Answer:
Agricultural activities that cause NPS pollution include poorly located or managed animal feeding operations; overgrazing; plowing too often or at the wrong time; and improper, excessive, or poorly timed application of pesticides, irrigation water, and fertilizer. Industrial farming practices, such as monocropping and intensive tillage, have also compromised soil health over time. ... Excessive fertilizer use can also cause a buildup of salts in soil, heavy metal contamination and accumulation of nitrate (which is a source of water pollution and also harmful to humans
Explanation:
However agriculture is both cause and victim of water pollution. It is a cause through its discharge of pollutants and sediment to surface and/or groundwater, through net loss of soil by poor agricultural practices, and through salinization and waterlogging of irrigated land.
Describe the caused the attraction between Molecules of water.
Answer: The slight positive charges on the hydrogen atoms in a water molecule attract the slight negative charges on the oxygen atoms of other water molecules
Explanation:
which is a true statement about memory cells? which is a true statement about memory cells? they produce antibodies. they engulf antigens bound by antibodies. the first time an antigen is encountered, memory cells become plasma cells. they have a longer lifespan than plasma cells.
The true statement about memory cells is The first time an antigen is encountered, memory cells become plasma cells Therefore the correct option is C.
Memory cells are responsible for the body's immune response during infections. They help to remember and recognize pathogen, so that if the same pathogen is encountered again, the immune system will be able to respond much faster and more thoroughly than it did the first time.
When an antigen (a molecule that triggers the immune system) binds to an antibody, memory cells engulf the antigen and produce antibodies specifically designed to fight off the antigen. These memory cells have a much longer life span than plasma cells, allowing them to remain in the body and provide immunity against future infections with similar antigens.
This is why vaccines are so effective - by introducing antigens into our bodies we can create memory cells which will protect us against future illnesses.
Hence the correct option is C
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What is the purpose of transcription?
A.) To replicate DNA
B.) To carry amino acids to the ribosome
C.) To copy a segment of DNA into RNA
D.) To obtain the information on how to produce a ribosome
C.) To copy a segment of DNA into RNA.
Transcription is the process of copying a segment of DNA into RNA. The outcome of transcription is a complimentary strand of messenger RNA(mRNA)
what are membrane-bound organelles? :c
Any organell that has membrane outside the organells covering them are called membrane bound organells.Membranes of organells like chloroplast,Golgi, mitochondria,ribosomes,nuclear membrane,cell membrane are made of lipids for protection of the internal matters of the cell and for easy passage of specific vesicles or essential molecules.membranes also have proteins as receptors or channels for.selective transport in to the cell and carbohydrates or proteoglycans for signalling and interaction. Membranes are barriers or.protective layer of the cell.membranes can also act as the site for electron transport chain Example .. like in chloroplast and mitochondria which contains its own membrane with proteins embedded for ETC.chloroplast has its own dna inside the lumen below the membrane allowing specific molecules to enter through Protein channels.
Thanks
Which of the following is not caused by Mad Cow disease?
spongiform encephalopathy
eventual death
trembling, shaking, and staggering movements
solidified brains
Answer:
None
Explanation:
They are all symptoms or effects of the disease.
Over the years, a Mexican wolf population in an area of Arizona became severely depleted. The U.S. Fish and Wildlife Service put in place a program to breed wolves and release them into the wild. A survey of the Mexican wolf population since the program’s introduction in 1998 is shown.
Which of these events, if they occurred, would have most contributed to the decline in Mexican wolf species before 1998?
A. conversion of wolf habitats to housing communities
B. erection of fencing to designate protected zoning areas
C. introduction of invasive prey species into the ecosystem
D. establishment of contiguous roaming areas for the wolves
If it occurred, the event that would have most contributed to the decline in the Mexican wolf species before 1998 would be A. conversion of wolf habitats to housing communities.
The conversion of wolf habitats to housing communities can have a significant negative impact on the Mexican wolf population. When their natural habitats are destroyed or fragmented by human activities such as urban development, it reduces the available space for the wolves to live, hunt, and breed. Loss of habitat can lead to decreased prey availability, increased competition with other species, and disruption of essential ecological processes. The destruction of wolf habitats can also result in increased human-wildlife conflicts, leading to direct harm to the wolf population. Therefore, the conversion of wolf habitats to housing communities would have been the most significant factor contributing to the decline of Mexican wolves before the introduction of the breeding and release program in 1998.
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mains parts of a sheep lung and its functions ????
Six distinct lobes on both the left and right sides of the sheep lung are divided from one another by tissue septa, and each lobe can be treated or drug-delivered separately.
How do sheep lungs differ from human lungs?The lungs of sheep, like those of cattle and pigs, are highly segmented, with the right lung having four lobes and the left lung has two lobes, with the bronchus of the right cranial lobe emerging directly from the trachea before bifurcating.
While human lungs have three lobes, sheep lungs only have one. The majority of the spongy tissue in human lungs, called alveoli, is in charge of the body's gas exchange. Sheep rely on parenchyma cells, which are formations without this sort of tissue, to produce gas exchange in their bodies.
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A team of scientists and engineers is working together to develop a new cleaning product. The team has identified a species of bacteria that gets energy by breaking apart lipids and oils. The team wants to isolate the key substance that the bacteria use for this process, and then adapt the substance for the new cleaning product.
A. A lipid or oil that is unique to the bacteria
B. A carbohydrate that is about the same size as a typical lipid or oil molecule
C. A nucleic acid that codes for the production of a lipid or oil
D. A protein enzyme that specifically binds lipids or oils
D. A protein enzyme that specifically binds lipids or oils
The macromolecule to be isolated for this process is a protein break apart lipids and oil.
In the provided question, bacteria obtain energy for their personal metabolic activities by dissolving lipids and oils. This is only feasible due to the bacteria's genetic features. Because all genetic characteristics are coded for by a protein, the scientists must scan the bacterium genome and identify the protein responsible for this function.
Some microorganisms have been utilized in biotechnology due to their value to human endeavours. The majority of probiotics used in the manufacturing of yoghurt are bacteria that are widely recognized as harmless (GRAS). However, the significance of these creatures is extensive.
Because carbohydrates and lipids are not the functional units of genetic expressions, answers a and b are erroneous. Nucleic acids are part of the genetic material, but they are eventually translated into protein. As a result, response choice D is the right one.
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7. What is the proper sequence of events in maintaining homeostasis?
a. 1. Stimulus, 2. Receptor, 3. Signal, 4. Response
b. 1. Stimulus, 2. Response, 3. Signal, 4. Receptor
C. 1. Receptor, 2. Stimulus, Signal, 4. Response
d. 1. Signal, 2. Receptor, 3. Stimulus, 4. Response.
Answer:
a.
Explanation:
stimulus, receptor detects changes, input info and output info(signal), response
a. 1. Stimulus, 2. Receptor, 3. Signal, 4. Response
Homeostasis is any self-regulating process by which an organism tends to maintain stability while adjusting to conditions that are best for its survival.
If homeostasis is successful, life continues; if it's unsuccessful, it results in a disaster or death of the organism.
Proper sequence of events in maintaining homeostasis:
Stimulus: Produces change in variable, change detected by receptor. Input: Information sent along efferent pathway to control center. Output: Information sent along efferent pathway to activate effector. Response: Feeds back to influence magnitude of stimulus and returns variable to homeostasis.Therefore, the correct option is a.
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which of the following types of microbes is most similar to animals in terms of their cellular structure and metabolism?
The type of microbes that is most similar to animals in terms of cellular structure and metabolism is the protozoa. Option 2 is correct.
Protozoa are unicellular eukaryotic organisms that share similarities with animals in terms of their cellular structure and metabolic processes. Like animals, protozoa have membrane-bound organelles, including a nucleus, mitochondria, and other specialized structures. They also possess a flexible cell membrane, allowing them to move and respond to stimuli in their environment.
In terms of metabolism, protozoa obtain energy through various pathways similar to animals. They can undergo aerobic respiration, utilizing oxygen to produce ATP. Some protozoa can also engage in anaerobic metabolism under low-oxygen conditions. Additionally, protozoa can ingest and digest organic matter, similar to animal feeding habits. Option 2 is correct.
The complete question is
Which of the following types of microbes is most similar to animals in terms of their cellular structure and metabolism?
1. Bacteria
2. Protozoa
3. Fungi
4. Archaea
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moving from the element with atomic number 10 to atomic number 11 on the periodic table there is a change in reactivity, which of the following are true?
select all that apply .
Reactivity increases
Reactivity decreases
Neon has another shell
Sodium has another shell
Valence electrons in sodium are farther from the nucleus
Atomic number 11 does not have a full electron shell
Changes observed from the reactivity of the elements are;
Reactivity increasesSodium has more shellValence electrons in sodium are farther from the nucleusAtomic number 11 does not have a full electron shellWhat is reactivity of elements in the periodic table?Reactivity is a measure of how easily an element will combine with other elements to form compounds.
An element with atomic number of 11 is known as Sodium, found in group 1 of the periodic table with is the group of most reactive metals in the periodic table.
An element with atomic number of 10 is known as neon, found in group 8 of the periodic table and it is known as inert gas because it has octet structure.
Thus, we can conclude the following;
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which class of genes is most likely to be mutated in a d. melanogaster organism that has antennae where its front legs should be?
Where its front feet should be Homeotic genes, there is an antenna.
How does a gene work?The fundamental genetic component transferred from child to child. Genes are composed of DNA sequences and are organized sequentially at specified sites on chromosomal in the cell nucleus.
Which genes are examples?Your genes, which were passed down to you, play a large role in determining many of your traits, including the color of your skin and hair. Perhaps Emma inherited the red hair mutation from her mother, who contains both the brown & red hair genes. If her father possesses two red hair genes, her red hair may have an explanation.
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pain receptors trigger neural impulses in response to a sprain or a burn. this illustrates
The phenomenon described in the question is an example of the pain pathway or the pain response.
When tissues are damaged due to a sprain or a burn, specialized nerve endings known as pain receptors or nociceptors are activated, and they send neural impulses to the spinal cord and the brain. These impulses are processed by the nervous system, and the brain interprets them as pain. This pain response is an essential protective mechanism that alerts us to potential or ongoing tissue damage and prompts us to take action to prevent further harm.
Pain receptors, also known as nociceptors, trigger neural impulses in response to a sprain or a burn. This illustrates the process of nociception, which is the detection of harmful stimuli by the sensory nervous system.
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HELP WILL MARK BRAINLIEST
17. For each of the following, indicate if it is a carbohydrate, lipid, or protein
a. Is used for the body for long term energy
b. An example is wax
C. An example is cellulose
d. Polysaccharides are in this category.
Are used in waterproof coverings and insulation
f.
Are enzymes
g. Glucose, fructose, and galactose are examples
h. An example is Immune defense (antibodies)
i. Triglycerides are part of this category_
j.
Is used for short term energy
k. Involved in muscle contraction
I
18. What is the monomer of a protein called?
Answer:
a. protein
b. lipid
c. carbohydrate
d. carbohydrate
waterproof coverings and insulation- lipids
f- all of them
g- carbohydrate
h- protein
i- lipids
j- lipids
k- protein and carbohydrate
l- amino acid
Explanation:
Hope this helps!
: A medical facility is designing a new lab to deal with biohazard samples. When anyexperiment will run inside the lab, nobody will be allowed inside. 2 lights, green and red, fitted above the lab room door will indicate when it is allowed to enter the room. The green light indicates it is safe to enter whereas the red light prevents access to the room. It is to be noted that these 2 lights are controlled through a single mechanical switch in the control room and they can only light up altematively. The switch has been debounced using a small hardware setup. This entire system is built around an Arduino Uno platform. Now prepare a program to operate the door lights through the switch considering the given restraints.
To operate the door lights through the switch, we can use an Arduino Uno platform and write a program that considers the given restraints. Activating the switch again will switch the lights back to the initial state.
Here's a step-by-step guide:
1. Connect the green and red lights to digital pins on the Arduino board.
2. Set up the mechanical switch to a digital pin as well.
3. In the Arduino code, define the pin numbers for the green and red lights, as well as the switch.
4. Create two integer variables, let's call them "greenLightState" and "redLightState," to keep track of the current state of the lights.
5. In the setup() function, set the green and red light pins as output pins using the pinMode() function.
6. In the loop() function, read the state of the switch using the digitalRead() function and store it in a variable, let's call it "switchState."
7. Use an if statement to check the value of switchState. If it is HIGH, it means the switch is activated.
8. Inside the if statement, toggle the state of the green and red lights by changing the values of the greenLightState and redLightState variables.
9. Use digitalWrite() to set the state of the green and red lights based on the values of greenLightState and redLightState.
10. Add a delay to the loop() function to avoid rapid switching of the lights.
11. Upload the program to the Arduino board and test it.
With this program, the lights will alternate their state every time the switch is activated. For example, if the green light is on, activating the switch will turn it off and turn on the red light instead.
Note: This is a basic example of how the program could be structured. Depending on the specific requirements of the system, additional logic and conditions may need to be implemented.
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How do the organ systems function together in the human body?
Answer: organ system work together to accomplish their task so the diffrerent organ systems also cooperate to keep the body runing
Explanation:
Select the correct answer from each drop-down menu.
A researcher was studying mutations in bacteria. He found that certain bacteria had changes in their DNA that allowed them to be resistant to antibiotics. This research is an example of
. The mutation will lead to
The researcher studying mutations in bacteria and discovering that certain bacteria had DNA changes leading to antibiotic resistance is an example of genetic adaptation. The mutation in bacteria's DNA enables them to survive and multiply even in the presence of antibiotics, making them resistant to the drugs.
1. The researcher's study revolves around mutations in bacteria.
2. The researcher finds specific changes in the DNA of bacteria.
3. These DNA changes enable the bacteria to be resistant to antibiotics.
4. This discovery showcases genetic adaptation in bacteria.
5. Genetic adaptation refers to the process in which organisms undergo genetic changes that allow them to survive and reproduce better in their environment.
6. In this case, the bacteria's mutation in their DNA provides them with the ability to resist the effects of antibiotics.
7. Antibiotic resistance allows the bacteria to survive and multiply even in the presence of drugs that would typically inhibit their growth or kill them.
8. The ability to resist antibiotics is advantageous for the bacteria, as it enhances their chances of survival in environments where antibiotics are present.
9. This research highlights the importance of understanding genetic adaptations in bacteria, as it helps in developing strategies to combat antibiotic resistance and improve medical treatments.
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To achieve which of the following goals would rotation of livestock be most appropriate? (3 points)
-To avoid overgrazing, vegetation loss, and soil erosion
-To maximize livestock populations while minimizing costs
-To involve townspeople in the operations of a nearby farm
-To transform an abandoned city lot into a neighborhood garden
Answer: a, to avoid overgrazing, vegetation loss and soil erosion
Explanation: I just finished the assignment and it was correct
Answer:
the answer is A, overgazing , vegatation loss, and soil erosion
Explanation:
Which of the following is the best example of a neutral mutation?
A) A mutation that causes a rabbit that lives in the Arctic to have black fur
B) A mutation in a squirrel that causes it’s tail to not be as bushy and full
C) A mutation that caused a plants to develop a waxy coating which helps it retain water in its cells
D) A mutation in corn that causes it to not be able to produce chlorophyll and photosynthesize
Answer:
It's A.
Explanation:
Whale primary functions
The primary functions of whales include feeding, reproduction, communication, and migration.
Whales are primarily filter feeders or predators, depending on the species.
Filter-feeding whales, such as baleen whales, have baleen plates in their mouths that allow them to filter out small prey, such as krill or small fish, from large volumes of water.
Predatory whales, such as toothed whales, hunt and feed on various marine organisms, including fish, squid, and marine mammals.
Reproduction is another important function for whales. Most whale species have a gestation period of several months, with females giving birth to a single calf.
The calves are nursed with milk from their mothers and rely on their care for a period of time until they become independent.
Communication is vital for whales, as they rely on vocalizations to communicate with other members of their pod.
Whales produce a variety of sounds, including songs, clicks, and whistles, which serve purposes such as mating, social interactions, and navigation.
Migration is a common behavior observed in many whale species. Whales undertake long-distance migrations, often covering thousands of kilometers, to reach feeding grounds in nutrient-rich waters or to reproduce in specific breeding areas.
These migrations are driven by seasonal changes in food availability and environmental conditions.
In summary, the primary functions of whales encompass feeding, reproduction, communication, and migration, all of which are essential for their survival and successful adaptation to their marine environments.
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Each month, a graafian follicle ruptures on the ovarian cortex, and an ovum releases into the pelvic cavity and into the fallopian tube. This process is known as ________.
Each month, a graafian follicle ruptures on the ovarian cortex, and an ovum releases into the pelvic cavity and into the fallopian tube. This process is known as Ovulation.
The process of an egg being released from the ovary is called ovulation. The egg is released and travels down the fallopian tube, where it remains for 12 to 24 hours before being fertilized. The egg may or may not be fertilized by sperm when it is released. If the egg is fertilized, it may move to the uterus where it will implant and grow into a pregnancy.
Follicle-stimulating hormone (FSH), which is released by your body during the follicular phase, aids in the maturation and preparation of the egg in your ovary for release.
When the egg is fully developed, your body produces a large amount of luteinizing hormone (LH), which causes the egg to be released. Around day 14, between 28 and 36 hours after the LH spike, ovulation typically takes place.
Luteinization occurs after ovulation. In the event of pregnancy, hormones will prevent the lining from shedding. If not, bleeding will begin on or around day 28 of the cycle, starting the following cycle.
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(80 POINTS AND BRAINLIST!!!!!!!!)
How is the relationship between the small fish and the invertebrates in the diagram above best described? (diagram is linked) (multiple choice question) (pretty easy)
A. Predator-prey
B. Producer-predator
C. Consumer-parasite
D. Decomposer-consumer
Answer:the fish is the predator and the invertebrates the prey
Explanation:so A.
The relationship between the small fish and the invertebrates in the diagram is Predator-prey relationship. The correct option is A.
What is Predator-prey relationship?
A predator is an organism that consumes another. The prey is the organism that the predator consumes. Lion and zebra, bear and fish, and fox and rabbit are all examples of predator and prey.
Predator-prey interactions play an important role in the structure of ecological communities, with predators influencing the dynamics of their prey in ways that cascade through ecosystems, affecting processes such as productivity, biodiversity, nutrient cycling, disease dynamics, carbon storage, and more.
In the diagram, the small fish and the invertebrates have a predator-prey relationship. Predators, according to the classic, generic view, have a negative consumptive effect on prey, while prey provide a positive nutritional benefit to predators.
Thus, the correct option is A.
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for the nucleophile of this reaction, dialkyl phosphonates (diesters of phosphonic acids) are . quizlet
Dialkyl phosphonates (diesters of phosphonic acids) act as nucleophiles in this reaction.
Dialkyl phosphonates are a class of organic compounds which have the general formula (RO)2P(O)H, where R is a short-chain alkyl group (usually methyl or ethyl). Dialkyl phosphonates act as nucleophiles in reactions, meaning they have a high affinity for positively charged atoms (in this case, the carbonyl carbon of an aldehyde or ketone).
This reactivity is due to the electron-withdrawing properties of the phosphonate group, which makes the carbon more susceptible to attack by the nucleophile. The use of dialkyl phosphonates as nucleophiles is particularly useful in the Horner-Wadsworth-Emmons (HWE) reaction, a type of olefination reaction that allows for the formation of carbon-carbon double bonds between aldehydes or ketones and phosphonate esters.
The reaction is catalyzed by a strong base (usually triethylamine), which deprotonates the phosphonate ester to form a reactive ylide intermediate that can then undergo nucleophilic addition to the carbonyl group of the aldehyde or ketone.
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A genetic disorder that prevents microfilament formation would prevent the development of the
A: mitotic spindle
B: cleavage furrow
C: homologous chromosomes
D: sister chromatids
A genetic disorder that prevents microfilament formation would prevent the development of the cleavage furrow. So the correct answer is option B.
The cleavage furrow is a structure that forms during cytokinesis, the final stage of cell division, and is responsible for dividing the cytoplasm of a cell into two daughter cells. Microfilaments, also known as actin filaments, play a crucial role in the formation of the cleavage furrow.
During cytokinesis, a contractile ring composed of microfilaments forms at the equator of the dividing cell. The ring contracts, constricting the cell membrane inward and causing the formation of the cleavage furrow. This process eventually leads to the physical separation of the two daughter cells. If microfilament formation is prevented due to a genetic disorder, the contractile ring and, subsequently, the cleavage furrow would not form properly. As a result, cytokinesis would be impaired, leading to the failure of cell division and the inability to generate two separate daughter cells. Hence option B is correct.
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How is fungi different from other kingdoms?
Answer:
➢ A characteristic that places fungi in a different kingdom from plants, bacteria, and some protists is chitin in their cell walls. ... Fungi do not photosynthesize. Growth is their means of mobility, except for spores (a few of which are flagellated), which may travel through the air or water.
\(#CarryOnLearning\)
Answer:
Fungi are heterotrophic and they don't use photosynthesis.
Explanation:
contain enzymes that catalyze metabolic reactions that release hydrogen peroxide
Peroxisomes are cell organelles that are involved in lipid metabolism, detoxification of harmful substances, and other metabolic activities. They are abundant in the liver and kidney cells and contain enzymes that catalyze metabolic reactions that release hydrogen peroxide.
What is the structure of peroxisomes?Peroxisomes are membrane-bound organelles that are found in eukaryotic cells. They have a single membrane that encloses a matrix containing enzymes required for the metabolism of lipids and other substances. The enzymes inside the matrix are involved in catalyzing metabolic reactions that release hydrogen peroxide, a toxic compound that can cause damage to the cell. However, peroxisomes also contain an enzyme known as catalase, which converts hydrogen peroxide into water and oxygen, preventing the accumulation of this harmful compound.What is the function of peroxisomes?Peroxisomes are involved in various metabolic activities in the cell. They are responsible for the breakdown of fatty acids through a process known as beta-oxidation. This process generates energy that can be used by the cell to carry out its functions.
Additionally, peroxisomes are involved in the detoxification of harmful substances such as alcohol and other drugs. They are also responsible for the synthesis of cholesterol and other lipids required by the cell.Overall, peroxisomes are essential organelles that play a crucial role in maintaining cellular homeostasis by carrying out various metabolic activities that are essential for the proper functioning of the cell.
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The Threatened Specie Act prohibit trade or product made from threatened or endangered pecie. True
Fale
The given statement is TRUE. A foundation for the conservation and protection of threatened species and endangered species, as well as their habitats, both domestically and overseas, is provided under the Endangered Species Act of 1973.
In accordance with ESA, critical habitat must be identified and its removal is forbidden. The Endangered Species Act establishes protections for fish, mammals, and plants that are categorized as threatened or endangered. It allows for the addition and deletion of species from the list of threatened and endangered species as well as the creation and implementation of recovery plans. A threatened species is one that "is likely to become an endangered species within the foreseeable future throughout all or a considerable portion of its range," according to the ESA.
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Pick a cell found in the human body and analyze how the structure of that cell allows it to perform it's specific function in the human body.
Answer: Blood Cell
Explanation:
The function of the red cell is to carry oxygen from the lungs or gills to all the body tissues and to carry carbon dioxide, a waste product of metabolism, to the lungs, where it is excreted. The biconcave shape of the cell allows oxygen exchange at a constant rate over the largest possible area.
The function of the red cell is to carry oxygen from the lungs or gills to all the body tissues and to carry carbon dioxide, a waste product of metabolism, to the lungs, where it is excreted.
What is cell?Cell is defined as the base of life as it is the structural as well as functional unit of life. Cell is made up of pre existing cells and the cell contain various cell organelles such as mitochondria, endoplasmic reticulum, ribosomes, golgi appratus, nucleus, and cytoplasm.
Basically, cell is of two type one in prokaryotic and another one is eukaryotic. The prokaryotic cell is known as pre mature cells as they do not contain cell organelles and eukaryotic cell are known as advanced and developed cells as they contain several cell organelles.
The unicellular animals are made up of single cell and all the functions carried out in a single cell like amoeba and multicellular organisms are made up of multiple cells and there is specific cell for specific functions.
Therefore,the function of the red cell is to carry oxygen from the lungs or gills to all the body tissues and to carry carbon dioxide, a waste product of metabolism, to the lungs, where it is excreted.
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after osmosis occurs in beaker a, the cell would be __________ compared to its size at the start of the experiment.
After osmosis occurs in beaker A, the cell would be larger compared to its size at the start of the experiment.
Osmosis is the process in which solvent molecules move from an area of high concentration to an area of low concentration across a selectively permeable membrane. In this experiment, water moves into the cell, which has a higher solute concentration than the surrounding solution in beaker A. As a result, the cell swells and increases in size. If this process continues, the cell may burst due to the excess influx of water, leading to cell death. Therefore, it is important to maintain the balance of solutes and water inside and outside the cell.
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Which of the following best describes Detroit in the 1950s?
A. It was a booming city with over a million people and expanding industrial infrastructure.
B. It was a city that had declined economically and that was rapidly losing population.
C. It was a rural area with remnants of the French long-lot system.
Answer:
B
Explanation:
It is B because Detroit people let go and forgot about the population so they left