A renewable resource could become nonrenewable due to a very high rate of use. So, option B is correct.
Even though a resource may be renewable, it may not be able to renew at a rate that can keep up with the demand for its use. If the rate of extraction or consumption of a renewable resource exceeds its rate of renewal or regeneration, it can become depleted and eventually nonrenewable. This overuse can occur due to factors such as population growth, industrialization, and increased consumption patterns. For example, the overuse of timber can lead to deforestation, which can result in soil degradation, loss of biodiversity, and other negative ecological consequences.
Hence, option B, "very high rate of use," is the correct answer.
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which is the first cell type infected by epstein-barr virus?
The first cell type infected by the Epstein-Barr virus (EBV) is B lymphocytes, which are a type of white blood cell involved in the immune response.
EBV primarily targets and infects B lymphocytes by attaching to specific receptors on the surface of these cells. Once inside the B lymphocytes, the virus establishes a latent infection, meaning it remains in a dormant state within the host cells.
During the latent phase, the virus can persist in B lymphocytes for the lifetime of the infected individual. Periodically, the virus can reactivate, leading to viral replication and the production of new virus particles. This can result in the release of infectious EBV and potential transmission to other individuals.
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State the monomers that the following polymers are made from:
a lipids (1 mark) b carbohydrates (1 mark) c proteins (1 mark)
Your small intestine is around pH 8, whereas your stomach is around
H 2. State and explain whether the types of protease enzyme
found in these organs are the same.
(3 marks)
Glucose is stored as the carbohydrate glycogen in the liver and
muscles. When extra glucose is needed, the glycogen is
Converted back into glucose. Explain simply how glycogen is
Synthesised and broken down.
(4 marks)
A lipid is made up of carbon and hydrogen, and carbohydrates are made up of glucose; the protein is made up of amino acids, the protease of the stomach is pepsin, and in the small intestine is pancreatic protease, while the glycogen is broken down when glucagon is present in the blood.
What is the significance of the stored glycogen?The glycogen polymer is made up of glucose and is stored in the liver and muscles and when the body requires it, the glucagon hormone is released and the glycogen is broken down into glucose; when it is not required, insulin is released into the blood and the glucose is converted back to glycogen.
Hence, a lipid is made up of carbon and hydrogen, and carbohydrates are made up of glucose; the protein is made up of amino acids, the protease of the stomach is pepsin, and in the small intestine is pancreatic protease, while the glycogen is broken down when glucagon is present in the blood.
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how may earths would fit inside the sun?
Answer:
1.3 million Earths
Explanation:
Until recently, the amount of carbon dioxide (CO2) in the atmosphere has fluctuated slightly during the past 10,000 years. However, the Industrial Revolution of the 1700s started a global adoption of fossil fuels to power human activity. Human activities helped increase CO2 in the atmosphere to a higher concentration than any time in the past 800,000 years. About one third of the CO2 in Earth's atmosphere dissolves in the oceans to form carbonic acid (Figure 1).
Prior to the Industrial Revolution, average ocean pH was about 8.2. Today, average ocean pH is about 8.1. Each decrease of one pH unit is a tenfold increase in acidity. This means that the acidity of the ocean today, on average, is about 25% higher than it was during pre-industrial times.
Refer to Figure 1 to answer the following questions:
Describe the data trends comparing carbon dioxide levels and ocean pH in the graphs for Bermuda, the Canary Islands, and Hawaii.
Explain one advantage of taking carbon dioxide and pH measurements at island locations instead of taking measurements near mainland coastal regions.
Describe two possible natural disruptions that account for the fluctuations of carbon dioxide and pH measurements from year to year in each location.
Ocean pH contributes to the health of marine ecosystems. Explain how ecological tolerance to change in pH will affect the survival of marine life near Bermuda, the Canary Islands, and Hawaii.
Burning fossil fuels has led to human disruption of the atmosphere and ocean near these island regions. Identify two ecosystem services that could be affected by this disruption.
The data trends comparing carbon dioxide levels and ocean pH in the graphs for Bermuda, the Canary Islands, and Hawaii, show an overall increase in carbon dioxide levels and a decrease in ocean pH over time. The carbon dioxide levels increased steadily over the past century, while the ocean pH decreased at a similar rate.
One advantage of taking carbon dioxide and pH measurements at island locations instead of taking measurements near mainland coastal regions is that islands are often isolated from major sources of pollution and have less human impact on the environment, making them more representative of pre-industrial conditions.
What is the natural disruptions about?Two possible natural disruptions that account for the fluctuations of carbon dioxide and pH measurements from year to year in each location could be seasonal changes in ocean currents and weather patterns, which can affect the amount of carbon dioxide and other gases dissolved in the ocean.
Ocean pH contributes to the health of marine ecosystems. The decrease in pH will affect the survival of marine life near Bermuda, the Canary Islands, and Hawaii by making it harder for them to build and maintain their shells and skeletons, which are made of calcium carbonate.
Therefore, Burning fossil fuels has led to human disruption of the atmosphere and ocean near these island regions. Two ecosystem services that could be affected by this disruption could be the loss of biodiversity and the decline of fishing and other commercial activities that depend on the health of marine ecosystems.
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25. The age structure of a population is determined by the number of _______and ______ in each of three age groups.A. births; deathsB. immigrants; emigrantsC. males; females
The age structure of a population is determined by the number of males and females in each class of age, which can be three depending on if the population is classified into pups, adults, and older individuals.
This is key to determine the state of a population, and whether their individuals are reproducing at a particular rate.
All of the following are classified as abiotic factors EXCEPT
a pH
b. bacteria
b. salinity
d. oxygen concentration.
Answer:
In the group of terms, the exception to abiotic factors is bacteria (option b).
Explanation:
Abiotic factors correspond to the elements of an ecosystem that are not considered alive, such as soil, wind, temperature, pH, among others.
All living beings in an ecosystem are biotic elements, including microorganisms such as bacteria. The dynamics of living beings influence the ecosystem, just as abiotic factors influence both the biotic elements and the development of the ecosystem.
pathogenic bacteria found in many hospitals are antibiotic resistant. this situation is most likely the result of group of answer choices random selection. stabilizing selection. diversifying selection. directional selection. flag question: question 12 question 12
The situation where pathogenic bacteria found in many hospitals are antibiotic-resistant is most likely the result of directional selection.
The situation of pathogenic bacteria found in many hospitals being antibiotic resistant is most likely the result of directional selection. This is because the use of antibiotics in hospitals creates a selective pressure that favors the survival and proliferation of antibiotic-resistant bacteria, while non-resistant bacteria are eliminated. This is an example of directional selection, where one extreme phenotype (antibiotic resistance) is favored over another (sensitivity to antibiotics).
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If your blood becomes too diluted, what will happen to the red blood cells?
Answer:
The red blood cells will burst or rupture when it is diluted and it will be one transparent and visible.
Explanation:
This is because when red blood cells are in water or become too diluted,water will enter the red blood cells through the process of osmosis. Because water is an hypotonic solution, water from outside of the cell to the inside making the cells to continue to swell up and rupture ,a phenomenon known as haemylosis. When the red blood cells rupture, it loses haemoglobin and it's become transparent and visible.
Answer:
D: They undergo lysis
Explanation:
Correct on founders edtell
How does the removal of the top predator in the food chain described affect other organisms?
The frog population will increase
The frog population will decrease
There will be no effect on the frog populaiton.
The number of grasshoppers will increase
Answer:
The frog population will increase
Explanation:
The frog population will increase because if the top predators in the food chain described affect the frog organisms that will increase
Describe Muller's Ratchet.
PLEASE HELP
Answer:
Muller's ratchet is a well-known population genetics model that explains the fixation of a harmful mutation in a finite-size population due to an unlucky stochastic fluctuation.
How is UV light sensitive yeast related to the cell cycle/mitosis? please help!!!?
Answer:
TU PUEDES ;>
Explanation:
metabolic activity is at maximum level in the ________ phase of growth.
Metabolic activity is at maximum level in the exponential phase of growth. During this phase, cells are dividing at an exponential rate and require high levels of energy to support the synthesis of new cellular components. As a result, metabolic activity is also at its peak, as the cells are actively engaged in various anabolic and catabolic processes to maintain their growth and division.
Metabolic activity is regulated by several factors, including nutrient availability, environmental conditions, and genetic makeup of the cells. In the exponential phase of growth, cells have access to ample nutrients and favorable environmental conditions, which allow them to sustain high levels of metabolic activity.
However, as the cells enter the stationary phase of growth, nutrient depletion and accumulation of waste products start to slow down the rate of cell division and metabolic activity. Therefore, the exponential phase is considered a critical stage in the growth of microorganisms, as it determines the overall yield of the culture.
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The ability to prevent symptoms of phenylketonuria (PKU) through environmental intervention (i.e., diet) from becoming problematic demonstrates which of the following concepts? O gene expression is not dependent on the environment O even highly heritable characteristics are modifiable OPKU is not a highly heritable disorder O highly heritable characteristics are unmodifiable
The ability to prevent symptoms of phenylketonuria (PKU) through environmental intervention (i.e., diet) demonstrates the concept that even highly heritable characteristics are modifiable. The correct answer is (B).
Phenylalanine hydroxylase (PAH) gene mutations lead to PKU, a highly heritable illness. The PAH enzyme is less active or not present in PKU patients, which causes the body to accumulate phenylalanine. However, people with PKU can avoid the signs and problems of the disorder by managing their phenylalanine intake with a particular diet. This demonstrates that, despite the PKU phenotype's strong inheritance, its expression may be altered with environmental intervention (diet).
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Q- The ability to prevent symptoms of phenylketonuria (PKU) through environmental intervention (i.e., diet) from becoming problematic demonstrates which of the following concepts?
A. gene expression is not dependent on the environment
B. even highly heritable characteristics are modifiable
C. PKU is not a highly heritable disorder
D. highly heritable characteristics are unmodifiable
What causes black holes to form?
2. Based on your answer to question 1, what do you think could be done to reduce levels of
carbon dioxide in the atmosphere? What could people change that would reduce the burning
of fossil fuels? (10 points)
Answer: Carbon dioxide (CO2) is a colorless gas that is naturally present in the air as a result of the natural carbon cycle of our planet. While emissions come from many natural sources, it is the CO2 produced by manmade processes such as fossil fuel combustion and power plant emissions that are problematic. This, in combination with the destruction of natural carbon dioxide sinks through deforestation, is creating an unhealthy environment on our planet and contributing significantly to climate change. here are other things still that can be done to help improve our carbon dioxide situation, even if they aren't tasks the average person can control. For example, as a society, we must continue to push for improved technology in our power plants, so our energy consumption does not produce as much waste. Improving technology will also help more directly with how much electricity we use. Appliances and electronics are more efficient now than they have ever been in the past, but we should always strive for better regardless. Doing your individual part may not seem like much in the grand scheme of things, but if everyone does their best, it will eventually add up to a significant improvement in the fight against climate change.
Explanation:
The two types of decomposers are ...
A. consumers and producers.
B. detritivores and decomposers.
C. herbivores and omnivores,
PLEASE HELP, WILL MARK BRAINLEST TO WHO ANSWERS FIRST WITH THE RIGHT ANSWER
The diagram below shows the sequence of events and processes which resulted in the origin of life.
Picture shows a flow chart with a rectangle labeled non-living matter at the top, an oval labeled A below it, and a rectangle labeled appearance of bacteria at the bottom.
Which of these processes best fits the oval labeled A?
chemical evolution
biological evolution
atmospheric transformation
geological transformation
Answer:
chemical evolution
Explanation:
This type of evolution is what we believe started the origin of life. Chemical evolution is when something changes to have different abilities (which in this case would be true).
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12.the mutation resulting in sickle cell disease changes one base pair of dna so that a codon now codes for a different amino acid, making it an example of a
The mutation resulting in sickle cell disease is an example of a point mutation. Specifically, it is a type of substitution mutation where a single nucleotide base is replaced with another base in the DNA sequence, resulting in a change in the corresponding codon.
What is sickle cell disease?Sickle cell disease is a genetic blood disorder that affects hemoglobin, a protein in red blood cells that carries oxygen throughout the body. People with sickle cell disease have abnormal hemoglobin molecules due to a mutation in the HBB gene, which provides instructions for making the beta-globin subunit of hemoglobin.
Normally, red blood cells are round and flexible, allowing them to move easily through blood vessels. However, in sickle cell disease, the abnormal hemoglobin molecules cause red blood cells to become stiff and shaped like crescent moons, or sickles. These sickled cells can get stuck in small blood vessels, causing a variety of health problems.
In the case of sickle cell disease, the substitution of one nucleotide base in the beta-globin gene results in the replacement of the amino acid glutamic acid with valine, leading to the production of abnormal hemoglobin proteins and the characteristic sickle-shaped red blood cells.
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what is the importance of brush border enzymes? group of answer choices they bring the small components of the macromolecules to the apical membrane for absorption they secrete hormones that stimulate intestinal motility they power the active transport that allows for absorption in the intestinal epithelium they participate in the initial stages of digestion for the 3 major macromolecules they participate in the final stages of digestion
The brush border enzymes are a group of enzymes located on the surface of the small intestine cells that participate in the initial stages of digestion for the 3 major macromolecules, namely carbohydrates, proteins, and lipids.
These enzymes break down these macromolecules into smaller components that can be easily absorbed by the body. This is important because the absorption of these nutrients is essential for the body to function properly. The brush border enzymes bring the small components of the macromolecules to the apical membrane for absorption, allowing for efficient nutrient uptake. Therefore, brush border enzymes play a crucial role in digestion and nutrient absorption. In summary, the importance of brush border enzymes lies in their ability to facilitate digestion and absorption of nutrients by breaking down macromolecules into smaller components, bringing them to the apical membrane for absorption, and allowing for efficient nutrient uptake.
Brush border enzymes are crucial for the proper digestion and absorption of nutrients in the small intestine. They are located on the microvilli of the intestinal epithelial cells and play a significant role in the digestive process.
1. Final stages of digestion: Brush border enzymes participate in the final stages of digestion for the three major macromolecules (proteins, carbohydrates, and lipids). They help break down these macromolecules into their simplest forms, such as amino acids, monosaccharides, and fatty acids, which can be easily absorbed by the intestinal cells.
2. Absorption of small components: These enzymes bring the small components of the macromolecules to the apical membrane of the intestinal cells for absorption. This allows the nutrients to be taken up by the cells and transported to the bloodstream, where they can be utilized by the body.
In summary, brush border enzymes are essential for completing the digestion of macromolecules and facilitating their absorption by the intestinal cells, contributing to overall nutrient uptake and utilization by the body.
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Describe how increasing light intensity affects the rate of photosynthesis.
As light intensity increases in photosynthesis so does the rate of photosynthesis. The more light there is the more photosynthesis in the thylakoid membrane is activated. However, the light intensity can only increase up to a certain point before the rate of photosynthesis no longer increases. Once there is a sufficient intensity of light, the ATP and NADPH that come from the light reactions will be in abundance. For the remaining part of photosynthesis to occur (the Calvin cycle), carbon dioxide is needed.
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In the body, the major storage sites for glycogen are the muscles and.
Answer:
Muscles and Liver
Explanation:
The two storage sites are muscles and liver
Why are the prefixes “mono” “di”, and “poly and the base “saccharide” good to use when describing the three types of carbohydrates?
Answer:
“Mono” denotes one, “di” denotes two, and “poly” denotes a large number.
What is the significance of these words in defining the
three forms of sugars?
These terms are used because they depict how the
molecule appears.
The molecule's base unit is called a "saccharide."
Explanation:
-
Every offspring must get
A. one-half of their DNA from each of the parents.
B. a complete set of DNA from each of the parents.
Answer:
A
Explanation:
the mother gives half through the egg and the father gives half through the sperm
how the structure of dna determines the structure of proteins which carry out the essential functions of life through systems of specialized cells.
The structure of DNA determines the structure of proteins because proteins are made by the central dogma process where DNA is the initial component.
In the process of the central dogma, transcription is the process through which the DNA is transcribed into the mRNA. Through the information in the mRNA, proteins are produced by the translation process.
Hence, the structure of proteins as well its function etc are all determined by the DNA whose information is transcribed and translated for the formation of that particular protein.
Each protein formed from the transcription and translation of DNA has a specialized function to perform.
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DNA creates ____ which creates ____ which creates _____.
Answer:
DNA replication creates two new strands that assemble nucleotides differently.
Explanation:
This statement describes DNA replication because this process involves a double stranded DNA copied to produce two identical new DNA molecules.
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which statement describes how chemical elements move through an ecosystem? A. Heterotrophs release carbon dioxide as a waste product during photosynthesis. B. Photoautotrophs use chemicals from the sun to form organic matter. C. Chemoautotrophs use photosynthesis and energy from the sun to form organic matter. D. Autotrophs release oxygen as a waste product during photosynthesis.
Autotrophs release oxygen as a waste product during photosynthesis describes the movement of chemical elements through an ecosystem. Therefore, option D is correct.
What is an ecosystem?All the organisms and the physical setting they interact with make up an ecosystem. The nutrition cycles and energy flows connect these biotic and abiotic elements.
Photosynthesis by autotrophs describes how energy enters the system and is absorbed by plant tissue.
Autotrophs release oxygen as a waste product during photosynthesis. Therefore, option D is correct.
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Answer:
Explanation:
Chemoautotrophs use chemicals such as hydrogen sulfide to form organic matter.
why do the potato strip in pure water get bigger?
Answer:
The incoming water in the potato cells pushes on the cell walls and makes the cells bigger , that's how the strips of potato in pure water becomes bigger .
What is translation? What does it make? Where does it occur?
Answer:
I hoped this helped
Explanation:
Translation is the process by which a protein is synthesized from the information contained in a molecule of messenger RNA (mRNA).Translation occurs in a structure called the ribosome, which is a factory for the synthesis of proteins.Lastly, termination occurs when the ribosome reaches a stop codon (UAA, UAG, and UGA). Since there are no tRNA molecules that can recognize these codons, the ribosome recognizes that translation is complete. The new protein is then released, and the translation complex comes apart.
How does endoplasmic reticulum arise?.
Explanation:
it arrises from the nucleus. that is why most of the eukaryotic cells have endoplasmic reticulum. The membranes of the ER are continuous with the outer nuclear membrane
Air density decreases with altitude.
Select one:
True
False
Answer:
true
Explanation:
Answer:
yes yes it does
Explanation: