describe the structure of a molecule of hemoglobin and explain the role played by iron in the transport of oxygen.

Answers

Answer 1

Hemoglobin's structure has four heme groups, each has an iron molecule within the center used to bind and carry oxygen throughout the body.

The delivery of oxygen to the blood is one among iron's most significant roles. The first function of iron is to transport oxygen throughout your body in the hemoglobin of red blood cells so that your cells can make energy. Additionally, iron enhances myoglobin's capacity to store oxygen.

What about hemoglobin?Red blood cells include the protein hemoglobin, which transports oxygen to your body's organs and tissues and carbon dioxide from those tissues back to your lungs. You have a low red blood cell count if a hemoglobin test reveals that your hemoglobin level is lower than normal.When you have anemia, your body doesn't produce enough healthy red blood cells to provide your tissues with enough oxygen. Being anemic, or having low hemoglobin, can cause you to feel exhausted and frail. Anemia can have many various forms, each with a singular etiology. Your blood's hemoglobin helps carry oxygen from your lungs to your tissues. In muscle cells, myoglobin receives, transports, stores, and releases oxygen. By making dietary modifications and using supplements, many of us can increase their hemoglobin levels. To establish the proper supplement dosage, consult a physician. An individual might require additional therapy,like a blood transfusion, if their hemoglobin levels are still low. Your illness or injury is causing blood loss. Every time you lose blood, you lose iron. Women can experience low hemoglobin levels during their periods. If you’ve got internal bleeding, like a bleeding ulcer, you’llpotentially lose blood.

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Related Questions

Which term applies to an individual who possesses two recessive alleles for the same trait? Choose the correct answer.
mutated
O haploid for the trait
O homozygous for the trait
heterozygous for the trait

Answers

The term applies to an individual who possesses two recessive alleles for the same trait and is homozygous for the trait. Option B.

The genotype is formed by the combination of alleles that an organism has. If the paired alleles are the same, the organism's genotype is said to be homozygous for that trait, and if they differ the organism's genotype is said to be heterozygous. Homozygosity also refers to a genotype consisting of two identical alleles of a gene for a particular trait. An individual can be homozygous dominant or homozygous recessive.

In complete dominance, only one allele of the genotype is present in the phenotype. In codominant cases, both alleles of a genotype are present in the phenotype. In the case of imperfect dominance, the phenotype shows a mixture of genotypic alleles. Homozygous and heterozygous are terms used to describe a pair of alleles. Individuals who have two identical alleles are said to be homozygous. Individual organisms with different alleles are said to be heterozygous.

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Which statement describes one difference between eukaryotic cells and prokaryotic cells

A Only eukaryotic cells are found in unicellular organisms
B Eukaryotic cells are smaller and less complex than prokaryotic cells
C Only eukaryotic cells contain DNA
D Only eukaryotic cells have specialized organelles enclosed in membranes

Answers

The one difference between eukaryotic cells and prokaryotic cells is that only eukaryotic cells have specialized organelles enclosed in membranes.

The single membrane layer surrounds the prokaryotic cells but there are two surrounding membranes in the case of eukaryotic cells which are the plasma membrane and the nuclear membrane. The cell wall in the plasma membrane is made up of carbohydrates, lipids, proteins, and certain amino acids, whereas chitin and cellulose combine together to make up the cell wall of eukaryotic cells. The cell membrane of the prokaryotic cells contains the Respiratory enzyme while the cell membrane of the eukaryotic doesn't contain this enzyme. In prokaryotic cells, endocytosis and exocytosis do not occur and it takes place in many protists and also in animals.

I hope this answer helps.

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Because they lack well-defined and complex organ systems, we hypothesize that _____ diverged from all other animals early in the evolution of animals.

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Because they lack well-defined and complex organ systems, we hypothesize that poriferans diverged from all other animals early in the evolution of animals.

It is very likely that the Porifera, the most ancient animal group, originated in the Precambrian because they have an early branch on the animal phylogenetic tree. The common word for poriferans is sponge. Sponge evolution diverged from the development of other metazoans during an early branching event. This might be one of the causes for their lack of a distinct and intricate organ system.

Poriferans don't have mouths, instead they drink water through tiny pores in their outer walls. Spicules, the animals' tough support structure, were previously one of the main ways to identify sponges.

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Is it possible for producers to be on any other level of an energy pyramid? Explain your reasoning.

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Answer: Energy can be passed up to the rest of the pyramid from plants. Producers are living things that are able to make their own food. Most of them use the sun's light to make their food.

Explanation:

Now if you are all the way at the top, what's at the bottom of this pyramid?  In order for it to stand, it has to have a strong base.  So at the very bottom, we have the living things that can hold themselves up on their own with nothing beneath them.  These are plants that are able to make their own energy from sun, gas, and water.  They do not need much help from other living things.  Energy can be passed up to the rest of the pyramid from plants.

Producers are living things that are able to make their own food.  Most of them use the sun's light to make their food.  They use most of the food they make to grow and stay alive, then store the rest in their bodies.  Have you ever pulled a carrot up out of the ground?  The orange part is the plant's stored energy.  This is a great way to grow and still keep some energy for later.  That is, of course, until a hungry rabbit hops along.

two-species interactions are classified by the impact each species has on the other. thus, a competitive interaction is one where the populations of each species are hut by the presence of the other species, usually because each species uses the same resources. niche patitioning enables species to coexist by

Answers

By preventing direct competition, niche partitioning allows species to coexist.

Why is the competitive and beneficial interactions between species crucial to the ecosystem's health?

Numerous ecological characteristics and functions, including food webs and nutrient cycles, are based on interactions between species. Depending on the evolutionary context and environmental circumstances in which they take place, the nature of these interactions can change.

As a result, a competitive interaction is one in which the presence of another species negatively affects the populations of both species. This typically happens because both species depend on the same resources. By preventing direct competition, niche partitioning allows species to coexist.

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sometimes tectonic plates shift past each other in____ directions at their boundary

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sometimes tectonic plates shift past each other in divergent directions at their boundary

What is a tectonic plate?

A tectonic plate or lithospheric plate is a massive, irregularly shaped  solid rock composed of both continental and oceanic lithosphere.

The Plate size can vary greatly that is from a few hundred to thousands of kilometers across the Pacific and Antarctic Plates and the Plate thickness also varies greatly.

Continental crust is made up of granitic rocks which contain relatively lightweight minerals such as quartz and feldspar where as  oceanic crust is made up of basaltic rocks, which are much denser and heavier.

Most of the boundaries between the plates is not seen, because they are hidden beneath the oceans and oceanic plate boundaries can be mapped accurately.

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During _____of the cell cycle, the cell grows and replicates both its organelles and its chromosomes.

Answers

Answer:

interphase

Explanation:

In the cell cycle the longest stage is interphase. This is when the cell grows and copies its DNA before moving into mitosis.

Which term applies to an individual who possesses two recessive alleles for the same trait? Choose the correct answer.
O mutated
O haploid for the trait
O homozygous for the trait
heterozygous for the trait

Answers

A person must be homozygous for the trait if they have two recessive alleles for it.

What are alleles?

One of two or more genes that may alternate at a specific location (locus) on the chromosome is known as an allele, also known as an allele. The phenotype of a particular trait may be influenced by a single allele, multiple alleles, or pairs of alleles.

The mix of alleles that an organism possesses creates its genotype. The genotype of the organism is referred to as homozygous for that trait if the paired alleles are the same. The organism's genotype is heterozygous if they are different.

In heterozygous matings, dominant alleles abolish the features of recessive alleles. Alleles, however, can co-dominate for some features. H. Neither recessive nor dominant. For instance, in the human ABO blood group system, recessive traits result in homozygosity for the gene. Because there is no dominant gene to cover up the recessive allele, it is expressed.

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Oxygen is important in the oxidation of glucose because it ____________________________.

Answers

Answer:

Oxygen is important in the oxidation of glucose because it is highly electronegative.

Explanation:

Thymine makes up 24% of the nucleotides in a sample of DNA from an organism. Approximately what percentage of the nucleotides in this sample will be adenine?

Answers

Answer: 24%

Explanation:

In double stranded DNA Thymine binds to Adenine. The number of Thymine and adenine should be equal .

discussing the major body systems on the circulatory system.

Answers

The parts of your circulatory system are your: Heart, a muscular organ that pumps blood throughout your body. Blood vessels, which include your arteries, veins and capillaries. Blood, made up of red and white blood cells, plasma and platelets.

Circulatory system is made up of the following components: The heart is a muscular organ that circulates blood throughout your body. Blood vessels are made up of arteries, veins, and capillaries. Blood, which is composed of red and white blood cells, plasma, and platelets.

Your circulatory system transports oxygen and nutrients to your body's other cells, then collects any waste products produced by these cells, including carbon dioxide, and transports these waste products to your kidneys and lungs for disposal.

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what was a crucial advantage of the daguerreotype method? group of answer choices no darkroom required shorter exposure times it allowed multiple copies to be made from a single negative it resulted in sharper images than the competition

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Crucial advantage of the daguerreotype method is that it resulted in sharper images than the competition.

Daguerreotypes was an early photographs method on a light-sensitive metal plate coated in crystals. A daguerreotype just needed just twenty minutes exposure. Daguerreotype, produced an opaque original positive that could be duplicated only by copying it with a camera.

There are advantages of the daguerreotype  they produce crystal clear images , It was the first commercially successful photography method in photography history . other disadvantage includes  it has a long exposure time, it is expensive, and the cameras are very large.

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Paul has been sick for several days and has
a fever of 102. A few days ago, he visited
the ER, where the attending physician
diagnosed him with a bacterial infection. It's
been 3 days, but Paul's body has been
unable to fight the infection.
Bloodwork has been completed and lab
results indicate that the vacuoles in Paul's
white blood cells are successfully trapping
the bacteria; however, the organelle
responsible for releasing enzymes that
break down the bacteria's cell walls is not
working properly.
Which organelle
is malfunctioning?

Answers

Diabetes, heart disease, Alzheimer's, Parkinson's, and even normal aging have all been related to dysfunctional mitochondria.

What do the makeup and purposes of mitochondria entail?

Cell organelles called mitochondria, which are membrane-bound, generate the majority of a chemical energy needed to power a cell's metabolic processes (plural: mitochondrion). The chemical energy produced by the mitochondria is stored in a little molecule called adenosine triphosphate (ATP).

What do mitochondria have importance?

As the energy generators in almost every human cell (as well as those of animals, plants, and fungi), mitochondria play a crucial part in generating energy to power cellular function and pretty much all of our biological activities.

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HELPPPPPPPPP!!!!

why is it important for a fruit to ripen when its seeds are mature

Answers

Through these changes, fruits ripen and become sweet, colored, soft, and good-tasting. It is good for the plant to invest its resources into the fruit and its ripening because a ripe fruit attracts the consumers that help the seeds to be spread far and wide, which is important for the plant's survival and regrowth
It is good for the plant to invest its resources into the fruit and its ripening because a ripe fruit attracts the consumers that help the seeds to be spread far and wide, which is important for the plant's survival and regrowth.

Label the parts of the below lipid molecule.
Is this a saturated or unsaturated lipid? __________________________

Answers

The lipid molecule shown in the image is a satured lipid.

What is a satured lipid?

Saturated fatty acids are long carboxylic chains without double bonds in their structure jointly linked to a glycerol molecule. Saturated fatty acids are usually found in lipids and are solid at room temperature. Saturated fatty acids will contain many hydrogen atoms attached to their chain.

Its structure is linear and straight since it does not have double bonds in its hydrocarbon chain, like unsaturated fatty acids, so they can stay close to each other. For this reason its solid composition.

Therefore, we can confirm that the lipid molecule shown in the image is a satured lipid.

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what is the physical explanation for the very slow movement of membrane phospholipids from one leaflet of a biological membrane to the other? what factors influence this rate?

Answers

The physical explanation for the very slow movement of membrane phospholipids from one leaflet of a biological membrane to the other is the polar head must cross the hydrophobic area of the phospholipid membrane in order to go from one side to the other.

It takes a lot of energy to complete this process, which makes it go slowly. Last but not least, phospholipids have the ability to "flip-flop" between the two leaflets of the bilayer in a transverse motion. The phospholipids in the lipid bilayer can move either radially, laterally, or transversely between the bilayers. The monolayer (also known as a leaflet) on one side of a synthetic bilayer extremely seldom migrates to the other. Less frequently than once per month, each molecule experiences this "flip-flop" process.

Temperature and Cholesterol level are those factors that influence the rate of the slow movement of membrane phospholipids from one leaflet of a membrane to the other.

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What steps does the cell take to speed up the rate of DNA replication?

Answers

Answer:

Addition of enzymes will increase the speed rate of DNA replication.

Helicase:
It is responsible for DNA strands unwinding and unzip the DNA strands from their center.

Primase:
It is responsible for 5' to 3' direction RNA primers synthesis, okazaki fragment's template.

Polymerase 3:
It synthesize the nucleotides from the 5' to 3' direction on leading end.

Polymerase 1:
It synthesize the nucleotide (okazaki fragments) on lagging strand.

Ligase:
It connects all okazaki fragments.

Topoisomerase:
Topoisomerases are used to regulate the super coiling.

Answer all please I need it asap
1. A(n) _____________________ transports electrons, along with their energy, to another molecule.

2. What is the equation for photosynthesis?


3. In the __________________________, NADPH and ATP combine with carbon dioxide to produce sugars.


4. In the _________________________, light energy from the sun splits water and generates ATP and NADPH.


5. True / False: Chloroplasts are organelles found in the cells of heterotrophs.


6. True / False: Autotrophs need light in order to carry out photosynthesis.

Answers

1. An electron carrier transports electrons and their energy to another molecule.

2. The equation of photosynthesis is 6CO₂ + 6H₂O → C₆H₁₂O₆ + 6O₂

3. In the stroma NADPH and ATP combine with carbon dioxide to produce sugars.

4. In the thylakoid membrane, light energy from the sun splits water and generates ATP and NADPH.

5. Chloroplasts are not found in heterotrophic cells.

6. Autotrophs need light to carry out photosynthesis.

Why are the answers correct?

An electron carrier is an important molecule involved in cellular respiration as it transports electrons, along with their energy, to another molecule.

Photosynthesis is the process by which plants and organisms such as algae use energy from the sun to convert water, and carbon dioxide to produce oxygen and sugar.

The stroma uses ATP and NADPH in the next stage of photosynthesis to produce three-carbon sugars.

The thylakoid membrane contains chlorophyll and is located in the stroma where the light energy from the sun splits water and generates ATP and NADPH.

In summary, chloroplasts are organelles found in the cells of autotrophs and not heterotrophs.

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1. with regard to linked genes on the same chromosome, which of the following statements is false? a. crossing over is needed to produce nonrecombinant offspring. b. crossing over is needed to produce recombinant offspring. c. crossing over is more likely to separate alleles if they are far apart on the same chromosome. d. crossing over that separates linked alleles occurs during prophase of meiosis i.

Answers

With regard to linked genes on the same chromosome, the following statements is false a.) crossing over is needed to produce the nonrecombinant offspring.

What are linked genes?

When genes are present on different chromosomes or far apart on the same chromosome, they assort independently and can be said to be unlinked.

Genes are said to be linked when they are closely together on the same chromosome. Sex-linked genes are located on sex chromosome and X-linked genes are located on X chromosome. The crossing over frequency  between genes can be used to construct linkage maps that show the locations of genes on chromosomes.

Genetic linkage analysis helps in determining whether the disease phenotype is caused by mutation in a single gene.

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Based on the information from the laboratory about hydrolysis & your knowledge of solubility why are carbohydrates excellent sources of quick energy for organisms

Answers

Carbohydrates are excellent source for quick energy because they are easily broken down by the process of hydrolysis. This happens because carbohydrates are easily soluble in water due to the various polar OH groups attached to its carbons.

Carbohydrates are one of the most essential food component required in diet. There are three types of carbohydrates: monosaccharides, disaccharides and polysaccharides. Chemically, carbohydrates are polyhydroxy ketones or aldehydes.

Hydrolysis is the reaction where the water molecules break the bonds of the substance subjected to hydrolysis. The water itself also gets decomposed in the process.

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what would you expect the scaling coefficient (b) to be when comparing the growth of an organisms surface area (y) when compared to its mass (x) if it is scaling isometrically? group of answer choices

Answers

Dimensions of the new shape x the scaling coefficient factor the original shape's dimensions. Ontogenetic allometry is the measurement of an organism's surface area (y) as a function of its mass (x).

How do cell volume and surface area relate to one another? Why are they so diminutive?

A cell's surface area grows in proportion to its radius square, but its volume grows in proportion to its radius cube as the radius of the cell increases (much more rapidly). Consequently, a cell's surface area to volume ratio declines as it grows larger.

What exactly are allometric and isometric growth?

The growth rates of certain body sections vary from those of the entire body during allometric growth. Body parts develop at the same rate as the rest of the body in isometric growth, in contrast. In summary, whereas the growth rate is identical for isometric growth, it is not for allometric growth.

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what is the energy required for seaweed and tubeworms ?​

Answers

Answer:

Plants absorb energy from sunlight, take in carbon dioxide from the air through their leaves, take up water through their roots, and produce glucose and oxygen.

Explanation:

Seaweeds get their food through the process of photosynthesis, which uses energy from the sun to convert carbon dioxide into organic molecules, and produces the by-product oxygen. “Seaweed” is the common name for countless species of marine algae that grow in the sea. They produce oxygen by photosynthesizing energy from the sun, just like plants do on land.They are a bit like photosynthetic plants, but instead of using energy from light (like plants do to make food from carbon dioxide), they use energy from chemicals present in the cold seeps and hydrothermal vents. Tubeworms use hydrogen sulfide as an energy source, which is the same chemical emitted by a rotten egg. They are one of the few creatures on Earth that do not need to rely on the Sun for energy. Tubeworms take up sulphide from the sediments through root-like structures, which are at least as long as the tube projecting above the ocean floor.

Plants that reproduce sexually generate seeds. These seeds are often dispersed away from the parent, either through wind, animals, or water. Look at the seed shown in this image of bullrush plants. What form of dispersal do you think it uses, and why?

Answers

Wind dispersal is the process through which winds act as dispersal agents, transporting seeds far from the parental plants.  In the exposed example, eolic dispersion is used by this plant species to transport seeds.

What is wind seed dispersal?

Wind dispersal refers to the transport of seeds from the parental plant to other places far away from it by the action of winds.

Winds distribute seeds in different directions and varying distances from the parental plant, which makes them good species dispersal agents.

Some plant species adapted to this agent and developed seed structures that make them more suitable for being transported further and better by winds.

Some adaptations are, for instance,

Light seedsDry seedsThey have structures like feathers, hair, wings, and others.

When we look at the image, we can see bunches of seeds attached to the top of tall sticks.

Plants develop these long sticks to expose seeds to the wind. The longer the stick is, the more exposed sees are.

We can also see that seeds have hair-like structures, which facilitate their release and transport whenever winds blow.

The form of dispersal this plant species uses is wind dispersal. We can tell this because of the long sticks to which seeds are attached and seeds with hair-like structures.

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which of the following observations tells a scientist that the organism she is observing is a eukaryote? group of answer choices the organism has ribosomes the organism has a membrane bound nucleus the organism is unicellular the organism has a cell membrane

Answers

Answer: organism has a membrane bound nucleus.

Explanation:

Eukaryotic cells have a nucleus which has nuclear membrane & in prokaryotic cells DNA is not contained in a membrane bound nucleus it is simply in a region of the cell called the nucleoid.

what type of mutation in this non-autonomous te (ds) would allow it to move in the presence of an autonomous te (ac)?

Answers

Transposase gene mutation in this non-autonomous te (ds) would allow it to move in the presence of an autonomous te (ac).

An alternate inside the ordinary DNA series at a specific gene locus. although the time period often has a bad connotation, mutations (which includes polymorphisms) may be harmful, useful, or neutral in their effect on cell feature.

There are 3 sorts of DNA Mutations: base substitutions, deletions, and insertions. 1. Base Substitutions. single base substitutions are known as factor mutations, taking into account the factor mutation Glu -----> Val which causes the sickle-cell disorder. factor mutations are the maximum common form of mutation and there are sorts.

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which of the following types of pathogens are most likely to be transmitted vertically by the maternal-parturition route? select one: a. foodborne pathogens b. vector-borne pathogens c. pathogens transmitted horizontally by the urogenital-sexual route d. pathogens transmitted horizontally by the respiratory-aerosol route e. none of the above

Answers

Pathogens are most likely to be transmitted vertically by the maternal-parturition route are Pathogens transmitted horizontally by the urogenital-sexual route. So the correct option is c.

An organism that infects its host with disease is referred to as a pathogen, and the severity of the disease symptoms is referred to as virulence. Pathogens come in many forms, including bacteria, viruses, and multicellular and unicellular eukaryotes.

The urine tract and the genital tract are the two primary divisions of the urogenital system. Urine is produced, stored, and eliminated by the urinary tract, made up of the kidneys, ureters, urinary bladder, and urethra.

The majority of primary genitourinary infections are sexually transmitted, and common pathogens include viruses, bacteria, parasites, and bacteria including Treponema pallidum, Neisseria gonorrhoeae, Chlamydia trachomatis, and Trichomonas vaginalis (herpes simplex virus, human papillomavirus, human immunodeficiency virus).

While vertical transmission occurs from mothers to their offspring, horizontal transmission occurs between members of the same generation.

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in general, lymphocytes a) spend most of their time in lymphatic tissue. b) have relatively short life spans. c) have two nuclei. d) are produced and mature only in red bone marrow. e) are located primarily in the blood stream.

Answers

Lymphocytes , in general: A) spend most of their time in lymphatic tissue. Hence option A) is the correct answer.

What are lymphocytes?

Lymphocyte is a type of white blood cell in the immune system of vertebrates. Lymphocytes have natural killer cells, T cells and B cells. They are found in lymph, which prompted the name lymphocyte.

Lymphocytes make up up to 18% to 42% of circulating white blood cells.

If you have low numbers of lymphocytes , there is a higher risk of infection. Lymphopenia symptoms ranges from mild to serious and are correlated to the severity of the lymphopenia  but some people show no symptoms.

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Genetic drift is best described as the redistribution of the frequency of gene occurrence in a(n) _______. a. population b. organism c. ecosystem d. disaster please select the best answer from the choices provided a b c d

Answers

Genetic drift is best described as the redistribution of the frequency of gene occurrence in a(n) a. population.

In the field of biology, genetic drift can be described as a random event in which the allele frequency for a certain population modifies or changes due to an unexpected event.

A gene frequency that was low might become higher and vice versa as a result of genetic drift.

This shift in allele frequency, referred to as genetic drift, might also cause an allele to completely disappear from a certain population.

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What are the primary and secondary sources of energy?​

Answers

Answer:

Primary energy consists of unconverted or original fuels. Secondary energy includes resources that have been converted or stored. For example, primary energy sources include petroleum, natural gas, coal, biomass, flowing water, wind, and solar radiation.

Explanation:

what are the advantages and disadvantages of osmosis

Answers

The benefits of osmosis to living cells is that it provides turgidity to cell tissues and the way in which cells maintain their water balance.

The disadvantage of osmosis is that it removes minerals from living cells and wastes a lot of water from cell content

What is meant by osmosis?

Osmosis can simply be defined as the process which involves the movement of water molecules from a region of lower concentration to a region of higher concentration through a selectively permeable membrane.

That being said, one great benefit about this movement is that it gives turgidity to tissues within the cells.

In conclusion, we can now confirm that osmosis helps movement of substances in and out of the cell.

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