what happens to mRNA after it completes transcription?

Answers

Answer 1

Answer: After the transcription of DNA to mRNA is complete, translation — or the reading of these mRNAs to make proteins — begins.

Explanation: research


Related Questions

what are the small, rapid variations in a system clock called?

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Jitters are the brief, abrupt changes in a system clock. Jitter is the difference between the actual clock signal and the desired or anticipated clock signal. Inaccuracies in data processing and transport may result from this.

Jitter in digital system can lead to data bits arriving at unexpected times, which can lead to communication or data processing failures. Jitter is frequently measured in terms of time intervals like picoseconds and nanoseconds. Electrical noise, clock drift, and temperature variations are just a few of the causes.

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What glands produce sperm and testosterone?

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The testes are the glands that produce both sperm and testosterone. The testes are part of the male reproductive system and are located in the scrotal sac. Sperm production occurs in the Seminiferous tubules, while testosterone production occurs in the Leydig cells. Testosterone is responsible for the development of male sexual characteristics and plays a role in sperm production.

The testes are a pair of male reproductive glands located in the scrotal sac. They are responsible for producing sperm and the hormone testosterone. Sperm production occurs in the Seminiferous tubules within the testes, while testosterone is produced in the Leydig cells. The testes play a crucial role in male fertility and the development of male sexual characteristics. They are also important for overall health, as testosterone helps maintain bone density, muscle mass, and red blood cell production. Cryptorchidism, a condition where one or both testicles do not descend into the scrotal sac, is a common problem in infants and young boys and can lead to health problems if not treated.

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Around 1920, the amount of glucose in blood could be measured by an electronic meter. True or False

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Blood tests are just for estimating the number of red platelets an individual has. Around 1920, how much glucose in blood could be estimated by an electronic meter. The correct answer is false.

Glycaemia, otherwise called glucose level, glucose fixation, or blood glucose level is the proportion of glucose gathered in the blood of people and different creatures. Roughly 4 grams of disintegrated glucose, a straightforward sugar, is available in the blood plasma of a 70 kg (154 lb) human consistently.

Glucagon is delivered to stop glucose levels from dropping excessively low (hypoglycemia), while insulin is delivered to stop glucose levels from ascending excessively high (hyperglycemia). The arrival of glucagon is invigorated by low blood glucose, protein-rich dinners, and adrenaline (one more significant chemical for battling low glucose).

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What is the relation of endoplasmic reticulum with lysosomes and Golgi apparatus?

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Since the ER and Golgi apparatus both depend on lysosomes for proper operation, these two organelles collectively make up the endomembrane system.

How do Endoplasmic Reticulum, Golgi apparatus and lysosomes function together?

The ER, the Golgi apparatus, and the lysosomes make up the eukaryotic cell's endomembrane system. Proteins and lipids, among other membrane constituents, are transported between these organelles and the plasma membrane by vesicular transport with the aid of molecular tags that point particular constituents in the direction of their proper locations. The rough endoplasmic reticulum is where the enzyme proteins are originally produced. A vesicle containing such proteins is used to transport them to the Golgi apparatus. The lysosome enzymes are produced by the rough endoplasmic reticulum. The production of lysosomal enzymes takes place in the rough endoplasmic reticulum. The Golgi apparatus secretes the enzymes in vesicles, which later combine with the acidified vesicles of the Golgi apparatus known as endosomes to produce complete lysosomes.

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The original Big Bird went on to breed with three females on Daphne: another hybrid and two G. fortis females. The descendants of 5110 shared his unique call and unique genotype. Although 5110 bred with other species (because he was the only Big Bird then), his offspring only bred with other Big Birds.
Watch the video to learn more about the Big Bird lineage and how it was established on Daphne.
The Big Bird and his descendants are a rare glimpse at how a natural hybridization event can form a new lineage from two species that live in the same area. However, there is not yet scientific consensus about whether the Big Bird lineage should be considered its own species. There is evidence for and against its classification as a separate species.
Using the biological species concept as your guide, sort the following observations based on whether they support the notion that the Big Bird lineage is a separate species or whether they refute the notion that it is a separate species.

Answers

This assertion supports the Big Bird lineage's status as a distinct species in accordance with the biological notion of species.

According to the biological species idea, species are collections of organisms capable of interbreeding and conceiving live young "Species are groups of interbreeding natural populations that are reproductively distinct from other such groups," wrote Ernst Mayr in 1970. The lack of gene flow and reproductive isolation support this assertion. As a result, the aforementioned information supports the biological idea of species, i.e., Big Bird males can only reproduce with Big Bird females. The Big Bird lineage and G. fortis differ in terms of beak shape/length, tone, conduct, mechanical/chemical alterations, time of mating, region at the island, and primary food source.

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maintenance of the uterine lining during pregnancy in mammals requires which hormones

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Progesterone is the hormone that maintains the uterine lining during pregnancy. The two primary female hormones, progesterone and oestrogen, keep the uterine lining in place.

One of the key hormones released during pregnancy, progesterone is mostly produced by the placenta. It acts to prevent the smooth muscle in the uterus from contracting and lowers prostaglandin production, both of which help the foetus develop proportionately to the uterus's growth. Other regions of the body are also impacted by high progesterone levels, often not in a positive way. For instance, it results in both acid reflux and heartburn. In addition to being primarily produced by the placenta, estrogen also functions in conjunction with progesterone. Additionally, it enhances the uterus's blood flow.

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Please help me.
Do some research and find an example of an interesting protist.


Include your sources here:

1.

2.

3.

Protist #1:

Name:


What is amazing about this protist?

Answers

An example of an interesting protist is Paramecium.

What is a Paramecium?

Protist #1:

Name: Paramecium

What is amazing about this protist?

Paramecium is a single-celled organism that is well known for its characteristic cilliated (hair-like) exterior and its ability to move through water with ease. One of the most interesting things about Paramecium is its ability to feed and reproduce in a variety of ways, making it a model organism for understanding cellular and molecular biology.

Some species of Paramecium are also capable of engaging in symbiotic relationships with other organisms, such as algae, in order to exchange resources.

Sources:

https://en.wikipedia.org/wiki/Paramecium

https://www.ncbi.nlm.nih.gov/books/NBK26378/

https://micro.magnet.fsu.edu/primer/java/microorganisms/protists/paramecium/

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HELPPPPPPPP ASAPPPPPPP PLEASEEE!!!!! Assignment: 01.04 Foundations of Biology Discussion-Based Assessment

The DBA (Discussion Based Assessment) is a Q&A-based conversation typically regarding 3 main concepts from the Module. ALERT; All
work in the module

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Higher temperatures in the Northeast are likely to increase heat-related deaths and decrease air quality, especially in urban areas.

Who are at greatest risk?

People at greatest risk include young children, the elderly, and those with pre-existing health conditions like asthma.Allergy is a disease that affects your lungs. It reasons repeated episodes of wheezing, breathlessness, chest tightness, and middle-of-the-night or early-morning coughing.

Bronchial asthma may be managed by using taking remedies and fending off the triggers that can purpose an assault.  Such as pollen, dirt mites, animal fur, or feathers.

Therefore, Higher temperatures in the Northeast are likely to increase heat-related deaths and decrease air quality, especially in urban areas.

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Select that statement that best describes the role of protozoan cysts. Multiple Choice Protozoan cysts are necessary for the infection of intermediate hosts while the trophozoites are the stage that infects definitive hosts. Protozoan cysts are a reproductive stage Protozoan cysts are a survival form which allows them to survive adverse environmental conditions between hosts

Answers

role of protozoan cysts: Protozoan cysts are a survival form which allows them to survive adverse environmental conditions between hosts.

Many free-living protozoa produce cysts as a necessary component of their life cycle in order to survive harsh environmental circumstances. Given the ubiquity of free-living protozoa in food-related contexts, it is anticipated that these organisms have a significant but as of yet unstudied influence in the epidemiology of foodborne pathogenic bacteria. Intracystic bacterial survival is very important since it would allow bacteria to withstand the strict cleaning and disinfection procedures used in food-related situations. Trophozoite and dormant cyst are the two stages of the life cycle for many FLP. The former is the stage that is actively eating and uses phago- and pinocytosis to feed on bacteria, algae, viruses, yeast, and organic particles.

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over which of the following time periods of the lunge feeding event did the gape angle both increase and decrease?

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The increase and decrease in gape angle during the lunge feeding event typically occurs during the approach and capture stages.

Which of the following time periods of the lunge feeding event did the gape angle both increase and decrease?The gape angle of the lunge feeding event increases and decreases over a period of time that includes the pre-strike, strike, and post-strike phases. The pre-strike phase is when the predator begins to move towards the prey, and during this time the gape angle gradually increases.This increase in the gape angle helps to increase the predator's visual acuity and accuracy. During the strike phase, the gape angle rapidly increases as the predator lunges at the prey.This rapid increase helps to increase the predator's speed and accuracy while also helping to minimize the amount of water that enters the predator's mouth. Finally, during the post-strike phase, the gape angle rapidly decreases as the predator returns to its normal posture. This decrease in the gape angle helps the predator to close its mouth and keep the prey securely in its grasp.The gape angle of the lunge feeding event is an important component of the feeding event as it helps the predator to accurately identify and catch prey. It is a dynamic process that occurs over multiple phases and helps to ensure successful feeding.This pattern of increasing and decreasing gape angle during a lunge feeding event is known as cyclic gape angle variation.

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Mutations that destroy or create a cleavage site for a restriction enzyme are the source of:
a. single nucleotide polymorphisms.
b. variable number tandem repeats.
c. copy number variants.
d. restriction fragment length polymorphisms.

Answers

Mutations that destroy or create a cleavage site for a restriction enzyme are the source of Restriction fragment length polymorphisms.

Polymorphism. Multiple forms are referred to as polymorphism. I adore it as an illustration of how genomics is a body of knowledge that raises new queries. Humans are essentially identical, but when scientists began sequencing human genomes, we discovered little differences between individuals that we now refer to as single nucleotide polymorphisms, or SNPs. When we learned what to search for, we discovered that this kind of variation actually existed throughout the entire genome and that we could use it to examine a variety of genetic issues. Then, we discovered that humans also differed in much larger portions of their DNA than we had previously imagined. After doing PCR on the same region between two individuals, you notice that each person's DNA yielded pieces of different sizes.

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if the individuals in a population mate at random, and if allele h1 is at frequency 0.60, what is the frequency of h1h1 offspring?

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If individuals in the population mate at random, the allele of interest is divided by the total number of copies of all the alleles to yield the allele frequency of 0.36 in offspring.

To calculate the allele frequency, the total number of copies of each allele at that particular genetic locus in the population is divided by the number of times the allele of interest is detected in a population.

The frequency of h1h1 offspring in a population is 0.36 if individuals mate at random sampling and h1 has a frequency of 0.60.

Allele frequency can be expressed as a percentage, a decimal, or a fraction. The frequencies of alleles ranged from 0 (present in no one) to 1 (present in everyone); A particular gene has an all-allele frequency of one hundred percent in a population.

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Can you graph it please

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Answer:

i remember  this from freshmen year this is the answer please thank me

Explanation:

can a kidney be removed without cutting through parietal peritoneum? explain your answer

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No, a kidney cannot be removed without cutting through the parietal peritoneum.

The parietal peritoneum is a thin membrane that covers the abdominal cavity and supports the organs within. When removing a kidney, it is necessary to cut through this membrane to gain access to the organ.

The kidney is surrounded by fat, blood vessels, and other tissues, so it is not possible to simply lift it out without first making an incision in the parietal peritoneum.

The incision is then closed after the kidney has been removed to protect the abdominal cavity. It is important to note that the surgical procedure for removing a kidney is carefully planned and performed by a qualified medical professional, who takes measures to minimize damage to surrounding tissues and minimize the risk of complications.

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What is the relationship between human biology and culture?

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Human biology is constantly in motion, reacting to contexts that are time and site specific. Human biology is every bit as created by culture as it is a result of DNA sequences. In a sense, human biology sits between, and in dialectical communication with, genetics and culture..

In which organelle does the chemical process of photosynthesis occur?
a. Chlorophyll
b. Mesophyll
c. Chloroplast
d. Thylakoid

Answers

Chloroplast C. Hope this works

Chloroplast is the organelle that does the chemical process of photosynthesis occur.

Where does photosynthesis take place in the organelle of the chloroplast?

In the chloroplasts that are located in the mesophyll of the leaves, photosynthesis occurs. The thylakoids are located inside the chloroplast and contain chlorophyll, which absorbs the various colours of light to produce energy (Source: Biology: LibreTexts).

What time and place does photosynthesis take place?

Plants absorb water (H2O) and carbon dioxide (CO2) from the soil and atmosphere during photosynthesis. Water is oxidised, which means it loses electrons, while carbon dioxide is reduced, which means it receives electrons, inside the plant cell. Water is converted into oxygen and carbon dioxide into glucose as a result.

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the first time you see a value on the diversity curve is generally when that animal group first evolved. during what geologic period did the two groups of dinosaurs saurischia and ornithischia, first appear in the fossil record?

Answers

During Triassic geological period the two groups of dinosaurs saurischia and ornithischian, first appear in the fossil record.

During the Middle Triassic Period, between 235 and 240 million years ago, the lineages of the saurischians and ornithischians split (242 million to 227 million years ago). The first dinosaurs were little and bipedal; only later did they grow enormously large and acquire a range of eating and other adaptations.

After the greatest extinction event in Earth's history decimated life, the Triassic Period started. One of the most important catastrophes in the history of our planet was the Permian-Triassic extinction event, sometimes referred to as the Great Dying, which occurred about 252 million years ago. The difference between the Palaeozoic and Mesozoic eras is symbolised by it. This time period saw significant changes in the variety and predominance of life on Earth, bookended by extinctions.

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Is the visual examination of the urethra and bladder?

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A cystoscopy is a technique that uses a narrow camera called a cystoscope to view within the bladder. A cystoscope is put into the urethra (the tube that drains urine from the body) and passed into the bladder to allow a doctor or nurse to examine the interior.

Cystoscopy is an endoscopy of the urinary bladder performed through the urethra. A cystoscope is used for the procedure. The urethra is a tube that connects the bladder to the exterior of the body. The cystoscope features lenses similar to those found in a telescope or microscope. These glasses allow the doctor to see the inner surfaces of the urinary system.

Some cystoscopes employ optical fibres (flexible glass fibers) to transmit an image from the instrument's tip to a viewing piece at the other end. Cystoscopes range from pediatric to adult and from the thickness of a pencil up to approximately 9 mm and have a light at the tip. Many cystoscopes have extra tubes to guide other instruments for surgical procedures to treat urinary problems.

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glucose, protein, glycerol, and long-chain fatty acids are absorbed from the small intestine directly into the bloodstream.

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False. The small intestine directly absorbs glucose, protein, glycerol, and long-chain fatty acids into the bloodstream. Protein is digested by stomach acid and small intestinal enzymes.

These water-insoluble compounds, glycerol, and fatty acids. Micelles are formed during their absorption in the small intestine. These micelles are naturally soluble. Fatty acids and glycerol are taken in by intestinal cells through the production of micelles. Your small intestine's walls allow water and nutrients that have been digested to enter your bloodstream. The digestive system's waste materials travel into the big intestine as peristalsis proceeds. A lipoprotein-lipase enzyme found in capillary walls breaks down the triglycerides in the lipoproteins into fatty acids and glycerol.

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True or False: glucose, protein, glycerol, and long-chain fatty acids are absorbed from the small intestine directly into the bloodstream.

_______________ produces the most ATP.

a. glycolosis
b. anaerobic respiration
c. photosynthesis
d. aerobic respiration

Answers

The answer to your question would be the letter B, Annerobotic respiration
B, anaerobic respiration

What type of firearm sight is simple, inexpensive, and standard on most handguns? a. telescopic b. dot c. open d. aperture (peep).

Answers

Open firearm sight is simple, inexpensive, and standard on most handguns. Therefore, option C is correct.

What is firearm sight?

Sight is a tool that helps the shooter align the muzzle with their eye so they can hit the target. With a weapon that fires a single bullet (such a rifle or handgun) sights are more important than with a weapon that discharges a pattern of shots (shotgun).

A reflex sight contained in a tube is a real red dot sight. Open reflex sights offer a larger field of view and limitless eye relief, while they offer a brighter reticle. Open sights are more convenient for aiming with both eyes open and are better at acquiring targets more quickly.

Open firearm sight is simple, inexpensive, and standard on most handguns. Therefore, option C is correct.

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Which of these factors are required for biological evolution to occur? Select all that apply.
A) genetic variation in the population
B) natural selection
C) variation in acquired traits among individuals in the population
D) a large population
E) many generations

Answers

The factors required for biological evolution to occur are (a) genetic variation in the population, (b) natural selection, and (d) a large population.

What factors are needed for evolution?

Biological evolution is the change in inherited traits over successive generations in the population of organisms. There are 5 mechanisms that cause the population exhibits a change from one generation to the next. These are evolution by mutation, genetic drift, gene flow, nonrandom mating, and natural selection. Mutation generates variation. The genetic variation created through a random process of mutation must be present for evolution to occur. The mutation rate is pretty low so the impact is usually not large.

Evolution by genetic drift always happens but the effect is subtle in larger populations. Genetic drift is the change in frequency of an existing gene variant in the population caused by random chance.

Evolution by gene flow involves the movement of genes into or out of a population due to either movement of the individual (migration) or their gametes. When individuals from one population migrate to a different population, they bring those different allele frequencies with them. Two populations will experience changes in allele frequencies.

Natural selection is the process by which a population of organisms adapts and changes. The organism that is more adapted to its environment is more likely to survive and pass on the genes.

Nonrandom mating is a mating system in which organisms prefer to mate with others of the same genotype or different genotypes.

Thus, evolution can occur if there is genetic variation, a large population, and natural selection.

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which position in the food chain represents the primary consumer

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The position in the food chain that represents the primary consumer is : second trophic level.

What are primary consumers?

Primary consumers make the second trophic level and they are also called herbivores. They eat primary producers that are plants or alga. For example, grasshopper living in the Everglades is primary consumer.

Caterpillars, insects, grasshoppers, termites and hummingbirds are all examples for primary consumers as they only eat autotrophs (plants).

Primary consumers who are mostly herbivores, exist at the next level, and secondary and tertiary consumers, omnivores and carnivores follow. At the top of system are apex predators: animals who have no predators other than humans.

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which of these bonds is weakest?

Answers

Following are the bonds in decreasing strength: Ionic, hydrogen, covalent, and van der Waals forces are all in order.

Which are weakest bond?

The Van der Waals bond In addition to other intermolecular forces, van der Waals forces also include the attraction and repulsion between atoms, molecules, and surfaces. Because they result from correlations in the varying polarisations of adjacent particles, they differ from covalent and ionic bonding.

The term "dispersion forces" is used to describe the weakest ties. When the electrons in two nearby atoms occupy positions that cause the atoms to temporarily form dipoles, the consequence is the dispersion force, which is a transient attractive force. Any two molecules that are almost contacting each other experience dispersion forces.

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Complete question: Which of these bond is weakest ?

(a) Hydrogen bond.

(b) Metallic bond.

(c) Ionic bond.

(d) Covalent bond.

11. The hydrogen fusion reaction converts hydrogen to helium. About 25% of the universe is made up of helium,
there aren't enough stars to have produced more than 10%. How do scientists account for this discrepancy?

12. What are the three major lines of evidence supporting the Big Bang Theory?
ii.
iii.

Answers

Scientists explain the gap by considering additional sources of helium generation, such as Big Bang nucleosynthesis, which created nearly 75% of all helium in the universe, and intermediate-mass stars, which may produce considerable quantities.

The large-scale structure of the universeThe abundance of light elements Cosmic Microwave Background Radiation

What is hydrogen fusion?

Generally, Scientists account for the discrepancy by considering other sources of helium production, such as Big Bang nucleosynthesis, which produced about 75% of all helium in the universe, and the production of helium in intermediate mass stars, which can produce significant amounts of helium.

2) The three major lines of evidence supporting the Big Bang theory are:

i. The Cosmic Microwave Background Radiation: The discovery of the cosmic microwave background radiation, which is a nearly uniform glow of light coming from all directions in space, supports the Big Bang theory.

ii. The abundance of light elements: The abundance of light elements such as hydrogen, helium, and lithium supports the Big Bang theory.

iii. The large scale structure of the universe: Observations of the large scale structure of the universe, including galaxy formation and clustering, support the Big Bang theory.

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How do you think the stigma is adapted to trap the pollen grains and to provide a place for them to grow

Answers

Answer:

The stigma becomes moist and sticky at maturation allowing for the pollen to be captured.

Explanation:

Which one of the following structures will you likely NOT see in an unstained cell?
a. chromosome
b. cell wall
c. nucleus
d. nuclear envelope

Answers

The structure that you will likely not see in an unstained cell is the chromosome. This is option a.

The DNA molecule in the nucleus of each cell is packaged into thread-like structures that are called chromosomes. Each chromosome is made up of DNA that is tightly coiled several times around proteins called histones, which support its structure.

In the cell’s nucleus, chromosomes are not visible, not even under a microscope, when the cell is not dividing. The DNA that makes up chromosomes, however, becomes more tightly packed during cell division, and it is then visible under a microscope. Much of what scientists know about chromosomes was learned by observing chromosomes during the cell division.

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How are the genotypes of homozygous and heterozygous individuals different?

Answers

The genotypes of the homozygous and the heterozygous individuals are different as homozygous individuals possess the two same versions of the allele while heterozygous individuals have two different versions of the allele.

Genotype basically represents the genetic composition of the organism. The genotype of an organism also contributes to its phenotypes, that is, its physical attributes. The genotype can be either heterozygous or homozygous.

Homozygous genotype is when both the alleles are of the same type, that is, both dominant or both recessive. Heterozygous is when both the alleles are of a different variety, that is, one is dominant and the other allele is of recessive type.

   

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Which level of biological organization is composed of several tissues?

Answers

Answer: an organ

Explanation: an organ is the biological level organization above tissue and therefore an organ is comprised of several tissues to fulfil its function.

17. By reading the description of the life processes of the organism below which of the following answer choices
is the most appropriate classification?
w
Chlorophyll in this tree captures
the Sun's energy and uses it to
make sugars out of carbon dioxide
from the air and water
a. Autotroph
b. Heterotroph
c. Decomposer
d. Carnivore

Answers

The life processes of the organism given is encompasses into Autotroph. The correct option is A.

What are Autotrophs?

A primary producer, also known as an autotroph, is an organism that uses energy from light or inorganic chemical reactions to create complex organic chemicals from simple ones, such as carbon dioxide.

Because they can manufacture their own food from starting materials and energy because they contain chlorophyll, autotrophs are referred to as producers.

Plants, algae, and several varieties of bacteria are examples of the autotrophs.

Thus, the correct option is A.

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