4. Kevin is tall (Tt), has brown hair (Bb), has a cleft chin (CC), and is right handed (Rr). Kevin is homozygous for his
height
handedness
hair color
cleft chin

Answers

Answer 1

Kevin is homozygous for his cleft chin as all other are heterozygous. So, the correct option is (D).

What is Homozygous genotype?

Homozygous is defined as having inherited the same allele for a genomic marker from each biological parent, so an individual who is homozygous for a genomic marker has two identical versions of that marker. Whereas an individual who is heterozygous for a marker has two different versions of that marker.

In a diploid species there are two alleles for each trait or gene in each pair of chromosomes at the same locus, or locus with one coming from the father and the other from the mother.

An allele is one of two or more alternative forms of a gene, and are found at the same locus on chromosomes, so homozygous refers to having the same allele for a particular locus. So, in this case cleft chin is homozygous as they have same allele as compare to others.

Thus, Kevin is homozygous for his cleft chin as all other are heterozygous. So, the correct option is (D).

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Related Questions

How should the sperm motility be categorized in this microscopic field of a semen sample viewed at 400X magnification

Answers

The sperm motility can be categorized in this microscopic field of a semen sample viewed at 400X magnification - Non-Progressive motility = 2; immotile = 3

Fast and slow progressive motility are calculated from the speed at which sperm migrating the flagella migrate at a certain volume percentage (range 0% to 100%) by counting 200 sperm.

Decreased sperm motility may be a symptom of disorders associated with male accessory gland secretion and the sequential ejection of these glands.

Routine sperm analysis should contain at least 50% progressively motile class A and B sperm. Sperm viability should be checked if more than 50% of the sperm are fixed. Persistent reduced mobility is a good indicator of infertility and is actually the more important outcome when making decisions about treatment options for couples.

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a) In which diagram (1 or 2) would the person be experiencing summer? Why?
b) In which diagram (1 or 2) would the person he be experiencing Winter? Why?

Answers

In diagram 1, the person would experience summer whereas, in diagram 2, the person would experience winter.

How earth's axis is responsible for different seasons?

The axis of planet earth is tilted at an angle of 23.5 degrees away from the vertical plane. During the rotation around its own axis, planet earth performs a wobbly movement in which its northern hemisphere comes closer to the sun while its southern hemisphere gets away from the sun and vice versa.

In months around June, the northern hemisphere is tilted toward the sun causing it to receive more direct sunlight compared to the southern hemisphere. This creates the summer season in the northern part. The southern hemisphere meanwhile experiences winter seasons.

In months around December, the northern hemisphere is tilted away from the sun while the southern hemisphere is tilted towards the sun. Hence, the north experiences winter while the south experiences summer season.

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Which of the following does not contribute to bacteria's ability to evolve rapidly? A)Sexual reproduction. B)Genetic recombination. C)Mutation

Answers

Answer: A) Sexual reproduction

Explanation:

Bacteria cannot reproduce sexually. They instead exchange genetic information.

What could occur if the feedback loop of the knee reflex was cut off at any point along its path?

Answers

This is an illustration of a reflex, which is an uncontrollable muscle reaction brought on by the tap of a rubber hammer on a tendon.

 

What is a feedback loop?

The absence of reflex reactions may indicate injury to the spinal cord, a nerve root, a peripheral nerve, or a muscle.

Two positive feedback loops are involved in the defecation reflex. These loops are the stretch receptors in the sacral parasympathetic system and the rectal walls.

Therefore, a reflex is an uncontrollable muscle reaction brought on by the tap of a rubber hammer on a tendon.

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Net redistribution of extracellular fluid by bulk flow from the plasma compartment into the interstitial fluid compartment is referred to as

Answers

Filtration is the term used to describe the net redistribution of extracellular fluid by bulk flow from the plasma compartment into the interstitial fluid compartment.

The process of forcing fluid and dissolved chemicals past capillary walls and into the interstitial fluid is known as filtering. The hydrostatic pressure gradient also referred to as the hydrostatic pressure difference between the plasma compartment and the interstitial fluid compartment, is what propels this process.

The filtration process is essential for maintaining the balance of fluids and electrolytes in the body and for the removal of waste products.

Filtration is one of the three basic mechanisms that contribute to the movement of fluid and dissolved substances across the capillaries. The other two mechanisms are diffusion and osmosis.

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What is Mendel's law ?

Answers

The two inheritance laws that Gregor Mendel found in his research with pea plants are known as Mendel's laws. The law of segregation and the law of independent assortment is these laws.

According to the law of segregation, two alleles of a particular gene separate from one another throughout the development of gametes, resulting in only one allele being present in each gamete. This indicates that just one allele from each parent is passed on to the offspring for a particular gene when the gametes combine at fertilization.

The law of independent assortment: This law states that the inheritance of one trait does not affect the inheritance of another trait. In other words, the alleles for different traits are inherited independently of one another.

Together, Mendel's laws of segregation and independent assortment provide a framework for understanding how traits are passed down from one generation to the next, and how genetic diversity is generated within a population.

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Both ferns and cender trees rely on .............. To successfully fertilize themselves

Answers

Answer:

Explanation:

Both ferns and cedar trees rely on wind-dispersed pollen to successfully fertilize themselves.

Ferns are a group of vascular plants that reproduce via spores. These spores are produced in clusters called sori, which are found on the underside of fern fronds. The spores are released from the sori, and are carried away by the wind to fertilize other ferns.

Cedar trees, which are coniferous trees, also rely on wind to disperse their pollen. The male and female cones of the tree are separate, with the male cones releasing pollen into the air which is carried by the wind to fertilize the female cones on the same or nearby trees.

Both ferns and cedar tree do not produce flowers or rely on animal vectors (like bees or butterflies) for pollen transport, they use the wind to move their reproductive cells and complete the fertilization process.

What did you notice in the music when the dynamic marking changed?

Answers

Dynamics play a big role in music. We frequently experience feelings like rage and even excitement when we listen to punk music. Comparing this to listening to ballads is completely different.

What in the music when the dynamic marking changed?

The print notations known as dynamic markings are used to instruct musicians on how loud or soft to play a piece of music. Words, word acronyms, or symbols can all be used as dynamic marks in music.

Therefore, Dynamics words for shifts include crescendo and decrescendo. The progressive increase in volume of the music is known as a crescendo. A diminuendo, also known as a decrescendo, is when the music progressively gets weaker.

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What is a contrast to natural selection?

Answers

Artificial selection is a contrast to natural selection.

Natural selection is the process by which populations of organisms adapt and change. Individuals within a population are inherently variable. In other words, all individuals are different in some way. This variation means that some individuals have traits that adapt better to their environment than others.

Natural selection is the selection process that occurs as a result of an organism's ability to adapt to its environment. Artificial selection, on the other hand, is selective breeding imposed by an external entity, usually a human, to increase the abundance of desirable traits.

Examples of natural selection include : Selection of long-necked giraffes.

Examples of artificial selection include : Breeding different breeds of dogs and cows to produce the desired breed.

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What are the hereditary diseases?

Answers

Sickle cell anemia, cystic fibrosis, and hemophilia are some of the hereditary diseases that occur because of changes in the genetic make of an organism.

Hereditary diseases usually referred to as inherited diseases or genetic disorders, are a group of genetic diseases that are brought on by changes in a person's genetic makeup (DNA). These changes are caused by mutation. This occurs when the normal bases in the DNA is replaced with the faulty base or mismatched base.  

Then, these illnesses are passed down from one generation to the next, or in other words, they are inherited from one set of parents to another. For example, sickle cell anemia, cystic fibrosis, and hemophilia are some examples of hereditary diseases.  

Because sickle hemoglobin requires two copies of the gene to be present, sickle cell anemia is referred to as a recessive condition. They must get one from each parent, which code for abnormal hemoglobin.

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how dors raising the temperature affect the rate of nuclear decay

HELP ASAP DYE TMRRW

Answers

Unlike chemical reaction rates, which vary with the conditions of a reaction, nuclear decay rates are constant..Raising the temperature has no effect on the rate of nuclear decay.

How does temperature impact the rate of decay?

Decomposing organisms are less active in cooler temperatures, keeping the pace of decomposition low.

How is nuclear decay influenced by temperature?

A speed of alpha, beta, & electron decays all rely on temperature & whether they are contained inside an insulating or conducting material, as demonstrated by numerous groups.

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The plasma membrane of E. coli is about 75% protein and 25% phospholipid by weight. How many molecules of membrane lipid are present for each molecule of membrane protein

Answers

The plasma membrane of E. coli is about 75% protein and 25% phospholipid by weight. 26 molecules of membrane lipid are present for each molecule of membrane protein

The plasma membrane (cell membrane) is responsible for protecting the cell and also offers a fixed cell environment.

The lipid to protein ratio is 1:4 (25% lipid and 75% proteins).

An average protein has a weight of 54,000 (5.4 x 104).

54,000/3 = 18,000.

So, 1:4 ratio = 18,000:54,000.

So, for a protein (54,000 weight), there are lipids weighing 18,000.

An average lipid weighs 700. So, 18,000 weight of lipids would have 25.71 (26) lipid molecules.

That means there are 26 lipid molecules are present for each molecule of membrane protein.

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In 1973, Stanley Cohen and Herbert Boyer inserted a gene from an African clawed frog into a bacterium. The bacterium then began producing a protein directed by the gene from the frog.
Which is considered a transgenic organism?

Answers

Since the bacterium expresses the foreign gene from the African clawed frog, therefore, the bacterium is considered as the transgenic organism.  

Gene is the most basic unit of heredity. It is the segment of DNA that encodes for a particular protein. There are various genes present in a single DNA strand. The genes are further composed of alternative forms called the alleles.

Transgenic refers to the phenomenon where DNA segment from an unrelated organism is artificially introduced and expressed in the host's genetic machinery. Such an organism is called the transgenic organism. And the artificially introduced gene is called transgene.

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What are the 3 main functions of meiosis?

Answers

Answer:

to produce gamate or reproductive cells.

to distinguish between male and female specie.

to produce tetrads having equal number of chromosomes

What are the types of mutation and examples?

Answers

A mutation is a change in the DNA of an organism, virus, or extrachromosomal cell's nucleic acid sequence. DNA or RNA may be present in the viral genome.

Mutations may be caused by mistakes in DNA replication, viral replication, mitosis, meiosis, or other types of DNA damage (such as pyrimidine dimers from ultraviolet radiation exposure). Damaged DNA may then experience error-prone repair, notably microhomology mediated end joining, or it may result in a replication mistake or an error during another kind of repair (translation synthesis). Mutations can also be caused by the insertion or deletion of a DNA sequence due to mobile genetic elements.

A mutation may or may not have an impact on the phenotype the observable characteristics of an organism. The part that mutations play in both healthy and biological processes that cause disease, including as cancer, evolution, and the maturation of the immune system, including junctional diversity. Mutation is the source of all genetic variation, and it also serves as the rationale for the operation of evolutionary forces like natural selection.

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How many chromosomes will each daughter cell contain if a cell has 46 chromosomes before mitosis?

Answers

Each daughter cell will contain 46 chromosomes, if a cell has 46 chromosomes before mitosis.

Cell Division:

Cell division is important for a variety of biological processes, including gamete formation, body tissue repair, and healing of damaged tissues.

Mitosis means that the cells formed after division have the same number of chromosomes as the parent cell. The first stage of mitosis is prophase, in which chromosomal material condenses. The final stage is telophase, when the cell divides into her two cells. Both daughter cells after telophase have the same number of chromosomes. If there are 46 chromosomes early in mitosis, the daughter cells will have 46 chromosomes.

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Please help!
Students in Ms. Brown's class are making observations in the garden outside of the school. They make a list of all the abiotic and biotic factors in their notebook. Part of the list is below:

Gravel
Grass
Butterfly
Sunflower
Bird feeder
Flowerpots

Which items on the list are a part of the garden ecosystem?

A- Gravel, bird feeder, flowerpots
B- All the listed items are part of the ecosystem
C- None of the listed items are a part of the ecosystem
D- Grass, butterfly, sunflower

Answers

Answer:

It is D- grass, butterfly, sunflowers

The items throughout the list like grass, butterflies, and sunflowers are a component of the gardening ecosystem.

What exactly is an ecosystem?

An ecosystems is an area where vegetation, animals, and certain other organisms interact with the surrounding environment, weather, and other variables to form a bubble of life. In ecosystems, biotic and abiotic factors—or nonliving ingredients. Biotic variables include plants, animals, and other types of species.

Why are ecosystems so important?

Ecological systems keep our soil healthy, purify our air, regulate our temperatures, recycle elements, and provide us with food. They provide tools and raw ingredients for producing medicines and many other goods. They form the foundation of civilization and sustain our economies.

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Elements, carbon, hydrogen and oxygen can be found in which macromolecule(s)?
O Protein
O Lipids
O Carbohydrates
O Nucleic Acids
O All of the above
O Proteins and Lipids only
O Carbohydrates and Nucleic Acids only

Answers

All of the above

Carbohydrates and lipids contain carbon,hydrogen, and oxygen. Protein also contains all of the above elements, including nitrogen. Nucleic acid contains the elements present in protein, including phosphorus. So basically, all the macro molecules have the 3 elements.

All of the above is the answe

What are some examples of mollusks and what makes them different from each other?

Answers

Mollusks are classified into  various classes like Gastropod, Bivalvia, Cephalopoda, and Polyplacophora .

Gastropods have a special characteristics that includes spirally-coiled external shell while others mollusks usually have a flattened shell, and many of them doesn't  possess any shell as outer structure.

Four common characteristics that all mollusks share , are having soft bodies, a mantle, a visceral mass, and the foot. The phylum Mollusca has many distinctive features and  special characteristics, which include a mantle cavity, visceral mass, foot, and radula.  Mantle is the cavity which is used for breathing and excretion purpose , radula is longue like structure that helps in sensory and food grasping purpose.

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What would happen if the active site on the enzyme become damaged?

Answers

Answer:

enzyme cannot do its function

Explanation:

at which the substrate cannot enter its site

According to the theory, why is it important to know how much of a pathogenic risk an item poses to an end-user? a) End-users must be informed of decontamination risks so they can choose whether to receive treatment or not b) The risk determines how long you can wait before cleaning it c) The risk of infection determines whether you should dispose of the item or not after use d) The risk determines how you must decontaminate an item so that the next user doesn't get infected

Answers

In order is for end-user to decide whether or not to get therapy, this information is required.

Why do we seek therapy?

A treatment is anything that medical professionals perform on patients in order to manage a health issue, minimize its symptoms, or resolve it. Treatments may take the form of medication, counseling, surgery, or other measures. A health issue is said to be cured when a treatment permanently resolves it. Some medical conditions can be treated.

Meaning of treatment plan

Pay attention to how it sounds. (TREET-mint plan) A thorough plan that includes information about the patient's ailment, the intended treatment outcome, available treatment modalities, potential side effects, and anticipated treatment time.

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How were scientists able to determine that DNADNA , and not some other molecule, serves as the genetic material in bacteria and bacteriophages

Answers

Hershey and Chase demonstrated that DNA is the sole substance transmitted directly from bacteriophages into bacteria when the bacteria are infected by these viruses by utilizing radioactive labels that would integrate selectively into either DNA or protein but not both.

Alfred Hershey and Martha Chase began looking for genetic material in organisms in 1952. Their investigations proved unequivocally that DNA is genetic material. Bacteriophages (viruses that attack bacteria) were key to Hershey and Chase's experiment.

Proteins were assumed to be the molecules that carried genetic information for many decades. Several researchers' efforts resulted in the revelation that DNA is the genetic material. Griffith found the process of change along the road.

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Explain how the nucleotides dATP, dCTP, dGTP and dTTP serve both as a substrate and an source of energy for DNA polymerase.

Answers

DNTP stands for deoxyribose nucleotide triphosphate hired in PCR to extend the developing DNA strand. dATP, dTTP, dGTP and dTTP are 4 not unusual place dNTPs utilized in PCR.

The characteristic of dNTPs in PCR is to extend the developing DNA strand with the assist of Taq DNA polymerase. dNTPs include 4 fundamental nucleotides—dATP, dCTP, dGTP, and dTTP—as constructing blocks of latest DNA strands. These 4 nucleotides are commonly brought to the PCR response in equimolar quantities for highest quality base incorporation. Nucleotide triphosphate utilized in each DNA replication. That is DNTPS and transcription. That is anti pius due to the fact each replication and transcription are persistent techniques and the excessive dialysis of a bond withinside the NTP or D NTP is exotic, which lets in for our couple response.

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What general information do we need to research further to investigate the origin of life on Earth?

Answers

The fossil record is the information we need to research to investigate the origin of life on Earth.

How do we know the origin of life on Earth?

The earliest evidence of life on Earth comes from fossils that are discovered in Western Australia which is about 3. 5 billion years ago. These fossils are the structures called stromatolites which are formed by the growth of a layer of single-celled microbes such as cyanobacteria.

The major source to know the history of life on earth is fossil records. Fossils are the remains of organisms that are present centuries ago. They form when an organism dies and is burry in dirt and is solidified by minerals.

So we can conclude that fossils are the information that shows the life of the earth.

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DNA extracted from these cells is centrifuged. What density distribution of DNA would you expect in this experiment

Answers

one low-thickness and one middle-of-the-road thickness band. An organic chemist disconnects and decontaminates particles required for DNA replication.

coli cells become on a 15N medium are moved to a 14N medium and permitted to develop for two additional ages (two rounds of DNA replication). DNA extricated from these cells is centrifuged.

The processed DNA (5 to 10 kb; 10 to 50 mg/ml) was utilized to change skillful E. coli cells, however, no transformants were recuperated. Roundabout plasmids are significantly more productive for change than straight structures are (4).

Escherichia coli filling in a supplemented medium containing glucose don't use the milk sugar, or lactose (glucose-4-β-d-galactoside); be that as it may, on the off chance that the microorganisms are set in a development medium containing lactose as the sole wellspring of carbon, they combine β-galactosidase and can in this manner use lactose.

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Which of these statements is true?
c. The best fossils are formed during a cataclysmic event.
a. Younger strata are usually nearer the surface.
d. Rock strata are formed by volcanic activity.
e. Water’s ability to erode rock helps to explain how fossils are formed.
b. More recent fossils are in the deepest

Answers

'Younger strata are usually nearer the surface' is the true statement.

What do you mean by Strata?

Strata is a term that refers to the various layers of a rock formation. The term is used in a variety of fields, including geology, archaeology, and petrology. It describes the various layers of sedimentary rock that have been formed over time, as well as the different types of sedimentary rock that can be found in a strata.

This statement is true because younger strata (layers of rock or sediment) are generally deposited more recently and are therefore closer to the surface than older strata. This is because over time, as the Earth's surface erodes and is reshaped by various natural forces, the most recently deposited layers tend to be more exposed.

Hence, Option B is correct.

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Correct form of question:

Which of these statements is true?

a. The best fossils are formed during a cataclysmic event.

b. Younger strata are usually nearer the surface.

c. Rock strata are formed by volcanic activity.

d. Water’s ability to erode rock helps to explain how fossils are formed.

e. More recent fossils are in the deepest.

The point at which the nerves from the left side of the body cross over into the right side of the brain, and vice versa, is the __________. Group of answer choices

Answers

The point where the nerve passes from the left side of the body to the right side of the brain and vice versa is the medulla oblongata.

The medulla oblongata, also called the medulla oblongata, the lowest part of the brain, the lowest part of the brainstem. The medulla oblongata is connected to the midbrain via the pons, enters posteriorly into the spinal cord, and joins at an opening in the base of the skull (foramen magnum).

The left hemisphere controls the right half of the body, and vice versa because of a crossing of the nerve fibres in the medulla or, less commonly, in the spinal cord. Although the right and left hemispheres are mirror images of each other in many ways, there are important functional differences.

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How often should IV IO epinephrine be administered during neonatal resuscitation if it is ineffective?

Answers

According to current NRP recommendations, a low-lying umbilical venous catheter (UVC) is the best way to administer epinephrine. This is followed by a 0.5–1 ml normal saline flush. During resuscitation, 1.0 mg (10 mL of a 1:10 000 solution) of epinephrine hydrochloride is advised to be administered intravenously (IV) every 3 to 5 minutes.

For the medication to reach the central compartment, each peripheral injection dose should be followed by a 20-mL flush of IV fluid. According to the most recent resuscitation recommendations, epinephrine should be administered if the newborn's heart rate is still below 60 beats per minute after 30 seconds of what appears to be effective ventilation with chest rise and 30 seconds of coordinated chest compressions and ventilations. 

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When calculating heritability in finch beak size using parent/offspring data, we find that 70 percent of the variation in the trait is due to genetics. What might explain the remainder of the variation

Answers

The remaining 30 percent of the variation in finch beak size that is not explained by genetics is likely due to environmental factors such as nutrition, disease, and other non-genetic influences. For example, during years when there is a shortage of food or a disease outbreak, beak size may be smaller due to malnourishment or increased mortality of individuals with smaller beaks. Additionally, other factors such as temperature and precipitation can also affect beak size.

THE HERITABILITY

Heritability is a measure of the proportion of variation in a trait that is due to genetics. Heritability can be estimated using parent-offspring data, where the similarity of a trait in parents and their offspring is compared. If the heritability is high, it means that the trait is largely determined by genetics, and if the heritability is low, it means that the trait is largely influenced by environmental factors.

In the case of finch beak size, if heritability is estimated to be 70%, it means that 70% of the variation in beak size among finches is due to genetics. However, the remaining 30% of the variation may be due to environmental factors such as:

Nutrition: Beak size can be affected by the availability and quality of food, as well as the timing of food availability. For example, during years when food is scarce, finches may have smaller beaks due to malnutrition.

Climate: Temperature, rainfall and other weather conditions can affect the growth and development of the finches and their beaks.

Disease: Diseases can affect the growth and development of the beaks, and also can affect the health and survival of the finches.

Competition: The degree of competition for food and other resources can also affect beak size.

Other non-genetic factors such as random events that happen during development can also play a role.

It's important to note that heritability estimates can vary depending on the population and the specific conditions under which the trait is measured.

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HURRY I NEED HELP PLEASE ​

Answers

The answer is 2.

Radiation: heat from stove
Convection: boiling water
Conduction: hot handle
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