Take TP53's genome browser data into consideration. T/F: Tracks B and C offer proof of functional evolution.
A model describing Cas9/sgRNA-DNA interactions is shown below. The beginning of a coding region within a gene's first exon is depicted below. The codon in brackets denotes the gene's proper reading frame.
Tumor protein TP53, cellular tumour antigen TP53, phosphoprotein TP53, antigen NY-CO-13, and transformation-related protein 53 are other names for the TP53 gene and its products. Discover more about the roles of TP53, how it prevents the development of cancer, how it might be harmed, and medicines that could aid in reactivating its effect in the sections below. 1 One of the biggest problems in treating cancer has been p53 gene mutations.
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If the concentration of potassium inside a cell is higher than the concentration outside of the cell, but potassium still moves into the cell, what kind of transport is happening?
Answer:
Instead, the sodium-potassium pump acts primarily by building up a high concentration of potassium ions inside the cell, which makes potassium's concentration
Explanation:
While listening to his heart with a stethoscope, the physician noticed a high-pitched, blowing, systolic murmur, heard best directly under the left nipple. A review of Roger's medical records shows no prior history of a heart murmur. What could be causing this new murmur
Answer:
Heart malfunction
Explanation:
high-pitched, blowing, systolic murmur indicates that he was having a heart issue with initial could lead to heart malfunction because normal heartbeats don't have a high-pitched sound or blowing.
Four billion years ago the atmosphere contained which two deadly gases?
Answer:
It included hydrogen sulfide, and methane
Explanation:
Describe way in which plants are adapted to swed dispersal by animals give an example
Some seeds feature barbs or hooks that cling to an animal's skin, fur, or feathers. Birds can carry away the sticky seeds of plants like pittosporum.
How do plants adapt to animal seed dispersal?Seeds from plants that rely on animals for distribution are made to fit either within or outside of the animal. Burr- or hook-shaped seeds can cling to an animal's fur. Plants give seeds that are carried internally an enticing fruit pulp reward in exchange for the journey.
What kind of animal dispersal are examples?Mangoes, guavas, breadfruit, carob, and several fig species are some examples. Aardvarks and the desert melon (Cucumis humifructus) share a symbiotic connection in South Africa, where the mammals consume the fruit for food.
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I have not had success figuring out this question for about 4 days now, from an old homework assignment. Please help
Since we now that the change in the first positicion C for a Timine allowed the emergence of lineages A and D, we could say its inverse for the emergence of C and E, that is 1 - T -> C. I attempt that since A and D, are a sister clade with C and E, so we the only change there would be the first base. In the branching point behind A - D; C - E, we could propose a change that precede both clades, of course this is a guess and also it is arbitrary. We could say, 2 - T -> C, that is, in the second position, both couples A - D; C - E have a Citosyne.Therefore we would propose that the branch behind the bifurcation (BBB) following A-D; C-E has in its first two bases -CT-. From this point, we move to the branching point that precedes the clades E-H, and B-G. Let's propose that a change in the third base occurs, that goes from A to G. So we would have in BBB this sequence: -CTA- and in the point we are actually inferring CTG. Then, behind the clade F-H, let's propose a change in the fourth position, that goes from G - A. Following the above procedure, the change behind the B - G clade will be 4 - A to G. So for example in the clade A-D we will have this DNA sequence -TCA. In the clade C-E the DNA sequence will be -CCA-. In the clade F-H -CTGA- while in the clade B-H -CTGG-
pasagot ng matino salamatttttt
Answer:
???????????
Explanation:
You decide to create a composting bin for your house. While checking on it one day, you notice that the compost bin has started to smell like rotting eggs. You know that a successful compost bin should not smell like this. You take a sample of the pile and check for the presence of microorganisms under the microscope. You see that there are indeed microorganisms. Given this information, what should you do to resolve the smell of your compost?(1 point)
Creating a tent for the pile to shield it from the sun and heat will help resolve the smell.
Turning the pile to aerate the compost and expose it to oxygen will help resolve the smell.
Adding more “brown” materials to the pile to increase the amount of carbon will help resolve the smell.
Adding more “green” materials to the pile to increase the amount of nitrogen will help resolve the smell.
Answer:
Turning the pile to aerate the compost and expose it to oxygen will help resolve the smell
What is alternative source of energy .
Answer:
Alternative energy is best defined as the use of energy sources other than traditional fossil fuels, which are considered environmentally harmful and are in short supply. Fossil fuels consist of natural gas, coal, and oil. Currently, fossil fuels are the most used energy source to heat our homes and power our cars.
Explanation:
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1. Research 5 functions of the frontal lobe and explain them in detail with example.
2. Explain what you think might happen if someone damaged frontal lobe. You must mention the functions you have listed
Answer:
Solving a problem, memory, language, judgement, social and sexual behavior.
Explanation:
5 functions of the frontal lobe are given below:
1) it control the expression of emotions.
2) it is responsible in solving a problem.
3) it also control the memory and language.
4) it helps in judgement.
5) it is responsible for social and sexual behavior.
If frontal lobe is damaged, the individual may lose its memory, judgement ability. the social and sexual behavior is also disturbed. It may lose the ability to solve a problem and also have language problem.
please help me figure this out
What does geological time have to do with rocks?
Answer: Measuring the amounts of radioactive elements in rocks let scientists useabsolute dating to give ages to each chunk of time on the geologic time scale. For example, they are now able to state that the Jurassic began about 200 million years ago and that it lasted for about 55 million years.
Explanation:
question is the screenshot
The possibility that it would be red eyed would be 75%. Option D
What is the Punnet square?A Punnett square is a genetics tool used to forecast the potential allele combinations in the progeny of a cross between two individuals. It bears the name Reginald Punnett after the British geneticist who created it.
Each box in the Punnett square represents a potential combination of alleles from the parents, and it typically consists of a square grid with boxes. The top of the grid lists the alleles of one parent, and the left side lists the alleles of the other parent.
By the use of the Punnet square that we have shown in the image attached, we can see that the possibility of the white eyes would be 75%.
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An example of an animal found in the pelagic zone is?
Octopus
Sand dollar
Crab
Striped bass
Answer:
Striped Bass
Explanation:
what is uropoiesis?
Answer:
The production and excrection of urine
Answer:
The production and excretion or urine.
Two pea plants that are heterozygous for both pea color and shape are crossed. What is the expected genotype ratio of their offspring
Answer: 3:1
Explanation:
Select terms from the lists to complete the sentence.
The model predicts that the atmosphere will experience a net
approximately
PgC/year.
in the amount of carbon flow of
The model predicts that the atmosphere will experience a net increase of approximately 1 PgC/year in the amount of carbon flow.
What does the statement mean?Given the prevailing situation it is clear that more carbon will enter than leave our atmosphere annually.
This increase in atmospheric carbon could significantly enhance levels of carbon dioxide- a known greenhouse gas responsible for exacerbating climate change. Carbon dioxide functions as a greenhouse gas, exhibiting the capacity to ensnare and retain heat within the Earth's atmosphere.
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Correct question:
Select terms from the lists to complete the sentence.
The model predicts that the atmosphere will experience a net --- of --- in the amount of carbon flow.
1. increase
2. PgC/year
3. PgC/year
How would you explain the key concepts for the CWA in less than two minutes?
Answer:
Explanation:
vPoint Source - a source of water discharged to surface water through a discrete point - generally through a pipe, ditch, or channel.
Nonpoint Source - Nonpoint sources, such as parking lots or athletic fields, discharge runoff water to groundwater or surface water; runoff does not come from a pipe, ditch, or channel. These sources may contain pollutants such as pesticides, motor oil, and soaps.
Navigable Waters of the United States For the purposes of the Clean Water Act, the term "navigable waters" includes:
all waters used in commerce, including groundwater;
all interstate waters including wetlands, mudflats, and sand-flats; and
all other waters such as lakes, rivers, streams, wetlands and sloughs.
EPA policy states, "The majority of facilities in the U.S. have the potential to discharge to navigable waters." The Supreme Court decision in (2006) requires the Army Corps of Engineers and the EPA to determine whether there is a "significant nexus" between a navigable waterway and an area a spill might affect. In June of 2007, EPA and the Army Corps of Engineers released provisional interpretive guidance regarding the "significant nexus” question. According to this guidance, the agencies will assert jurisdiction over traditional navigable waters, wetlands adjacent thereto, and relatively permanent tributaries thereof. The agencies will generally not assert jurisdiction over swales and ditches that lack routine water flow. Finally, the agencies will apply the "significant nexus" requirement and make a case-by-case, fact-specific analysis on impermanent tributaries and other wetlands.
Additional executive orders were issued 2015 in 2019. Under the 2019 proposal, traditional navigable waters, tributaries to those waters, certain ditches, certain lakes and ponds, impoundments of jurisdictional waters, and wetlands adjacent to jurisdictional waters would be federally regulated. It also details what are not "waters of the United States," such as features that only contain water during or in response to rainfall (e.g., ephemeral features); groundwater; many ditches, including most roadside or farm ditches; prior converted cropland; stormwater control features; and waste treatment systems.
Could the requirement for one or more NPDES Discharge Permit apply to my campus?
If your campus discharges pollutants directly to navigable waters of the United States through a point source, you must obtain an NPDES permit or redirect the flow of the waste.
Stormwater releases from certain activities require an NPDES permit. The most common activities on college campuses requiring NPDES permits for stormwater are construction activities disturbing more than 1 acre, hazardous waste storage areas operating under the Resource Conservation and Recovery Act permit system, steam-generating power plants, and airports. See Stormwater section below.
Regulations issued by local water authorities, or Publicly Owned Treatment Works (POTWs), not NPDES permits, govern discharges into sanitary sewer systems. See Sewer Use (POTW) section below for more information about requirements for using POTWs for commercial or industrial waste disposal.
What do I have to do related to NPDES Discharge Permits?
Determine where wastewater flows from buildings and processes on your campus. Any industrial or commercial operation (e.g., ice rink melt pits, floor drains, and vehicle wash stations) that discharge into a water of the United States may require an NPDES permit. If required, you must obtain such a permit from the appropriate regulatory agency, probably your state environmental agency.
French drains, dry wells, and septic system leach fields are different from point source discharges because they do not immediately affect surface water. Some state and federal environmental agencies manage these systems under the Underground Injection Control program, part of the Safe Drinking Water Act. See Safe Drinking Water Act for more information.
Details of NPDES
Name
KEV
Nar
EVOLUTION THINKET 9
Imagine a world
where dinosaurs still
Roam the Earth.
Explain In 3 quality
paragraphs how their
existence would
affect your life today.
"quality paragraph is 4-5 sentences
Me
P
--
Answer:
If dinosaurs still roamed the Earth today, my life would be drastically different. To begin with, my daily commute would look a lot different. Instead of cars, trains, and buses, I would likely have to hop on the back of a triceratops or a pterodactyl to get around. I would also have to make sure that I am aware of my surroundings at all times because I could easily become a snack for a hungry T-Rex.
On top of that, my living situation would be quite different. Instead of living in a typical house, I would have to live in a treehouse to avoid being eaten. Furthermore, I would have to be prepared to adapt to my environment as dinosaurs would be a constant presence in my everyday life.
In terms of my diet, it would be quite different as well. Instead of eating burgers and fries, I would have to find ways to hunt dinosaurs in order to have a balanced meal. This would require a lot of skill and would be a huge challenge for me. Additionally, I would have to be careful to only hunt certain species of dinosaurs as some could be very dangerous.
Overall, my life would look very different if dinosaurs still roamed the Earth today. From my transportation to my diet, almost everything in my life would need to be adjusted in order to survive in this new environment.
why can a wolf be considered both a secondary consumer and a tertiary consumer
Answer:
A wolf can be considered as both a secondary and primary consumer because they feed on both primary and primary and secondary consumers. As a secondary consumer, wolves can feed on plant eaters [primary consumers] such as elk which is an herbivore. As a tertiary consumer, wolf feed on secondary consumers such as deer.
hope this answer is correct .....
Explanation:
because wolves eat both 'plants' and flesh of animals
Environment: Clean Forest Phenotype Frequency Allele Frequency Genotype Frequency Environment: Polluted Forest Moths Released G1 G2 G3 G4 G5 Typica 490 186 148 114 77 40 Carbonaria 510 367 617 763 974 1331 Total 1000 553 765 877 1051 1371 Phenotype Frequency Color Initial Frequency Frequency G5 Typica Light 0.49 0.03 Carbonaria Dark 0.51 0.97 Allele Frequency Allele Initial Allele Frequency G5 Allele Frequency q d 0.70 0 p D 0.30 Genotype Frequency Moths Genotype Color Moths Released Initial Frequency Frequency G5 Number of Moths G5 q2 Typica dd Light 490 0.49 2pq Carbonaria Dd Dark 420 0.42 p2 Carbonaria DD Dark 90 0.09
The data shows a shift in moth populations in response to pollution, with a decrease in the Typica (light) phenotype and an increase in the Carbonaria (dark) phenotype, indicating natural selection and adaptation to the polluted environment.
The given data represents the phenotypic and genotypic frequencies of moths in two different environments: a clean forest and a polluted forest. The moths are categorized into two phenotypes: Typica (light) and Carbonaria (dark). The initial frequencies indicate the starting proportions of each phenotype and allele.
In the clean forest, the Typica phenotype has a frequency of 0.49, while Carbonaria has a frequency of 0.51. This suggests that the two phenotypes were initially present in approximately equal proportions. However, in the polluted forest, the frequencies have significantly changed. The Typica phenotype has decreased to a frequency of 0.03, while Carbonaria has increased to 0.97.
The allele frequencies indicate the frequencies of the two alleles, "q" and "p." The initial allele frequency of "q" is 0.70, indicating that the "d" allele was more common initially. The G5 allele frequency of "q" is 0, suggesting that the "d" allele has become very rare in the polluted forest.
The genotype frequencies provide information about the combinations of alleles in the moths. The G5 genotype frequencies for Typica are 2pq (light, heterozygous) and p^2 (light, homozygous). For Carbonaria, the G5 genotype frequency is p^2 (dark, homozygous).
Overall, the data indicates a significant shift in the moth populations in response to the pollution in the forest. The Carbonaria phenotype, which is better camouflaged in the polluted environment, has become more prevalent, while the Typica phenotype has decreased. This is a classic example of natural selection and adaptation in response to changes in the environment.
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PLEASE HELP ME ON BOTH QUESTIONS ASAP!!!!!!!!!
Answer:
the first one is A and the second one is either B or C, sorry I could not be more sure about my answer on that second one
Explanation:
Just trust me please
I need help please
Describe Earth's
early atmosphere
Answer: Earth's early atmosphere was formed mainly of gases that came from volcanoes and was also built up of methane, hydrogen sulfide and carbon dioxide.
Explanation:
what is the source of mold on bread
Answer:
Well, mold develops and grows eventually forming a colony due to spores landing on the bread and multiplying, hence growing the mold.
Where does mold on bread come from?
On bread, molds (many colonies of various sorts) develop from microscopic fungi that float in the atmosphere.
The fungus that causes mold develops as extremely little filaments called hyphae, which enable the fungus to float and be transported by the air. The hyphae spread by forming an apparent, hairy network when they land on bread or other organic materials. The color of the spores that develop on the end of the hyphae determines the color of the mold network .There are molds that grow as single-cell spores as opposed to mold that grows as multicellular hyphae with a spore at the end. They are known as yeast.
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Eddie
In the rainforest, there are deep and shallow flowers. Hummingbirds with short beaks are able to get nectar out of the shallow flowers, while hummingbirds with long beaks are able to get nectar from the deep flowers. Hummingbirds
with medium beaks struggle to get food from either flower and as a result, die earlier. What kind of selection is acting on beak length in humminbird
a . stabilizing selection
b . directional selection
c . disruptive selection
Answer:
b.directional selection
Answer:
The answer is B! ^^
Explanation:
differentiate between transpiration, exaporation and evapotranspiration
Transpiration refers to the process of water loss through the stomata of plants, evaporation is the process of a liquid turning into a gas, while evapotranspiration is the combination of both transpiration and evaporation and refers to the total water loss from a surface.
What is Transpiration?Transpiration is the process by which water is lost from a plant through small pores called stomata. This water loss can occur through evaporation from the surface of the leaves or stems and serves to regulate the temperature of the plant and maintain water balance.
Transpiration also plays a crucial role in the movement of water and nutrients from the roots to the leaves. It is an important aspect of the water cycle and helps to redistribute water and minerals throughout the plant.
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Write a three (3) paragragh response to this: "A realistic mutation that would greatly benefit the human
race would be..."
Describe the mutation or change and tell how it could happen and why it would be beneficial. The mutation must
be realistic and your response should be detailed, giving examples of the change(s) and whether it would all be
positive or if there could be negative situations, as well.
A potential realistic mutation that could greatly benefit the human race is an increased resistance to infectious diseases.
Realistic human mutationOne potential realistic mutation that could greatly benefit the human race is an increased resistance to infectious diseases. Such a mutation could occur through various mechanisms, including natural selection, genetic engineering, or epigenetic modifications.
This mutation would be beneficial because it would improve the health and well-being of individuals, reduce healthcare costs, and potentially prevent pandemics and global health crises. For example, a mutation that enhances the activity of immune cells or increases the expression of antimicrobial peptides could help individuals fight off infections more effectively and reduce the likelihood of spreading infectious diseases to others.
However, it is important to note that there could be potential negative consequences associated with this mutation. For instance, increased resistance to infectious diseases could lead to a reduction in the diversity of the human microbiome, which could have implications for overall health and immune function.
Additionally, it is possible that infectious agents could evolve in response to this mutation, potentially leading to the emergence of new and more virulent strains of pathogens. Therefore, it is important to consider the potential risks and benefits of any mutation carefully and to approach genetic engineering with caution.
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Most articles pass right through the atom, this means that most of the atom is
Most articles pass right through the atom, this means that most of the atom is an empty space.
What is an atom?An atom is described as a particle that consists of a nucleus of protons and neutrons surrounded by a cloud of electrons.
Protons and neutrons make up the core nucleus of an atom, which is encircled by an electron cloud. In relation to the size of the atom as a whole, the nucleus is exceedingly small.
As a result, the electrons surrounding the nucleus are the primary target of interactions when particles or even light pass through an atom. The majority of the atom's remaining space, which includes the nucleus, is vacant.
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Critically discuss THREE negative reasons why some peo people join protest action
Joining protest actions can be a way for individuals to express their grievances, advocate for change, or seek social justice. However, there are negative reasons that may motivate some people to join protest actions. Here are three of them, discussed from a critical perspective:
Mob Mentality and Herd Behavior: In some cases, people may join protest actions primarily due to a desire to belong or be part of a group.What is protest action?
A protest action refers to collective public demonstrations or activities where individuals or groups come together to voice their concerns, raise awareness, or advocate for specific social, political, or cultural issues.
Continuation of the discussion:
Opportunism and Bandwagoning: Protest actions often gain media attention and public support, and some individuals may join solely for personal gain or to exploit the situation for their own interests.Learn more about protest action on https://brainly.com/question/18059905
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Flatworms are a diverse group living in freshwater and marine habitats. Protonephridia are found in some species of flatworms. This organ is a series of tubes and pumps to get rid of excess water that enters the worm passively from the environment. Which group of flatworms (freshwater or marine) does your group think have the protonephridia system
Answer:
Freshwater
Explanation:
Protonephridia are made up of many flame cells. Flame cells are specialized excretory cell found in the simplest freshwater invertebrates like flatworms.
WITHOUT FURTHER ACTION TO PROTECT CORAL REEFS FROM THE
EFFECTS OF CLIMATE CHANGE AND OTHER ENVIRONMENTAL
THREATS, THE WORLD WILDLIFE FUND PROJECTS HOW MUCH OF
THE REEFS WOULD BE LOST BY 2033?
35%
25%
50%
60%
Answer:
I will say 60% or it can also be 25% lost