Answer: Because of pollution and overfishing
in which group did we first see bilateral symmetry? group of answer choices flatworms sponges annelids roundworms
Earth has an abundant supply of water and it is essential for human beings to live. More than half of an adult body mass is water. One of the important places water is found is in blood. Blood transports nutrients like glucose throughout the body. What property of water is most important in allowing glucose to be dissolved in blood?.
Answer: Water is an excellent solvent.
Explanation:
Blood that contains 92% water is referred to be plasma. Water functions primarily as a solvent in the plasma. It carries and rapidly dissolves things.
Water exhibits cohesive behavior.
Cells use sugars as a source of energy and as the foundation for other biological substances. Glucose, sometimes referred to as blood sugar, is an example. Due to the numerous polar OH groups that are connected to its six carbons, glucose is a tiny (6 carbons) molecule that dissolves readily in water.
C. Water is an excellent solvent. is the property of water that is most important in allowing glucose to be dissolved in the blood.
The term "plasma" refers to blood, which is composed of 92 percent water. Water's primary function in the plasma is that of a solvent. It easily transports and dissolves substances within it. Hence. Choice C is correct.
Because moderation of temperature will not fulfill the blood's transportation function, Option A cannot be considered. Because water's expansion or compression does not aid in blood transportation, Option B cannot be considered.
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(complete question)
Earth has an abundant supply of water and it is essential for human beings to live. More than half of an adult body mass is water. One of the important places water is found is in the blood. Blood transports nutrients like glucose throughout the body. What property of water is most important in allowing glucose to be dissolved in blood?
A. Water is able to moderate temperature well.
B. Water expands as it freezes.
C. Water is an excellent solvent.
D. Water exhibits cohesive behavior.
Why is environmental science important?
Explanation:
it is where we live and share resources with order species
I hope this was helpful
one can infer from the passage that for the author, the horse and the sandstorm both:
One can infer from the passage that for the author, the horse, and the sandstorm both: present mysteries beyond human comprehension.
How to make an inferenceTo make an inference is to reach a conclusion based on certain facts that are available to the reader. So, from the passage in question, we can see that the narrator does not have a plain view of the horse and sandstorm.
He rather believed that they have far more meaning that was beyond human comprehension. So, they both presented some mysteries.
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Kira and Latonya are going to have a watermelon-rolling contest. Each girl has to push her watermelon 8 meters to the finish line. Kira's watermelon has a mass of 2 kg. Latonya's watermelon has a mass of 3 kg.
If each girl pushes her melon with the same amount of force, which girl will cross the finish line first?
A.
There is not enough information to tell who will win.
B.
Latonya will cross the finish line first.
C.
Kira will cross the finish line first.
D.
Both girls will cross the finish line at the same time.
Kira will be the first to finish the race, based on the question.
What are weight and mass?A measurement of an object's inertial characteristic, or how much matter it contains, is the entity's mass. The force of gravity acting on something or the force required to support it is quantified by the weight of the thing. An object's downward acceleration due to gravity on earth is roughly 9.8 m/s2.
Is kg a weight or even a mass?mass
The kilo is the group of materials unit that is used almost globally as the SI mass unit. Under normal circumstances, 1 kilogram weighs 9.8 Newtons, the related SI unit of strength and weight.
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Use the data provided to calculate the gravitational potential energy of each cylinder mass. Round your answers to the nearest tenth. 3 kg: kj 6 kg: kj 9 kg: kj.
Each cylinder mass has gravitational potential energy of 14.7kJ, 29.4kJ, and 44.1kJ.
The energy that a body or object has as a result of being in a gravitational field is known as gravitational potential energy.
The gravitational potential energy \(U_p\) will have the following value for the Earth, where the gravitational field is assumed to be constant:
\(U_p= mgh\)
Where
m is the object's mass,
g is its gravitational acceleration (9.8 m/s2 on Earth), and
h (500m) is its height above a reference point.
With this knowledge, let's start the calculations:
Given that the cylinder weighs 3 kg,
\(U_p=(3kg)(9.8m/s^2)(500m)\\U_p= 14700J\\U_p= 14.7kJ\)
Given that the mass of the cylinder is 6 kg,
\(U_p=(6kg)(9.8m/s^2)(500m)\\U_p= 29400J\\U_p= 29.4kJ\)
Given that the mass of the cylinder is 9 kg,
\(U_p=(9kg)(9.8m/s^2)(500m)\\U_p= 44100J\\U_p= 44.1kJ\)
The complete question is:-
Use the data provided to calculate the gravitational potential energy of each cylinder mass. Round your answers to the nearest tenth.
3 kg: ____kJ
6 kg: ____kJ
9 kg: ____kJ
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at which location should one find the lowest concentration of fungal enzymes, assuming that the enzymes do not diffuse far from their source and that no other fungi are present in this habitat?
The lowest concentration of fungal enzymes in a habitat can be found at the greatest distance from the source, where environmental conditions are unfavourable and substrate availability is limited.
In a habitat where fungal enzymes are present, the lowest concentration of these enzymes would likely be found at the furthest distance from the fungal source, assuming that the enzymes do not diffuse far from their origin and that no other fungi are present in the area. In this situation, the enzymes' concentration decreases as one moves away from the fungus due to limited diffusion. Factors such as environmental conditions, substrate availability, and competition from other microorganisms can also influence enzyme distribution.
Fungal enzymes play essential roles in breaking down organic matter and recycling nutrients in ecosystems. These enzymes are secreted by fungi as they grow and reproduce, and their concentration is highest near the active fungal colony or fruiting body. As enzymes are specialized proteins, they have specific target substrates and require optimal conditions to function effectively.
To find the location with the lowest concentration of fungal enzymes, one should look for areas with limited organic matter or substrates for the enzymes to act upon. Additionally, locations with unfavourable conditions, such as extreme temperatures or pH levels, can also have lower concentrations due to reduced enzyme activity.
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how a plant and an animal’s ability to perform cellular respiration is impacted by the wildfires in California
In California, sheep and goat are now being used to help fight wildfires by eating dry brush.
In California wildfires are very common, how do wildfires affect the carbon cycle?Deploying goats to clear land of vegetation is an age-old tradition, but as wildfires become more severe throughout the world, areas as different as Greece, Australia, and other parts of the United States, such as Arizona and Colorado, are embracing herbivores as key weapons for wildfire prevention.This has resulted in an increase in property owners engaging sheep and goat grazing firms to aid with fire suppression. To keep flames at bay, the animals gorge themselves on dry brush.As Californians deal with the constant threat of wildfires in the midst of a record-breaking drought, some are turning to a seemingly easy and ecological solution: sheep and goats. The animals can readily reach areas that humans cannot, and their hooves produce little divots in the earth, organically tilling the soil.Wildfire are defined as an uncontrolled or unplanned fire in an area.Wildfires are common in California because of combustible vegetation and that affects the carbon cycle.When vegetation burns during wildfire it releases a lot of carbon dioxide. Higher carbon-dioxide increases the rate of photosynthesis in plants. Plants utilize the higher CO2 concentration at a faster rate and more carbon dioxide will be removed from the atmosphere.To learn more about wildfires refer to:
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1. Completa cada uno de los enunciados utilizando cada uno de los conceptos del recuadro. palabras para completar:Aeróbica, Fermentación, ATP, Anaeróbica, Respiración. Por medio de la _____________________ los seres vivos transforman la energía contenida en los nutrientes en energía útil o ____________________ y así llevar a cabo sus funciones vitales. En la respiración celular _____________________ se obtiene energía en presencia de oxígeno. En la respiración celular _____________________ se obtiene energía en presencia de minerales, como de nitrilos y sulfatos. En la respiración celular _____________________ se obtiene energía en ausencia de oxígeno y se utiliza para productos lácteos.
Answer:
1. respiración
2. ATP
3. aeróbico
4. fermentación
5. respiración anaeróbica
Explicación:
La energía se produce en forma de trifosfato de adenina por la descomposición de moléculas de alimentos como la glucosa, etc. en un proceso de respiración. Hay dos tipos de respiración i. mi. respiración aeróbica y anaeróbica. En la respiración aeróbica, se produce más ATP en presencia de la molécula de oxígeno, mientras que en la respiración anaeróbica, se produce menos ATP cuando no hay oxígeno. La respiración es el proceso que ayuda a la disponibilidad de oxígeno para la producción de energía.
When genotypes at one locus of a chromosome are independent of genotypes at another locus of the same chromosome, the two loci are ________.
When genotypes at one locus of a chromosome are independent of genotypes at another locus of the same chromosome, the two loci are unlinked or genetically unlinked.
This means that the inheritance of one allele at one locus does not affect the likelihood of inheriting a certain allele at every other locus.
This independence is due to the random collection of homologous chromosomes in the course of meiosis, in which the chromosomes line up on the metaphase plate independently of each other.
These outcomes are within the formation of haploid gametes that convey a random aggregate of alleles from the two parents. The idea of impartial assortment become located via Gregor Mendel throughout his experiments with pea plant life, where he determined that the inheritance of tendencies at one locus did now not affect the inheritance of developments at every other locus, except they were connected at the same chromosome.
The principle of independent collection is essential to information on genetic inheritance patterns, and it's miles widely utilized in fields that include genetics, evolutionary biology, and plant and animal breeding.
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t/f malignant hydatidiform moles (malignant hydatidiform moles) present as a neoplasm of uncertain behavior of the placenta
True. Malignant hydatidiform moles (malignant hydatidiform gestational trophoblastic neoplasia) present as a neoplasm of uncertain behavior of the placenta.
The statement is true. Malignant hydatidiform moles, also known as malignant hydatidiform gestational trophoblastic neoplasia, are abnormal growths that develop from the placental tissue during pregnancy. They are considered a type of gestational trophoblastic disease, which encompasses a group of disorders originating from the placenta.
Malignant hydatidiform moles are characterized by abnormal development of the placenta, resulting in the formation of grape-like clusters of cells instead of a normal placental structure. These moles are categorized as neoplasms of uncertain behavior, indicating that they have the potential to become cancerous but do not always progress to malignancy.
While most hydatidiform moles are benign, a small percentage can develop into malignancy, known as invasive mole or choriocarcinoma. Malignant hydatidiform moles require appropriate diagnosis and management to prevent potential complications and ensure optimal patient care.
In summary, malignant hydatidiform moles present as a neoplasm of uncertain behavior of the placenta, indicating their potential for malignancy but not guaranteeing it. Prompt diagnosis and appropriate medical management are crucial for these cases.
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when salt is used to preserve food , the food is___________A . cooled B . coated C.canned Do dehydrated
Answer:
D-Dehydrated
Explanation:
Salt draws all the water and moisture put of a food making it dehydrated
Use the following table to answer the question:
Codons Found in Messenger RNA
Second Base
First Base U C A G Third Base
U Phe
Phe
Leu
Leu Ser
Ser
Ser
Ser Tyr
Tyr
Stop
Stop Cys
Cys
Stop
Trp U
C
A
G
C Leu
Leu
Leu
Leu Pro
Pro
Pro
Pro His
His
Gln
Gln Arg
Arg
Arg
Arg U
C
A
G
A Ile
Ile
Ile
Met Thr
Thr
Thr
Thr Asn
Asn
Lys
Lys Ser
Ser
Arg
Arg U
C
A
G
G Val
Val
Val
Val Ala
Ala
Ala
Ala Asp
Asp
Glu
Glu Gly
Gly
Gly
Gly U
C
A
G
This table shows the codons found in messenger RNA. Using this information, what sequence of nucleotides in the template strand of DNA could code for the polypeptide sequence Val-His-Thr?
GUA-CAU-ACC
GTA-CAT-ACC
CAT-GTA-TGG
CAU-GUA-UGG
Translating the code by the table informed, the message found in rna will be CAT-GTA-TGG.
What is the genetic code of DNA is RNA?The genetic code is made up of four bases: adenine (A), cytosine (C), guanine (G) and uracil (U). The combination of these bases determines the amino acid necessary for the formation of a protein.
Translation is a process in which the message contained in the mRNA molecule will be read by the ribosome, decoding the nucleic acid language into the protein language. In this case, we have:
GTA-CAT-ACC
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Answer:
the answer is CAT-GAT-TGG
When describing a community, a biologist would identify every
When describing a community, a biologist would identify every component or characteristic of a biological community.
A biological community refers to a group of different populations that inhabit a particular geographical area and interact with one another. Biologists would observe different aspects of a community, including the organisms’ ecological roles, population size, distribution, and diversity. In addition, a biologist would also consider the types of relationships between different organisms in the community, including competition, predation, mutualism, and parasitism.
In terms of population size and distribution, a biologist would examine the population density of each species in a community, as well as the spatial arrangement of organisms. This information is essential in understanding how the different populations interact with each other. For instance, organisms with higher population densities may compete for limited resources, such as food and water.
In terms of ecological roles, biologists would identify the trophic structure of a community. This involves understanding the flow of energy through different levels of the food chain, including producers, consumers, and decomposers. Biologists would also observe how different species play unique ecological roles, such as pollination or seed dispersal.
Overall, a biologist would consider every component and characteristic of a community when describing it. By doing so, they can gain a comprehensive understanding of how different species interact and function within a particular ecosystem.
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A biologist describes a community as the various species within an area, their interrelationships and their interactions with the environment. This includes various populations and the ecosystem they form, which are part of the broader biosphere.
Explanation:When describing a community, a biologist would identify every organism that makes up the populations in a specific area. This includes the organisms, their interactions, and their relation with the environment. For instance, in a forest, each pine tree, representing an organism, together forms a pine tree population. Different populations such as pine trees, flowering plants, insects, and microbial populations combine to create the forest community. The ecosystem encompasses these living organisms and non-living components like nitrogen in the soil or rainwater. Altogether they are part of the biosphere, collectively representing zones of life on Earth.
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Which statement describes the reaction for cellular respiration?
Answer:
Your answer is B
Explanation:
hope it helped
Answer:
B
Explanation:
625,000 kcal
9. If the kelp receive 625,000 kcal of energy from the sun, how much energy will be
available to the otter on the 3rd trophic level?
O 62,500 kcal
O 6,250 kcal
O 625 kcal
An energy pyramid is a diagrammatic representation of the relationship between the producers, consumers, and decomposers within an ecosystem. It shows the flow of energy through the different trophic levels in an ecosystem. An energy pyramid shows that there is less energy available to organisms at higher trophic levels than at lower trophic levels. 10% of 6,250 kcal is equal to 625 kcal.
If the kelp receive 625,000 kcal of energy from the sun, the available energy to the otter on the 3rd trophic level will be 625 kcal. The transfer of energy from one trophic level to another is only around 10%. So, if the kelp receives 625,000 kcal of energy from the sun, the primary consumer or the 2nd trophic level will only get around 62,500 kcal of that energy (since 10% of 625,000 is 62,500). Then, the secondary consumer or the 3rd trophic level will only receive 10% of the energy that was available to the primary consumer. Therefore, 10% of 62,500 kcal is equal to 6,250 kcal. Finally, the otter on the 3rd trophic level will only get around 10% of the energy that was available to the secondary consumer. Therefore, 10% of 6,250 kcal is equal to 625 kcal.
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Which of the following statements about fungi is true?
a. All fungi are unicellular
b. All fungi have cell walls
c. All fungi are prokaryotic
d. All fungi are autotrophic
All fungi have cell walls. So, the correct option is B.
What are Fungi?A fungus is defined as a member of a group of eukaryotic organisms that includes microorganisms such as yeasts and molds, as well as the more familiar mushrooms.
These belong to kingdom Fungi having a cell wall. Among the living organisms, they belong to heterotrophs category. They are classified as plants but do not contain chlorophyll. Their cell wall is made of chitin through which nutrients is obtain by the process called absorption.
They are either decomposers or parasites that obtain their food from other organisms. Fungi are both unicellular and multicellular like yeast is unicellular while other fungi are multicellular.
Thus, all fungi have cell walls. So, the correct option is B.
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How could you identify if a substance is an element ?
Answer: A substance that cannot be broken down into chemically simpler components is an element.
Explanation: Aluminum, which is used in soda cans, is an element. A substance that can be broken down into chemically simpler components (because it has more than one element) is a compound.
If we didn’t have a _________, we wouldn’t have a ____________.
Answer:
If we didn't have a head, we wouldn't have a brain
Answer:if we didn’t have extremities we wouldn’t have muscles
Explanation:
Which shows the most direct path that carbon can take through the carbon cycle?
plant ® atmosphere ® animal
O animal ® plant ® atmosphere
plant ® animal ® atmosphere
atmosphere ® animal ® fossil fuel
Answer:
plant animal atmosphere
Explanation:
i took the test on edge and i got the correct answer
Answer:
Your answer is C: plant ® animal ® atmosphere
Explanation:
Hoped this helped :))
Which neuropeptide neurotransmitter is released from fibers transmitting sensory information about pain and temperature?.
Substance P is the neuropeptide neurotransmitter that is released from fibers transmitting sensory information about pain and temperature.
Substance P is made up of eleven amino acid residues and is thus also called an undecapeptide. Being a neuropeptide it also acts as a neuromodulator and neurotransmitter. It is a member of the tachykinin neuropeptide family. Substance P is a neurotransmitter of primary sensory afferent neurons that binds to specific receptors in lamina I of the spinal cord. The binding of substance P to this receptor helps to transmit information about pain and temperature.
Substance P is synthesized by nociceptors that are specialized in the uptake of potentially harmful stimuli that induce pain sensation.
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Matt manages a company that monitors the wastes from a company that produces radioactive byproducts. Matt is most likely a(n) medical doctor. agricultural engineer. archeologist. nuclear scientist.
Answer:
Nuclear Scientist
Explanation:
Answer:
Nuclear Scientist
Explanation:
I did it
What are the three types of symbiotic relationships?
competition, cooperation, predation
commensalism, mutualism, parasitism
parasitism, predation, competition
mutualism, cooperation, commensalism
Symbiosis is defined as a close relationship between two different types of creatures or living things.
What are the types of symbiotic relationships?In symbiotic partnerships, there are three sorts of behaviors that can be observed:
Mutualism occurs when both creatures involved benefit from each other. Only one organism benefits from commensalism other is neither benefited nor injured. Parasitic relationships benefit one creature while harming the other.Thus, we can conclude that option B is correct for commensalism, mutualism, and parasitism.
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HELP PLZ ASAP DUE TODAY!!1! D: 12 POINTS EASY
Answer:
1. Mutation
2. Damage and protien crosslinking
Explanation:
Answer:
If a mistake occurred during a given situation in protein synthesis, for example, if the RNA polymerase doesn't copy the DNA into a complementary strand into mRNA during transcription, then the mRNA wouldn't exist and since the DNA is unable to leave the nucleus of the cell, the genetic code wouldn't reach the nucleus.
complications associated with
severe cases of SIRS or sepsis include fluid retention and tissue edema, low blood pressure,
and impaired blood flow. If the reduction in blood flow is severe enough to deprive the
body’s tissues of oxygen and nutrients (a condition known as shock; see Box 16-4), multiple organs may fail simultaneously
Severe systemic inflammatory response syndrome (SIRS) and sepsis can lead to multiple organ failure, which is a life-threatening condition with significant complications.
Some of the complications associated with severe SIRS or sepsis leading to multiple organ failure include:
1. Acute Respiratory Distress Syndrome (ARDS): This is a severe lung condition characterized by inflammation and fluid accumulation in the lungs, leading to respiratory failure.
2. Acute Kidney Injury (AKI): SIRS or sepsis can cause damage to the kidneys, resulting in reduced kidney function and impaired filtration of waste products from the blood.
3. Disseminated Intravascular Coagulation (DIC): It is a condition characterized by widespread blood clotting and simultaneous depletion of clotting factors, leading to abnormal bleeding and organ damage.
4. Cardiovascular Dysfunction: Severe SIRS or sepsis can cause cardiovascular instability, including low blood pressure, reduced cardiac output, and impaired tissue perfusion.
5. Liver Dysfunction: SIRS or sepsis can lead to liver dysfunction, causing problems with blood clotting, metabolism, and toxin clearance.
6. Gastrointestinal Complications: SIRS or sepsis can result in gastrointestinal dysfunction, including impaired bowel function, gut barrier dysfunction, and increased risk of intestinal ischemia.
7. Neurological Complications: SIRS or sepsis can affect the central nervous system, leading to altered mental status, confusion, delirium, or even coma.
It is important to note that the complications of severe SIRS or sepsis can vary in severity and individual cases, and prompt medical intervention is crucial to prevent or manage multiple organ failure.
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Complete question :
What are the complications of severe SIRS or sepsis that can lead to multiple organ failure?
1. Identify the following strand fragments of nucleic acids as RNA or DNA.
A ACCTGGC
B. AAGCCUU
C. TTCCGAA
D. GGGUGG
E. UCGAUC
F. ATTGCCT
Answer: A = DNA, B = RNA, C = DNA, D = RNA, E = RNA, F = DNA
Explanation:
hope this helps :)
What is the Family an d Species of Red Algae?
What is the species of Cyanobacteria?
(KPCOFGS)
The family of red algae is diverse and includes several different families, such as Rhodomelaceae, Gelidiaceae, and Porphyridiaceae.
The species of red algae vary greatly within these families. Cyanobacteria, on the other hand, belong to the phylum Cyanobacteria and are not classified using the KPCOFGS taxonomy system. Instead, they are classified based on their morphological and physiological characteristics.
Red algae, also known as Rhodophyta, comprise a large and diverse group of algae. They are classified into different families based on their characteristics, including the structure of their thallus (body), reproductive structures, and pigments. Some common families of red algae include Rhodomelaceae, Gelidiaceae, and Porphyridiaceae.
Within these families, there are numerous species of red algae, each with its unique characteristics and habitats. Cyanobacteria, also known as blue-green algae, are a group of photosynthetic bacteria. They belong to the phylum Cyanobacteria and are not classified using the KPCOFGS taxonomy system typically used for plants and animals.
Cyanobacteria are classified based on their morphological features, such as cell shape, arrangement, and pigmentation, as well as their physiological characteristics and genetic traits. The classification of cyanobacteria is continually evolving as new information and techniques are discovered in the field of microbiology.
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Genes for traits are found on _____________.
Responses
A chromosomeschromosomes
B the cell membranethe cell membrane
Question 2
Mendel studied heredity in _______ plants.
Responses
A peapea
B beanbean
Question 3
Mendel noticed that various traits in the plants were passed down ________.
Responses
A independently
Genes for traits are found on chromosomes
Mendel studied heredity in pea plantsMendel noticed that various traits in the plants were passed down independentlyWhat are the Genes?
Traits in living things are decided by genes, which are found on chromosomes. They are found on tiny cells inside an organism called chromosomes.
In simple terms, chromosomes have something called DNA, which has specific parts called genes. These genes have instructions for making certain traits. When creatures have babies, they give them chromosomes. These chromosomes have genes that decide how the baby will look and act.
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the glomerulus is a unique high-pressure capillary bed because the
The glomerulus is a unique high-pressure capillary bed in the kidneys. This filtration bed is considered high pressure due to the type of vessels feeding and draining it. The afferent arteriole feeding the glomerulus is larger in diameter than the efferent arteriole draining the bed.
This anatomical characteristic makes the blood entering the bed to be under high pressure and leaves the bed under lower pressure. This pressure differential between the two arterioles forces fluids and solutes through the walls of the capillaries and into the urinary tubules for further filtration. Therefore, the larger diameter of the afferent arteriole provides a higher volume of blood under higher pressure to the glomerulus, increasing the efficiency of the filtration. The smaller diameter of the efferent arteriole slows the blood flow, increasing the pressure inside the capillaries and maintaining the high pressure in the bed. This anatomical feature provides a unique and efficient filtration mechanism to the kidneys.
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complete question: The glomerulus is a unique high-pressure capillary bed, because the ______ arteriole feeding it is larger in diameter than the ______ arteriole draining the bed.
Nitrogen from animal wastes or plant an animal tissue
O must be fixed near leguminous plants,
O is lost from the system.
O is fixed by bacteria and fungi in the soil.
O is already fixed and can be used.
Nitrogen from animal wastes or plant an animal tissue is fixed by bacteria and fungi in the soil.
So, option C is correct one.
How plants and animals get nitrogen ?Since our atmosphere contains 78% of nitrogen but it is very difficult to take directly by plants and animals.Nitrogen is very essential for all living organism.Plants take nitrogen from soil.Some bacteria and fungi are present in the soil who fix nitrogen from the atmosphere and convert it into nitrogen compound.Then this nitrogen from the soil by root system of the plants.Now plant use this nitrogen for synthesis of proteins and other compounds.Animals who feed plants gets this proteins and other nitrogen compound from plants.When plants and animals die , fungi and bacteria present in the soil converts this nitrogenous waste into nitrogenous compound and reuse of nitrogenous compound is repeated again.learn about nitrogenous waste,
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