Answer:
small intestine
Explanation:
as the food enters the stomach, very strong acids and enzymes break the food further into various nutrients such as carbohydrates, proteins, and fatty acids. hence, the digestion of food is partially complete and then it is pushed into the small intestine where the assimilation of nutrients occurs.
In human bodies, assimilation takes place in the small intestine.
In biology, assimilation is the process by which living things incorporate nutrients from various external sources into their bodies and use them to meet their metabolic needs for energy.
Assimilation also refers to the process of absorbing nutrients from meals through the intestinal tract, including vitamins, minerals, and other substances.
Assimilation is frequently used to refer to the process of breaking down complex chemicals found in meals into smaller, more manageable units and then moving those units to locations in the live body where they are needed, like active cells.
In comparison to plants and insects, humans have a very complicated digestive system that allows them to absorb food and water. The digestive process begins in the stomach when food is introduced into the mouth.
The larger food particles are digested into smaller ones that are carried into cells, and hydrochloric acid kills the pathogenic germs. Following the stomach, the food is propelled into the small intestine, where it is combined with pancreatic and liver juices.
After the food has been adequately digested, the nutrients are subsequently given to the body's numerous cells, where they are needed for energy. The leftover mesh is then sent to the big intestine after the distribution of nutrients.
Therefore, it may be deduced that assimilation takes place in the small intestine in human beings.
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Which laboratory activity involves a chemical change?
leaving a copper penny in vinegar until it turns green
boiling saltwater for several minutes until only solid salt remains
extracting iron filings from a sand mixture using a magnet
crushing a rock with a hammer to extract mineral deposits
Leaving a copper penny in vinegar until it turns green is a laboratory activity involves a chemical change.
What do you understand by chemical changes?Chemical synthesis, or, alternatively, chemical breakdown into two or more separate molecules, occurs when one material reacts with another to create a new substance. These processes are referred to as chemical reactions, and they are typically irreversible barring additional chemical reactions. Exothermic processes are those that generate heat; endothermic reactions, on the other hand, are those that may need heat in order to proceed. The science of chemistry places a lot of emphasis on comprehending chemical changes. Atoms are rearrange during chemical reactions, and as new products are produced, the reaction is accompanied by an energy change.
Thus from above conclusion we can say that leaving a copper penny in vinegar until it turns green is a laboratory activity involves a chemical change.
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In corn plants, normal height (h) is dominant over short height (h). Complete a hybrid (heterozygous) cross.
A mating experiment between two organisms that are equally hybrid for two traits is referred to as a dihybrid cross.
When two heterozygotes are crossed, the anticipated genotype ratio is 1 (homozygous dominant): 2 (heterozygous): 1. (homozygous recessive). When a phenotypic ratio of 2:1 is seen, a deadly allele is presumably present.
H - Height in inches
short height, h
Heterozygous for H
Heterozygotes would be involved in the cross Hh x Hh.
Hh x Hh
I pronounce: HH Hh Hh hh
Considering that H trumps h;
Both HH and Hh would produce normal-height phenotypes.
A short height will arise from the hh trait.
Thus;
3/4 or 75% of the time, a cross will result in a genotype with normal height.
25% or 1/4 of the time, the cross will result in a short height characteristic.
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tropical rainforests have high species richness, but low density. in deciduous forests the pattern is the opposite. which of the statements is not a plausible explanation for this pattern?
There are fewer species in temperate regions because the number of trees per hectare is lower than in tropical rainforests.
What is deciduous forests and tropical rainforests ?Due to the trees in tropical deciduous forests losing their leaves in the dry season and growing new ones in the monsoon, these forests are also known as monsoon forests.
A deciduous forest is distinguished by its deciduous trees and plants, which lose their leaves every year, typically in the winter. Since the plants' height and shape vary, forests are typically very dense. Deciduous refers to plants and trees that have a tendency to fall, from which the name derives.
The tropics, or between latitudes of 23.5°N (the Tropic of Cancer) and 23.5°S (the Tropic of Capricorn), is where tropical rainforests are primarily found. On the islands of New Guinea, Australia, Central and South America, western and central Africa, western India, and Southeast Asia, there are tropical rainforests.
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The process of
photosynthesis
occurs when
plants take in
carbon dioxide
and water to
create which
molecule?
A. Sodium chloride
B. Glucose
C. Enzymes
Answer:
B. Glucose
Explanation:
hope this helps
In 1990 the incidence rate for lung cancer in males in Great Britain was 150.8 per 100 000 and in 2000 it was 115.7 per 100 000. Calculate the percentage change in the incidence rate between 1990 and 2000. Give your answer to 1 decimal place.
The percentage change in the incidence rate between 1990 and 2000 is 23.3%.
How to calculate the percentage?A percentage is a value or ratio that may be stated as a fraction of 100. If we need to calculate a percentage of a number, we should divide it's entirety and then multiply it by 100.
From the information, in 1990 the incidence rate for lung cancer in males in Great Britain was 150.8 per 100 000 and in 2000 it was 115.7 per 100 000.
The percentage change in the incidence rate between 1990 and 2000 will be:
= (150.8 - 115.7) / 150.8 × 100
= 35.1 / 150.8 × 100
= 23.3%
In this case, the percentage change is 23.3%.
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How are energy carriers that are made during the first two steps of cellular
respiration used by the last step in the process?
OA. To accept oxygen molecules from electron transport chains
O B. To deliver electrons to electron transport chains
O
C. To regenerate the starting material of the Krebs cycle
O D. To make molecules of ATP by passing through ATP synthase
Energy carriers that are made during the first two steps of cellular
respiration used by the last step in the process To deliver electrons to electron transport chains
Explain cellular respiration.
Through the process of cellular respiration, which involves combining oxygen with food molecules, organisms direct the chemical energy contained in these substances toward life-sustaining processes while excreting carbon dioxide and water as waste, they are able to maintain their own existence. Adenosine triphosphate (ATP), an energy-rich compound that absorbs the chemical energy released from the breakdown of food molecules and releases it to power other cellular processes, is one goal of the degradation of foodstuffs.
The glycolysis , tricarboxylic acid cycle (TCA cycle and oxidative phosphorylation can be considered the three primary metabolic stages or steps that make up the entire process.
A glucose molecule is broken down into two pyruvate (pyruvic acid) molecules during a process known as glycolysis, which occurs in the majority of cells. Glycolysis produces energy that is captured and stored in ATP as it breaks down glucose and other organic fuel molecules from carbohydrates, fats, and proteins. The substance nicotinamide adenine dinucleotide (NAD+) is additionally changed into NADH during this process.
The breakdown, or catabolism, of organic fuel molecules is largely regulated by the TCA cycle, also referred to as the Krebs or citric acid cycle. The compounds NAD+ and flavin adenine dinucleotide (FAD), however, are responsible for capturing the majority of the energy produced by the TCA cycle and turning it into ATP.
Each pair of hydrogen atoms taken from NADH and FADH2 during the oxidative phosphorylation stage contributes a pair of electrons that, when used by a succession of iron-containing hemoproteins called cytochromes, finally convert one atom of oxygen to produce water. The sequence of steps by which electrons travel to oxygen enables a steady reduction in the electrons' energy. Sometimes referred to as the electron transport chain, this phase of the oxidative phosphorylation process.
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Alculate NEP before the outbreak and identify the most appropriate conclusion about whether the forest was a carbon sink or a carbon source. Calculate NEP before the outbreak and identify the most appropriate conclusion about whether the forest was a carbon sink or a carbon source. Before the outbreak, the forest was a carbon sink because NEP was less than 0. Before the outbreak, the forest was a carbon sink because NEP was greater than 0. Before the outbreak, the forest was a carbon source because NEP was less than 0. Before the outbreak, the forest was a carbon source because NEP was greater than 0
Because NEP was higher than 0 before to the outbreak, the forest served as a carbon sink.
What is Net ecosystem production (NEP)?The total amount of organic carbon in an ecosystem that is available for storage, export as organic carbon, or non biological oxidation to carbon dioxide through fire or ultraviolet oxidation is represented by net ecosystem production (NEP), which is defined as the difference between gross primary production and total ecosystem respiration.
Comparing the total output and total respiration of all the creatures in an ecosystem
NEP = GPP-(Ra + Rh)
R = Autotrophic respiration
Rh stands for hetertrophic respiration.
NEP can be either good or bad.
The forest is a carbon sink since its NEP is larger than zero, just as it was before the outbreak because there will be some or more NEP. After the outbreak, however, the forest system will be disturbed, NEP will be less than zero, and the forest will turn into a carbon source.
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3. can be triggered by airborne substances, foods or common bacteria and viruses
6. spasms can cause wheezing
8. excess mucus in the body
3. Airborne diseases are illnesses spread by tiny pathogens in the air. These can be bacteria, fungi, or viruses, but they are all transmitted through airborne contact. In most cases, an airborne disease is contracted when someone breathes in infected air.
6. If you have a respiratory problem, such as asthma, these muscles can contract and narrow your airway. When that happens, it's called a bronchial spasm, or a bronchospasm. During a bronchial spasm, breathing becomes more difficult. You may find yourself wheezing as you try to catch your breath.
8. What causes excessive mucus? Smoking or exposure to an irritant in the air may cause you to produce more mucus than usual. If the mucus is clear, you might have allergies. Other conditions that could cause excess mucus include bronchitis, chronic obstructive pulmonary disease, and cystic fibrosis.
Explanation:I hope my answer helped you! If you need more information or help, comment down below and I will be sure to respond if I am online. Have a wonderful rest of your day!
assume fur color is controlled by one gene with two alleles in squirrels, and gray is dominant to brown. if a population of 360 gray and 640 brown squirrels is in hardy-weinberg equilibrium, what is the frequency of the dominant allele?
When fur color is controlled by one gene with two alleles in squirrels and gray is dominant to brown. If population of 360 gray and 640 brown squirrels is in Hardy-Weinberg equilibrium, then the frequency of the dominant allele is : 0.20.
What is Hardy-Weinberg equilibrium?The Hardy-Weinberg equilibrium is a principle stating that genetic variation in population will remain constant from one generation to next in the absence of disturbing factors.
The Hardy-Weinberg equation is a mathematical equation that is used to calculate genetic variation of population at equilibrium. The Hardy-Weinberg Equilibrium (HWE) is an important fundamental principal of a population genetics.
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Do)
8. Tomato plants usually have hairy stems. Hairless stems are present in tomato
plants that are homozygous
recessive for this trait. IF the stem characteristics
D»
are determined by a single gene, what is the expected outcome of crossing two
tomato plants that are heterozygous for hairy stems?
Lo)
9)
CLEAR AI
Answer: Hh x Hh
HH Hh Hh hh
Explanation:
industrial food production began during the period of modern biotechnology. question 20 options: true false
The statement that the industrial food production began during the period of modern biotechnology is false as first GMO produce created thru genetic engineering.
However, current biotechnology related to genetic engineering and mobileular manipulation, has been with us for more or less 4 decades. It turned into kickstarted in 1973, whilst scientists first genetically engineered Escherichia coli micro organism to introduce a overseas gene that made them immune to an antibiotic.
Rudimentary commercial biotechnology clearly dates again to at the least 6000 B.C. whilst Neolithic cultures fermented grapes to make wine, and Babylonians used microbial yeasts to make beer. Over time, mankind's understanding of fermentation increased, permitting the manufacturing of cheese, yogurt, vinegar, and different meals products.
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1, what other molecule is needed for this process to occur?
2, what energy-carrying molecule is created in this process?
3, on what organelle does this process occur?
4, what is this process called?
5, what type of cells have more mitochondria than others? Why?
6, in humans (and other animals) where does this glucose come from?
7, why does respiration increase during exercise?
Answer:
1. cellular respiration
2. ATP
3. Mitochondria
4. cellular respiration
5. Heart muscle cells These cells need more energy, so they contain more mitochondria than any other organ in the body
6. Glucose is obtained from food
7. your body uses more oxygen and produces more carbon dioxide
Explanation:
Following are the answers:
1. cellular respiration
2. ATP
3. Mitochondria
4. cellular respiration
5. Heart muscle cells need more energy, so they contain more mitochondria than any other organ in the body
6. Glucose is obtained from food
7. your body uses more oxygen and produces more carbon dioxide.
ATP (adenosine triphosphate) is needed for this process to occur. ATP is the energy-carrying molecule created in this process. This process primarily occurs in the mitochondria. This process is called cellular respiration. Cells with high energy demands, such as muscle cells, have more mitochondria because mitochondria produce ATP.
Glucose primarily comes from the digestion of carbohydrates in the diet. Respiration increases during exercise to meet the increased energy demands of the muscles and maintain homeostasis.
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describe a properly controlled experiment
Answer:
A controlled experiment is a scientific test done under controlled conditions, meaning that just one (or a few) factors are changed at a time, while all others are kept constant.
Explanation:
A good example would be an experiment to test drug effects. The sample receiving the drug would be the experimental group while the sample receiving a placebo would be the control group. While all variables are kept similar (e.g. age, sex, etc.) the only difference between the groups is the taking of medication.
Example of an analogy for describing the difference between prokaryotic cells and eukaryotic cells.
A prokaryotic cell is like a TV with four channels. A eukaryotic cell, on the other hand, is like a smart TV with a wide selection of channels and internet connection.
Prokaryotic cells can be compared to a TV with a constrained selection of channels and no internet access because they are simpler than eukaryotic cells. In these, DNA is not protected by a barrier, the nucleus defined by the nuclear membrane is absent, and ribosomes, the organelles in charge of protein synthesis, are dispersed throughout the cytoplasm. Plasmids, which are circulating DNA molecules, are also present. A prokaryotic cell is like a TV with four channels. A eukaryotic cell, on the other hand, is like a smart TV with a wide selection of channels and internet connection.
Prokaryotic cells can be compared to a TV with a constrained selection of channels and no internet access because they are simpler than eukaryotic cells. In these, DNA is not protected by a barrier, the nucleus defined by the nuclear membrane is absent, and ribosomes, the organelles in charge of protein synthesis, are dispersed throughout the cytoplasm. Plasmids, which are circulating DNA molecules, are also present.On the other hand, eukaryotic cells are bigger and more complicated, so we can liken them to a TV with a wide selection of channels and internet connection. These cells have an individual nucleus that is surrounded by a library to start. Along with ribosomes, additional organelles present in its cytoplasm include mitochondria, granular and non-granular endoplasmic reticulum, the golgiense complex, lysosomes, peroxisomes, and centrioles. These organelles are connected by a network of tubes and membrane channels.
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when gonorrhea disseminates to other tissues, it most often affects the: a. joints. b. colon. c. liver. d. kidneys.
Although gonorrhea can spread to other tissues, the joints are the most frequently affected. An STD called gonorrhea can infect the throat, genitalia, and rectum.
What impacts a person who has gonorrhea?Including the cervix, uterus, or fallopian tubes in women, as well as the urethra in both men and women, gonorrhoeae affects the mucosal membranes of the reproductive tract. The mucosal lining of the face, throat, eyes, the rectum are also susceptible to N. gonorrhoeae infection.
what is Gonorrhea is a contagious disease.Having , , or oral intercourse is the most common way for people to contract gonorrhea. If you have gonorrhea-infected fluids on your hand, you can also contract the disease by touching your eye. In addition, if the woman has gonorrhea, it might be passed to the kid during birth.
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A scientist finds what she thinks is a new species of rodent on a small pacific island. However, some similar-looking rodents inhabit some nearby islands. She mates the new rodent with the nearby rodents and gets viable but infertile offspring. Why?.
The new rodents likely descend from dispersive allopatric speciation in relatively recent progenitors.
Dispersal, which happens when a few individuals of a species travel to a different region, or vicariance, which happens when a natural occurrence, such the development of a river or valley, physically divides species, are the two ways that allopatric speciation events might take place. Vicariance and peripatric are the two main theories that are commonly used to categorise allopatric speciation. By virtue of their population densities and geographical isolation mechanisms, the two models diverge from one another.
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which one of the following statements best represents the relationship between cellular respiration and photosynthesis?
The relation between cellular respiration and photosynthesis can be represented by (B) Photosynthesis stores energy in complex organic molecules, while respiration releases it.
Photosynthesis is the process of synthesizing food by the plant by using the sunlight energy, carbon dioxide and water as the raw material. This process occurs in two phases: light dependent reactions and light independent reactions.
Respiration in plants is similar to that of animals where they use oxygen and release carbon dioxide. The process takes place with the help of lenticels and stomata. The products formed in photosynthesis act as the reactants for the process of respiration.
The given question is incomplete, the complete question is:
Which one of the following statements best represents the relationship between cellular respiration and photosynthesis?
A. Respiration occurs only in animals and photosynthesis occurs only in plants.
B. Photosynthesis stores energy in complex organic molecules, while respiration releases it.
C. Photosynthesis occurs only in the day and respiration occurs only at night.
D. Respiration stores energy in complex organic molecules, while photosynthesis releases it.
E. Photosynthesis and respiration are essentially the same thing.
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Is the fallowing true or false
An average star spends 90 percent of its life as a helium-burning main-sequence star?
Answer:false because the start must be the yellow star and other is can not make it true
A segment of DNA has the following sequence: TTAAGGCC. Which sequence of bases would be found on the complementary strand of mRNA?
A:GGCCUUAA
B:AATTCCGG
C:GGCCTTAA
D:AAUUCCGG
Answer:
D.) AAUUCCGG
Explanation:
RNA does not contain Thymine (T), instead, Adenine (A) pairs with Uracil (U). S0, complementary base pairs from DNA to RNA are A-U, T-A, G-C, and C-G. Using this fact, the complementary strand of mRNA should be AAUUCCGG.
PLEASE HELP ITS ABT A PUNNET SQUARE ILL MARK YOU BRAINLIST
Answer:C. Yy
Explanation:took it-
Which influencer, trendsetter and model embodies the dior backstage make-up collections?
Bella Hadid is a influencer, trendsetter and model who embodies the Dior backstage make-up collections.
Bernard Arnault, a French businessman, controls and chairs Dior, a French luxury fashion label.
The company was established in 1946 by French fashion designer Christian Dior, who was initially from Normandy. This brand only sells shoes, makeup, and clothing and is only available at Dior stores. Christian Dior, or simply Dior, is a luxury goods company best known for modernising the women's fashion industry. The brand has been credited with reviving Paris as the world's fashion capital after it fell out of favor following WWII.
Bella Hadid, who was born in the Netherlands to a Dutch mother and a Palestinian father, was announced as a Dior Makeup ambassador in 2016, and has started working on numerous Dior campaigns since then.
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the climate envelope model assumes that an organism’s realized niche approximates its fundamental niche.
Environmental niches are changing due to climate change, which causes species to adapt their habitat range to match their ecological niche.
What exactly is a climatic envelope?A species' climate niche is defined by the correlations between species occurrences and bioclimate variables (temperature and precipitation) described by climate envelope models (envelope). Using projections of expected climate change, relationships obtained from current data can be extrapolated into the future.
What changes does a climatic envelope go through?Plants and animals may have different regional distributions as a result of changes in climate, precipitation patterns, and sea level, which could affect how they interact with their surroundings and with other species.
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Write the working of digestion
Answer:
Digestion works by moving food through the GI tract. Digestion begins in the mouth with chewing and ends in the small intestine. As food passes through the GI tract, it mixes with digestive juices, causing large molecules of food to break down into smaller molecules.
Explanation:
Just Put it in your own words!
Imagine a dog who steps on a pin and pulls its foot away. Look at the reflex arc of this scenario below.
Answer:
O The brown circle A shows neurotransmitters being released, and the blue circle B shows neurotransmitters being
absorbed.
The brown circle A is an effector, and the blue circle B is a receptor.
The brown circle A is a receptor, and the blue circle B is an effector.
The brown circle A shows neurotransmitters being absorbed, and the blue circle B shows neurotransmitters being
released.
According to the Chain of Custody, which of the following must be done when * working with evidence? O Sealed evidence must be opened at a location other than the sealed/signed edge. O Sealed evidence must remain in its container for 7 days O Sealed evidence must never be opened by more than one person. Sealed evidence must be carefully opened at the sealed/signed edge.
Answer:
sealed evidence must be opened at a location other than the sealed/signed edge
Explanation:
Emphasis than ever on physical evidence, the chain of custody and the integrity of the evidence is being carefully examined and often challenged.
All items of evidence must be properly sealed and marked with the initials and date of the ... SLED Forensic Services Laboratory is located on the right.
8. which of the following cells are capable of forming a whole animal? a. a totipotent stem cell like a zygote b. embryonic stem cells c. enucleated eggs into which a somatic cell nucleus has been transplanted d. ipscs e. two of the above answers are correct
The Answer is e. Two of the above answers are correct
Totipotent stem cells are cells that have the capacity to self-renew by dividing and to develop into the three primary germ cell layers of the early embryo and into extra-embryonic tissues such as the placenta.
What is Placenta?
An organ that develops in the uterus during pregnancy. Placenta provides oxygen and nutrients to a growing baby. It also removes waste products from the baby's blood. It attaches to the wall of the uterus, and the baby's umbilical cord arises from it.
What is called Germ Cell?
A reproductive cell of the body is called a germ cell. These are egg cells in females and sperm cells in males.
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which animal has a long and curved lumbar region, and which has a short and stiff lumbar region? how does this contribute to an erect posture in humans?
The lumbar area of chimpanzees is short and rigid. The lumbar area is lengthy and curved in humans. Our weight is balanced as a
What makes it the lumbar region?The term "lumbar" refers to the abdominal region of the torso, which is located here between diaphragm and the sacrum, in tetrapod anatomy. The lower spine or a portion of the back near it are terms that are sometimes used to describe the lumbar region.
What causes soreness in the lower back?A strain (injury) to the back's muscles or tendons may cause it. Injuries to the disks, structural issues, and arthritis are further causes. Rest, physical therapy, and medication can all help with pain. Maintaining a healthy weight and remaining active will lower your risk of developing low back discomfort.
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this part of the middle ear vibrates and stimulates the bones of the ossicles when it perceives sounds waves.
The eardrum vibrates from the incoming sound waves and sends these vibrations to three tiny bones in the middle ear.
Vibrations from the eardrum place the ossicles into motion. The ossicles are actually tiny bones in the human body. These vibrations then travels to 3 tiny bones inside the middle ear called the ossicles. The ossicles helps in amplification of sound. They send the sound waves to the inner ear and into the fluid-filled hearing organ (cochlea).
Sound waves generally enters outer ear and travel through a narrow passageway called the ear canal, that meets the eardrum. The eardrum vibrates from the incoming sound waves and sends these vibrations to three tiny bones in the middle ear.
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which of these is an organism that produces the same traits in every generation?
a. hybridb. pea plantC. chromosomeD. purebred
Answer: I believe its Purebred
because the genetic code is redundant, meaning there are many codons that code for the same amino acid, which statement is most likely to occur?
Even though the genetic code was redundant (more than 1 codon may define the same amino acid), it is unambiguous; no codon provides and over one amino acid.
What is an example of genetic code?genetic code, the arrangement of nucleotides in DNA and RNA that dictates the order of amino acids in proteins.Although DNA's linear nucleotide sequence provides the knowledge of protein sequences, protein are not synthesised directly from DNA.
What exactly is the genetic code, and why is it significant?The genetic code aids in predicting the protein's amino acid sequence from of the genetic material.The amino acid sequence of a protein enables us to predict its shape and comprehend some of its characteristics and functions.
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