In a simple dominant/recessive relationship, the heterozygote's production of approximately 50% of the protein required is sufficient.
A heterozygous genotype grant permission involves one common allele and an individual mutated allele or two various mutated alleles (compound heterozygote). The result of our study suggests that more heterozygous things have a larger endurance and may be an important beginning of ancestral instability of a populace, likely contributing to a counterweight of the direct study of the human population.
Protein is found during the whole of the frame—in power, cartilage, skin, hair, and basically sporadic physique part or fabric. It makes up the enzymes that capacity many synthetic backlashes and the red body fluid that carries oxygen in your ancestry. At least 10,000 various proteins create you what you are and hold you that way.
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which charictreistic of tumour cells allows an ongiung culture of an antibody-producing lymphocytes to be made
Answer:
Immortal-Cultured Indefinitely
Explanation:
As stated in the text:
"The isolated B-cells are made to fuse with immortal tumor cells and can be cultured indefinitely in a suitable growing medium."
A gastroenterologist is a doctor who treats problems of the esophagus, stomach, and intestines. Which organ system is cared for by this type of doctor?.
Answer:
gastrointestinal system
Question 3 of 5
Which sentence uses supporting evidence to form the best conclusion about
a rattlesnake?
A. The rattlesnake's body temperature responded quickly to the
environment, so it is an ectotherm.
B. The rattlesnake moved rapidly to stay warm when its body
temperature dropped, so it is an endotherm.
C. The rattlesnake ate a great deal in order to stay warm, so it is an
ectotherm.
D. The rattlesnake cooled off at night by swimming in the cold water,
so it is an endotherm.
All reptiles, including snakes, are ectothermic (ecto means from the outside and thermic means temperature). It follows that their surroundings serves as their source of body heat.
Can rattlesnakes survive the winter?Rattlesnakes are among the nearly all ectothermic reptiles (cold-blooded). Like warm-blooded mammals, ectotherms are unable to control their body temperatures. They cannot be productive in cold weather because they rely on their environment for heat.
Rattlesnakes have a way to stay warm.To avoid the heat of the day, the majority of snakes will use underground burrows or openings beneath big boulders. Our type of rattlesnake, along with the majority of snakes, are only truly active during the warm season, so it stands to reason that they would want to forage for food and locate alternative locations to use as shelter.
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A scientist is treating rice plants with a chemical that causes mutations. What is the possible benefit of this treatment? A. clones B. transgenic plants C. increased genetic variation D. increased hybridization
Answer:
Explanation:
Its either B or C, look closely at the question and at the answers, you can narrow it down from then.
A scientist is treating rice plants with a chemical that causes mutations. The possible benefit of this treatment is transgenic plants. Hence, the correct option is B.
What is mutation?A mutation is a change in the DNA sequence that makes up a gene. It can result from errors in DNA replication or exposure to mutagenic agents such as chemicals or radiation, or from spontaneous changes.
Transgenic plants are the plants that have been genetically modified to express specific traits or traits that are not found in the original species. This is done by introducing foreign DNA or chemicals that change the plant's genome. This process is called genetic engineering.
Transgenic plants have become an important tool in agriculture and biotechnology, providing new opportunities for food production, environmental protection and economic growth. Hence, the correct option is B.
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What is Speciation? I am confused
Answer:
D- the formation of two or more species from a common ancestor.
Some students were building a model of a
digestive system. Which choice best
describes a process they should show with
their model?
F Tissues digest food for the organ
system to absorb.
GCells digest food, which is then
absorbed by organs.
Organs digest food by working
together as a system.
(H)
The organ system uses specialized
cells to digest food.
The digestive process is divided into four steps: ingestion, chemical and mechanical food breakdown, nutrient absorption, and expulsion of indigestible food.
What does the digestive process entail?
The digestive process starts as soon as something is chewed. In order for food to pass more easily through your esophagus and into your stomach, saliva, a digestive juice produced by your salivary glands, moistens the food. The carbs in food also begin to be broken down by an enzyme found in saliva.
Motility, digestion, absorption, and secretion are the four fundamental functions of the digestive system. Our digestive system transforms our food into energy that we can use.
The digestive system's initial function is to take in food through the mouth. The "ingesting" procedure must take place before anything else can happen.
The complete question is:
Some students were building a model of a digestive system. Which choice best describes a process they should show with their model?
a) F Tissues digest food for the organ system to absorb.
b) G Cells digest food, which is then absorbed by organs.
c) Organs digest food by working together as a system.
d) The organ system uses specialized cells to digest food.
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In a population, if the proportion of individuals who have sickle-cell disease is 0.10, and the population is assumed to be at Hardy-Weinberg equilibrium, what is the expected frequency of the HbS allele
The answer is: The expected frequency of the HbS allele is 0.316.
Hardy-Weinberg equilibrium is a genetic model that specifies the frequency of alleles and genotypes within a population over generations.
According to the Hardy-Weinberg equilibrium, the genotype frequency of a population is determined by the allele frequencies of the population and vice versa. The HbS allele is responsible for sickle cell disease.
The frequency of the HbS allele can be determined using the Hardy-Weinberg equilibrium equation:
p² + 2pq + q² = 1
Where: p² = frequency of homozygous dominant (HbA/HbA) individuals
2pq = frequency of heterozygous (HbA/HbS) individuals
q² = frequency of homozygous recessive (HbS/HbS) individuals
p = frequency of the HbA allele
q = frequency of the HbS allele
If the proportion of individuals with sickle cell disease is 0.10, then the frequency of the HbS/HbS genotype (q²) is 0.10, and the frequency of the HbS allele (q) can be calculated as follows:
q² = 0.10
q = √(0.10)
q = 0.316
Using the Hardy-Weinberg equilibrium equation, we can calculate the frequency of the HbA allele as follows:
p² + 2pq + q²
= 12pq
= 1 - p² - q²2(0.316)(1 - 0.316)
= 0.427p
= √(0.427)p = 0.653
Therefore, the expected frequency of the HbS allele is 0.316.
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Why must cells go through division
Answer : Because you can't make something out of thin air.
Explanation:
It has to come from somewhere. And that somewhere is the cell.
Describe how scientific investigations lead to new scientific questions.
Answer: if new investigations occur, new questions would have to be asked to find out the things that are being researched.
Explanation:
1 point
What is mitosis? *
When a cell is not dividing
Division of the nucleus
Division of the cytoplasm
O Division of muscle cells only
Answer:
Division of the Nucleus
Explanation:
Mitosis involves the division of the nucelus to create two daughter cells.
Question 6 10 pts There is enough water for 15 deer food for 12 deer and space for 20 The carrying capacity is? 15 O 12 0 20 Othere is not enough information sc
Answer:
The carrying capacity is 12. There can't be over 12 because they will die from starvation.
Hope This Helps!
Molecules tend to move from an area where theybare more concentrated to an area where they are less conventrated. This process is called?
The process by which molecules tend to move from an area where they are more concentrated to an area where they are less concentrated is called Diffusion :)
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If there was a dramatic increase in skeletal muscle cell damage and apoptosis, what would you expect to happen to levels of myoglobin and CK in the blood
If there was a dramatic increase in skeletal muscle cell damage and apoptosis, I would not expect a change in blood myoglobin and CK levels, because these markers are linked to cardiac muscle damage.
What does high CK-MB mean?Elevated CKMB can be a sign of cardiac (heart muscle) damage or chronic kidney failure. At the onset of acute symptoms, after cardiac peaks, CKMB values are elevated after 3-6 peaks after 12-24 hours between 12-24 hours, values at 24-48-48.
With this information, we can conclude that if there was a dramatic increase in skeletal muscle cell damage and apoptosis, we would not expect a change in blood myoglobin and CK levels, because these markers are linked to cardiac muscle damage.
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What is a benefit of fossil fuel consumption?
renewable resource
cheap energy
increased greenhouse gases
O
low pollution
Answer:
cheap energy
i did the quiz and got it right
Answer:
Cheap Energy
Explanation:
Hope you have a great rest if your day!
Give examples of 10 different taxa of macroinvertebrates in the river?
The examples of 10 different taxa of macroinvertebrates in the river are mayflies, stoneflies, caddisflies, dragonflies, water striders, biting midges, leeches, snails, and beetles.
Macroinvertebrates are organisms that are large enough to be seen with the eye and don’t have a backbone. They are considered the most important organisms in river ecosystems as they play crucial roles in the food web. Here are ten different taxa of macroinvertebrates commonly found in rivers:
Mayflies – aquatic insects with flattened bodies that live in rivers and streams. They are an important food source for fish and birds.Stoneflies – aquatic insects with flattened bodies that prefer clean and cold water. They are also an important food source for fish and birds.Caddisflies – aquatic insects that use pieces of debris to build cases that they live in. They are important indicators of water quality and pollution levels.Dragonflies – insects with elongated bodies and wings that live near rivers and ponds. They are important predators of other insects and help to control their populations.Water striders – insects that can walk on the surface of water due to their specialized legs. They are predators that feed on smaller insects and provide food for fish and birds.Biting midges – small flies that live near water and can be a nuisance to humans. They are also an important food source for fish and birds.Leeches – segmented worms that live in freshwater habitats. They are predators that feed on other invertebrates and provide food for fish and birds.Snails – aquatic molluscs that have a hard shell. They are important decomposers and help to break down organic matter in the water.Beetles – aquatic insects that live in freshwater habitats. They are important predators and can feed on smaller insects and even fish.Crayfish – freshwater crustaceans that live in rivers and streams. They are predators that feed on other invertebrates and fish.Learn more about macroinvertebrates: https://brainly.com/question/32031540
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for each species shown, describe how the wings of the optix knockout compares
The specific consequences of an optix knockout vary between species, but generally lead to alterations in wing coloration, pattern, and other morphological features.
In an optix knockout experiment, the wings of each species exhibit differences compared to the normal wing patterns. The optix gene plays a crucial role in wing coloration and pattern formation in various species. When the gene is disrupted or "knocked out," it results in altered wing patterns that vary depending on the species.
For example, in butterflies like Heliconius erato and Junonia coenia, an optix knockout can lead to a significant reduction in the red coloration on their wings, as the gene is responsible for the production of red pigments. In other species such as the monarch butterfly (Danaus plexippus), the optix knockout may not have a noticeable effect on wing color, but could potentially affect other aspects of wing pattern development.
Overall, the specific consequences of an optix knockout vary between species, but generally lead to alterations in wing coloration, pattern, and other morphological features. This illustrates the importance of the optix gene in determining the appearance and functionality of wings in various species.
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A population of animals has a short gestational period and travels in large groups. How will this affect the population size?
Are the structures that unicellular and multicellular beings have developed to perform nutrition the same or different? Why?
Explanation:
Cells function differently in unicellular and multicellular organisms, but in every organism, each cell has specialized cell structures, or organelles, of which there are many. These organelles are responsible for a variety of cellular functions, such as obtaining nutrients, producing energy, and making proteins.
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The following picture must be
A
DNA because it is double stranded.
B
DNA because it is single stranded.
С
RNA because it is single stranded.
D
RNA becasue it is double stranded.
during which phase of meiosis 1 do spindle fibers form
Spindle fibers form during the prophase of meiosis I.
In meiosis I, the process of cell division that occurs during the formation of gametes (sex cells), the first phase is prophase I. During prophase I, the nuclear envelope starts to break down, and the chromatin condenses into visible chromosomes. Within the nucleus, homologous chromosomes pair up and undergo a process called synapsis. The paired homologous chromosomes, consisting of two sister chromatids each, form structures called bivalents or tetrads.
At this stage, spindle fibers begin to form. The spindle fibers are microtubule structures that extend from opposite ends of the cell, forming a spindle-shaped apparatus. These spindle fibers play a crucial role in the subsequent separation of homologous chromosomes during meiosis I.
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What are possible advantages for self-pollination to have evolved in a flowering plant species? select all that apply.
All the options are correct: The advantages of self - pollination include;
the plant species can survive in areas where animal pollinators are absent, the plant species tends to produce offspring that are more uniform compared to offspring resulting from outcrossing and less energy can be spent on attracting pollinator.What is pollination?Pollination is the transfer of pollen from an anther of a plant to the stigma of a plant, later enabling fertilization and the production of seeds, most often by an animal or by wind.
There are two main types of pollination:
Self pollinationCross pollinationWhat is self pollination?Self-pollination is a form of pollination in which pollen from the same plant arrives at the stigma of a flower or at the ovule.
Advantages of self pollination;The plant species can survive in areas where animal pollinators are absent.The plant species tends to produce offspring that are more uniform compared to offspring resulting from outcrossing.Less energy can be spent on attracting pollinator.Thus, the possible advantages for self-pollination to have evolved in a flowering plant species are; the plant species can survive in areas where animal pollinators are absent and less energy can be spent on attracting pollinator.
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The complete question is below:
What are possible advantages for self-pollination to have evolved in a flowering plant species? select all that apply.
-The plant species can survive in areas where animal pollinators are absent.
-The plant species tends to produce offspring that are more uniform compared to offspring resulting from outcrossing.
-Less energy can be spent on attracting pollinator.
The diagram shows the Sun-Earth-Moon system during a
solar eclipse.
Which two conditions must be met for a solar eclipse to occur?
A. Earth blocks sunlight from reaching part of the Moon's surface.
B. The Moon crosses through Earth's orbit during a new moon.
C. Earth crosses through the Moon's orbit during a full moon.
D. The Moon blocks sunlight from reaching part of Earth's surface.
The two conditions that must be met for a solar eclipse to occur are:
B. The Moon crosses through Earth's orbit during a new moon.D. The Moon blocks sunlight from reaching part of Earth's surface.What is a solar eclipse?A solar eclipse is a celestial event that occurs when the Moon passes between the Sun and the Earth, blocking the Sun's rays and casting a shadow on a portion of the Earth's surface. During a total solar eclipse, the Moon completely covers the Sun, revealing the Sun's outer atmosphere, or corona, which is otherwise not visible.
During a solar eclipse, the Moon passes between the Sun and the Earth, blocking the Sun's rays from reaching a portion of the Earth's surface. This can only occur during a new moon, when the Moon is positioned between the Sun and Earth, and its shadow falls on the Earth's surface.
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Which event occurs during telophase of mitosis?cytoplasm dividesnuclear membranes reformsister chromatids separatechromosomes become visible
During the Telophase, the daughter chromosomes reach the poles. Telophase passes into the next interphase as the nuclear envelopes and the nucleoli re-form and the chromatin becomes diffuse.
On the other hand, remember that cytokinesis starts during the nuclear division phase called anaphase and continues through telophase. Cytokinesis is the physical process of cell division, which divides the cytoplasm of a parental cell into two daughter cells.
We can conclude that the correct answers are:
Answer:Nuclear membranes reform
and
Cytoplasm divides
What is the meaning of life?
galapagos tortoses are certainly not the only organisms that show variations describe variations you have observed among another group of organisms like plants butterflies birds or fish
Answer:
A great example of variations among organisms can be seen in plants. Variations among plants can be seen in shape, color, size, and structure. For example, you may find that some plants have more elongated leaves while others have rounder leaves, some have white petals while others have pink petals, some have a tall and lanky structure while others are short and lush. Similarly, variations among butterflies, birds and fish can be observed in the form of different sizes, colors, plumage patterns, and behaviors.
Darwin's finches are the binds along the Galapagos tortoises and are certainly not the only organisms that show variations. This is known as natural selection.
What is natural selection?One of the mechanisms of evolution is natural selection. It is more likely that organisms will survive and pass on the genes that contributed to their success if they are better adapted to their environment. Eventually, the species change and become divergent from their ancestors.
According to the natural selection theory, an organism produces more offspring than can survive in its environment. those who have better physical capabilities for surviving, maturing, and reproducing.
Therefore, natural selection is based on the survival of the finest which withstand all conditions.
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Amino acids are used to build
Answer:
Hello!
Explanation:
\(⭐ \red{\textbf{amino \: acids \: are \: used \: to \: build}}\)
Amino acids are organic compounds that combine to form proteins.Amino acids are organic compounds that combine to form proteins. The human body uses amino acids to produce proteins to help the body break down food.
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atte:
Ángela
❤️
Answer:
Proteins.
Explanation:
"For a brick, He flew pretty good" - Sargent Avery Johnson
During his Voigt-Kampff Test, what hypothetical animal does Leon "not help"?
A platypus
An alligator
A tortoise
A kangaroo
Answer:
A tortoise
Explanation:
The tortoise is laying on its back and it freaks out the Replicant
If the temperature of the tissue samples used in the experiment had been raised from 37°C (body temperature) to 50°C, the results would have been different because
Answer:
75%sorry i need to complete the steps
A machine has an efficiency of 70%. How much work does the machine do when 20,000 J of work is done on it?
14,000 J
28,600 J
1,400,000 J
2,860,000 J
Answer:
a
Explanation:
The machine does 14,000 J work when 20000 J work is done on it. The correct option is a.
What is a machine?A machine refers to a physical system using power to apply forces and control movement to act. The term is commonly applied to artificial devices, such as those employing engines or motors, but also to natural biological macromolecules, such as molecular machines.
Machines can be driven by animals and people, by natural forces such as wind and water, and by chemical, thermal, or electrical power, and include a system of mechanisms that shape the actuator input to achieve a specific application of output forces and movement. They can also include computers and sensors that monitor performance and plan movement, often called mechanical systems. Renaissance natural philosophers identified six simple machines which were the elementary devices that put a load into motion.
It is the ratio of output force to input force, known today as mechanical advantage.
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You charge a price of $5 for a pair of earrings and produce 100 pairs. At this price, consumers demand 200 pairs of earrings. This is a signal for you to _____. raise the price lower the price make fewer earrings
The signal of increased demand for the earrings at the current price indicates that you should consider raising the price to maximize profits.
By increasing the price, you can continue to produce the same amount of earrings while earning more revenue per pair sold. However, it's important to carefully consider how much to increase the price as too high of a price increase may lead to decreased demand and lower profits. Based on the information provided, you are currently charging $5 for a pair of earrings and producing 100 pairs. However, consumers demand 200 pairs at this price. This is a signal for you to raise the price. By doing so, you can better match supply with the higher demand, potentially increase your revenue, and avoid shortages in the market.
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