a. From species D to species H and J about 6.5 million years ago
B. Species A split into Species F and I about 2.5 million years ago
C. Species A split into Species A and B about 11 million years ago
D. Type B of type B and type D about 8 million years ago
e. About 6.5 million years ago, from B species to B and E species
Anagenesis (also known as phylogenetic evolution) is the evolutionary change within a single lineage over time, and divergence is the divergence or diversification of lineages over time, giving rise to clades. Let Evolutionary stagnation refers to the lack of phylogenetic persistence and evolutionary change over long periods of time. Temporal. Most people perceive biodiversity in terms of species – groups of individual organisms that can interbreed. Examples of species include blue whales, white-tailed deer, white pine trees, sunflowers, and microscopic bacteria invisible to the eye.
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According to this phylogenetic tree, when did cladogenesis of the following occur?
a.species D into species H and J about 6.5 million years ago
b. species A into species F and I about 2.5 million years ago
c. species A into species A and B about 11 million years ago
d. species B into species B and D about 8 million years ago
e. species B into species B and E about 6.5 million years ago
which part of body created from osteoblasts into compact or spongy forms of long, short, flat or irregular shapes which meet at joints or articulations
The body's component of bone is formed from osteoblasts into compact or spongy forms of long, short, flat, or irregular shapes that converge at joints or articulations.
Animals' vertebrate skeletons have stiff bones as a component. Support, movement, protection, and blood cell generation are just a few of the functions that bones do. Support: The body is supported and given shape by the bones, which act as a framework. Movement: The leverage that muscles need to move various body parts is provided by bones. Internal organ damage is prevented by bones. Red and white blood cells are made in bones, which also serve as other blood cell production sites.
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evan is studying the effects of selective breeding in animals. he makes a list of possible results: 1) can increase the risk of birth defects in animals 2) can produce large amounts of offspring 3) can increase the muscle mass in offspring 4) can develop offspring with greater resistance to disease which items on the list provide logical arguments in favor of selective breeding?
3) Can increase the muscle mass in offspring.
4) Can develop offspring with greater resistance to disease.
What is the process of selective breeding?
Selective breeding is the practice of mating two organisms in order to create offspring with specified desirable traits. In order to produce crops and animals with desirable qualities like size, yield, and disease resistance, this is frequently done in agricultural and animal husbandry. Selective breeding has improved the quality of crops and animals for thousands of years, greatly influencing agriculture and food supply. The goal of selective breeding is to produce cattle with desirable features that are strongly heritable and can thus be passed down from generation to generation.
For thousands of years, humans have selectively bred both plants and animals. Through selective breeding, cabbage, cauliflower, and broccoli were all produced from the wild mustard plant.
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which of the following make good targets for antibiotics? (select all that are good targets.) group of answer choices 80s ribosome mitochondria lipopolysaccharides peptidoglycan metabolism enzymes only found in prokaryotes dna replication enzyme found in eukaryotes
The good target for antibiotics is mitochondria. Antibiotics impair mitochondria leading to a profound lack of ATP and elevated ROS levels. The correct option is option A.
Antibiotics are the main therapy against microbial infectious diseases. In humans, many antibiotics can cause several side effects. Ribosomal RNA (rRNA) is the main target of antibiotics that inhibit protein synthesis. According to the endosymbiont theory, the mitochondrion is of bacterial origin and the molecular and structural components of the protein expression system are almost similar. The rate of mutations in mitochondrial rRNA is higher as compared to that of nuclear rRNA. The presence of these mutations may mimic prokaryotic rRNA structure and bind to antibiotics targeted to the ribosomes of bacteria.
The link between antibiotics and mitochondria stems from the endosymbiotic theory, which proposes that mitochondria share common ancestry with Alphaproteobacteria such as Rickettsia, Anaplasma, and Ehrlichia.
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in a patient, at what phase of the bacterial growth curve do antibodies and white blood cells affect the progress of the disease?
In a patient, antibodies and white blood cells affect the progress of the disease during the log phase of the bacterial growth curve.
The bacterial growth curve is a graph that represents the growth of bacterial populations over time. It is divided into four phases: lag phase, log phase (exponential phase), stationary phase, and death phase.
During the log phase of bacterial growth, bacteria multiply rapidly and achieve maximum growth rate. At this point the immune system responses to the infection, which includes the production of antibodies, proliferation and activation of white blood cells.
If the immune response is adequate, the bacteria may be effectively controlled and the growth curve will have quick transition into the stationary phase and progress into the death phase.
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A rich soil made up of sand and mud deposited by running water is known as ______ soil.
A rich soil made up of sand and mud deposited by running water is known as a-l-l-u-v-i-a-l soil.
Numerous essential services are provided by soil for both humans and the environment. Due to the enormous amounts of carbon it collects and stores, it is also essential to combating climate change.
Due to its great porosity, a-l-l-u-v-i-a-l soil is among the top soil types and requires the least amount of water. Drift sand, rich, loamy soil, and silt clays are all types of a-l-l-u-v-i-a-l soil. With more than 46% of its entire geographical area made up of a-l-l-u-v-i-a-l, India is considered one of the richest nations in the world.
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DNA polymerase is an enzyme that binds DNA but is unable to bind RNA. This best displays the enzyme characteristic of_____.
DNA polymerase is an enzyme that binds DNA but is unable to bind RNA. This best displays the enzyme characteristic of substrate specificity.
A DNA polymerase is basically a member of a family of enzymes which perform the function of catalyzing the synthesis of DNA molecules from the nucleoside triphosphates which are the the molecular precursors of DNA. These enzymes are very crucial for DNA replication. During this process, the DNA polymerase basically reads the existing DNA strands in order to create two new strands which match the existing ones.
DNA polymerase does so by adding nucleotides to the 3'-end of a DNA strand that too one nucleotide at a time. The DNA polymerase shows substrate specificity, which means that it will only be able to bind to DNA and not to RNA.
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what is a characteristic of eudicots? a flower with six petals parallel leaf venation a taproot system vascular bundles scattered throughout the stem
A taproot system is a characteristic of eudicots.
Therefore, correct answer is E) a taproot system.
'What are eudicots?'
With about 190,000 known species, or 75% of all angiosperms, the eudicots make up a sizable, monophyletic group of angiosperms. A tricolpate or pollen grain descended from a tricolpate is a palynological apomorphy that clearly defines the monophyly of eudicots, which is strongly corroborated by molecular data.
A pollen grain that has three evenly spaced holes that are roughly parallel to the polar axis of the grain is known as a tricolpate pollen grain. Apertures are distinct areas of the pollen grain wall that may serve as the location of the pollen tube exitus as well as to permit the pollen grain to expand and contract with changes in humidity.
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Complete question is :-
Which of the following is a characteristic of eudicots?
A) parallel leaf venation
B) vascular bundles scattered throughout the stem
C) lack of secondary growth
D) a flower with six petals
E) a taproot system
ased on the standard photosynthetic electron transport experiment, what is the variable you are testing?
In the standard photosynthetic electron transport experiment, the variable being tested is the rate of photosynthesis.
This experiment measures the rate at which light energy is converted into chemical energy in plants through the process of photosynthesis. The rate of photosynthesis is determined by measuring the amount of oxygen produced as a result of photosynthesis.
The experiment involves exposing a plant sample to different levels of light intensity and measuring the resulting rate of photosynthesis by monitoring the rate of oxygen production.
The results can then be used to study the effect of light intensity on the rate of photosynthesis and determine the relationship between light intensity and the rate of photosynthesis.
The standard photosynthetic electron transport experiment is a crucial tool in understanding the process of photosynthesis and the role it plays in supporting plant growth and survival.
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all 6 classes of nutrients perform which of the following functions in the body? provide energy form structures regulate body processes all of these functions are performed by each of the 6 classes of nutrients
All 6 classes of nutrients perform all of these functions.
Carbohydrates, proteins, lipids, vitamins, minerals, and water are the six categories of nutrition. All of these nutrients give the body energy, support the formation of structures (including muscle and bone), and control bodily functions (such as digestion and hormone production).
The elements in food known as nutrients support the body's growth and function. Proteins, carbs, lipids, vitamins, minerals, and water are a few examples of nutrients. They give the body energy and support the development and upkeep of body tissues. They are also necessary for development, growth, and general health.
Types of Nutrients: Macro nutrients and Micro nutrients.
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Please help me thank you I need help
n terms of brain evolution, the sequence of brain regions (limbic system, brainstem, and cerebral cortex) from oldest to newest is:
The brainstem develops first, followed by the cerebellum, limbic system, and cerebral cortex.
What is human-brain evolution?
The human-brain evolution has resulted in some amazing modifications. The simplest brains are nothing more than cell clusters gathered in a group near the organism's front. These cells process data from sensory organs that are also found in the head.
The brain has changed over time. The sophistication and size of vertebrate creatures' brains have increased. Of all living things, humans have the most complex and greatest brain in relation to their body size. The brain has developed into specialized areas with unique structures and functions. For instance, the cerebral cortex is involved in memory, language, and consciousness, whereas the cerebellum is engaged in movement and coordination.
By knowing the nature of the human-brain could possibly provide some insight into conditions like depression and autism.
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Which type of protein will be translated by a ribosome bound to the rer?
The proteins that will be translated by a ribosome bound to the RER are generally the secretory proteins that are modified after synthesis and then packed to be secreted out of the cell.
What is the significance of the RER-associated ribosomes?There are ribosomes that are present on the rough endoplasmic reticulum, and some of the ribosomes are present in the cytoplasm, but both of these have different functions, such as cytoplasmic ribosomes making proteins that are used inside the cell, but RER making proteins for outside the cell most of the time.
Hence, the proteins that will be translated by a ribosome bound to the RER are generally the secretory proteins that are modified after synthesis and then packed to be secreted out of the cell.
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RNA catalysis can be selected in laboratory experiments. True or False?
The given statement "RNA catalysis can be selected in laboratory experiments: is true because it tends to produce more modest rate enhancements.
RNA catalysts typically result in relatively modest rate enhancements. A dinucleotide's transesterification processes, for instance, are frequently accelerated by nucleolytic ribozymes by around a million times compared to the uncatalyzed reaction, at rates of about one minute per reaction.
RNA molecules with enzyme activity are referred to as catalytic RNA (ribonucleic acid). Hammerhead ribozyme is a prime example. RNA processing and protein synthesis are two biological processes that catalytic RNAs are involved in. The catalytic core of the ribosome and spliceosome, as well as the self-splicing of group I and group II introns, all involve the active role of RNA as a biological catalyst.
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what is one environmental disadvantage of nuclear energy?
Nuclear energy has the drawback of creating radioactive waste.
Why is garbage radioactive?Nuclear power poses a significant environmental risk due to the production high radioactive wastes such spent (used) reactor fuel and uranium mill tailings. These substances can remain radioactive and dangerous to human health for tens of thousands of years.
Does radioactive waste pose a risk?No matter where it came from, this hazardous trash contains very dangerous substances including pellets of plutonium and uranium. These very radioactive substances continue to be highly harmful for tens of millions of years, endangering people, freshwater supplies, agricultural land, and fisheries.
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The blood vessel of the human body that experiences the greatest amount of pressure is the
The blood vessels in the human body which experience the greatest amount of pressure is the Aorta.
The aorta is a large roadway that carries oxygenated blood from the left ventricle of the heart to the rest of the body. It's the largest roadway in the mortal body, and is responsible for supplying the entire body with oxygenated blood. As blood is pumped from the heart, it's forced through the aorta with great pressure,
Which is why it generally experiences the topmost pressure of any blood vessel in the body. This pressure is necessary to insure that oxygenated blood is supplied to all corridor of the body. The walls of the aorta are thick and strong, allowing them to repel the violent pressure of the blood.
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Select the correct statement about charophytes, a taxon of green algae. (A)Charophytes are embryophytes. (B) Living charophytes are the algal ancestors of land plants. (C)Charophytes and land plants share three distinctive traits.
The correct statement about charophytes is: (C) Charophytes and land plants share three distinctive traits.
Charophytes are the eukaryotic aquatic green algae found in the aquatic water. They are autotrophic and hence can synthesize there own food. They can reproduce by both sexual as well as asexual method. The sexual reproduction occurs by means of conjugation.
Land plants are the plants that grow on terrestrial habitats, i.e., on the soil. They are also called embryophytes. All the land plants possesses true roots except for the Bryophytes. They are said to be similar to the Charophytes. The examples of land plants are: grasses, mosses, flowering plants, etc.
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Place the events of autonomic blood pressure regulation in the correct sequence.i. Blood flow returns to resting levelsii. Heart rate and stroke volume decreaseiii. Baroreceptors in vessels increase firing ratesiv. Blood pressure increasesv. Cardioacceleratory center decreases nerve signals along sympathetic pathwaysvi. Blood vessel wall stretchesvii. Sensory input sent to cardiovascular center
The events of autonomic blood pressure regulation in the correct order are iv, vi, iii, vii, v, ii, and i.
The autonomic nervous system is the nervous system that controls body activities that occur without us knowing it. Autonomic nerves control blood pressure, heart rate, and body temperature without our orders.
The cardiovascular system is the system that circulates blood throughout the body. This system works without us realizing it, assisted by the autonomic nervous system, including in regulating blood pressure. The process of regulating blood pressure by the autonomic nervous system is as follows: Blood pressure increases, the walls of blood vessels stretch, baroreceptors in vessels increase the rate of combustion, sensory input is sent to the cardiovascular center, the cardioacceleration center downgrades nerve signals along sympathetic pathways, heart rate and stroke volume decrease, and blood flow returns to resting levels
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What is the difference between elodea leaf placed in 5.0% salt vs pure water?
Answer:
When the Elodea was placed in the salt solution, the vacuoles disappeared and the protoplasm came away from the cell wall making the organelles appear to be clumped in the middle of the cell. Such cells are said to be plasmolyzed.
Placing Elodea cells into 100% water, which is more hypotonic than freshwater, also causes water movement into of the cells resulting in the swelling of the cells. In plants the outward pressure of the water produces rigidity of the cell, as the plasma membranes are pushed against the cell walls.
Explanation:
Typical prenatal development begins with _____ and ends with _____ , lasting between 266 and 280 days (from 38 to 40 weeks).
Typical prenatal development begins with fertilization and ends with birth , lasting between 266 and 280 days.
Prenatal development, also known as antenatal development, refers to the process that occurs in humans from the time an embryo is formed through the fetus's development to birth (or parturition).
Similar to other animals, the human body is created from a single cell that results from the combination of a male and a female gamete (or sex cell). The prenatal period in humans is divided into three distinct stages that begin with this union: (1) the pre-embryonic stage, which lasts for the first two weeks of development and is characterized by cell division and initial differentiation (cell maturation); (2) the embryonic period, also known as the period of organogenesis, which lasts from the third to the eighth week of development; and (3) the fetal period, which is characterized by the maturation of the placenta.
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epithelial tissue: a. is associated with a basement membrane. b. is highly vascularized. c. is usually acellular. d. contains a number of neuron types.
Epithelial tissue is a type of tissue that is associated with a basement membrane, is not highly vascularized, is composed of closely packed cells, and does not contain a number of neuron types.So option a is correct.
Epithelial tissue is a type of tissue that covers the surface of organs, lines cavities and ducts, and forms glands. Epithelial tissue is composed of closely packed cells that form a continuous layer.
A. Epithelial tissue is associated with a basement membrane. The basement membrane is a thin layer of extracellular matrix that separates the epithelial tissue from underlying connective tissue. The basement membrane provides mechanical support to the epithelium and also plays a role in regulating cell behavior and differentiation.
B. Epithelial tissue is not highly vascularized. Unlike other tissues such as muscle or connective tissue, epithelial tissue does not have a high density of blood vessels. Instead, epithelial cells receive their nutrients from the underlying connective tissue.
C. Epithelial tissue is not usually acellular. As mentioned, epithelial tissue is composed of closely packed cells that form a continuous layer.
D. Epithelial tissue does not contain a number of neuron types. While some epithelial cells may be capable of responding to stimuli, epithelial tissue is not a source of neurons. Neurons are specialized cells that are primarily found in the nervous system.
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the statement that segregation of alleles for a gene on one chromosome does not influence the segregation of alleles for a gene on another chromosome during gamete formation is mendel's law of
The statement that segregation of alleles for a gene on one chromosome does not influence the segregation of alleles for a gene on another chromosome during gamete formation is mendel's law of independent assortment
According to the Law of Segregation, every gamete that is produced by a person obtains just one copy of each gene as a result of the division of copies of the genes. The gamete will take either of the alleles.
The two alleles for each characteristic segregate, or separate, throughout the development of gametes, and they randomly join with other alleles to generate new zygotes, according to Gregor Mendel's law of segregation.
One member of each pair—chromosomes and genes—comes from the mother and the other from the father. view diagram Each sperm or egg receives just one member of a homologous pair because the members of a pair split during meiosis.
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tattooing can be permanent if the ink particles get trapped in which layer?
Tattooing can be permanent if the ink particles get trapped into the dermis layer of skin.
Since the macrophages cannot degrade the ink, they remain stationary in the dermis and keep the ink contained in their vacuoles, so containing the immune system's onslaught. The tattoo design is thus stuck in the dermis. Tattoo ink is placed in the dermis layer, where it becomes permanent, however it does gradually deteriorate with time. The only way to get rid of a tattoo is to medically remove it or use dermabrasion, laser, or other methods to remove the dermis.
The regeneration of your epidermis takes two to four weeks. As the body's immune system gradually breaks down the foreign pigment particles and the macrophages remove them to be eliminated, tattoos will gradually fade over time. However, the ink will generally follow you forever.
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What is the potential energy of a proton at the midpoint of the capacitor?
Why is the energy from a molecule of ATP required by the sodium-potassium pump? - It helps the sodium and potassium ions bind to the pump binding sites. - It provides the energy required to move sodium and potassium ions against their concentration gradients. - It provides the energy required to lonize sodium and potassium. - It helps prevent other molecules from being transported by the pump.
Answer:
It provides the energy required to move sodium and potassium ions against their concentration gradients.
Explanation:
Since the sodium potassium pump moves molecules against the concentration gradient, it is a form of active transport. This means is requires energy in the form of ATP.
Read Aloud Rate Content Which vessels of the cardiovascular system will have the least amount of pressure? a. muscular arteries Blood meral b. capillary beds c. venules Blood neral d. elastic arteries e. veins
Aloud Rate Content veins vessels of the cardiovascular system will have the least amount of pressure therefore the correct option is E.
The pressure in the different vessels is determined by the consistence of their walls, the effectiveness of the pumps, and the resistance to blood inflow. Muscular highways have the thickest walls and the most effective pumps, so they've the loftiest pressure. Elastic highways have thick walls and fairly effective pumps,
While capillary beds have veritably thin walls and pumps that aren't as effective. Venules and modes have thinner walls and pumps that aren't as effective, so they've slightly advanced pressure than the capillary beds, but lower than the muscular highways and elastic highways.
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chloride ions are passively distributed across the cell membrane. what is the membrane potential? group of answer choices
The equilibrium potential of chloride is -65 mV. Since chloride is a negative ion, it must exit the cell in order for the membrane potential to change from -70 mV to -65 mV by making the cell more positive.
According to G-H-K eqn, the membrane potential will be -67mV. Because of this, chloride ions will be attracted to the outside and repelled from the inside of the membrane.
This will result in a concentration gradient for the ion that is exactly equal to and opposite to the electrical potential across the membrane (-67mV)
Chloride ions always diffuse because the cell does not actively transport the ions; as a result, they do not contribute to the resting membrane potential but instead distribute themselves in accordance with it. Membrane potential can only be measured using the G-H-K equation for K+ and Na+.
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why is the hypothalamus a major coordinating and control center?
The brain region known as the hypothalamus serves as the body's intelligent control and coordination center. Its primary job is to keep your body in a steady state known as homeostasis.
Why does the hypothalamus hold the most significance?Undoubtedly the most important component of the endocrine system is the hypothalamus. The hypothalamus controls the balance and proper operation of your body's internal functions by signaling the pituitary gland to release certain hormones to the rest of the endocrine system.
How does the hypothalamus collaborate?By encouraging the release of hormones from organs and glands, the hypothalamus senses changes in the body and coordinates responses. The hypothalamus is able to control numerous bodily functions thanks to these connections.
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the spindle apparatus is fully formed by the end of. True/False ?
The spindle apparatus is fully formed by the end of prophase II.
The spindle apparatus is composed of microtubules and associated proteins that are involved in the separation of chromosomes during cell division. The formation of the spindle apparatus is a crucial step in the process of mitosis, as it helps to ensure that each daughter cell receives a complete and accurate copy of the genetic material.
The spindle apparatus forms during the prophase stage of the cell cycle, when the microtubules and associated proteins assemble around the centrosomes, which are the centers of microtubule nucleation.
The proper functioning of the spindle apparatus is critical for the accuracy of cell division and the maintenance of genetic stability, and disruptions in the formation or function of the spindle apparatus can lead to various genetic disorders, including cancer.
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--The given question is incorrect, the correct question is
"The spindle apparatus is fully formed by the end of __________. a)metaphase II b)anaphase II c)prophase II d)prometaphase II e)telophase II"--
describe the role of meiosis in the life cycle of a vascular plant. drag the terms on the left to the appropriate blanks on the right to complete the sentences. not all terms will be used. resethelp in angiosperms, meiosis results in the formation of (male) and (female), which give rise to the blank male and female gametophyte stage. micro- and megagametophytes produce the blank and the blank, respectively. following fertilization, the blank is formed.
Meiosis plays a crucial role in the life cycle of a vascular plant, particularly in angiosperms. During meiosis, the male and female reproductive cells, also known as gametes, are produced.
In angiosperms, meiosis results in the formation of male and female gametes, which give rise to the micro- and megagametophyte stage. The microgametophyte produces the sperm and the megagametophyte produces the egg. Following fertilization, the zygote is formed. This zygote will divide by mitosis and eventually develop into the sporophyte, the dominant stage of the life cycle in vascular plants.
The sporophyte produces spores through meiosis that will give rise to the gametophyte generation. This alternation of generations between the gametophyte and the sporophyte is a characteristic feature of the life cycle of vascular plants. In summary, meiosis plays a crucial role in the formation of gametes, fertilization, and the alternation of generations in vascular plants.
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Suppose you were interested in studying teen SU. Which sociological theoretical perspective or perspectives (from the module one chapters) would you use? Explain your answer as to why you would use them and how you would use them.
To study teen SU, I would use both the Functionalist and Conflict perspectives.
What constitutes these perspectives?The Functionalist perspective emphasizes the ways in which social institutions, such as families and schools, help to maintain social stability and order. In the context of studying teen SU, I would use this perspective to examine the functions that teen SU serves in society and how it contributes to maintaining the status quo.
The Conflict perspective emphasizes power struggles and the ways in which dominant groups in society maintain their power over subordinate groups. In the context of studying teen SU, I would use this perspective to examine how power dynamics between teens and adults play out in the context of SU.
Using both of these perspectives would provide a comprehensive and nuanced understanding of teen SU, including its social functions and the power dynamics at play.
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