Giant water bugs, producers,Additional consumers. - Pacific tree frog,Tertiary Consumers. Mountains lion,First-tier consumers. Jackrabbit with a black tip.
The organisms which eat their primary consumers are termed secondary consumers.
Inside the food supply chain, frog is second consumer.Frog does not produce its meal by itself depends on other creatures for food ,so this is a consumer.The organisms which eat their primary consumers are termed secondary consumers. Secondary customers are generally meat-eaters (carnivores) (carnivores). Tertiary consumers are the organisms that consume secondary consumers. They are carnivore-eating carnivores, such eagles or giant fish.Some animals devour other animals, these creatures are called carnivores and that they are called secondary consumers. Frogs and Owls are fantastic examples of a Carnivores! Animals can occasionally serve as both direct and indirect consumers.
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which of the following is not true concerning the checkpoints in the cell cycle? group of answer choices mitosis stops if chromosomes are not properly aligned. the first checkpoint is located in the s phase of interphase. if dna is damaged, the cell will not be released into the s phase. mitosis will not occur if dna is damaged or not replicated.
The untrue statements concerning the checkpoints in the cell cycle is that the first checkpoint is located in the s phase of interphase.
Option B is correct.
What is a cell cycle?The cell cycle is described as the series of events that take place in a cell that cause it to divide into two daughter cells.
There are three primary checkpoints in the cell cycle:
G1 checkpoint, G2 checkpoint, andthe M checkpoint.We know that the first checkpoint is located in the G1 phase of interphase, and has the responsibility that the cell has adequate resources to enter the S phase.
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please help A skeletal muscle is a composition of several components bundled one into the other. At which structural level in the muscle does contraction occur to bring about contraction in the whole muscle?
A.
myofibril
B.
muscle fiber
C.
myoneural junction
D.
tendon
E.
fascicle
Answer:
C. Myoneural Junction
Answer:
myofibril
Explanation:
got it correct!
the coastal cell for sand input and output can be compared to
The coastal cell for sand input and output can be compared to a dynamic equilibrium system.
A coastal cell is a conceptual model used to understand the movement of sand along a coastline. It consists of a stretch of coastline and its associated nearshore zone, including the beach, surf zone, and offshore sandbars. The concept of a coastal cell recognizes that sand is constantly being transported along the coast by waves, tides, and currents. In this context, the term "cell" refers to a self-contained sediment system with inputs and outputs.
The inputs include the supply of sand from rivers, erosion of cliffs, and sediment transported by longshore currents, while the outputs include sand lost to deep water, deposition in offshore bars, or export to adjacent cells. The coastal cell operates in a state of dynamic equilibrium, where the inputs and outputs of sand are balanced over time, maintaining the overall shape and stability of the coastline.
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Why does it take longer for your body to break down complex carbohydrates than simple carbohydrates?
Explanation:
complex carb pack more nutrients are simple carbs that are high in fiber and digest more slowly this makes them more ceiling which means a good option to for weight control
The small intestine is where carbohydrates are chemically broken down, instead of the stomach. The disaccharides and pancreatic amylase complete the chemical cleavage of digestible carbs.
What are the complex carbohydrates in the body?The building blocks of large polysaccharides are lengthy, complicated chains of sugar molecules.
Peas, beans, whole grains, and vegetables are examples of foods that are sources of complex carbohydrates. The body converts simple and complex carbohydrates into glucose (blood sugar), which is then used as fuel.
Longer-lasting blood glucose increase and longer-lasting energy elevation are produced by complex carbs.
Therefore, complex carbs are more efficient in giving the body energy, which is the main purpose of carbohydrates.
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Which type of symbiosis is the
relationship between plants and nitrogen
fixing bacteria?
Parasitism
Commensalism
Mutualism
Predation
Answer:
mutualism
Explanation:
Both benefit: bacteria get food (glucose and nutrients) while plants get usable forms of nitrogen.
the cake-shaped trophic pyramid above shows how ddt concentrations increase at higher trophic levels. the source of the contaminate is . based on the image above, contains the lowest concentration of contaminate. using the principle of humans are expected to contain the largest amount of ddt. in short, as biomass , the concentration of toxins . this is an example of .
As biomass increases, the concentration of toxins increases. This is an example of biomagnification.
Toxin concentrations in the food chain can rise through a process called biomagnification. Each organism ingests an increasing amount of the toxin as it moves up the food chain, eventually increasing concentrations at higher trophic levels.
Because creatures at higher trophic levels eat many organisms at lower trophic levels, there is a bigger buildup of poisons as a result.
An illustration of biomagnification is the cake-shaped trophic pyramid above, where the concentration of DDT rises with each higher trophic level.
Higher trophic levels (like humans) are predicted to contain the most DDT, whereas the primary producer (plants) is predicted to have the lowest concentration.
Complete Question:
The cake-shaped trophic pyramid above shows how DDT concentrations increase at higher trophic levels. The source of the contaminate is not shown in the image. Based on the image above, the primary producer (plants) is expected to contain the lowest concentration of DDT. Using the principle of biomagnification, higher trophic levels (such as humans) are expected to contain the largest amount of DDT. In short, As biomass increases, the concentration of toxins increases. This is an example of __________.
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The archaebacteria kingdom has been on earth for at least ________ years.
Answer:
Archaea are found in the harshest environments on Earth, and are the oldest known organisms on Earth, appearing in the fossil record over 3.6 BILLION years ago
Explanation:
Hope this helps!
The archaebacteria kingdom has been on earth for at least 3.5 billion years.
What are Archaebacteria?Archaebacteria may be defined as a group of microorganisms that should be considered to be an ancient form of life that significantly evolved separately from the bacteria and blue-green algae (cyanobacteria).
Such types of microorganisms live in extremely harsh conditions where there is no sufficient availability of oxygen as well as other required resources.
This type of microorganism evolves more as compared to the other. They are found to be the linkage between prokaryotes and eukaryotes.
During the evolution of archaebacteria, the environmental condition was reduced, anaerobic, and the mode of nutrition was definitely heterochemotrophic.
According to the Zoological time scale, the archaebacteria kingdom has been on earth for at least 3.5 billion years.
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moving substances from an area of low concentration to an area of high concentration is not energetically favorable. how do cells move substances that are of low concentration on one side of a cell membrane to the other side, where they are relatively high?
Cells move substances from an area of low concentration to an area of high concentration through the process of active transport.
Active transport requires the use of energy, typically in the form of ATP (adenosine triphosphate), to move substances against their concentration gradient. This is done through the use of protein pumps, which are embedded in the cell membrane and use the energy from ATP to pump substances across the membrane.
One example of active transport is the sodium-potassium pump, which pumps sodium ions out of the cell and potassium ions into the cell, both against their concentration gradients. This helps to maintain the proper balance of ions inside and outside of the cell, which is important for proper cell function.
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in a population of mendel's garden peas, the frequency of the dominant a (yellow flower) allele is 80%. let p represent the frequency of the a allele and q represent the frequency of the a allele.
In this population of Mendel's garden peas, the frequency of the A allele (p) is 0.8 or 80%, and the frequency of the a allele (q) is 0.2 or 20%.
In a population of Mendel's garden peas, the frequency of the dominant A (yellow flower) allele is given as 80%. We can represent the frequency of the A allele as p and the frequency of the a allele as q. Since these are the only two alleles in the population, their frequencies should add up to 100%.
So, the frequency of the a allele can be calculated as 100% - 80% = 20%. Therefore, q = 0.2.
The frequency of the A allele can be calculated as 1 - q = 1 - 0.2 = 0.8. Therefore, p = 0.8.
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Which of the following statements is true about all members of a species?
a. they are seasonally isolated from each other
b. they are geographically isolated from each other
c. they can reproduce and produce fertile offspring
d. they have identical genes
Please answer quickly!!!
Which of the following is evidence that cells no longer respond to external factors and may have turned cancerous?
A. New cells replace old or damaged cells.
B. Cell clumps form, crowding existing cells.
C. Dead cells are shed at a more rapid rate.
D. Dormant cells re-enter an active cell cycle.
Answer:
option C will be the correct answer
Dead cells are shed at a more rapid rate is evidence that cells no longer respond to external factors and may have turned cancerous.
What are the cancer cells?Cancer cells are defined as cells which divide continually, forming solid tumors or flooding the blood with abnormal cells. Cell division is a normal process used by the body for growth and repair.
Sometimes this orderly process breaks down, and abnormal or damaged cells grow and multiply when they shouldn’t. These cells may form tumors, which are lumps of tissue.
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3. Describe an example of a symbiotic relationship involving humans
Answer: Humans have a mutualistic relationship with microorganisms, primarily bacteria, in their digestive tract. Bacteria aid in digestion and regulate the intestinal environment, and in return, they feed off of the food humans eat.
Explanation:Humans have a mutualistic relationship with microorganisms, primarily bacteria, in their digestive tract. Bacteria aid in digestion and regulate the intestinal environment, and in return, they feed off of the food humans eat.
One of the examples of a symbiotic relationship involving humans is the mutual relationship of humans with microbes like bacteria in their digestive tract.
• Symbiosis refers to an ecological relationship between two organisms from distinct species.
• The different kinds of symbiosis are mutualism, commensalism, parasitism, predation, and competition.
• Generally, symbiosis means mutualistic symbiotic association. In this, both the organisms are benefitted.
• Humans show a mutualistic association with the microbes like bacteria present in their digestive tract. These bacteria help in digestion and monitor the environment of the intestine, and in return, they feed on the foods consumed by humans.
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The cerebellum helps in moderating both __________ and a person’s ability to differentiate between various __________.
A.
feeling . . . sensations and emotions
B.
perception . . . sights and tastes
C.
breathing . . . tastes and smells
D.
emotion . . . sounds and textures
Answer:
D. emotion . . . sounds and textures
Explanation:
EDGE 100%
Answer:
D). emotion . . . sounds and textures
Explanation: i just took the test on edge 2020
The death rate of organisms in a population exhibiting a type III survivorship curve is:
a. unrelated to age.
b. usually correlated with density-independent causes.
c. higher in the post-reproductive than in the pre-reproductive years.
d. lower after the organisms survive beyond the earliest age groups.
e. more or less constant throughout their lives.
The death rate of organisms in a population exhibiting a type III survivorship curve is
d. lower after the organisms survive beyond the earliest age groups
A survivorship curve is a graph that displays the number or percentage of individuals for a certain species or group that survive to each age (e.g. males or females). Based on a life table, survival curves for a certain cohort (a collection of people about the same age) can be created.Which of the three survivorship curve kinds are they?
People with Type I survivability have high survival rates throughout their whole life spans. The proportion of deaths over time is constant in populations with Type II survival. Young-onset mortality is extremely high in populations with Type III survival.
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Which answer shows the correct arrangement of terms from smallest to largest?
The correct answer is organism, ecosystem, biome, and biosphere.
An ecosystem is a complex network of living organisms and their interactions with each other and their physical environment. It encompasses both the biotic (living) and abiotic (non-living) components that coexist and influence one another within a specific area. Organisms within an ecosystem rely on each other for survival, forming intricate food webs and nutrient cycles.
The abiotic factors, such as sunlight, temperature, water, and soil, provide the necessary resources and conditions for life. Ecosystems can range from small-scale, like a pond, to large-scale, like a forest or a coral reef. They play a crucial role in maintaining ecological balance, supporting biodiversity, and providing vital services such as air and water purification, carbon sequestration, and climate regulation.
Therefore, the correct answer is organism, ecosystem, biome, and biosphere.
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Directions: Solve each problem showing your work in the Punnett square. For each cross, give the genotypes and phenotypes of the offspring and the probability of getting each. List the genotypes and phenotypes in the table seen by each problem.
Answer the questions that accompany each problem.
What vou need to know about
the mice: In laboratory mice, gray coat color (G) is dominant over albino coat color (g).
I. Cross a female Gg with a male gg.
(Example is the picture)
NEED HELP WITH TWO:
1. Cross a gray female, whose father was albino, with a heterozygous male.
(The same box in the example picture / needs to be solved)
(the same genotypes and phenotypes list / that needs to be solved)
1. What is the probability of getting gray offspring?
2. What is the probability of getting albino offspring?
3. How many possible genotypes are there among the offspring?
4. How many possible phenotypes are there among the offspring?
5. What is the probability of getting heterozygous offspring?
6. What is the probability of getting homozygous offspring?
7. What is the genotype of the female? How do you know?
8. What is the genotype of the male? How do you know?
2. Cross an albino female, whose father was gray, with a gray male, whose mother was albino
(The same box in the example picture / needs to be solved)
(The same genotypes and phenotypes list / needs to be solved)
1. What is the probability of getting gray offspring?
2. What is the probability of getting albino offspring?
3. How many possible genotypes are there among the offspring?
4. How many possible phenotypes are there among the offspring?
5. What is the probability of getting heterozygous offspring?
6. What is the probability of getting homozygous offspring?
7. What was the genotype of the father of the albino female?
Lipids in membranes are capable of many different types of movement. What type of movement is energetically unfavorable and only occurs very rarely in biological membranes
The type of movement that is energetically unfavorable and only occurs very rarely in biological membranes is known as transverse diffusion or flip-flop movement.
Explanation:
Transverse diffusion or flip-flop movement is a specific type of movement that can occur in biological membranes. It involves the relocation of a lipid molecule from one leaflet of the membrane to the other, meaning it moves from the inner membrane to the outer membrane or vice versa. However, this type of movement is energetically unfavorable and occurs very rarely in biological membranes.
The reason for this is that flip-flop movement requires the hydrophobic part of the lipid molecule to traverse the hydrophilic environment of the membrane's aqueous core. This process requires energy, making it energetically unfavorable. The hydrophobic part of the lipid molecule prefers to remain within the hydrophobic core of the membrane where it is shielded from the surrounding hydrophilic environment.
Additionally, the asymmetrical distribution of membrane lipids in the two leaflets of the membrane further limits the occurrence of transverse diffusion or flip-flop movement. Biological membranes typically have an asymmetrical arrangement of lipids, with different types of lipids preferentially localized to each leaflet. This asymmetry is maintained by specific enzymes and transport proteins that regulate the movement of lipids between the two leaflets.
Overall, transverse diffusion or flip-flop movement is energetically unfavorable and occurs very rarely in biological membranes due to the hydrophobic nature of the lipid molecules and the asymmetrical distribution of lipids between the leaflets. Other types of movement, such as lateral diffusion (movement within the same leaflet) and rotational movement, are more common and energetically favorable in biological membranes.
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SOMEONE PLS HELP WITH THESE TWO QUESTIONS
1)Chad’s family just moved into a new home. The sun went down as Chad was moving boxes into the house, so he had to turn on a light to see. Which statements are true about the power Chad used? Choose the two statements that apply.
A. The power he used to move the boxes can be found by determining the rate at which work was done on the boxes.
B. The power Chad used to move the boxes is the force he used times the distance he moved them.
C. The power of the light Chad turned on is the amount of energy changed from electricity to light.
D. The power of the light Chad turned on is the amount of energy transferred per time.
2)Raul dug a hole in his yard to repair a water pipe. It took him 2 seconds to apply a force of 50 Newtons to push the shovel 0.25 m into the ground. How much power was used?
A. 0.01 watts
B. 6.25 J/s
C. 25.00 N•m•s
D. 100.00 watts
Answer:
1.) A and D
2.) B
Explanation:
The power he used to move the boxes can be found by determining the rate at which work was done on the boxes. The power of light Chad turned on is the amount of energy transferred per time. So the correct options are A and D. In 2nd, the power used was 6.25 J/s. So the correct option is B.
What is power?
The watt, denoted by the letter W, is the common unit used to measure power. James Watt, a Scottish businessman and inventor, is honoured with the unit's name. The watt is certainly a term you frequently encounter in daily life. Electrical devices like light bulbs and stereos commonly advertise their power output in watts. One watt is equivalent to one joule of work performed each second by definition.
Horsepower is another power unit that is still extensively used. This was first used to describe the ability of a regular horse to spin a capstan in the 17th century and is often represented by the sign hp. Since then, a metric horsepower has been defined as the force needed to raise a 75 kg mass a metre in one second, where 75 kg is the mass's weight in kilogrammes.
Therefore, for 1) the correct option is A and D and for 2) the correct option is B.
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how does the presence of large fenestrations within sinusoids affect the movement of cancerous cells or bacteria?
The large fenestrations in sinusoids affect the movement of cancerous cells or bacteria by allowing them to enter and exit the bloodstream easily.
Fenestrations are tiny holes found in the walls of small capillaries that allow the exchange of nutrients, gases, and other molecules between the bloodstream and surrounding tissues. The diameter of these fenestrations is larger than that of the endothelial cells' cell membrane, resulting in increased permeability.
In the case of sinusoids, they have larger fenestrations that facilitate the movement of larger substances, such as proteins, white blood cells, and other cells, through the endothelium and into the surrounding tissues. As a result, the presence of large fenestrations within sinusoids makes it simpler for cancerous cells or bacteria to pass into and out of the bloodstream.
In general, fenestrations are critical for many physiological processes. They provide a selective barrier that prevents the movement of certain substances while allowing others to pass through. Fenestrations also help with the movement of immune cells and other molecules that are necessary for maintaining tissue homeostasis.
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PLEASE HELP i’ll link the picture of the question below, if there’s any confusion and you have a question about it ask me
Answer:
ok the second generation will be red and pink third wil be red and pink and whit foruth generation will be whithe and pink
Explanation:
bro we need the project and can i have more info and thecolours can mix
In a ten-year prospective cohort study of the relationship between stress and bipolar disorder, which of the following occurrences would violate an assumption necessary to directly calculate cumulative incidence? a. An unusually large increase in bipolar disorder diagnoses occurring in study yeca b. A large percentage of subjects are lost to follow-up c. Exclusion at baseline of all subjects currently being treated for bipolar disorder d. Bipolar disorder is relatively common in the population
Option b, a large percentage of subjects being lost to follow-up, would violate an assumption necessary to directly calculate cumulative incidence in a ten-year prospective cohort study on the relationship between stress and bipolar disorder.
Cumulative incidence is a measure used in epidemiological studies to estimate the risk of developing a disease over a specified period. It is calculated by dividing the number of new cases of the disease by the total population at risk.
In a ten-year prospective cohort study, researchers follow a group of individuals without the disease of interest (in this case, bipolar disorder) over a period of time to observe the occurrence of new cases. However, there are certain assumptions that need to be met for the direct calculation of cumulative incidence. One of these assumptions is that there should be minimal loss to follow-up.
Option b states that there is a large percentage of subjects lost to follow-up. This violates the assumption necessary for directly calculating cumulative incidence because the loss to follow-up introduces the possibility of bias and incomplete data. If a significant number of subjects drop out or are lost during the study period, it becomes challenging to accurately determine the occurrence of new cases of bipolar disorder and calculate the cumulative incidence.
Other options provided:
a. An unusually large increase in bipolar disorder diagnoses occurring in study year: This occurrence does not violate the assumption necessary to directly calculate cumulative incidence. It may reflect a genuine increase in the occurrence of bipolar disorder in the study population.
c. Exclusion at baseline of all subjects currently being treated for bipolar disorder: This exclusion does not violate the assumption necessary to directly calculate cumulative incidence. By excluding individuals already being treated for bipolar disorder, the study focuses on observing new cases and estimating the risk among those initially free of the disease.
d. Bipolar disorder is relatively common in the population: The relative commonness of bipolar disorder in the population does not violate the assumption necessary to directly calculate cumulative incidence. It may affect the overall incidence rate but does not impact the calculation itself.
In a ten-year prospective cohort study on the relationship between stress and bipolar disorder, a large percentage of subjects being lost to follow-up (option b) would violate the assumption necessary to directly calculate cumulative incidence. Loss to follow-up introduces the possibility of bias and incomplete data, making it challenging to accurately determine the occurrence of new cases of bipolar disorder over time.
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What does asexual and sexual reproduction have in common?
Require living cells
Produces offspring
Has DNA for genetic information
Name three substances that pass from the tissues into the blood.
The three substances are Oxygen, Carbon Dioxide and Nutrients.
Oxygen (O2) - Oxygen is needed by the cells in the body to carry out cellular respiration and produce energy. Oxygen is transported from the lungs to the rest of the body via the blood.
Carbon dioxide (CO2) - Carbon dioxide is a waste product of cellular respiration and is transported from the tissues to the lungs via the blood where it is exhaled.
Nutrients - Nutrients such as glucose, amino acids, and fatty acids are transported from the digestive system to the rest of the body via the blood. These nutrients are used by the cells in the body for energy production and growth.
Therefore, the three substance that pass from the tissues into the blood are Oxygen, Carbon Dioxide and Nutrients.
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Answer:
The three substance that pass from the tissue into the blood are
waste products food material respiratory gasExplanation:
hope it helps<3the starting molecule for glycolysis is
Answer:
The starting molecule for glycolysis is glucose.
Explanation:
I think this picture might show why ⬇︎
The starting molecule for glycolysis is glucose.
In the end, glucose is split into two pyruvate molecules through glycolysis. Glycolysis can be thought of as having two phases that take place in the cytosol of cells. Due to the use of two ATP molecules, the first phase is known as the "investment" phase, and the second phase is known as the "payoff" phase.
Glycolysis is crucial because it is the metabolic pathway by which glucose is converted into energy for the cells. For all living things, glucose is the most important source of energy. The majority of cells in the human body use glucose as their preferred fuel: Red blood cells can only fuel themselves with it.
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which specialized reproductive structures give spermathophytes their name?
Answer:
fertilization
Explanfertilizationation
Which equation represents the balanced equation for photosynthesis?
Answer:
6CO2 + 6H20 + (energy) → C6H12O6 + 6O2
Explanation:
The energy is the sunlight absorbed from the sun.
If you reverse the equation that gives you cellular respiration equation.
In which system of the human body are the red blood cells and white blood cell found?
Answer:
In the circulatory system
Explanation:
The circulatory system of the body is where all blood cells are found.
Imagine that you are a managing partner of a cattle farm. Your partner wants to branch out into various breeds of cattle. Briefly, explain why you believe the farm should focus on only one breed.
Since various breeds could require different kinds of resources, we should limit our attention to one kind. Additionally, they could infect some of the cattle with diseases that lead them to pass away earlier than they should and spoil the meat.
In cattle farming, animals are kept in suitable housing and under stringent hygienic conditions. We must adhere to a few procedures for maintenance. Regular cleanings of the animals' pens and sheds are required. To get rid of the filth and insects on an animal's body, brush them frequently.
An employee who cares for beef cattle helps with everyday farm chores. Giving birth, feeding, and breeding are examples of this. Additionally, they spot sick animals and decide on appropriate care or call a vet.
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Drag each label to the appropriate position to identify whether the structure contains oxygenated or deoxygenated blood.
Deoxygenated: jugular vein, superior vena cava, right atrium, great cardiac vein, pulmonary trunk and arteries. Oxygenated: descending aorta, left ventricle, coronary arteries, carotid artery.
How does the circulatory system work?Two circuits compose the circulatory system
Lung circulation
1- Deoxygenated blood goes from the heart to the lungs where releases CO₂
2- Blood gets oxygenated again by absorbing O₂.
3- CO₂ is exhaled and oxygenated blood returns to the heart.
Systemic circulation
1- Oxygenated blood moves to all tissues.
2- Deoxygenated blood returns to the heart.
You will find the image in the attached files.
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Arteries are most accurately defined as blood vessels that carry __________. highly oxygenated blood blood toward the heart blood away from the heart deoxygenated blood
Answer: Blood away from the heart
Explanation: