Answer:
Location four
Select the correct image or images.
Select all of the creatures that are ectothermic.
which of the following graphs depict the cardiac cycle of an individual with chronic hypertension in which blood pressure is 140/90?
Continuous blood pressure (BP) more than 140/90 mmHg... lowers the risk of cardiovascular events in those with hypertension.
How does the cardiac cycle impact blood pressure?The arterial blood pressure rises during active ventricular contraction phases of the cardiac cycle and falls during ventricular filling and atrial systole. As a result, there are two different ways to measure blood pressure: systolic while the heart is contracting and diastolic when it is relaxing.
When does the peak pressure during the cardiac cycle occur?The highest active chamber stiffness or elastance (pressure to volume ratio) usually happens after ejection. When left ventricular pressure falls below left atrial pressure, ventricular filling (phase IV) which follows isovolumetric relaxation, begins.
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Well observing an Elodea plant cell through a microscope a student noticed some small moving green disc these organelles were most likely responsible for
Answer: Based on the description you provided, the small moving green discs that the student observed in the Elodea plant cell are most likely chloroplasts.
Chloroplasts are organelles found in the cells of plants and other photosynthesizing organisms. They are responsible for photosynthesis, the process by which plants convert sunlight into chemical energy. Chloroplasts contain chlorophyll, a pigment that absorbs light energy and converts it into chemical energy. This is why chloroplasts are often described as being green in color.
Chloroplasts are typically found in the cells of plants and algae, where they are responsible for producing energy for the organism through photosynthesis. They are found in the cytoplasm of cells, and they are typically oval or disk-shaped. They are typically small in size, and they are often described as being "in motion" due to the movement of the pigments within them.
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6) In a recombinant frequency gene mapping experiment, Hfr StrS a+b+c- cells were mated with F- cells of the genotype StrR a-b- c+. Exconjugates were selected on media lacking A (compound required for growth of a- cells) and the genotypes of 1000 colonies that grew on A deficient media were determined with appropriate selective media as indicated below (show work).
Genotype Number of colonies
a+b- c+ 395
a+b- c-
a+b+c+10
a+b+c- 190
a) What is the late marker? b) What is the gene order?
c) What are the map distances between the 3 markers?
Answer:
Explanation:
a) The late marker is c+. This is because the c+ marker is present in the genotype of the F- cells (StrR a-b- c+), but it is not present in any of the genotypes of the 1000 colonies that grew on A-deficient media. This suggests that the c+ marker is the last marker to be transferred during recombination.
b) The gene order is a-b-c+. This is because the a+ marker is present in the genotypes of 495 colonies, the b+ marker is present in the genotypes of 395 colonies, and the c+ marker is present in the genotype of 10 colonies. The order in which these markers are transferred during recombination reflects the order in which they are located on the chromosome.
c) The map distance between the a and b markers is approximately 0.1 centimorgans (cM), and the map distance between the b and c markers is approximately 0.9 cM. This can be calculated using the following formula:
map distance = (number of recombinants / total number of offspring) x 100
For the a and b markers, the number of recombinants is 95 (the number of colonies with the genotype a+b- c+) and the total number of offspring is 1000, so the map distance is:
map distance = (95 / 1000) x 100 = 0.1 cM
For the b and c markers, the number of recombinants is 190 (the number of colonies with the genotype a+b+c-) and the total number of offspring is 1000, so the map distance is:
map distance = (190 / 1000) x 100 = 0.9 cM
Therefore, the map distances between the 3 markers are 0.1 cM (a and b), 0.9 cM (b and c).
How do organisms interact with and respond to changes in their environment?
Organisms interact and use available resources, such as food, space, light, heat, water, air, and shelter. Each population of organisms, and the individuals within it, interact in specific ways that are limited by and can benefit from other organisms.
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Create a map to compare simple diffusion, protein-mediated transport, and vesicular transport across membranes.
By simple diffusion, it will be transferred across the plasma membrane.
Simple diffusion is the process by which molecules penetrate the plasma membrane without the assistance of channels that are present on the membrane's surface. Since the identified molecule was polar, it will not stick when it enters the hydrophobic part of the membrane since this region is non-polar, and it will travel smoothly across that region.Simple diffusion is a process in which a substance crosses a membrane without the aid of an outside agent or middleman, diffusion acts as the force that propels the molecules. In biology, diffusion is the migration of a molecule from a high concentration region to a low concentration region.To know more about membrane
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Which best describes the net result of meiotic cellular division?
A Two genetically identical daughter cells.
B
C
Two genetically different daughter cells.
Four genetically identical daughter cells.
D Four genetically different daughter cells.
Answer:
D
Explanation:
Meiosis and mitosis are different. Meiosis occurs in gamete-producing cells. Meiosis is essentially happens in two stages, with the first stage producing 2 cells and then those 2 cells each producing 2 cells, making the net result 4. The chromosomes are divided, creating genetically different daughter cells.
Scientists predict that climate change will cause more cases of extreme weather events in the future.
Which of the following extreme weather events do scientists have the strongest evidence for?
Lightning.
Heat waves and coastal flooding.
Earthquakes.
Tornadoes.
Answer:Agriculture is an important sector of the U.S. economy. The crops, livestock, and seafood produced in the United States contribute more than $300 billion to the economy each year. When food-service and other agriculture-related industries are included, the agricultural and food sectors contribute more than $750 billion to the gross domestic product.
Agriculture and fisheries are highly dependent on the climate. Increases in temperature and carbon dioxide (CO2) can increase some crop yields in some places. But to realize these benefits, nutrient levels, soil moisture, water availability, and other conditions must also be met. Changes in the frequency and severity of droughts and floods could pose challenges for farmers and ranchers and threaten food safety. Meanwhile, warmer water temperatures are likely to cause the habitat ranges of many fish and shellfish species to shift, which could disrupt ecosystems. Overall, climate change could make it more difficult to grow crops, raise animals, and catch fish in the same ways and same places as we have done in the past. The effects of climate change also need to be considered along with other evolving factors that affect agricultural production, such as changes in farming practices and technology.
Explanation: copy right
Consider the fossil features described below. Which best indicates that a fossilized ape is a hominin? a. Curved finger bones. b. A short, broad pelvis. c. A femur with a short neck. d. A skull with a large sagittal crest. e. A funnel-shaped ribcage.
d. A skull with a large sagittal crest indicates that a fossilized ape is a hominin.
A hominine is a member of the subfamily Homininae: gorillas, chimpanzees, and human beings (excludes orangutans). A hominin is a member of the tribe Hominini: chimpanzees and human beings. 'Hominin' is a time period given to human beings and all of our extinct bipedal ancestors – the ones ancestors who walked upright on feet. 'Hominid' is the time period given to all cutting-edge and extinct remarkable apes, consisting of human beings, chimpanzees, gorillas, orangutans and all their instantaneously ancestors.
Thus, option d is correct.
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Darwin's finches are an example of adaptive radiation, the evolution of an animal or plant group into different types adapted to specialized ways of life. Their common ancestor arrived on the Galapagos about two million years ago. Over time, Darwin's finches have evolved into 15 recognized species differing in body size, beak shape, song and feeding behavior. The picture here shows finches with four different types of beaks.
What statement best represents how one species of finches became many?
A. In order to survive, the finches with different beaks flew to the island with the best food source for each beak type. Over time they evolved into different species.
B. The finches became isolated from one another on different islands. Because each island was different and presented different food sources, those finches with the beak type best fit for each island ecosystem survived to reproduce, over time evolving into different species
C. The finches became isolated from one another on different islands. Because each island was different and presented different food sources, those finches with the beak type best fit for each island ecosystem survived to reproduce, over time evolving into different species
D. The finches became isolated from one another on different islands. Finches developed the beaks that would best help them survive, over time evolving into different species.
Answer:d
Explanation:
Which type of nuclear fusion will most likely lead
to commercial application?
Deuterium–tritium fusion is the type of nuclear fusion will most likely lead to commercial application.
What are the features of Deuterium–tritium fusion?Deuterium–tritium fusion is a type of nuclear fusion in which one deuterium nucleus fuses with one tritium nucleus, giving one helium nucleus, one free neutron, and 17.6 MeV of energy. It is the most efficient type of fusion for fusion devices.
Moreover, DT fusion produces a neutron and a helium nucleus. In the process, it also releases much more energy than most fusion reactions.
Therefore, the fuel reaches fusion conditions at lower temperatures compared to other elements and releases more energy than other fusion reactions.
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A nurse is caring for an adolescent client who is gravida 1 and para 0. The client was admitted to the hospital at 38 weeks gestation with a diagnosis of pregnancy induced hypertension. Which of the following findings should the nurse identify as inconsistent with the admitting diagnosis?
A. 1+ pitting sacral edema
B. 3+ protein in the urine
C. Blood pressure 148/98 mm Hg
D. Deep tendon reflextes of +1
The finding that is most inconsistent with the admitting diagnosis of pregnancy induced hypertension (PIH) is deep tendon reflexes of +1. Therefore, option (D) is correct.
What is Deep tendon reflexes of +1?Pregnancy induced hypertension is a condition that occurs during pregnancy and is characterized by high blood pressure. It can be a serious complication and may lead to further complications such as preterm labor and delivery. Common signs and symptoms of PIH may include high blood pressure, swelling in the hands and feet, protein in the urine, and occasionally, abdominal pain.
Deep tendon reflexes are a type of reflex that can be tested by a healthcare provider to assess the functioning of the nervous system. A deep tendon reflex is considered normal if the reflex is present and the response is graded at +2 or +3. A reflex graded at +1 is considered hyporeflexive, which means that the reflex is weaker than normal. This finding is not consistent with the diagnosis of PIH. If the nurse observes a deep tendon reflex of +1 in the client, they should report this finding to the healthcare provider, as it may indicate an underlying neurological condition that needs further evaluation.
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Data suggests that Baikal seals can sustain much longer dives than emperor penguins. Propose a hypothesis that could explain the evolution of different dive responses in emperor penguins and baikal seals
The suggested hypothesis is that fermentation may be to blame for the rise in lactate levels. Different bacteria with the capacity to utilise a variety of carbohydrate sources create lactic acid through the fermentation process.
What is the use of primary bacteria?The primary bacteria utilised to create lactic acid are lactic acid bacteria, and among these, Lactobacillus spp. have demonstrated intriguing fermentation abilities. Lactic acid fermentation was a consequence of a deficiency in oxygen inside the muscle cells.
This is because oxygen is required by the cell as a terminal electron acceptor in order to make ATP. The cells had to find an alternative way to produce energy since there was no oxygen present. As a byproduct, lactic acid, or lactate, and H+ were produced.
Therefore, The suggested hypothesis is that fermentation may be to blame for the rise in lactate levels.
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Answer: The amino acids that compose proteins are universal to all organisms
Explanation:
scientists developed a set of guidelines to address the safety of dna technology. which of the following is one of the adopted safety measures?
Recombinant DNA experiments involve genetically damaged microorganisms that are unable to thrive outside of the lab.
What is done in biology labs?Apply the scientific process, making testable hypotheses based on observations and facts, and so on. Analyze how abiotic factors affect enzymatic activity. Investigate the processes of photosynthetic, mitotic, and meiosis in cells. Determine inheritance patterns using Mendelian genetics.
What do biological tools entail?In the context of a Legacy Program, "Biological Tools" refers to (a) strains of bacteria and plasmid created in a lab, (b) biochemical reagent (containing protein and substrate), (c) cellular and molecular biology reagents, and (d) transcription plasmids and protein from TPAT.
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T/F: Polypeptides inside the ER are usually smaller than polypeptides synthesized from the same mRNA that have not entered the ER.
true
It is accurate to say that peptides inside the ER are typically smaller than polypeptides made from the same mRNA outside of the ER.
What are the uses of polypeptides?Since polypeptides (macromolecules made of amino acids) are essential components of molecules created for use in gene therapy or medication administration, they have been the focus of extensive research.
A polypeptide: is it a protein?Each one of these acids is joined to its neighbors through a covalently peptide bond to form a lengthy chain that makes up a protein. Consequently, polypeptides is another name for proteins. A distinct amino acid sequence that is identical from one monomer to the next makes up each form of protein.
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How do serotonin and dopamine affect mood differently? or perhaps how do dopamine and serotonin affect one another?
Answer:
Serotonin and dopamine are considered the "happy hormones". This helps boost happy moods and emotions.
Explanation:
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a. What proportion of the gametes formed from Parent 1 have the composition b+b? [Choose ] b. What proportion of gametes formed from Parent 1 have the composition b [Choose ] > c. What proportion of gametes formed from Parent 1 have the composition b+? [Choose ] > d. What proportion of gametes formed from Parent 1 have the composition bb? [Choose ] e. What proportion of offspring from cross I will have brown body? [Choose ] f. What proportion of offspring from cross I will have yellow body? [ Choose g. What proportion of the gametes formed from Parent 3 have the composition b+b+? [Choose ] > g. What proportion of the gametes formed from Parent 3 have the composition b+b+? [Choose ] < h. What proportion of gametes formed from Parent 3 have the composition b+b? [Choose ] > i. What proportion of gametes formed from Parent 3 have the composition b+? [ Choose V j. What proportion of gametes formed from Parent 3 have the composition b? [Choose ] j. What proportion of gametes formed from Parent 3 have the composition b? [Choose ] k. What proportion of gametes formed from Parent 4 have the composition b+? [ Choose l. What proportion of gametes formed from Parent 4 have the composition b? m. What proportion of offspring from cross ll will have brown bofy[ Choose [Choose ]> n. What proportion of offspring from cross Il will have yellow body? [Choose ] < o. What proportion of offspring from cross Il will be trisomic? [Choose ]
The child would be born with twice as many chromosomes as it should. The organism's somatic cells are diploid (2n). This indicates that they have n double chromosomes.
Gametes (egg and sperm cells) are haploid cells, which means they contain n fewer chromosomes than other cells. A diploid zygote (2n) is created when haploid egg cell (n) and haploid sperm cell (n) combine:n + n = 2n
Consequently, the freshly created organism's somatic cells are diploid once more (2n).
Imagine a scenario where the gametes are diploid rather than haploid (n) (2n). A tetraploid zygote (4n) would result from the union of a diploid egg cell (2n) and a diploid sperm cell (2n):2n + 2n = 4n
The offspring will have twice as many chromosomes as they normally would. The result is that the baby would have twice as many chromosomes as it should have if the gametes were not haploid.
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Which statement best describes the physical features of mountain regions?
A.
Mountain regions are geographic areas that receive little rain and can be very dry.
B.
Mountain regions are geographic areas that have high elevations.
C.
Mountain regions are geographic areas like oceans and lakes.
D.
Mountain regions are geographic areas that are not much higher than sea level.
SUBMIT
Infection by which of the following results in the formation of Ghon complexes? A. Bordetella pertussisB. Corynebacterium diphtheriaeC. Mycobacterium tuberculosisD. Streptococcus pyogenesE. Blastomyces dermatidis
Mycobacterium tuberculosis, the pathogen that causes TB, also generates a Ghon complex.
What factor does Streptococcus pneumoniae's virulence depend on most?There is a lot of genetic variation in Streptococcus pneumoniae, and some lineages are more successful than others. The key driver of virulence and immunodominant surface structure of S. pneumoniae, the capsular polysaccharide (CPs), is a significant source of strain-to-strain variation.
Which of the following can cause a tuberculin skin test to be positive?The PPD test's positive skin reaction might happen in: infection with active TB. prior exposure to TB (latent TB infection) Earlier BCG vaccination (live attenuated mycobacterial strain) infection with different Mycobacteria that do not cause tuberculosis.
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Which of the following technologies do scientists use to collect data from clouds?
Choose all that apply:
Satellites
Computers
Microwaves.
Airplanes
Answer:Doppler radar detects all types of precipitation, the rotation of thunderstorm clouds, airborne tornado debris, and wind strength and direction.
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The swelling and bursting of the red blood cells isSelect one:a. hemolysis.b. agonal edema.c. a rupture.d. an ecchymosis.
The swelling and bursting of the red blood cells is called hemolysis which is nothing but destruction of red blood cells.
Hemolysis is the breakdown or destruction of red blood cells, which are responsible for carrying oxygen to the body's tissues. This can occur when red blood cells are exposed to certain substances or conditions, such as certain medications, infections, or physical trauma, which can cause the cells to swell and burst. The release of hemoglobin, the protein that carries oxygen in the blood, into the surrounding tissue or fluid can lead to anemia and other health problems, depending on the severity of the condition. Hemolysis can also be caused by underlying health conditions, such as sickle cell anemia or autoimmune disorders, in which the body's immune system mistakenly attacks and destroys healthy red blood cells. Hemolysis can be diagnosed through a combination of physical examination, laboratory tests, and imaging studies, and treatment may involve medications, blood transfusions, or other therapies.
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which of the following correctly explains a long-distance signaling method animals use to perform cell communication? a) chemical signals travel down a nerve cell and are converted to electrical signals at synapsesb) endocrine cells release hormones that travel through the bloodstream to target cellsc) local regulator molecules pass through gap junctions to transmit signals to target cellsd) proteins on a cell's surface recognize and interact with molecules on another cell's surface
A signaling molecule acting on a target cell that is far away from the signaling cell is known as long-distance signaling.
Endocrine signaling is another name for long-distance communication. A hormone is a substance that an endocrine gland secretes that is intended to cause a reaction in a specific cell. The bloodstream is responsible for hormone distribution.Hormones are the chemical messengers that target other cells while travelling through the circulation.The endocrine system uses chemical signals called hormones to transmit information from one area of the body to another. The extracellular environment is where hormones are released from the endocrine cell, but they ultimately reach their target tissues via the bloodstream.The body's chemical messengers are called hormones. They move information and commands from one set of cells to another.
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Which of the following is a characteristic of a theory?
Select one:
It is accepted to be true by many scientists
All of these
It explains why something happens
It is supported by a large body of scientific evidence
Answer:
All of the options are characteristics of a theory.
Explanation:
A theory is a well-supported and widely accepted explanation for a phenomenon. It is based on a large body of scientific evidence and is generally accepted to be true by the scientific community. Additionally, a theory explains why something happens and provides a framework for understanding and making predictions about a particular phenomenon.
3. Define: A phase change is a change from one state to another, such as from a liquid to a gas. Based on what you have read in the Gizmo, fill in the blanks with the words 'liquid," "gas," or 'solid' to define each change.
4. Practice: Fill in the process that causes each transition. Your choices are evaporation, condensation. precipitation, melting, and freezing.
5. Practice: Fill in the two processes that cause each of the following transitions
6. Think and discuss: Water covers over two-thirds of Earth's surface. Yet water shortages are a major problem for many people around the world. Why do you think this is the case?
Evaporation is the process by which a material transforms from its liquid state into its gaseous state.
explain about the phase change processes ?
Evaporation is the process by which a material transforms from its liquid state into its gaseous state. Condensation is the process by which a material transitions from its gaseous state into its liquid state. Sublimation is the process of a solid converting directly to a gas without first going through a liquid phase.
Evaporation : change from liquid state to gases state.Condensation : change from gases state to liquid state.Melting : change from solid state to liquid state.Freezing : change from liquid state to solid state.4. Ocean → atmosphere :
change of water from ocean to atmosphere was evaporation.
Atmosphere → clouds :
change of atmosphere to cloud was condensation.
Clouds → Snow :
change of clouds to snow was condensation.
Glacier → river :
change of glacier to river was evaporation.
Ocean → cloud :
change of ocean water to cloud was evaporation.
cloud → glacier :
change of cloud to glacier was melting and refreezing.
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What muscles make organs work properly?
Answer:
skeletal muscle or smooth muscle
if in a population there are only two alleles at a certain locus, then their frequencies are related as follows: p
if the allele frequencies in a population with two alleles at a locus are p and q, then the expected genotype frequencies are p2, 2pq, and q2. This frequency distribution will not change from generation to generation once a population is in Hardy-Weinberg equilibrium
What is Hardy-Weinberg principle ?A population's genetic variation will remain constant from one generation to the next if no unfavourable factors arise, according to the Hardy-Weinberg equilibrium principle.
There are five fundamental Hardy-Weinberg presumptions: absence of mutation, asexual reproduction, absence of gene flow, infinite population size, and absence of selection. The population for a gene may evolve if the presumptions are not true (the allele frequencies of the gene may change).
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Identify each event as either a sympathetic nervous system response or a hypothalamic pituitary-adrenal (HPA) axis response to stress
Heart rate rises, epinephrine and norepinephrine are released, blood pressure rises, and respiration increases as a result of the sympathetic nervous system.Cortisol release- Glucose levels rising in the blood- The pituitary gland's activation
What are the nervous system's four primary purposes?The control center of your body is your neurological system.It is controlled by your brain and governs your actions, thoughts, and automatic reactions to your environment.Other bodily functions and systems, including digestion, respiration, and sexual development, are also under its control.
What are the nervous system's functions?Signals are sent from the brain to the rest of the body, such as the internal organs, via the nervous system.Thus, its nervous system's activity regulates a variety of functions, including the capacity to move, breathe, see, and think.1. The nerve cell, or neuron, is the basic building block of the neurological system.
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A scientist places 23 mg of bacteria in a culture for an experiment and he finds that the mass of the bacteria triples every day.
1. Each day that passes, the mass of bacteria in the culture changes by what percent?
2. What is the mass of the bacteria in the culture 2 days after the start of the experiment?
If the mass of the bacteria triples every day then 1. The mass of bacteria in the culture changes by 300 percent every day and 2. the mass of the bacteria in the culture 2 days after the start of the experiment is calculated to be 207 mg
1. The percentage of the mass of bacteria that changes every day can be calculated as follows;
Since the mass of the 23 mg bacteria triples every day, therefore, the mass the next day will be;
23 × 3 = 69 mg
Now the percent change of the mass can be calculated as follows;
percent change = (final mass / initial mass) × 100
percent change = (69 / 23) × 100
percent change = 3 × 100
percent change = 300%
2. The mass of the bacteria in the culture 2 days after the start of the experiment can be calculated as follows;
Mass of bacteria after 1 day = mass × percentage mass = 23 × (300/100) = 69 mg
Mass of bacteria after 2 days = 69 × (300/100) = 207 mg
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A group of plants that are not capable of
interbreeding is called
a.vegetation
b.biome
C. Community
d. a population.
Answer:
A group of plants that are not capable of interbreeding would be known as a species, however that is not one your options.
Explanation:
For plants, another way to describe it would be "hybrid plants" however, that ia also not an option, but if you consider each option, you would end up at the conclusion that the answer is most likely be biome or community but community interbreeding often result in weak offspring.
A group of plants that are not capable of interbreeding would be known as a species.
What is interbreeding?In both biology and philosophy, there is debate over the nature of species. Philosophers and biologists argue over the ontological significance of species, while biologists disagree over the definition of the word "species."
The basic taxonomic units of biological classification are species. Species are used to frame environmental legislation. Even how we view human nature is influenced by how we view different animals.
Numerous species are distinguishable with ease. The nature of species is significantly less evident when we look at the scholarly literature on species. There are more than twenty definitions of "species" provided by biologists.
Therefore, A group of plants that are not capable of interbreeding would be known as a species.
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