All of your body's interior and external surfaces are covered by a type of tissue called epithelium, which is also the main tissue in glands and lines bodily cavities and hollow organs.
What kind of tissues are glands made of? All of your body's interior and external surfaces are covered by a type of tissue called epithelium, which is also the main tissue in glands and lines bodily cavities and hollow organs.Every part of the body contains epithelial tissues.They are the primary tissue in glands and make up the covering on all of the body's surfaces, the lining of body cavities, and hollow organs.A mesodermally produced epithelium known as the mesothelium, supported by connective tissue, makes up a serous membrane, which is an epithelial membrane.The coelomic cavities of the body, or those cavities that are closed off from the outside world, are lined by these membranes, which also cover the organs that are housed inside.To learn more about epithelium refer
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Is Master Raymond Claire's father?.
"Prehistoric time traveller" is the enigmatic Master Raymond. Although not much is known about him, Geillis Duncan and Claire Fraser are believed to have shared him as an ancestor.
Raymond, a respected physician and herbalist, was residing in Geneva about the year 1724. He exchanged letters with a member of the occult named du Carrefours, who lived in Paris. Du Carrefours was suspected by French officials at the same time that Raymond vanished from Geneva. Within weeks following du Carrefours' trial and execution, Raymond had opened up shop in Paris and was said to have taken over some of the spymaster's covert operations.
While living in Paris in the 1740s, he keeps his most suspect components in a cabinet adorned with occult symbols to deter most onlookers.
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how do scientists construct recombinant dna molecules
Recombinant DNA molecules were created by separating segments of DNA and recombining them with other sequences.
The process of fusing two or more DNA molecules to produce a hybrid is known as recombinant DNA. Restrictions endonucleases and ligase are two categories of enzymes that enable the technique.
the recombination process The steps in DNA technology are as follows:
Isolation of genetic material (DNA)
Cutting of DNA at specific locations.
Joining of DNA fragment.
Insertion of DNA into the host cell.
Selection and screening of transformed cells.
The first production of the reconstructed DNA was occurred in early 1970s.
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Sonia is riding with her mom in the car and notices an
abandoned baseball field that has a lot of grass and
wildflowers growing in it. What type of succession is she
observing? Explain your answer.
She is observing an example of secondary succession because the baseball field had some soil and some plant and animal life when it was abandoned.
Which of the following is true about secondary succession?Secondary succession happens in the opposite direction of primary succession. It begins when processes such as forest fires, hurricanes, and other natural disasters damage the existing ecosystem. Secondary succession is the colonization of a habitat that formerly supported plant and animal life but has since been abandoned owing to ecological disruption. Hurricanes and floods are examples of biological disturbances that can deplete a habitat.
Secondary Succession Examples
Fire. Fire is one of the most prevalent sources of secondary succession and an essential component of the rejuvenation and health of many ecosystems.Crop Land Harvesting, Logging, and Abandonment. Disease Renewal Gap Dynamics.
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Answer:
Sample response: She is observing an example of secondary succession because the baseball field had some soil and some plant and animal life when it was abandoned.
Explanation:) hope this helps have a great day.
brainliest would be appreciated.
Farmer Joe has black chickens and purchases a white rooster. Black and white genes in chickens are codominant. Draw Punnett squares to predict the offspring of the black chickens and white rooster.
Use capital "B" for black and capital "W" for white.
1.) What is the genotype of the black chickens?
________________
2.) What is the genotype of the rooster?
_________________
3-4-5.) Genotypic ratio: BB:__ BW:__ WW__
6-7-8.) Phenotypic ratio: Black :___ Black and White:__ White__
9.) If Farmer Joe wanted HALF of the chicken offspring to be black and HALF of the chicken offspring to be Black AND White, what genotype would the rooster have to be that he purchased? ___________
Answer:
1) Genotype for black chicken is BB
2) Genotype for the rooster is WW
3-5) The ratio is BB:0 BW:100 WW:0
6-8) the phenotype is 0 black, 0 white, 100% black and white
9) The genotype of the rooster would have to be BW
Explanation:
Since it is codominant, both colors would show if the alleles were BW.
A root with a combining vowel added to it is called:
the root word
the suffix
combining form
the prefix
the Greek/Latin meaning of the term
The vowel "O" is a combining vowel that is typically inserted to construct words (which can be lengthy or short words) to make them simpler to pronounce.
Vowels are the sounds that are made while speaking without any obstruction or restriction. The English alphabet has five vowels: A, E, I, O, and U. Consonants are all other alphabetic characters or letters. There are four fundamental sounds from ten fundamental vowels, according to our examination of the technicalities of English. A word portion that is appended to the end of the root word and changes or emphasizes the meaning of the root word is known as a suffix. These words occasionally have gaps and are often vowel-based. Take the word beautiful, for instance, which is changed beautifully by adding the 'ly' suffix.
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What is the term for the female portion of the moss gametophyte?
Select one:
O a. the archegonium
O b. the sporangium
Oc. the rhizoids
Od the antheridium
Oe. the stalk
• a. the archegonium
Hope it helps
some scientists claim recent evidence suggests birds should be reclassified to share more taxonomic groups with dinosaurs. what type of evidence would provide the best support for this claim?
Recent research, according to some scientists, indicates that birds should be reclassified to share more taxonomic families with dinosaurs. The likely candidates appear to be proof that dinosaurs and birds had a shared genetic past. Option D is the right response.
Which of the following best illustrates how organisms have evolved?
Complete Resolution. The right response is Fossil. Relationships in evolution are demonstrated by fossils. Because they demonstrate that earlier life on Earth was distinct from the species present now, fossils are crucial pieces of evidence for evolution.
Which better explains why it is thought that animals are heterotrophic?
The organisms known as heterotrophs are unable to produce their own sustenance. They therefore rely on food from other living things. For sustenance, animals rely on either plants or other animals.
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How does a stop codon mutation affect Ada protein from working?.
By halting translation, which results in a protein that is not functional.
The protein-coding portions of an organism's genetic material are known as its genes (DNA). They are expressed in two steps, resulting in useful products such proteins that give organisms a certain phenotype. Transcription and translation are the two steps in gene expression. The gene (DNA) is converted into an RNA molecule during transcription, and this RNA molecule is then read in a sequence of three nucleotides known as CODON during translation. Each codon is converted into an amino acid during translation. A STOP CODON, such as UUC, UUG, or UUA, marks the completion of the translation process and halts it.
Therefore, if Lucy's ADA gene expression results in the production of a stop codon due to a mutation, or change in the nucleotide sequence, the stop codon will indicate that translation has ended.
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interaction between two species in which both are harmed
Members of two distinct species engage in interspecific rivalry when they use the same scarce resource. Competition is bad for both parties involved since if one species didn't exist, the other would have a stronger chance of surviving and reproducing.
An ecological community is made up of all the populations of various species that coexist in a given area. For instance, if we wanted to characterize the ecological community of a coral reef, we would include the populations of every sort of organism we could locate, from the different coral species to the different fish species to the single-celled, photosynthetic algae dwelling in the corals. When species' ecological responsibilities and needs for survival and reproduction overlap, this is known as having overlapping niches, and this is when species compete. If two species with overlapping niches develop through natural selection to use less similar resources, leading to resource partitioning, competition can be reduced.
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food quality is solely dependent on the nutritional value of food.T/F
False. Food quality is not solely dependent on the nutritional value of food. Nutritional value is an important aspect of food quality, as it provides the necessary nutrients for the body to function properly.
However, other factors such as taste, texture, appearance, and safety also contribute to food quality. Food that is safe to consume, looks and tastes good and has a desirable texture is considered to have high food quality . Additionally, food nutritional value can have cultural and emotional value that also contribute to the overall perception of its quality. Therefore, food quality is a multi-faceted concept that encompasses not only nutritional value but also other aspects of food that are important for consumer satisfaction and well-being.
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which microorganism is transmitted to humans when they ingest larva, eggs, in contaminated foods.
Ascaris is the microorganism transmitted to humans when they ingest larva, eggs, in contaminated foods.
Ascaris lumbricoides is a large roundworm. It infects people and can reach a length of 35 cm. Through infected faeces, Ascaris eggs are dispersed in the soil. Human food and beverages are then contaminated from there. The host's intestine is where the eggs hatch before moving to the lungs.
Intestinal roundworms of the genus Ascaris typically spread when people consume the worm's eggs. When you touch contaminated soil or consume fruits and vegetables that were grown there without washing them beforehand, these eggs may end up in your diet. Washing your hands frequently, washing all produce before eating it, and avoiding any produce you think may have been cultivated in contaminated soil are all effective ways to avoid getting infected with Ascaris.
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a)
Andrea is investigating the effects of light intensity and carbon dioxide concentration on the rate of photosynthesis. She measured the rate of photosynthesis at different light intensities for two identical plants. The plants were placed in closed containers. One container had an initial carbon dioxide concentration of 0.40%. The other container had an initial carbon dioxide concentration of 0.03%.
Look at the graph.
Does an increase in carbon dioxide affect the rate of photosynthesis?
(Check one box)
⬜Yes
⬜No
b)
Explain your answer.
A) Yes, an increase in carbon dioxide affect the rate of photosynthesis.
B) The graph shows that as the light intensity increases, the rate of photosynthesis increases for both plants. The plant with an initial carbon dioxide concentration of 0.40% has a higher rate of photosynthesis at all light intensities compared to the plant with an initial carbon dioxide concentration of 0.03%. T
What is photosynthesis graph about?The graph indicates that an increase in carbon dioxide concentration does affect the rate of photosynthesis.
Therefore, plant with higher carbon dioxide concentration, photosynthesis rate is higher, meaning that it is able to produce more glucose and oxygen, which is a clear indication that an increase in carbon dioxide concentration does affect the rate of photosynthesis.
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exemplified by starlings displacing bluebirds from nesting sites
exemplified by starlings displacing bluebirds from nesting sites is called as competition. it may occur for resources such as food, water and shelter.
Ecological competition is the conflict between two organisms over the same resources in an ecosystem. Environmental resources include things like food, water, shelter, light, territory, and substrate that are necessary for surviving and procreating. Competition for mates can also occur among members of the same species. The term "inter-specific competition" refers to rivalry between members of the same species, whereas "intraspecific competition" is used to describe rivalry between members of different species. Since members of the same species share an ecological niche, their needs are essentially the same, and as a result, interspecific competition is typically more fierce than intraspecific competition. Within ecosystems, ecological rivalry helps keep the diversity of species and the organisation of communities.
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Do snails have genders?.
Yes, snails have both genders. They are hermaphrodite.
Any organism that possesses both male and female reproductive organs and is able to generate both eggs and spermatozoa is referred to as a hermaphrodite. The snails appear to be both male and female at the same time.
Both male and female reproductive cells are present (they are hermaphrodite). Self-fertilization is a possibility, thus they don't actually need to mate with another snail in order to breed. In a soggy, underground nest, they lay about 80 white eggs after mating.
The right mantle cavity's top section should be examined. If your snail has a sheath adjacent to its gills, it is a male. It is a female if there is no penile sheath visible. Sequential hermaphrodites that transition from male to female throughout the course of their lifetimes, calyptraeid gastropods are a class of stationary, filter-feeding marine snails (protandry).
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based on figure 1, explain how p53 regulates the cell cycle in the presence of damaged dna.
When p53 is activated in response to DNA damage, its levels rise quickly, which enhances its capacity to bind DNA and mediate transcriptional activation.
How does p53 control the cell cycle when there is DNA damage?
After DNA damage, the p53 proteins are activated and the cell cycle is halted. Cell cycle-inhibiting proteins like p21 are produced with the help of a specific transcription factor, the p53 protein. The p21 protein stops the cell cycle by preventing the cyclin-cdk complex, which is required for the change from G1 to S phase.
What does p53 do in damaged cells or DNA?
P53 is a crucial enabler of DNA repair because it halts the cell cycle and gives the repair system time to restore genome stability.
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What are the three possible outcomes when light strikes a chloroplast?
When light strikes a chloroplast, an electron gets energy and jumps to a higher level by absorbing energy.
What is chloroplast?An organelle found in the cells of plants and some algae called a chloroplast is where photosynthesis, the process by which solar energy is transformed into chemical energy for growth, takes place. It is a plastid.
They are in charge of performing photosynthesis, the process by which light energy is transformed into sugar and other organic compounds that are consumed as food by plants or algae. They also manufacture the lipid and amino acid building blocks required to make chloroplast membranes.
When light hits the chloroplast, the electron gets excited and jumps to the excited or higher level by absorbing or capturing energy.
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the honing canine tooth is used by nonhuman primates to
Apes are well-suited to cutting and shredding food due to their refined chewing complex. They have huge, triangular-shaped upper canines that are sharp and protrude. Furthermore, the back of these two teeth are sharply angled.
The transition from proto-hominins to contemporary Homo-sapiens has followed a variety of trends. It takes millions of years for these characteristics to develop, not all at once. Generally speaking, the tendencies include the foramen magnum moving forward, canine size decreasing, and molar size increasing. There is reduction of the diastema (space between the incisors and canines), expansion of cranial capacity. The reduction in prognathism (the protrusion of the lower portion of the face), bone weakening, and a rounding of the skull.
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p= $7000.00, a = $7840.00, t = 4 years
The interest on the loan is about 3% of the principal.
What is the rate?We have to note that the rate of the interest is also very important when we are dealing with a lone. That is going to decide the amount that you are going to have to pay back on the principal that have been borrowed.
We then have;
I = PRT/100
I = interest
P = principal
R = rate
T = time
But;
I = A - P
I = $7840.00 - $7000.00
I = $840.00
840 = 7000 * R * 4/100
R = 84000/700 * 4
R = 3%
We would have an interest rate of about 3%.
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period of nuclear cellular division in which two daughter cells are formed, each containing a complete set of chromosomes______
Period of nuclear cellular division in which two daughter cells are formed, each containing a complete set of chromosomes Mitosis
What is Mitosis?Mitosis is a type of cell division that produces two genetically identical daughter cells from one parent cell. It occurs in eukaryotic cells, which are cells that contain a nucleus and other organelles. During mitosis, the chromosomes in the nucleus are replicated and then divided into two identical sets, each of which is packaged into a new nucleus.
The cell then divides into two daughter cells, each of which has the same number of chromosomes as the parent cell. Mitosis is important for the growth and development of organisms. In addition, it allows for the repair of damaged cells and the production of cells for asexual reproduction.
Mitosis is a continuous process that has four distinct stages: prophase, metaphase, anaphase, and telophase. During prophase, the chromosomes condense and become visible under a microscope.
Metaphase is the stage in which the chromosomes align at the center of the cell. During anaphase, the chromosomes are pulled apart and moved to opposite sides of the cell. In telophase, the chromosomes arrive at opposite sides of the cell and the cell begins to divide into two daughter cells.
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Correctly label the following parts of a chemical synapse.
Axon terminal
Mitochondria
Synaptic cleft
Neurotransmitter release
Receptor
Synaptic vesicles
DAR
Axon
Three components make up the chemical synapse: a postsynaptic element, a synaptic cleft, and a presynaptic element (such as an axon termination) (such as a dendritic spine).
The nerve cells act as the generator and conduit for the impulse. Dendrites take in the impulse and send it on to the cell body. The impulse leaves the cell body and travels through the axon to the nerve terminal. The subsequent neuron receives the impulse through the synaptic connection. The proper order for an impulse to pass through a neuron is from the cell body to the axon to the nerve terminal. The presence of tiny, membrane-bound organelles known as synaptic vesicles in the presynaptic terminal, however, is the distinguishing characteristic of all chemical synapses.
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Fuels used in transport
Answer:
diesel and gasoline are the two main fuels used in transport and road.
A polypeptide is made from 75 amino acids.
How many peptide bonds would exist in this polypeptide?
How many water molecules were formed in this process?
What type of reaction is involved in making a polypeptide?
1. How many peptide bonds would exist in this polypeptide?
A polypeptide is made up of multiple amino acids that are linked together by peptide bonds. The number of peptide bonds in a polypeptide is one less than the number of amino acids present. So in a polypeptide made from 75 amino acids, there would be 74 peptide bonds.
2. How many water molecules were formed in this process?
The process of linking amino acids together to form a polypeptide is called a condensation reaction. In this process, one water molecule is produced for every peptide bond formed. In this case, since there are 74 peptide bonds in the polypeptide, 74 water molecules were formed.
3. What type of reaction is involved in making a polypeptide?
The process of linking amino acids together to form a polypeptide is a condensation reaction. This type of reaction involves the formation of a peptide bond between two amino acids, which is accompanied by the loss of a water molecule.
The formula for cellular repiration i a follow: glucoe oxygen carbon dioxide water. In a cla demontration, Mr. Nakaguchi take a ugar packet and pour it on your dek. She then point a fan at the tiny mound of glucoe upplying it with plenty of oxygen. "There we go, we are combining ugar with oxygen!" exclaim the teacher. The cla eagerly wait. For nothing. You had the reactant neceary for cellular repiration, o why did nothing happen?
Glucose + Oxygen = Waters + Carbon Dioxide + Energy, and so forth. C6H12O6 + 6O2 6CO2 + 6H20 + power (Glucose + Oxygen produces Carbon Dioxide + Water + Energy) is the equation for cellular respiration.
You might have noticed that the formula for photosynthesis is the reverse of the formula for cellular respiration. Thus, the stages of cellular respiration should be performed in the following order: Krebs cycle, oxidative decarboxylation, and glycolysis - Oxidative phosphorylation - Electron transport chain. Cellular respiration is the term used to describe the process by which food is broken down in the cell and energy is released. All species' cells engage in cellular respiration. The process through which microorganisms use oxygen to convert food molecules in order to get oxidative phosphorylation for cellular processes is known as cellular respiration.
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Does anyone know these I can’t find them ?
In the third generation, each flock's food percentages and sizes are Flock X = 10.67% 3 birds.
18 birds in flock Y, or 60%
Flock Z = 29.33% 9 birds.
given data
Total number of pieces consumed: Flock X = 32, Flock Y = 180, and Flock Z = 88.
30 birds total are present.
Determine each flock's food consumption rate as a first step.
32/300 * 100 = 10.67% is the flock X value.
Flock Y = (180/300)*100=60%
Flock Z is equal to (88/300) * 100, or 29.33%.
Determine the number of flock sizes in the third generation as a next step.
Flock X is 10.67% * 30 = 3 birds.
18 birds were found in flock Y, or 60% of the total.
Flock Z = 29.33%*30 = 9 birds.
What are flocks?Birds that fly and move in groups called flocks do so in unison.Numerous bird species can be seen in flocks that can number from a few to thousands of birds.In order to increase safety and forage for food more effectively, flocks of birds use coordinated movement and vocal communication.Flocks can form for a number of reasons, such as lowering the risk of predation, locating food, or during migration.Birds may benefit from flocks in a number of ways, including better foraging effectiveness, increased safety in numbers, and increased mobility to cover more land.Depending on the species and circumstances, a flock's precise formation and movement patterns might vary, but they frequently entail the birds aligning themselves to minimise wind resistance and increase visibility.To learn more about flocks from the given link :-
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Is a clam like a snail?.
Compared to clams and snails, squid and clams have undergone different evolutionary processes for less time.
The molecular clock is a method that may be used to determine when two species first diverged by counting the changes between their DNA molecules. According to the Molecular Clock hypothesis, the amount of nucleotide changes between two species would be proportional to the duration of their evolutionary separation, and as a result, some proteins' sequence substitutions would occur at a consistent pace, with proteins acting as the clocks.
The evolutionary links between clams, squid, and snails were determined in the aforementioned inquiry using the molecular clock. According to this investigation, clams and squids are more connected than clams and snails.
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how do the sperm or egg cells made in meiosis compare to the original cell?
The sperm or egg cells made in meiosis compared to the original cell are genetically different.
There аre two types of cell division: mitosis аnd meiosis. Most of the time when people refer to “cell division,” they meаn mitosis, the process of mаking new body cells. Meiosis is the type of cell division thаt creаtes egg аnd sperm cells.
Mitosis produces two diploids (2n) somаtic cells thаt аre geneticаlly identicаl to eаch other аnd the originаl pаrent cell, whereаs meiosis produces four hаploid (n) gаmetes thаt аre geneticаlly unique from eаch other аnd the originаl pаrent (germ) cell. Mitosis involves one cell division, whereаs meiosis involves two cell divisions.
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Why does our Sun look so much bigger than the stars we see at night?
Answer:
Our Sun looks much bigger than the stars we see at night because it is much closer to us. The stars we see at night are much farther away, so they appear smaller to our eyes.
Answer:
the sun appears much bigger and brighter than all other stars because it is much, much, much closer to you than any other star. Other stars are much further away, and their brightness drops by the distance squared.
if individuals tend to reproduce with only a subset of the population, which assumption of the hardy-weinberg principle is being violated?
Consider a population where there is segregation between pair of alleles (A and B) at a single locus. The letters p and q stand for the frequency of alleles A and B, respectively.
In a population with random mating, the Hardy-Weinberg principle connects genotype frequencies to allele frequencies.The population for this study is sizable, and matings are unrelated to the relevant locus.
Because there is no discernible pace of new mutation, allele frequencies remain stable over time.
• That there's no selection against every particular genotype; individuals of all genotype are equally as capable of mating & passing on their genes.
• There hasn't been a major influx of people from populations whose allele frequencies are very dissimilar to those of the endogenous group.
A population is said to be in Hardy-Weinberg equilibrium if it reasonably seems to fit these criteria.
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You are tudying a population of chicken. You oberve that 16% have yellow kin, which i receive. White kin i dominant. What i the frequency of the receive allele in the population
The frequency of the receive allelel in the population is 0.4 in the population.
The allele frequency is calculated by dividing the total number of alleles in a population by the number of specific alleles of a certain type. The phrase "allele frequency" simply refers to how prevalent an allele is in a population. The Hardy-Weinberg (HW) equation is used by researchers to examine the allele frequency in a population. The Hardy-Weinberg equation looks like this:
1 = p2 + 2pq + q2
The allele frequencies of various alleles are represented by the numbers P and q. The homozygous dominant genotype's frequency is denoted by the word p2. The homozygous recessive genotype frequency is represented by the other term, q2. Even though it would be impossible to count every hidden allele, it is simple to count the population's recessive traits. Two recessive alleles are responsible for recessive traits. By dividing the total number of recessive phenotypes by the total number of individuals, it is simple to determine the value of q2. Let's have a look at an illustration of how this data can be used to determine the frequency of any certain allele.
Recessive population's genotype frequency is
(q2) = (16% or 0.16).
As a result, q = 0.16 = 0.4 = frequency of recessive allele.
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A. Use a concept map to illustrate the role of
producers, consumers, and decomposers in the
transfer of energy through ecosystems.
Concept Map of role of producers, consumers and decomposers.
Producers
- Photosynthesis
- Capture energy from sunlight
- Provide energy to consumers
Consumers
- Feed on producers
- Transfer energy to decomposers
Decomposers
- Break down dead organisms
- Return energy to producers
What is the difference between a primary consumer and a secondary consumer? A primary consumer is an organism that obtains its energy by directly eating plants. Primary consumers are herbivores and are the first level in a food chain. They are also known as grazing animals, as they graze on grass and other plant life. Examples of primary consumers include rabbits, deer, sheep, and cows.Secondary consumers, on the other hand, are organisms that obtain their energy by eating primary consumers. Secondary consumers are carnivores and are the second level in a food chain. They feed on primary consumers, such as the rabbits, deer, sheep, and cows mentioned above. Examples of secondary consumers include hawks, wolves, snakes, and foxes.The main difference between primary and secondary consumers is that primary consumers obtain their energy directly from plants, while secondary consumers obtain their energy from eating primary consumers. Primary consumers are also known as herbivores, while secondary consumers are known as carnivores. Additionally, primary consumers are the first level in a food chain, while secondary consumers are the second level.To learn more about role of decomposers refer to:
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