1/2 is the proportion of their sons expected to be g6pd. When your body doesn't produce enough glucose-6-phosphate dehydrogenase enzyme, a hereditary condition known as G6PD develops.
What is G6PD ?When your body doesn't produce enough glucose-6-phosphate dehydrogenase enzyme, a hereditary condition known as G6PD develops. Red blood cells are shielded from hazardous chemicals and assisted in their function by G6PD. Blood transfusions are necessary when hemolytic anaemia brought on by G6PD is life-threatening.A disorder in which certain medications, infections, or other stresses cause red blood cells to degrade. An genetic disorder called glucose-6-phosphate dehydrogenase deficiency typically affects men. People of African and Mediterranean origin are more likely to experience it.Infections, stress, fava beans, aspirin, and other medications are triggers. Fever, black urine, back and stomach pain, weariness, and pale skin are symptoms that can be brought on. The majority of people heal on their own in a few days. However, because patients run the risk of having recurrent episodes, avoiding triggers is essential.To learn more about G6PD refer :
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dna and mrna synthesis proceed in a 5' to 3' direction. what do 5' and 3' refer to? group of answer choices the number of hydroxyl groups attached the position of the phosphate and nitrogen bases the position of a carbon atom in the sugar backbone the number of carbons in the nitrogen base
The 5' and 3' refer to c) the position of a carbon atom in the sugar backbone.
DNA and mRNA are made from nucleotide bases, a phosphate group, and a sugar backbone.
There are two strands of DNA, and one of them is in the 5' to 3' direction. The other is in the 3' to 5' direction. This means that the position of the carbon that is free in the sugar backbones is either 5' for one strand and 3' for the other strand.
However, replication occurs only in the 5' to 3' direction. This is because the DNA polymerase can work only in this direction. For the other strand, referred to as the lagging strand, Okazaki fragments are formed.
Your question will correctly be written as:
DNA and mRNA synthesis proceed in a 5' to 3' direction. what do 5' and 3' refer to? group of answer choices
a) the number of hydroxyl groups attached
b)the position of the phosphate and nitrogen bases
c) the position of a carbon atom in the sugar backbone
d) the number of carbons in the nitrogen base
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when people have a bacterial infection, pyrogens are often released to maintain elevated body temperature, which helps kill the bacteria causing the infection. which answer option is the most likely action of pyrogens on thermoregulation?
The most likely action of pyrogens on thermoregulation is that these substances will reset the set point of the sensors and cause the death of the bacteria.
Endogenous pyrogens are substances that are released into the blood when phagocytic leukocytes kill a bacterium. The hypothalamus receives these pyrogens and the thermostat (sensors) is reset. This enables the condition known as a fever, in which the body's temperature rises. A nutrient required by bacteria is reduced as a result of iron becoming more conserved when body temperature rises.
The pathogen may also be killed by heat itself. The hypothalamus regulates body temperature through reflexes that result in sweating and vasodilation when the body is too warm or shivering and vasoconstriction when the body is too cold. It responds to bodily substances.
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Claims. Evidence Reasoning How
is the structure of a unicellular organism
different than the structure of a
multicellular organism? How does this affect
function? Summarize evidence to support
your claim and explain your reasoning.
A multicellular organism is made up of numerous cells that cooperate, whereas a unicellular organism only contains one cell. Each function must be managed by a single cell, whereas in multicellular organisms.
What is in a unicellular organism?Any living creature only with one cell, which performs all crucial body functions like metabolism, waste, and fertilization, is referred to as a "unicellular organism." Unicellular organisms can either be prokaryotes or eukaryotes. Unicellular organisms include bacteria, archaea, unicellular fungi, and unicellular protists.
How is it important to unicellular organisms?Cell division in unicellular organisms is crucial only for reproduction. They divide their cells through a process called mitosis to create their daughter cells. Cell division is crucial for the development of new cells and reproduction in multicellular animals.
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how many days does it take for the entire epithelial population of the small intestines to be replaced
The whole epithelial populace is replaced about every four to 7 days.
The small gut consists of 3 elements duodenum jejunum and ileum. It enables to similarly digest food popping out of the stomach. It absorbs nutrients and water from meals and makes them to be had to the frame. The small gut is a part of the digestive device. A healthful bowel movement usually consists of frivolously formed, brown stools that are not unfastened, difficult, or painful.
There's no ideal wide variety of epithelial population moves for all and sundry. The common healthy variety is 1-3 bowel movements consistent with day or simply 3 bowel moves per week. The liver is responsible for the manufacturing of most of these clotting factors. a number of those elements require nutrition k for synthesis, and the liver produces bile salts which might be essential for the intestine to soak up this fats-soluble diet.
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what is not a mutagen? a. chemicals in tobacco smoke b. fungal toxins c. all of the above are mutagens d. ultraviolet light e. industrial pollution
These substances are all mutagens.
What purposes do mutagens serve?Many mutagens are employed to kill cancer cells because they are very harmful to growing cells. Chemotherapy may involve the use of intercalating drugs like daunorubicin and doxorubicin as well as alkylating agents like cyclophosphamide and cisplatin.
What consequences do mutagens have?Additionally, lesions that increase the number of single-stranded regions in the genome may be introduced by mutagens that rapidly degrade DNA, leading to even higher frequencies of recombination.
How do mutagens cause harm?A mutagen is a substance that can permanently alter cells' genetic material, perhaps resulting in heritable genetic harm or cancer.
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Alexis is trying to determine a victim's time of death. What is the LEAST effective method she can use for determining their time of death?
O A
О в.
O C.
OD.
rigor mortis
livor mortis
algor mortis
indicative acts
Time of death is determined by the rigor mortis method, which is the most effective forensic method hence option a is correct.
What is an effective method to determine the time of death?
This stiffening process, known as Rigor Mortis, has a generally known recurrence period and may thus be used to determine the time of death.
In general, if the corpse is warm and there is no rigidity, death happened within the last 3 hours. The death happened 3-8 hours earlier if the corpse is warm and rigid.
If the body is discovered before the body temperature has reached equilibrium with the ambient temperature, forensic experts can determine the time of death by measuring the body's core temperature.
Therefore rigor mortis is the best effective method to determine the time of death, hence option a is correct.
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glucose-6-phosphate dehydrogenase deficiency (g6pd) is inherited as an x-linked recessive allele in humans. a woman whose father suffered from g6pd marries a normal man. what proportion of their sons is expected to be g6pd?
0.25 of their sons is expected to be g6pd.
Because the sons will inherit only one of their mother's two X chromosomes. The father is normal, so he will pass on a normal allele. The mother has an X-linked recessive allele, so she can only pass on that allele to her daughters, who will not have G6PD deficiency.
The sons will have a 50% chance of inheriting the X chromosome from their mother—that is, they'll get either the normal or G6PD-deficient allele from her. If they get the normal allele from her, then they'll be fine and won't be affected by G6PD deficiency. If they get the G6PD-deficient allele from her, then they'll have G6PD deficiency themselves and be affected by it.
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The ability to simultaneously recognize the color, shape, size, and speed of an oncoming automobile best illustrates.
Answer:
The ability to simultaneously recognize the color, shape, size, and speed of an oncoming automobile best illustrates: parallel processing.
Explanation:
in a dietary deficiency of folate, there are decreasing numbers of mature red blood cells to carry the oxygen from the lungs to the tissues. this condition is known as .
This condition is called as megaloblastic anemia.
Deficiency disorder is a ailment caused by a lack of critical dietary factors and specially a vitamin or mineral. A balanced food plan specializes in supplying the body with all the vitamins it requires. It accommodates macronutrients like protein, carbohydrates, and fats at the side of micronutrients like vitamins and minerals.
Diet deficiency anemia is a loss of healthful red blood cells due to decrease than typical quantities of nutrition B-12 and folate. this could appear in case you don't devour sufficient ingredients containing nutrition B-12 and folate, or in case your frame has hassle soaking up or processing these nutrients.
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If an enzyme is added to a solution where its substrate and product are in equilibrium, what will occur?.
Adding an enzyme to a solution in which its product and substrate are in equilibrium The system's free energy will alter.
Where can you find enzymes?Digressionary enzymes are produced by your pancreas, small intestine, and stomach. The "powerhouse" of digestion's enzymes is actually the pancreas. The most crucial digestive enzymes, which break down proteins, lipids, and carbs, are produced by it.
How countless enzymes are there in a human body?In our bodies, every chemical action and reaction requires a certain amount of energy, which is carried by enzymes, which are protein molecules. The human cell has about 1300 different types of enzymes. Digestive enzymes from natural sources They can help your digestion if you eat them. Honey, particularly raw honey, contains amylase and protease.
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ellie may, a mother with type b blood, has a child with type o blood. she claims that jethro, who has type a blood, is the father. he claims that he cannot possibly be the father. further, blood tests ordered by maury povich reveal that the father is homozygous. judge joe brown rules that:
In addition, Maury povich's blood tests show that the father is homozygous. The Jerry Springer show should be called, according to judge Joe Brown, who agrees with Jethro.
What is often examined during a blood test?Blood tests are frequently performed. Find out how well-functioning organs like your kidneys, liver, heart, or thyroid are, as directed by healthcare professionals. aid in the diagnosis of illnesses like HIV/AIDS, diabetes, coronary heart disease, and cancer.
What activities are prohibited prior to a blood test?Avoiding certain meals and beverages, such as alcohol, grilled meats, and herbal tea. avoiding overindulging the day before a test. not a smoker. avoiding certain actions, such as engaging in sexual activity or hard exercise.
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which human activity is responsible for overloading the nitrogen and phosphorus cycles? overhunting of wild game species clearcutting of forests for lumber runoff of fertilizer from agricultural areas increased uptake of water in urban areas
The human activity which is responsible for overloading the nitrogen and phosphorus cycles is runoff of fertilizer from agricultural areas.
What is fertilizer?In general, fertilizers are described as "any item, organic or inorganic, natural or manufactured, which supplies one or more of the chemical elements essential for the growth of the plant." The three fundamental plant nutrients—nitrogen, phosphorus, and potassium—are included in the majority of fertilizers used in agriculture.
What is the use of fertilizer in agriculture?Fertilizers are supplementary materials that are given to the crops to boost productivity. Farmers utilize these on a regular basis to boost crop productivity. Fertilizers give plants the nutrients potassium, phosphorus, and nitrogen so they can grow larger, more quickly, and generate more food. Every living thing on Earth needs nutrients to develop, but nitrogen in particular is crucial.
Thus from the above conclusion we can say that the human activity which is responsible for overloading the nitrogen and phosphorus cycles is runoff of fertilizer from agricultural areas.
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a country with an age distribution graph in the shape of an inverted (upside down) triangle, (with the point facing downward) would be experiencing what in the years ahead: a. rapid future population growth b. declining future population growth c. no change in future population growth d. no prediction can be made from these types of graphs
A country with an age distribution graph in the shape of an inverted (upside down) triangle, (with would be experiencing declining future population growth.
The term "diminishing" refers to a graph with an inverted "pyramid" or triangle shape age structure, which shows a population that is getting smaller. The population will decrease since the generations in reproductive years have given birth to a generation that is smaller than themselves. With its broad top and noticeably narrower base, the inverted triangle shape demonstrates all of this. Therefore, option B marks the right choice.
Comparing differences between a region's male and female populations can be done using a population pyramid. Additionally, they display the total number of dependents (children and, occasionally, elderly people) as well as the demographic makeup of the population at any given time.
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After ingestion, the first type of macromolecule to be worked on by enzymes in the human digestive system is.
Enzymes with in human digestive system begin working with carbohydrates as soon as they are ingested as the first form of macromolecule.
What happens after digestion?Chewing triggers the start of digestion, which is completed there in small intestine. Large food molecules split into smaller ones as they move through the GI tract and combine with digestive fluids.
Why is proper digestion important?To be converted into nutrients that body can use for energy, development, and cell repair, food must first be digested. Nutrients from food and drink need to be broken up into smaller molecules before being absorbed by the circulation and sent to the cells around the body.
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Use this model to describe unobservable relationships
I don't completely comprehend what you are asking for, but I will try my best to answer your question. First, we can notice that there are two bonds between Adenine and Thymine, while there are 3 bonds between Guanine and Cytosine. This suggests that bonded Guanine and Cytosine pairs are stronger than bonded Adenine and Thymine pairs. Additionally, we can conclude that Adenine and Cytosine are both purines, as in the model, both bases are depicted with a 6-membered ring fused to a 5-membered ring, which is what defines a purine. On the other hand, Thymine and Cytosine are both pyrimidines since, in the model, they are depicted with only one 6-membered ring, which is what defines a pyrimidine.
a piece of a polypeptide is folded so that a serine side chain is located on the surface of the polypeptide. describe the effect on the protein of changing that amino acid to isoleucine.
The side chain of a serine molecule has an aliphatic -OH, a polar bond that may create an H-bond with a water molecule. A partial charge intermolecular contact is called an H-bond.
Only once -OH is deprotonated may serine form a covalent connection with another substrate in the enzyme pocket.
The side chain of isoleucine is aliphatic, nonpolar, and hydrophobic. It can only engage in Van der Waals interaction with proteins. Proteins must contain polar aminoacids on their surface that may interact with water in order to be soluble in an aqueous environment.
Serine's side chain is hence polar and hydrophilic. With the watery environment, intermolecular attraction would develop in molecule. The hydrophobic, nonpolar side chain of isoleucine. The watery environment would resist it. Since the isoleucine side chain prefers to remain on the inner of the protein, this modification may modify the protein's overall structure.
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Can somebody please help with this?
Wisconsin Fast Plants are a rapid-cycling form of the species Brassica rapa, a member of the mustard family Cruciferae. They were developed at the University of Wisconsin-Madison by Professor Paul H. Williams to be used by research scientist in the laboratory and now used for hands on investigations throughout the world. In this investigation, two Wisconsin Fast Plants are crossed with the height traits (tall – dominant or dwarf – recessive) and pigment trait (dominant – anthocynanin) and recessive – anthocyanin-less). The F1 generation consists of the results below.
(a) Predict the P generation genotypes and justify your prediction
(b) Perform a chi-square test on the data for the F1 generation. Identify the chi-square value and specify the null hypothesis you are testing.
(c) Explain whether your hypothesis is supported by the chi-square test and justify your explanations.
(d) Predict how a mutation to the traits would affect the F2 generation.
a) The Parent (P) Generation genotype is heterozygous dominant and homozygous recessive.
b) The Chi-Square value is 0.2888; while the null hypothesis is "there is no significant distinction between the observed value and desired value, that is the genes are unlinked."
c) As a result of the Chi-Square results there is no significant difference between our actual and anticipated values, and the genes are not connected. As a result, the chi-square test supports our hypothesis.
d) A mutation in "[tex]F[/tex]1" traits will sufficiently modify the heterozygous dominant genotype in the "[tex]F[/tex]2" generation.
How can you arrive at the above results?a) First, note that A chi-square test is a type of statistical test that is often used in hypothesis testing. This table is used in genetics to determine whether there is a statistical difference between the predicted and actual values. This is also known as the Goodness of Fit test.
Hence, to forecast the parental genotype or P offspring genotype, we must first know the cross-ratio.
The rations are given as follows:
96/372 : 94/372 : 93/372 : 89/372; this give us
⇒ (0.26):(0.25):(0.25):(0.24)
Looking at the above ratios, we can tell that they are approximate:
1:1:1:1
Whenever a heterozygous genotype is crossed with a homzygous recessive, the ratio is 1:1:1:1. As a result, TT stands for tall, TT stands for short, PP stands for pigment, and PP stands for anthocyanin-less.
The parent's genotype will then be TtPp (Tall, pigment) and ttpp (Tall, pigment) (short, anthocyanin-less). That is, the paternal genotype is heterozygous recessive and heterozygous dominant.
c) In order to explain whether or not the Hypothesis is supported by the chi-square test and justify your explanations, we must compare the degree of freedom with the Chi-Square value with the help of a Squared Distribution Table.
The degree of freedom is equal to n-1, where n is the number of classes. Because there are four classes in this case, the degree of freedom is three.
The probability 0.05 or 5% is considered as a crucial value in statistics. Examine the chi-square distribution table with p = 0.05 and degree of freedom = 3. The answer is 7.8.
If our estimated value is less than this number, our null hypothesis will be accepted; otherwise, we will reject the null hypothesis. Because our chi-square value is 0.288, which is less than 7.8 in the chi-square distribution table, the null hypothesis is accepted.
As a result, there is no significant difference between our actual and anticipated values, and the genes are not connected. As a result, the chi-square test supports our hypothesis.
d) The "[tex]F[/tex]1" generation is the first filial generation of Offspring from the parents, whereas the "[tex]F[/tex]2" generation is the second filial generation of offspring produced via the congenital of "[tex]F[/tex]1" individuals.
As a result, a mutation in "[tex]F[/tex]1" features modifies the heterozygous dominant genotype sufficiently in the "[tex]F[/tex]2" generation.
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What is the advantage of viewing a specimen at 40x as opposed to at 400x magnification?.
The benefit of viewing a specimen at 40x in preference to at 400x magnification is accelerated discipline of view and offer extra information about the specimen.
Specimen is described as a unmarried plant or animal this is investigated through professionals as an instance of a particular species or type.
It also can be described as a issue or character used to symbolize an entire mass or number; a feature plant, mineral, issue, animal, etc. a part of a chemical or fabric for checking out or research: a tissue sample; a urine sample. a particular or strange form of character.
Thus, the benefit of viewing a specimen at 40x in preference to at 400x magnification is accelerated discipline of view and offer extra information about the specimen.
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in the gapc gene (a.k.a. gapc), how many exons are not amplified by the primers used in the first round of pcr?
A minimum of two exons aren't amplified in the initial PcR cycle.
During an important procedure known as glycol illnesses, G A p C G is heated. I feel. The capitalization of black analysis and camps was appropriate. The damaging relationships between G A P C, daily hide, and cholesterol. Represents Venice Cyril D hiding the phosphate and Venice g ease hydrogen. Additionally, this gene is psychosomatic.
What about exons?The regions of a gene called exons code for proteins.Amino acids are coded for in exons, which are found in mRNA.Distinct protein domains are encoded by different exons.The domains might be encoded by a single exon or by splicing together many exons.A gene's introns and exons are nucleotide sequences.As RNA matures, introns are cut out via RNA splicing, which suggests that they're not expressed in the resulting messenger RNA (mRNA) product.In contrast, exons still are chemically sure to one another to produce mature mRNA.Exons are protein-coding regions of an RNA transcript or the DNA that encodes it that are translated.Introns are intervening segments of DNA that do not code for proteins and can be used to divide exons.The key thing to remain in mind is that codons are characteristics of RNA, whereas exons and introns are characteristics of DNA.Otherwise, there is a risk that the functions of DNA and RNA in the Central Dogma ("DNA creates RNA makes Protein") may be misunderstood.Homologous sequences within the opposite type of nucleic need to be referred to by a different name.Learn more about exons here:
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Today, some mountain ranges are rising due to tectonic plates colliding, and earthquakes are sometimes caused by tectonic plates sliding against each other. During Earth's past,
A.
the tectonic plates were not moving.
B.
similar tectonic movements were occurring.
C.
mountains were rising, but there were no earthquakes.
D.
there were earthquakes, but no mountains were rising.
The past of the earth was like that there were Similar tectonic movements were occurring.
What is tectonic plates?
Plate tectonics is used to define that, there is a widely held scientific idea that the Earth's lithosphere is made up of a series of huge tectonic plates that have been moving slowly since around 3.4 billion years ago.
Tectonic plates clashing now is causing some mountain ranges to rise, and earthquakes are sometimes produced by tectonic plates moving against each other. Similar tectonic motions were present in the past of the world.
Therefore, option D is correct.
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How can the increase demand on water affect water quality
Answer: As warmer temperatures increase the demand for water, the amount of freshwater available may decline and increase competition for water resources in some areas.
Answer:
As the demand for water increases, People will first of all opt for clean water, for better health, e. t.c. But as this demand increases, the source of clean water decreases affecting the purity of water
where are t and b lymphocytes located in lymph nodes, and how is their anatomic separation maintained?
Lymphocytes are divided into two main types, namely B lymphocytes and T lymphocytes. B lymphocytes make antibodies, and T lymphocytes help kill tumor cells and help control the immune response.
Both originate from stem cells in the bone marrow and initially have a similar appearance.
LymphocytesLymphocytes are a type of immune cell made in the bone marrow and found in blood and lymph tissue. B cells are so named because they develop in the Bursa of Fabricus (in birds) or in the bone marrow (in humans). While T cells are so named because they develop in the thymus.
Some lymphocytes migrate to the thymus, where they mature into T cells and others remain in the bone marrow, where they eventually develop into B cells.
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some crocodiles and turtles have an exceptional ability to divert blood flow through the heart when they are diving and no longer breathing and exchanging gases. what most likely occurs when these animals dive?
When diving, blood moves to the rest of the body to support physical processes rather than the lungs.
Their left aorta emerges from the right ventricle, and their right aorta from the left. A valve that resembles a pair of cog-teeth and is located at the top of the right ventricle, which the animals can actively regulate to reroute blood flow, adds to the anatomical intricacy.
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how does blocking retrograde axoplasmic transport in an axon affect the activity of a neuron?
The soma becomes unable to respond to changes in the distal end of the axon this way axon affects the activity of a neuron.
Retrograde trophic assistance for growing neurons can interfere with their growth and frequently results in their death. Here, we describe the results of removing retrograde support from the isthmo-optic projection in chick embryos by preventing axoplasmic transport at the terminal sections of the axons, an action that is known to kill the isthmo-optic neurons in the long run. Neuron survival in the isthmo-optic nucleus was reduced even more swiftly. This unique effect persisted at 6 and 9 h after injection, but at longer survival durations, as was expected, the number of dead neurons rose significantly above control levels. According to our understanding of the temporary decrease in neuronal death, retrograde trophic signals contain both life- and death-promoting elements, with the former acting more quickly in this system.
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On the ventral surface of the brain, you can observe the optic nerves and chiasma, the pituitary gland, and the mammillary bodies. These externally visible structures form the floor of the __________.
On the ventral surface of the brain, you can observe the optic nerves and chiasma, the pituitary gland, and the mammillary bodies. These externally visible structures form the floor of the diencephalon.
Where is the exact location of the diencephalon?Diencephalon is one part that is located behind the forebrain, which part includes the thalamus, hypothalamus, and also the epithalamus.The diencephalon itself is one of the main parts of our brain. Its location is quite hidden and its size is quite small, the exact location of this diencephalon is between the hemispheres of the brain and just above the brainstem.Despite its small size, the diencephalon plays an important role in brain health and body function because the diencephalon is the part of the brain that sends signals and cooperates with our bodies.Some of the things controlled by the diencephalon, they are senses (hearing, seeing, smelling, feeling), body movements, motor functions, homeostasis, touch perception and so on.Learn moreMaterial about part of the diencephalon here: brainly.com/question/25750081
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due to a lack of glucose, a cell has been performing lipid metabolism for several hours. suddenly, all the lipid in the environment is eliminated and is replaced with glucose. what is the fastest way that the cell can adjust to this change?
Inactivating the proteins associated with lipid metabolism is the fastest way that the cell can adjust to this change.
What is lipid metabolism?
Lipid metabolism describes the synthesis and decomposition of lipids within cells. It involves the production of structural and functional lipids, such as those required for the development of cell membranes, as well as the storage or breakdown of fats for energy. These fats may be naturally consumed by animals from diet or may be produced by the liver.
Lipid metabolism is crucial for controlling the ageing process.
Age-related disorders and ageing are modulated by lipid -related therapies in a variety of model species, according to experimental evidence that lipid metabolism is altered during ageing.
Therefore, Inactivating the proteins associated with lipid metabolism is the fastest way that the cell can adjust to this change.
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A sequence of biotic changes that regenerate or create an ecological community is known as?.
A sequence of biotic changes that regenerate or create an ecological community is known as Succession.
Ecological succession is the gradual evolution of a community's constituent species over time. The process by which a region's species and habitat mix evolves over time is called ecological succession. These communities gradually replace one another until a "climax community" is attained, such as a mature forest, or until a disruption, such as a fire, happens. A key idea in ecology is ecological succession.
Nudation, Invasion, Competition and Co-action, Reaction, and Climax or Stabilization are the five stages of succession. At the same location, a succession of biotic communities organically emerge one after another until the Climax stage is reached. In their early stages, biotic communities evolve slowly.
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Why does the process shown in the diagram only occur in plants and certain bacteria and protists?
This process only occur in plants and certain bacteria and protists because plants have chloroplasts with pigment that absorbs sunlight, while humans do not. So the correct option is C. plants have chloroplasts with pigment that absorbs sunlight, while humans do not.
What are chloroplasts?Chloroplasts are organelles found in plants, bacteria and protists which are responsible for photosynthesis. This process will convert light energy into chemical energy such as chlorophyll.
After forming chlorophyll, it absorbs light to be able to carry out photosynthesis and to be able to form ATP and reducing molecules such as NADPH to be able to give energy to the cell to form organic molecules to be able to feed.
Therefore, we can confirm that the correct option is C. plants have chloroplasts with pigment that absorbs sunlight, while humans do not.
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which of the following genetics terms is correctly matched with its definition? group of answer choices alleles: gene variants that arise by mutation and exist on relatively the same parts of homologous chromosomes genotype: the observable traits expressed by an organism phenotype: useful for determining genetic probabilities of fertilization events heterozygous: when a diploid organism gets two identical alleles of a gene
Match the genetic word to the associated trait: Homozygous. A gene with two identical alleles.
What types of qualities are examples?Character traits includes things like sincerity, loyalty, charity, and restlessness. These are only a few of the numerous character traits that could aid in your understanding of yourself or those around you.
What character feature is common?All port, any of a variety of per-sistent traits that chara-cterize or dictate a person's conduct in a range of circumstances, are shared by many people, and are displayed in a comparable man-ner.
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an entity with two identical or similar alleles for a certain trait. Heterozygous. a living thing with two distinct alleles for the same characteristic. Phenotype.
What in biology is an organism?An organism refers to just a living object with a organized structure, could react to stimuli, procreate, develop, adapt, etc maintain homeostasis. Therefore, every mammal, plant, fungus, protist, bacterial, or archaeon found on Earth would be considered an organism.
what organism it unicellular ?Living things with only one cell, which performs all the functions, are referred to as unicellular organisms. Amoeba, Unicellular, bacteria, and Cyanobacteria are a few examples.
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Carbon is able to bond…
A. many elements.
B. only with non-metal elements.
C. only with CHONPS elements and no others.