Si se cruza un perro de pelo duro con una perra de pelo suave ¿Cuál será el resultado de la F1 y f2, siendo el pelo duro dominante sobre el suave? Por favor ayuden me

Answers

Answer 1

Explanation:

un marrano xx abababajabababdbdbfbx xjxbxbxbzxbxjxjsjss


Related Questions

Which organelle's function would be most affected if a cell was not able to carry out exocytosis? Multiple Choice Peroxisome B Lysosome Proteosome Secretory vesicle

Answers

The organelle's function would be most affected if a cell was not able to carry out exocytosis is D. Secretory vesicle.

Exocytosis is the process of a cell secreting molecules by releasing them from vesicles through the plasma membrane to the exterior of the cell. Cells use exocytosis to release waste products or byproducts, such as proteins or enzymes, that are produced within the cell. The secretory vesicle's function would be most affected if a cell was not able to carry out exocytosis. The secretory vesicle is a small, membrane-bound sac that contains proteins or other substances that a cell needs to release, it fuses with the plasma membrane during exocytosis to release its contents into the extracellular space.

Exocytosis is a critical process for cells because it allows them to release waste and byproducts, as well as secrete proteins or enzymes that are needed for cell function. If a cell cannot carry out exocytosis, it will accumulate waste and byproducts, which could be harmful to the cell. Additionally, the cell would be unable to secrete important proteins or enzymes, which could affect its overall function. Therefore, the secretory vesicle's function would be most affected if a cell was not able to carry out exocytosis, so the correct answer is D. Secretory vesicle.

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What would happen to the production of the high energy sugars if water or carbon dioxide were not
available to plants?
ATD

Answers

Answer:

There would be no production of high energy sugars in the plant.

Explanation:

Plants produce their food (autotrophism) in a process unique to them called PHOTOSYNTHESIS. Photosynthesis is the process whereby plants produce energy-storing sugars (glucose) in the presence of light from sun.

This photosynthetic process combines Carbon dioxide (CO2) and water (H2O) as reactants to form sugar (C6H12O6) and oxygen (O2) as products. The equation for photosynthesis is as follows:

6CO2 + 6H2O → C6H12O6 + 6O2

This means that water and carbon dioxide are strictly needed for the process of photosynthesis to occur in plants. Hence, if water or carbon dioxide were not available to plants, there would be no photosynthetic process and ultimately no production of high energy sugars.

Sickle cell anemia is a genetic disease. The Sickle cell is recessive, but individuals with the homozygous recessive genotype often die prematurely due to the disease. This affects approximately 9% of the population in Africa. Use the Hardy Weinberg equations to calculate the following:

1) the frequency of the recessive allele in the population

2) the frequency of the dominant allele in the population

3) the frequency of homozygous dominant individuals in the African population

4) the frequency of heterozygous individuals in the African population

5) Based on this analysis, is the African population in hardy Weinberg equilibrium? Explain.

Answers

1). The frequency of the recessive allele in the population (q) Since sickle cell anemia is recessive, we can assume that the individuals with the disease (aa genotype) represent 9% of the population.

2). The frequency of the dominant allele in the population (p) Since q represents the recessive allele frequency, we can find p by subtracting q from 1: p = 1 - q ≈ 1 - 0.3 ≈ 0.7.

3). The frequency of homozygous dominant individuals (AA genotype): According to the Hardy-Weinberg equation, p² represents the frequency of the AA genotype. Therefore, p² ≈ (0.7)² ≈ 0.49.

4). The frequency of heterozygous individuals (Aa genotype) The frequency of the Aa genotype can be calculated using the formula 2pq.

5). If the African population is in Hardy-Weinberg equilibrium, we compare the observed genotype frequencies with the expected frequencies based on the allele frequencies.

Anemia is a medical condition characterized by a decrease in the number of red blood cells or a decrease in the amount of hemoglobin in the blood. Red blood cells are responsible for carrying oxygen from the lungs to various tissues and organs in the body. Hemoglobin, a protein within red blood cells, binds to oxygen and facilitates its transport.

When a person has anemia, their body may not receive an adequate supply of oxygen, leading to various symptoms such as fatigue, weakness, shortness of breath, pale skin, and dizziness. Anemia can be caused by several factors, including nutritional deficiencies (such as iron, vitamin B12, or folate), chronic diseases, genetic disorders, or blood loss due to injury or menstruation.

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Which phase consistently has the least number of cell in that phase?

Answers

Answer:

Cytokinesis had the least number of cells in that phase.

Which of the following provides the best example of selective breeding?

A. Scientists have noted that different varieties of birds on different Islands have beaks that are suited to the birds available food,
B. Leopard seals captured in Antarctica have thicker layers of blubber than harbor seals captured in the Pacific Ocean
C. Hummingbirds have a long, narrow beak that enables them to reach food in the deepest parts of a flower
D. Racehorses that run fastest are the ones that are allowed to produce offspring, leading to faster racehorses.

Answers

Answer:

c

Explanation:

because yes

Which of the following would provide the best assessment of the parent material of the soil
- O horizon
- A horizon
- B horizon
- D horizon

Answers

Answer:

The correct answer is B

Explanation:

It may be made of the same mineral material that the more superficial layers were formed from, or it may be made of a distinct complex of minerals, rock forms the D horizon, hence option D is correct.

What is the parent material of the soil?

An unweathered soil layer that can occasionally be found below the B-horizon or the C-horizon, if they are present.

The soil you see above this rock is made of rock that has weathered (unless the soil has been deposited from elsewhere eg floodplains contain soil that has been carried downstream in water and then deposited as the flood recedes).

Therefore, bedrock's D Horizon - Rock that has been solidified makes up this stratum (tight, unbroken, large formations of rock). Roots do not penetrate thus far down, and there is very little organic matter.

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all you need is in the photo


ASAP​

all you need is in the photo ASAP

Answers

Answer:

D.)

Explanation:

Answer:

CCA

Explanation:

Place an T beside those statements you think are true and a F beside those statements you think are false,
Anticipation Statements
1 Most extinctions are of aquatic life in the oceans.
2. More than half of extinctions are related climate change
3. Biodiversity is based on the number of species in a specific location.
4. Ecological relationships can be disrupted by migration
5. Introducing new species to different regions will increase biodiversity

Place an T beside those statements you think are true and a F beside those statements you think are false,Anticipation

Answers

Based on existing facts, the following can be concluded about the given statements:

Most extinctions are of aquatic life in the oceans is TrueMore than half of extinctions are related climate change is FalseBiodiversity is based on the number of species in a specific location is FalseEcological relationships can be disrupted by migration is TrueIntroducing new species to different regions will increase biodiversity is False.

Which habitat have experience the most extinction of species?

Aquatic habitats have experienced the most extinction of species

How does climate change affect extinction of species?

Even though climate change poses a great threat to life and biodiversity, most  extinction of species  are caused by environmental degradation of plants and animals habitats.

What is biodiversity?

Biodiversity is a term used to describe the number of different species of organisms present in an ecosystem.

Biodiversity is not limited to a specific location.

What is the effect of migration on ecological relationships

Migrations refers to movement of organisms out of a specific location or region.

When migration of species occur, established ecological relationships are disrupted.

What is the effect of introducing new species to different regions on biodiversity?

When a new species are introduced into a new region, since it may not have a natural predators to keep its number in check, it may grow and multiply uncontrolled displacing the original species, thus disrupting biodiversity.

Therefore, based on existing facts, the following can be concluded about the given statements:

Most extinctions are of aquatic life in the oceans is TrueMore than half of extinctions are related climate change is FalseBiodiversity is based on the number of species in a specific location is FalseEcological relationships can be disrupted by migration is TrueIntroducing new species to different regions will increase biodiversity is False.

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yeasts can perform both aerobic respiration and fermentation. in fact, the homebrewer must be careful that oxygen is not introduced into the carboy once the yeast begin fermentation. what would be the products if o2 is allowed to enter the carboy?

Answers

Fermentation can only take place in an anaerobic environment because yeast is relatively anaerobic. When there is oxygen present, yeast engages in aerobic metabolism.

Can yeast ferment and breathe aerobically?

Yeast fermentation: When oxygen is present, yeast engages in aerobic respiration, converting carbohydrates (a source of sugar) into carbon dioxide and water. In the absence of oxygen, yeast ferments carbohydrates and produces carbon dioxide.

Through the process of electron transfer and oxygen, yeast mitochondria regenerate NAD+. Alcohol and CO2 are created during the fermentation process, which essentially only takes place in the absence of oxygen (resulting in carbonation). The roommate left the bucket open to the air, which provided the yeast with an ongoing supply of oxygen.

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What does upwelling mean, what is the definition?

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This is a big question and it is also important for climate studies and I am only going to answer it in simple terms but let’s not forget there are quantitative answers at global scales.

When the wind blows onshore it moves the surface water towards the shore. If the shore is a wall like a harbour wall then the moving surface water raises the water level at the wall. This raised water level at the wall puts pressure on the deeper water below (which moves away from the base of the wall to regions of lower pressure or away from the wall at the bottom). The water at the wall moves downward to compensate and this is called downwelling. More surface wind (stress) and more downwelling.

When the wind blows off shore. The surface water moves away from the wall. Sea level falls at the wall and water rises up the wall from the bottom. This is called upwelling.

Ekman worked out that in the open ocean the transport of surface water moves to the right of the wind direction due to the effects of the Earth’s rotation (in the northern hemisphere). So when the wind is parallel to a shore there will be upwelling or downwelling depending on the wind direction. Imagine a straight shoreline aligned towards the south (or north). If the wind blows to the south (from the north or a north wind) then the surface water moves offshore to the right of the wind and upwelling occurs.

These upwelling regions bring up cooler water rich in inorganic nutrients and surface phytoplankton growth is increased. This happens particularly seasonally off West Africa and Venezuela. There is also Equatorial Upwelling with zonal wind so some corals won’t die out so quickly with global warming.

A substance that is insoluble in water and turns sweet in the presence of amylase, an enzyme that hydrolyzes glycosidic linkages, is most likely?

Answers

A substance that is insoluble in water and turns sweet in the presence of amylase, an enzyme that hydrolyzes glycosidic linkages, is most likely Starch.

What are carbohydrates?

Carbohydrates are biological molecules which are composed of carbon, hydrogen and oxygen where the ratio of the hydrogen to oxygen in the molecule 2:1 as in water molecules.

Carbohydrates are classified into three types:

monosaccharides or simple sugars e.g. glucosedisaccharides which are composed of two units of monosaccharides e.g. sucrosepolysaccharides which are composed of many monomers of monosaccharides e.g. starch

Polysaccharides such as starch are not sweet. But when in the presence of amylase, an enzyme that hydrolyzes glycosidic linkages, it breaks than to sweet glucose monomers.

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Through the process of _____, a gene from one organism can be combined with a gene from another organism.

Thanks in advance for the people that helped and tried to help me!

Answers

Genetic engineering! The term genetic engineering refers to transferring the genetic information contained from one organism to another.

What would happen if a person received blood from someone that was not a compatible type?

Answers

If a person received blood from someone that was not a compatible type then it will attack the donor red blood cells and destroy them.

If a patient obtains a blood type that is incompatible, antibodies already present in the patient's blood will attack and destroy the donor red blood cells. This may result in fever, chills, chest discomfort, back pain, hemorrhage, rapid blood pressure drops, shortness of breath, and/or renal damage. Our blood is a living tissue that serves vital purposes.

An acute hemolytic response is what this is. Even if a delayed hemolytic reaction, which is typically milder or even asymptomatic, can happen, blood cells will still be destroyed. To avoid a transfusion reaction, blood type must be identified before to transfusion into a patient.

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Which property would you alter to increase the space to enter items in a cell before it wraps to a new line in the cell?.

Answers

Cell margins are altered to increase the space to enter items in a cell before it wraps to a new line in the cell.

What is cell margin?However, they are not frequently used and are not well understood. Cell Margins and Cell Spacing are two crucial parameters in every Microsoft Word Table.The spaces between your text and the cell's edge are known as cell margins. The top, bottom, and both sides of the cells can each be set separately.We click in the table once more and select the Layout tab on the right to modify the cell margins. In the Alignment group, next, click Cell Margins.A row, column, or even a single cell can have their table cell margins modified, although that option is not located next to the main Cell Margins ribbon button.

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Antidiuretic hormone (ADH) is produced by the pituitary gland when the brain detects lower than optimum levels of water in the body. In the kidneys, ADH promotes the uptake of water, creating more concentrated urine. ADH travels from the pituitary gland to the kidney through the ________ system.

Answers

Answer:

circulatory system

Explanation:

ADH travels in the bloodstream to the kidneys

What can be used to collect and record scientific data

Answers

Answer:

Case Studies, Checklists, Interviews, Observation sometimes, and Surveys or Questionnaires are all tools used to collect data. It is important to decide the tools for data collection because research is carried out in different ways and for different.

Explanation:

please mark me brainleast

WHAT IS OSMOREGULATION

Answers

Answer:

Osmoregulation is the process by which an organism regulates the water and electrolytic balance in its body to maintain homeostasis.

Name two ways water travels from land to enter the ocean.

Answers

Answer Seepage; runoff

Explanation In nature, water is constantly circling: from the water surfaces it evaporates, travels up in the atmosphere, there it condensates, forms clouds, and then again falls to the land and water surfaces. This cycle has been going on for thousands and thousands of years and is known as the water cycle.
Now, the real question is how does the water, fallen from the clouds, on the land, travel back to the oceans.
Soil consists of multiple layers, some are water permeable, and some are not. When water (rain) reaches the soil, through tiny pores in upper permeable layers it will travel downward, deeper and deeper. This process is called the seepage. Upon reaching the water-impermeable layers, it stops, becoming part of what is known the underground water. It will continue to flow on this layer until it finds its way back on the surface, usually in a form of a spring, which will find its way to a river, and river will take that water to a sea or an ocean.
However, if the soil is to saturated with water, especially during long rainy, stormy period, or in the spring, after the snow melts. This excess water will, because of the gravity, flow over the earth's surface, from higher (mountains) to lower (valley) areas, making its way to some valley river, which will take it further to a sea or an ocean.
Upon reaching the ocean, this land-water can again join the water cycle, again and again.

Answer:

Seepage; runoff

Explanation:

Nature's water cycle is a continuous process in which water moves through the Earth's atmosphere, surface, and underground, driven by the sun's energy and the forces of gravity. When water evaporates from the Earth's surface, it rises into the atmosphere, where it condenses and forms clouds. These clouds can then release their moisture as precipitation, which falls back to the Earth's surface.

The fact that the outer membrane of the nuclear envelope has bound
ribosomes allows one to most reliably conclude that 

Answers

Answer:

At least some of the proteins that function int he nuclear envelope are made by the ribosomes on the nuclear envelope.

Hope this helps

HELP PLEASE
Question 5 of 26
The image shows an energy pyramid.
Eagle
Snake
Frog
Grasshopper
Grass
Which statement is supported by the pyramid?
A. All of the energy in the grass will be passed on to the next level.
B. Some of the energy in a snake is available to frogs
C. Some of the energy in a grasshopper will be used for a frog's life
functions
D. Most of the energy in an eagle will be passed on to producers.

Answers

Answer:

C. Some of the energy in a grasshopper will be used for a frog's life functions is supported by the pyramid.

what is chewing the cud mean?​

Answers

Answer:

When animals like cows or sheep chew the cud, they repeat the process of chewing their partially digested meal over and again in their mouth before swallowing it.

OAmalOHope:

pseudosport depends in very large measure on the interest and attendance of blue-collar workers and their families. T/F ?

Answers

The involvement and participation of blue-collar workers and their families are extremely important to pseudosport. True.

Physical fitness and educating people about the importance of perseverance, teamwork (cooperation), and competitiveness are two examples of how sport serves society in its most obvious ways. Sports engagement may help people improve their character, and the physical exercise can also help them feel better about themselves. The sociological idea of ideology is crucial.

It has a significant impact on how society is structured and operates, which is why sociologists study it. Political framework, economic system of production, and social structure are all strongly correlated with ideology.

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How does interphase prepare cells for mitosis?

How does interphase prepare cells for mitosis?

Answers

Answer:

Growth of cell and replication of DNA

Explanation:

\( \large{ \underline{ \bf{Interphase}}}\)

It is a long, non-dividing, growing phase of the cell cycle, where the cell prepares itself for division.It represents the most active stage of the cell cycle where both cell growth and DNA replication occur in an orderly manner.It is the period of intense growth and synthesis in which a cell stocks all the biomolecules required during cell division.It is called the resting phase because there is no apparent activity related to cell division rather, it deals with the changes that occur in a cell and the nucleus, before it enters into cell division.

In humans, albinism is recessive to normal pigmentation. Two of your friends have normal pigmentation. They have one child who is albino and are expecting a second child. Your friends tell you “We know that our chance of having one albino child was 1:4, so we are sure that our next baby will not be albino”.
How would you respond?
Using a specific example, explain to your friends whether their reasoning is correct.

Answers

I would respond by saying that while the chance of having an albino child is indeed 1:4 for two parents who both carry the recessive allele for albinism, the chance of their next child being albino depends on whether or not both parents carry the recessive allele.

How do you  illustrate this point?

To illustrate this point, let's use Punnett square analysis. Let's assume that both parents are heterozygous carriers of the albinism gene (Aa), meaning that they have one copy of the normal pigmentation allele (A) and one copy of the albinism allele (a).

When these two parents have a child, there are four possible outcomes:

AA (normal pigmentation) - 25%Aa (normal pigmentation) - 50%aa (albinism) - 25%

So, in this case, the chance of having an albino child is indeed 1:4. However, when these same parents have a second child, the chances are still the same. Each parent has a 50% chance of passing on the A allele and a 50% chance of passing on the a allele, so the possible outcomes for the second child are the same as for the first child:

AA (normal pigmentation) - 25%Aa (normal pigmentation) - 50%aa (albinism) - 25%

Therefore, their chance of having an albino child is still 1:4, regardless of whether or not they already have an albino child.

In conclusion, I would explain to my friends that their reasoning is incorrect, as the chance of their next child being albino is still dependent on whether or not both parents carry the recessive albinism allele, and the outcome cannot be predicted with certainty.

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In the body, sodium bicarbonate _____. Select all that apply. Multiple select question. is the major contributor to stomach acid production helps control excess acidity by buffering acids helps digest dietary fats in the small intestine is the major component of the blood's alkaline reserve

Answers

In the body, sodium bicarbonate helps control excess acidity by buffering acids and is the major component of the blood's alkaline reserve. The stomach produces hydrochloric acid, which is necessary for the digestion of proteins and the absorption of minerals such as iron and calcium.

Sodium bicarbonate is a chemical that acts as a buffer in the human body to help control the pH of the blood. When the body's pH level becomes too acidic, sodium bicarbonate can help to neutralize the excess acid and bring the pH back to a healthy balance.

Sodium bicarbonate is not the major contributor to stomach acid production. The pancreas secretes a bicarbonate-rich fluid that neutralizes the acidic contents of the stomach as they enter the small intestine, where the digestion of carbohydrates and fats continues. Sodium bicarbonate is an important part of this process, as it helps to neutralize the acidic chyme that enters the small intestine.

Sodium bicarbonate is not responsible for the digestion of dietary fats in the small intestine. Instead, it helps to neutralize the acidic chyme from the stomach, which contains partially digested food, as it enters the small intestine. This process is necessary to ensure that the digestive enzymes produced by the pancreas are effective and that the small intestine's pH remains neutral or slightly alkaline.

Overall, sodium bicarbonate plays an essential role in maintaining the body's pH balance by acting as a buffer against excess acidity. It helps to control excess acidity by buffering acids and is the major component of the blood's alkaline reserve. While it is not directly involved in the digestion of dietary fats or the production of stomach acid, it does play an essential role in these processes by helping to neutralize the acidic chyme that enters the small intestine.

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Which statement describes the work of Aristotle and Linnaeus?

Aristotle’s classification system had many levels, while Linnaeus’s classification system only had two levels.
Aristotle’s and Linnaeus’s classification systems both divided all life into two groups: plant and animal.
Linnaeus proved that many organisms, which were classified as plants by Aristotle, were animals.
Aristotle and Linnaeus worked side by side examining organisms on many trips.

Answers

The correct description is:

Aristotle’s and Linnaeus’s classification systems both divided all life into two groups: plant and animal: option B.

What was the work of Aristotle and Linnaeus centered on?

Aristotle was a Greek philosopher who studied life and living things to be able to explain their behavior.

Linnaeus was a Biologist who studied and classified living things into plants and animals.

Aristotle and Linnaeus both classified living things into plants and animals.

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Which process connects glycolysis and the citric acid cycle?
lactic acid formation
acetyl CoA formation
electron transport
Krebs cycle

Answers

The process which connects glycolysis and the citric acid cycle is acetyl CoA formation.

Glycolysis

Glycolysis is the reaction pathway busy which a glucose molecule is converted to two pyruvate molecules with the production of two net ATP molecules.

Citric acid cycle

This is a cyclic reaction pathway in which a mole of acetyl CoA is oxidized to two molecules of carbon (iv) oxide with the production of the reducing equivalents NADH and FADH2 as well as two ATP molecules.

Acetyl CoA formation

The pyruvate from glycolysis is oxidized to an acetyl CoA molecule by the pyruvate dehydrogenase complex. The acetyl CoA produced then enters the citric acid cycle.

Therefore, the process which connects glycolysis and the citric acid cycle is acetyl CoA formation.

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Answer:

It's B

Explanation:

I took one for the team.

What are the differences between Bacteria and Eukarya ?

Answers

Answer:

Explanation:

The most obvious difference between eukaryotes and bacteria is that there is a membrane-bounded nucleus in eukaryotes and not in bacteria - again, for the most part: there is a bacterium with the wonderful name Gemmata obscuriglobus that is described as having a double membrane enclosing the DNA in a nucleus-like structure [3], although the structure is apparently contiguous with the plasma membrane [4], so in that sense it is very different from a eukaryotic nuclear membrane and this is certainly a special case. But leaving that example aside, the main consequence biologically of having a membrane-enclosed nucleus is that transcription and translation are uncoupled. So there is a fundamental kinetic and organizational difference between eukaryotes and bacteria in the way that genetic information is expressed in the form of protein and is therefore allowed to be converted into cellular structure, function and organization.

Bacteria and eukarya are the two domains that differ in various things, including the membrane-bound organelles, true nucleus, and many other functions and activities.

What are bacteria and eukarya?

Bacteria are the prokaryote and are considered to be primitive cells that are ubiquitous and are found even in extreme environments. They have simple cellular arrangements and lack organelle surrounded by membranes. They do not have a true nucleus rather their genetic material lies in the middle of the cell.

Eukaryotes are complex organisms that are characterized by a true nucleus and organelles bounded by the membranes. They have various organelles that perform various functions in the cell. They can be unicellular and multicellular and have their genetic material enclosed in a nucleus.

Therefore, bacteria and eukarya differ in the nucleus and membrane-bound organelles.

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Approximately how many mutations occur naturally in DNA per 10,000 bases?
A. 2
B. 2000
C. 200
D. 20

Answers

Explanation:

Modern methods indicate that the mutation rate is roughly one to two mutation per 10,000 genes per generation.

In human cells, approximately TWO (2) MUTATIONS occur naturally in DNA per 10,000 bases (Option A is correct).

The mutation rate (u) refers to the occurrence of new mutations in a given nucleotide sequence over time.

In human cells, the mutation rate is approximately 10⁻⁴ per generation.

Therefore, in a DNA sequence that has 10,000 base pairs of length, this value is equal to 2 mutations per generation (u = 2 / 10,000 = 10⁻⁴).  

In conclusion, approximately 2 MUTATIONS occur naturally in DNA per 10,000 bases (Option A is correct).

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An advertisement for a health supplement is being shown in a commercial explaining the benefits of increasing lean muscle, strengthen tendons, and ligaments. It also includes a fat burner that will increase the breakdown of triglycerides. Which two biomolecules are being discussed in this ad?



carbohydrates and lipids


lipids and nucleic acids


proteins and carbohydrates


proteins and lipids

Answers

Answer:

C. Proteins and carbohydrates

C. Proteins and Carbohydrates
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