to restore a normal heartbeat by shocking or sending an electric pulse to the heart. They are employed to stop or treat irregular heartbeats that are too slow or too fast, or arrhythmia. Defibrillators can also restart the heart's rhythm if it stops suddenly. Defibrillators operate differently depending on the type. People who are having cardiac arrest can be saved by using automated external defibrillators (AEDs), which are increasingly commonplace in many public areas. These gadgets can be used in an emergency by unskilled witnesses. People who have a high risk of developing a life-threatening arrhythmia may benefit from using other defibrillators to avoid sudden death.

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Basil metabolism is responsible for what percentage of calories used by the body?.

Answers

The basal metabolism is responsible for 60% of calories used by the body.

Basal metabolism can be defined as the rate of energy usage by the body at a state of rest. This metabolism is essential to maintain  vital functions of the body. These vital mechanisms include functions like cellular respiration, breathing, blood circulation and pumping of the heart. These functions include mechanisms of the body that are mostly involuntary. The maximum energy expenditure of of the body occurs while the body undergoes basal metabolism. Basal metabolism rate is a trait which is flexible and does not require monitoring by other systems in the body. Basal metabolism is also responsible for the maintenance of homeostasis in the body. Basal metabolism uses calories stored in the body to carry out vital functions.

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Explain why the simplest drawing to model the principle of independent assortment requires four chromosomes, but the simplest drawing to model the principle of segregation requires only two chromosomes

Answers

Independent assortment involves the independent segregation of the alleles of two separate genes on separate chromosomes.

What is the Principle of independent assortment How is it related to the Principle of segregation?

Understanding the law of segregation is necessary before defining independent assortment. According to the law of segregation, individual gamete cells receive two distinct, independently sorted genes during meiosis. On the other side, the random separation of the maternal and paternal DNA allows for a greater variety of genes.

Independent assortment refers to the independent segregation of two different genes' alleles on two different chromosomes. As a result, to create the simplest model of independent assortment, at least 4 chromosomes must be represented as two homologous pairs. On the other hand, only the two chromosomes of one homologous pair need to be drawn because segregation takes into account the separation of the two copies of a single gene carried on a single type of chromosome.

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If everyone on the planet used the same amount of resources as an average American, what percent of the Earth would need to be used to support everyone

Answers

If everyone on the planet used the same amount of resources as an average American, four Earths would be needed to sustain them.

What are Resources?

These are the materials available in the environment which add quality and value to our life.

The earth comprises of resources which is limited and is therefore the reason why four earth will be needed to sustain them if everyone used the same amount.

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In a population that is in Hardy-Weinberg equilibrium, 49% of the population show the homozygous recessive genotype. The frequency of homozygous dominant individuals is:

Answers

The frequency of homozygous dominant individuals is: 42%

Hardy–Weinberg equilibrium (HWE) is a null model of the relationship between allele and genotype frequencies, both within and between generations, assuming no mutation, no migration, no selection, random mating, and infinite population size. To find the frequency of the recessive allele, we must first find the frequency of the dominant allele (p). According to the Hardy-Weinberg principle, the square root of the homozygous genotype frequency is equal to the allele frequency. The Hardy-Weinberg equation used to determine genotype frequencies is: p2 + 2pq + q2 = 1. Where 'p2' represents the frequency of the homozygous dominant genotype (AA), '2pq' the frequency of the heterozygous genotype (Aa) and 'q2' the frequency of the homozygous recessive genotype (aa).

Calculation:

q2 = 49

q= 0.7

According to Hardy–Weinberg equilibrium p + q= 1

p = 1 - q

1-0.7= 0.3

p2+ 2pq+q2=1

One can substitute the values

2pq= 2(0.3) (0.7) = 0.42

42%  is the answer.

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What is diffusion on​

Answers

Answer:

diffusion is process resulting from random motion of molecules by which there is a net flow of matter from a region of high concentration to a region of low concentration.

Explanation:

A familiar example is the perfume of a flower that quickly permeates the still air of a room. ion diffusion across a semipermeable membrane.

“Diffusion is the movement of molecules from a region of higher concentration to a region of lower concentration down the concentration gradient.”

Diffusion is the process of movement of molecules under a concentration gradient. It is an important process occurring in all living beings. Diffusion helps in the movement of substances in and out of the cells. The molecules move from a region of higher concentration to a region of lower concentration until the concentration becomes equal throughout.

Liquid and gases undergo diffusion as the molecules are able to move randomly.

Example:

Take water in a beaker. Add a few copper sulfate crystals in one place and leave it as it is for some time without disturbing it. After some time we can see that the beaker contains a uniformly coloured solution. Here, both water and copper sulfate diffuse independently. With this experiment, we can infer that solutes move from a higher concentration to a lower concentration in a solution.
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