They have exposed ovules. Ovules are a feature that cycas share with angiosperms. Each plant is either all male or entirely female. The presence of ovules is what causes the similarity to angiosperms.
Gymnosperms like cycas have enclosed seeds with more intricate fertilisation systems, whereas cycas have unfertilized seeds that are open to the air to be directly fertilised by pollination.
Cycas often use a single species of very specialised pollinators. They are frequently identified by their thick, wooden trunk and crown of big, stiff, evergreen leaves. Usually, their leaves are pinnate.
Gymnosperms , as opposed to angiosperms (which have enclosed seeds with more complicated fertilisation mechanisms), have unfertilized seeds that are exposed to the air to be directly fertilised by pollination.
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PLEASE HURRY!!!
Why is cosmic background radiation used as evidence of the big bang theory of the origin of the universe?
a It is emitted from a black hole at the center of the universe.
b Its wavelength is getting shorter, so it must be very old.
c It corresponds to the temperature predicted by the big bang theory.
d It is not very common, so it must be running out.
Answer:
i would say C...
Explanation:
How does the Big Bang explain this? well, in it’s initial moments, the universe was in an extremely hot dense state. It was so hot and dense that all matter was in the form of an opaque plasma, and light was not able to travel freely without scattering . As time went on the universe expanded and cooled until protons and electrons were able to combine to form hydrogen atoms, at which point the universe became transparent, and light was able to travel freely through space. The light that we measure now and call the CMB is that same light that has been traveling ever since. It is essentially a picture of the very early universe (called “the surface of last scattering.”) The Big Bang model, where the universe started in a hot dense state and has been expanding ever since, predicts the existence of this light, as well as its temperature and wavelength based on the subsequent expansion of the universe.
which of the following is not correct? increased ozone concentration in the troposphere causes question 1 options: reduced plant growth increased photosynthesis increased respiratory problems global warming
Increased photosynthesis is not correct.
What are effects of increased ozone concentration?Increased ozone concentration in the troposphere can lead to several negative effects, including reduced plant growth, increased respiratory problems, and global warming. Ozone is a strong oxidizing agent that can damage plant tissues, and prolonged exposure to high levels of ozone can reduce plant growth and crop yields.
Ozone can also cause respiratory problems in humans and animals, particularly those with pre-existing respiratory conditions such as asthma. In addition, ozone is a potent greenhouse gas that can contribute to global warming and climate change. However, increased ozone concentration in the troposphere is not expected to increase photosynthesis, as high levels of ozone can damage plant tissues and reduce the efficiency of photosynthesis.
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What is the name for a burst of activity on an EEG in the early stages of sleep?
A. gamma waves
B. sleep spindles
C. REM
D. lingering activation
Sleep spindles is the name for a burst of activity on an EEG in the early stages of sleep.
Such a system includes sleep spindles. The EEG shows bursts of coherent brain activity known as sleep spindles, which are particularly noticeable during stage 2 sleep. They are made up of quick 11–16 Hz waves that last 0.5–1.5 seconds. In animals, the onset of cortical sleep spindles typically happens with high-frequency (about 200 Hz) ripples that travel on sharp hippocampus waves during NREM sleep (Siapas and Wilson, 1998). As memories are solidified during sleep, the co-occurrence of hippocampal sharp waves and cortical spindles may be the mechanism behind the integration of information between the hippocampus and neocortex (Buzsáki, 1996).
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Please help me with these 3 questions. I don't need an explanation, just the number.
1. Rigo left 62 grams of ice in a closed container. When he came back he found that the ice had melted. How much water would be expected to have in the container?
2. Rust is formed when iron reacts with the oxygen in moist air. Suppose 100 g of iron metal rusts. We weigh the rust and find that the rust has a mass of 143 g. What mass of oxygen reacted with the iron?
3. 15 grams of hydrogen and 7.5 grand of oxygen were placed in a beaker. An explosion happened inside the beaker that produced water. The beaker was never opened. How many grams of water were produced?
Thank you for anyone who has taken the time to answer these questions. I really do appreciate you :)
Answer:
how to construct a scale and vernier
Give three types of organic compounds that can be broken down for energy
Three types of organic compounds which can be broken down for energy are carbohydrates, lipids, and proteins.
The chemical compounds present in living things are known as organic compounds because they show association with organisms and are carbon-containing compounds. Organic compounds are the subject matter of organic chemistry.
Carbohydrates: Every organism uses carbohydrates. These are the molecules which are composed of carbon, hydrogen and oxygen in the ratio of 1:2:1, respectively.
Lipids: Lipids are organic molecules including carbon, hydrogen, and oxygen atoms. The ratio of hydrogen atoms to oxygen atoms is much higher in lipids than in carbohydrates. Lipids include steroids, waxes, and fats.
Proteins: These are the complex molecules which are composed of the amino acids which includes carbon, oxygen, nitrogen and hydrogen atoms. The links forged between the amino acids are peptide bonds, and small proteins are often called peptides.
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which theory explains the origin of chloroplasts and mitochondria? group of answer choices the theory of natural selection the endosymbiont theory the cell theory the geologic time theory the theory of evolution
The endosymbiont theory explains the origin of chloroplasts and mitochondria.
The endosymbiont theory holds that some of the organelles within eukaryotic cells were once prokaryotes. Mitochondria and chloroplasts are prokaryotic cell size and divide by binary fission. Mitochondria and chloroplasts have their own DNA, which is circular rather than linear.
The mitochondrial endosymbiosis theory describes how eukaryotic mitochondria, chloroplasts, and other membrane-bound organelles may have arisen from symbiosis between aerobic prokaryotic and anaerobic eukaryotic host ancestors. It is a theory about whether there is a gender. The Russian botanist Konstantin Mereshkovsky was the first to propose the symbiosis or endosymbiosis theory, which states that the organelles that distinguish eukaryotes from prokaryotes form mutually beneficial relationships between individual prokaryotes.
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Complete question :
Which theory explains the origin of chloroplasts and mitochondria?
A. the theory of evolution
B. the theory of natural selection
C. the geologic time theory
D. the cell theory
E. the endosymbiont theory
kent cycle at a speed of 20km/h how long does it takes for him to cyclew 120 km
Answer:
6 Hours
Explanation:
120/20 = 6
As the speed is given in km/h the answer is 6 Hours
the bacteria nitrosomonas sp. is found in the soil and gets energy by converting ammonia (nh3) to nitrite (no2-) and gets carbon to build other molecules by fixing carbon dioxide from the atmosphere (co2). how would you classify nitrosomas sp.?
The bacteria Nitrosomonas sp. is found in the soil and gets energy by converting ammonia (NH3) to Nitrite (NO2-) and gets carbon to build other molecules by fixing carbon dioxide from the atmosphere (CO2). How would you classify Nitrosomas sp?
b. Chemolithoautotroph
HELP ME PLEASE I HAVE THE TEST TMR AND THIS IS MY STUDY GIUDE TO HELP ME ON THE TEST!! I WILL GIVE BRAINLIEST!!PLEASE!!
The macromolecule in yellow box is nitrogenous base, in green it is sugar and in red box it is phosphate group.
What is macromolecule?A macromolecule is a big molecule made up of monomers, which are repeating units. Macromolecules are essential components of biological functions and serve as fundamental building blocks of living things.
The building blocks of nucleic acids, the biological molecules that hold and transfer genetic information, are nucleotides.
A sugar molecule, a phosphate group, and a nitrogen-containing nitrogenous base make up the three primary components of a nucleotide.
In the yellow box, the macromolecule is a nitrogenous base; in the green box, a sugar; and in the red box, a phosphate group.
Thus, this can be the answers for the given question.
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A person who is homozygous recessive at a locus has which of the following?
1. Two copies of the dominant allele
2. Two copies of the recessive allele
3. An autosomal trisomy
5. A recessive allele on the Y chromosome only
A person who is homozygous recessive at a locus has two copies of the recessive allele.
What are homozygous recessive?
When an organism possesses two copies of the same allele for a given gene, it is said to have a homozygous recessive phenotype. For instance, an organism would be homozygous recessive for blue eyes if it possessed that allele. Because they are less likely to be impacted by harmful mutations, homozygous recessive features are frequently better suited for survival. An organism is probably going to perish if a gene required for its survival undergoes a mutation. A mutation in a gene, however, that is not essential for an organism's survival increases the likelihood of that creature surviving. This is due to the fact that the organism can still operate normally despite the gene's mutation.
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a man is heterozygous type A blood and a woman is type o
Answer:
Explanation:
Blood type is determined by the presence or absence of certain antigens on the surface of red blood cells. The most important blood type antigens are A and B, which are controlled by two genes located on the same chromosome. If an individual has two copies of the A gene, they are said to have type A blood, and if they have two copies of the B gene, they are said to have type B blood. If an individual has one copy of each gene, they are said to have type AB blood, and if they have two copies of neither gene, they are said to have type O blood.
In your scenario, if a man is heterozygous type A blood (AA or AO), and a woman is type O (OO), their offspring can only have type O blood because type O blood is recessive to both A and B. This means that type O blood will only be expressed in individuals who inherit two copies of the O gene, one from each parent.
It's worth noting that the inheritance of blood type is a classic example of codominance, where both alleles are expressed equally and the phenotype of the offspring reflects the presence of both alleles.
What are the 3 main groups of eukaryotic microbes?
The three main groups of eukaryotic microbes are protists, fungi, and algae.
Protists: Protists are a diverse group of eukaryotic microorganisms that includes unicellular and multicellular organisms. They can be found in almost every environment and include a wide range of organisms, such as amoebae, and protozoans.
Fungi: Fungi are a diverse group of eukaryotic microorganisms that include yeasts, molds, and mushrooms. They can be found in almost every environment and play important roles in nutrient cycling and decomposition, as well as in the production of food, medicines, and other useful products.
Algae: Algae are a diverse group of eukaryotic microorganisms that includes unicellular and multicellular organisms. They are found in aquatic environments and play important roles in primary production, nutrient cycling, and the global carbon cycle. Some species of algae are also used as food sources and for the production of biofuels and other useful products.
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which of the following is an example of a carbohydrate? multiple choice question. glycogen dna vitamins cholesterol
Glycogen is an example of a carbohydrate.
The majority of consumers are at least somewhat familiar with the macromolecules known as carbohydrates. Some people follow "low-carb" diets in order to reduce weight. In contrast, athletes frequently "carb-load" before significant tournaments to make sure they have enough energy to compete at a high level. Granules, fruits, and vegetables are all natural sources of carbs, which are in reality an important component of our diet. The body uses carbohydrates for energy, notably the simple sugar glucose. Additionally, in people, animals, and plants, carbohydrates serve additional critical purposes.
(CH2O)n, where n is the number of carbon atoms in the molecule, is a representation of carbohydrates. In other words, in the molecules of carbohydrates, the proportion of carbon, hydrogen, and oxygen equals 1:2:1. Three subtypes of carbohydrates—monosaccharides, disaccharides, and polysaccharides—are recognized in the literature.
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WILL GIVE BRAINLIST TO BEST ASNWER
During the spring and summer months, female bats may not give birth and male bats may move from roost to roost. What might be factors driving this behavior?
What level of protein structure has α helixes or β pleated sheets?
The level of protein structure that has α helixes or β pleated sheets is the Secondary Protein Structure.
The Secondary Protein Structure refers to the three-dimensional structure of individual polypeptide chains. The arrangement of these polypeptide chains includes helixes, pleated sheets, and a few unique forms.
The right-handed spiral structure of the polypeptide backbone results in the formation of alpha helices. The amide group of one amino acid forms hydrogen bonds with the carbonyl group of the amino acid four places downstream, stabilising this secondary structure.
On the other hand, when two or more polypeptide backbones are arranged side by side, pleated sheets are created. The sheets are held together by hydrogen bonds formed by the side chains of the amino acids on the backbones.
This secondary structure is critical for protein stability and has a role in functional activity. Proteins' tertiary structure, or the overall three-dimensional form of the protein, is dependent on the secondary structure of the protein.
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which structure is highlighted coronary sinus right posterior ventricular vein great cardiac vein middle cardiac vein left posterior ventricular vein
All of the structures listed are veins that are part of the coronary circulation, which supplies blood to the heart muscle itself.
The coronary sinus is a large vein that collects deoxygenated blood from the heart muscle and returns it to the right atrium of the heart. The great cardiac vein runs along the left side of the heart and drains into the coronary sinus. The middle cardiac vein runs along the posterior surface of the heart and drains into the coronary sinus. The left posterior ventricular vein and right posterior ventricular vein are smaller veins that drain the posterior walls of the left and right ventricles, respectively, and also empty into the coronary sinus. All of the structures listed are veins that are part of the coronary circulation, which supplies blood to the heart muscle itself.
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Do eukaryotes break down molecules to generate energy?
Yes, eukaryotes use molecular breakdown to create energy.
Cellular respiration is the term for this procedure, which is necessary for living. In order to create energy during this process, organic compounds like carbohydrates and lipids are broken down in the presence of oxygen.
Depending on the oxygen supply, cellular respiration can happen either aerobically or anaerobically. In aerobic respiration, glucose is converted into carbon dioxide, water, and energy using oxygen. In anaerobic respiration, glucose is transformed into lactic acid and energy without the need of oxygen.
In both situations, the energy generated powers a number of cellular processes, such as the pumping of ions across membranes and the creation of macromolecules.
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you should conduct an experiment that would test whether the coating of extracellular slime changed the speed at which the slime mold moved across the substrate. what two conditions you will choose to text the hypothesis?
The two choices to test the hypothesis is to place the slime mold on the agar and another to place the slime mold on agar coated with extracellular slime.
You may plan an experiment with two conditions—one with slime mold placed on plain agar and one with slime mold placed on agar coated with extracellular slime—to see whether there are speed differences. In both cases, a food supply could be positioned at a set distance from the slime mold, and the time it took to get there could be monitored.
The mold wanders around in quest of the nutrients it needs to grow larger, just like an amoeba does. Throughout the entire experiment, we also saw that the slime mold prefers to live and thrive in cold, damp surroundings, such as those that are close to bodies of water, tree bark and branches, etc.
Slime molds are an uncommon group of organisms that were formerly categorized as fungi, plants, and mammals. Slime molds have cellulose in the cell walls of their spores, just like plants do. Slime molds are heterotrophs, in contrast to plants.
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where was the first turf research performed in the united states?
The first turf research in the United States was performed at the Rutgers turfgrass Agricultural College in New Brunswick, New Jersey, in the late 1800s. Dr. Albert A. Hansen.
He served as the director of the turf research experiment station, was interested in the practical applications of turfgrass for recreational and agricultural purposes. He began a series of experiments that focused on the selection of turfgrass varieties for improved turf research characteristics such as density, drought tolerance, and disease resistance. In addition, he conducted research on the best practices for fertilization, irrigation, and mowing to maintain healthy and attractive turf. Hansen's work at Rutgers established the foundation for modern agricultural turfgrass science, and his legacy continues to influence research and development in the industry today.
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if we were able to artificially alter the membrane permeability of pacemaker cells so that sodium influx is more rapid, ___
If we were able to artificially alter the membrane permeability of pacemaker cells so that sodium influx is more rapid, it would cause an increase in the rate of depolarization of the pacemaker cells.
This, in turn, would result in an increase in the heart rate, since the pacemaker cells set the pace for the rest of the heart. The normal pacemaker cells in the sinoatrial (SA) node of the heart spontaneously depolarize and generate an action potential, which then spreads to the atrial and ventricular muscles and causes them to contract. If the sodium influx into the pacemaker cells is increased, the rate of depolarization will be faster, and the time it takes to reach the threshold potential will be shorter. This will lead to a more rapid firing of action potentials in the SA node, and thus a faster heart rate.
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What layer are the tectonic plates moving on?
Answer:
mantle
Explanation:
Earth's thin outer shell is broken into big pieces called tectonic plates. These plates fit together like a puzzle, but they're not stuck in one place. They are floating on Earth's mantle, a really thick layer of hot flowing rock.
Answer:
mantle
Explanation:
the parafollicular cells of the thyroid are stimulated by fsh released from the anterior pituitary. group of answer choices true false
This is a false assertion; fsh secreted by the anterior pituitary stimulates the thyroid's parafollicular cells.
What impacts a person's thyroid?It is a component of human endocrine system and regulates a number of crucial bodily processes by creating and releasing (secreting) specific hormones. The primary function of the thyroid is to regulate your metabolic rate, which is the rate at which your body converts the food you eat into energy.
Is thyroid disease a dangerous illness?A thyroid issue is frequently a chronic medical ailment that requires ongoing management. A daily prescription is frequently needed for this. Your medical professional will keep track of your medications and make changes as needed over time.
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What is it called when a gene is only found on the X chromosome?
Genetic problems connected to mutations in X chromosome genes are referred to as X-linked recessive inheritance. Due to the fact that he possesses just one X chromosome, a male with this mutation will be impacted.
If a gene is found solely on the X chromosome, what happens?X-linked diseases are illnesses resulting from gene mutations on the X chromosome. Because they only have one X chromosome, males do not have XCI. Therefore, if a disease-causing gene exists on the X chromosome of males, it will be active and more likely to result in disease.
What is the name for genes that are only found on the X chromosome?It is known that genes on the X chromosome are X-linked. Because they are present in varying numbers in males (XX) and females (XX), X-linked genes have differential inheritance patterns (XY).
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How does our nervous system allow us to experience the difference between a slap in a tap on the back?
Stronger stimuli (the slap) cause more neurons to fire and more neurons to fire more frequently than weaker stimuli (the tap).
Your nervous system is divided into two parts: the central nervous system (the brain and spinal cord) and the peripheral nervous system (the sensory and motor nerves). The names help to visualize it: the brain and spinal cord serve as hubs, while sensory and motor nerves extend out to provide access to all areas of the body. Simply put, sensory nerves transmit information about our surroundings to the brain via the spinal cord. The brain relays information to the motor nerves, which assist us in performing actions. It's like having a massive inbox and outbox for everything.
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how well an organism survives and reproduces in its environment can be described as its?
An organism's fitness is determined by how well it adapts to its surroundings and reproduces.
An organism's capacity for survival and reproduction in its environment is referred to as fitness. High fitness individuals are those who have environmental adaptations that allow them to live and reproduce in their environment. Fitness, in its most basic sense, refers to an organism's capacity to persist and procreate in its environment, or, less frequently, a population or species. As a result of their ability to reproduce and survive, organisms pass on their genes to the following generation. In evolutionary biology, the ability of an organism to pass on its genetic makeup to its progeny is referred to as "fitness." Being able to live long enough to reproduce and preserve the population or species is biological fitness, also known as "Darwinian" fitness. As a result, you could say that brown beetles had a higher fitness level if they consistently produced more offspring than green beetles due to their colour.
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The above question is incomplete. Check complete question below -
How well an organism survives and reproduces in its environment can be described as its?
A. Fitness
B. Adaptation
C. Survival
D. Acclimatization
Which of these activities is most likely driven by parasympathetic innervation?A)sweating and dilating pupilsB)fight-or-flight responsesC)resting and digestingD)vigorous physical activity
C) resting and digesting. Your body relaxes after times of stress or danger thanks to your parasympathetic nervous system, a network of nerves.
During times when you feel secure and at ease, it also enables the body's life-sustaining systems, such as digestion, to function. "Rest and digest" or "Feed and breed" are rhymes that are used informally to describe this method. In order to aid in food digestion, your digestive tract speeds up digestion and redirects energy. Also, it instructs your pancreas to produce and secrete insulin, which aids in your body's conversion of sugars into a form that can be utilised by your cells.
Removal of waste:
It eases the muscles that allow you to control when you waste or urinate (defecate).
Reproductive system:
It controls some of the bodily processes associated with intercourse, such as arousal (erections in people).
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7. Doctors often count the amount of lymphocytes in a person's blood to see if the person has certain illnesses. Why would this be a useful test? (4 points)
Because they vary in some illnesses, they can be used in conjunction with other cell counts to identify the illness.
further explanationOne of the sorts of immunological cells is the lymphocyte, which is primarily found in the lymph of the lymphatic system. Three different cell kinds make them up.
Natural-Killer (NK) Cells, T-Cells, and B-CellsB and T cells serve as detecting cells. Where they identify and flag "non-self cells" or "infected self cells" as potential threats to the body and start the process of removing them right away.
On the other hand, NK cells will immediately identify and destroy "non-self" or "infected self" cells.
Most often, these cells will react to tumor cells or viral infections. Their blood levels will consequently rise more frequently in these circumstances.
This implies that if a patient has a fever or a sore throat, the doctor can determine whether a viral or bacterial infection is to blame by looking at how much the lymphocyte count rises in the CBC test.
It should be noted, though, that it is not the "only" test employed.
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Significance of 'heat shock' method in bacterial transformation is to facilitate:
A. Binding of DNA to the cell wall
B. Uptake of DNA through membrane transport proteins
C. Uptake of DNA through transient pores in the bacterial cell membrane
D. Expression of antibiotic resistance gene
The correct answer is option C. Uptake of DNA through transient pores in the bacterial cell membrane.
Heat shock is a technique for changing bacteria that includes subjecting bacterial cells to an abrupt increase in temperature. The bacterial cell membrane momentarily becomes permeable as a result of this abrupt temperature rise, allowing DNA to enter the cell.
Through a mechanism called heat shock, DNA may enter bacterial cells by forming brief gaps in the cell membrane. The absorption of DNA through this pathway is more effective than uptake by membrane transport proteins or DNA binding to the cell wall.
Because of its effective DNA absorption, heat shock is particularly helpful when it's essential to express an antibiotic resistance gene in the bacterium.
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A guinea pig has 27 chromosomes in their gametes. How many are in their hair cells?
In the case of a guinea pig, which has 27 chromosomes in their gametes, it is likely that they have 54 chromosomes in their somatic cells, including their hair cells.
This is because guinea pigs, like other mammals, are diploid organisms, meaning they have two sets of chromosomes, one inherited from each parent. However, it is important to note that the number of chromosomes in hair cells, or any other somatic cell, can vary depending on factors such as the stage of the cell cycle, as well as any mutations or chromosomal abnormalities that may be present. For example, if a hair cell undergoes a mutation or a chromosomal rearrangement, the number of chromosomes in that cell could be different from the normal diploid number of 54.
In addition, it is worth noting that the number of chromosomes in gametes can also vary in some cases. For example, some organisms, such as plants, can have different numbers of chromosomes in their gametes depending on the specific reproductive pathway that is used. However, for most mammals, including guinea pigs, the number of chromosomes in the gametes is typically fixed at half the diploid number.
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briefly discuss the early evolution of life, from the first organisms to the development of photosynthesis and oxygen production.
The process of cellular respiration must have access to oxygen in order to take place in all multicellular organisms, including both plants and animals. Cells go through cellular respiration in the presence of oxygen gas, generating energy from food. Water and carbon dioxide are byproducts of the process. These organisms transform the chemical energy for use in metabolic processes within the body.
What is evolution ?Evolution is the transformation in a biological population's genetic make-up over many generations. These characteristics are the manifestations of genes that pass from one parent to the next during reproduction.
There are several patterns that evolution may adopt throughout time. Predation pressures and environmental conditions can have a variety of consequences on how the evolution of the species exposed to them. shows the three main types of evolution—divergent, convergent, and parallel—in action.
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