Glucose is stored in the liver and muscle in the form of glycogen. Glycogen is a complex carbohydrate that serves as a form of energy storage in animals.
It is synthesized and stored mainly in the liver and muscle tissues, where it can be rapidly mobilized to provide glucose for energy production. This process is known as glycogenolysis. The liver is responsible for maintaining blood glucose levels during fasting periods, such as overnight, by breaking down glycogen and releasing glucose into the bloodstream. The liver also converts excess glucose into glycogen for storage. The muscle tissue stores glycogen as a source of energy for muscle contraction.
The amount of glycogen stored in the muscle depends on the individual's level of physical activity and diet. Athletes who engage in high-intensity exercise require more glycogen storage in their muscles to provide energy for sustained physical activity. In summary, glucose is stored in the liver and muscle in the form of glycogen, which can be rapidly mobilized to provide energy when needed. Glycogen is an important energy storage molecule that helps animals maintain their blood glucose levels and provides fuel for physical activity.
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why should initial time intervals in the dro procedure be kept as short as is appropriate?
Initial time intervals in the DRO procedure should be kept short to increase the effectiveness of the intervention.
The initial time intervals in the DRO (differential reinforcement of other behavior) procedure should be kept as short as appropriate to increase the effectiveness of the intervention. This is because in the DRO procedure, reinforcement is provided for a period of time when the target behavior is not occurring, which can make it more challenging for individuals to modify their behavior.
Shorter intervals provide more frequent opportunities for reinforcement, which can make it easier for individuals to understand and follow the program. Additionally, shorter intervals may help individuals maintain attention and motivation to engage in the target behavior, as well as facilitate a more rapid reduction in the problem behavior.
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What’s the most significant greenhouse gas increase
Answer:
Carbon dioxide (CO2) is the primary greenhouse gas emitted through human activities.
which anatomical structure below is not part of the respiratory (breathing) system? group of answer choices
The answer is Trachea. Upper respiratory system includes the nasal chambers, the pharynx and the Larynx.
The trachea is windpipe that carries air and the respiratory gas in the air (i.e.breathing air). The trachea is most common route of air exposure and can go anywhere from the superior vena cava (that are large vein near the heart) to the base of lungs.
The nasal chambers are the two largest chambers in the respiratory system. And located near to the top of the head and those are filled with air.And talking about pharynx,the pharynx is a thin, mucus-secreting tube that extends from the throat to the nose and larynx is a tube that runs from the throat to the mouth.
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what are axolotls . . .
Answer:
The axolotl, Ambystoma mexicanum, also known as the Mexican walking fish, is a neotenic salamander related to the tiger salamander. Although colloquially known as a "walking fish", the axolotl is not a fish but an amphibian
Explanation:
Answer:
a endangered salamander
Drag each mineral to the correct location to indicate whether it is used in smartphone screens or smartphone batteries.
screen
batteries
choices:
graphite , lithium , bauxite , silicon
Answer:
Screens: Silicon, Bauxite
Batteries: Graphite, Lithium
Explanation:
Answer: screens: Silicon and Bauxite
batteries: lithiul and graphite
Explanation:
9. You are an oceanographer taking measurements to predict whether this year will be an El Niño, a La Niña, or a normal year. (15 points)
A. What are three instruments you will use? (3 points)
B. What measurements will each of these instruments take? (6 points)
C. What measurements would you expect to collect during an El Niño year and a La Niña year? (6 points)
An El Nino scenario develops when east winds blow less strongly than usual and surface water in the equatorial Pacific warms up more than usual.
La Nina is the name for the adverse situation. The east winds are stronger and the ocean is cooler than typical during this ENSO phase. Every three to five years, el Ninos typically occur.
One example is data produced by radar altimetry, which is used to monitor the El Nino global climatological event. El Nino is a term used to describe a periodic weakening of the trade winds and warming of the equatorial Pacific Ocean's surface layers.
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An El Nino scenario develops when the equatorial Pacific Ocean's surface water warms up more than usual and east winds blow less strongly than usual.
The opposite situation is known as La Nina. During this ENSO phase, the water is cooler than usual and the east winds are stronger. Typically, el Ninos occur every three to five years.
One example is the data produced by radar altimetry, which is used to monitor the global climatological event known as El Nino. El Nino is a term used to describe a periodic weakening of the trade winds and warming of the surface layers of the eastern and central equatorial Pacific Ocean.
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which of the following types of reproduction is not a typical of bacteria and archaea?
A. binary fission
B. asexual
C. sexual.
D budding
Answer: Sexually
Explanation:
Both do A and B
D is wrong because Archaea reproduce asexually through btoh fragmentation and budding;
THus the answer is C
PLEASE HELP FIRST CORRECT ANSWER GETS BRAINLIEST
Info is in the image below.
Answer:
Mariflower needs more water and carbondioxide gas.
Explanation:
The increase of precipitation and nearby factories increases the population of mariflower because mariflower needs more water for their growth and has no effect of pollution that is produced on this mariflower. Due to more industries, more carbondioxide gas is emitted from them which is required by mariflower in the process of photosynthesis so that's why the population of mariflower increases with rainfall and industries.
3. Choose the answer that describes biological weathering.
A. acid in water acting on limestone
B. stone and boulders moved by water
C. salt crystallization forming tafoni
D. lichen growing on rocks
Answer:
should be B
Explanation:
Answer:
c
Explanation:
Lichen growing on rocks and types of bacteria produce chemicals that weather minerals 3 to 4 times faster than normal.
The __________ perspective emphasizes the human capacity for personal growth.
A. humanistic
B. evolutionary
C. biological
D. cognitive
Answer:
Humanistic
Explanation:
The cognitive perspective emphasizes the human capacity for personal growth.
What is cognitive perspective?Cognitive therapy involves the study of internal mental process. It involves all the things inside our brain, including perception, thinking and memory. Cognitive therapy involves the branch of psychology.
Alzheimer disease, brain trauma treatment, cognitive therapy are some of the disease which can be treated with cognitive therapy.
Cognitive therapy helps in find out the human capacity for personal growth. It also emphasize process in reasoning, memory and perception and language.
Therefore, The cognitive perspective emphasizes the human capacity for personal growth.
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Answer the following questions..
1. The following are flu vaccines available for 2021-2022.
Flucelvax Quadrivalent
Flublok Quadrivalent
FluMist Quadrivalent
Which vaccine is best for an individual who is allergic to eggs?
Which vaccine is best for someone over 65 years of age?
Which vaccine is best for a 1 year old?
2A. As of May 15,2022, how many cases of COVID-19 have been reported in King County?
2BWhat is the general trend in numbers of cases? Are they increasing, decreasing, or staying the same? (1)
2C. Compare the 7 day hospital occupancy data for the week of 1/18/-1/24/22 to 5/3/-5/19/22. Why is there a difference in the data for these two weeks? Be specific.
3. Tests to detect the virus are either a rapid antigen test or PCR based test. What is each of the tests detecting? (Be specific).
4. How can a patient have a negative rapid antigen test but a positive PCR test? Explain.
The following vaccines are best for the respective individuals: For an individual who is allergic to eggs, Flublok Quadrivalent is the best option as it is made without the use of eggs. For someone over 65 years of age, Fluzone High-Dose or Flublok Quadrivalent is the best option.
For a 1-year-old, FluMist Quadrivalent is the best option as it is administered through the nose.
2C. The difference in the 7-day hospital occupancy data for the week of 1/18/-1/24/22 to 5/3/-5/19/22 can be attributed to several factors such as the emergence of new variants of the virus, changes in vaccination rates, and changes in mitigation measures implemented by authorities.
3. A rapid antigen test is detecting the virus's proteins, while a PCR-based test is detecting the virus's genetic material (RNA).
4. A patient can have a negative rapid antigen test but a positive PCR test if the rapid antigen test was done during the early stages of the infection when the virus is not yet producing enough proteins to be detected by the test.
The PCR test is more sensitive and can detect smaller amounts of viral RNA, so it can give a positive result even when the antigen test is negative.
Additionally, the antigen test can give false negative results due to issues such as improper sample collection or storage, while the PCR test is less likely to give false negatives.
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The basic blood types are represented by letters: A, B, AB, and O. There is also an Rh factor represented by either positive or negative. If a local blood bank labels donations according to type, Rh factor, and biological gender of the donor, it would be useful to look at how many different ways a blood sample can be labeled, as this would have a significant impact on preparing for the labeling.
The local blood bank labels donations according to type, Rh factor, and biological gender of the donor. Thus, the total number of different ways a blood sample can be labeled is 16.
In this case, it would be useful to look at how many different ways a blood sample can be labeled as it would have a significant impact on preparing for the labeling. There are four different basic blood types, namely A, B, AB, and O. The Rh factor is represented by either positive or negative. To determine the different ways a blood sample can be labeled, you need to multiply the number of options for each category. Therefore, the number of ways a blood sample can be labeled is:
4 blood types × 2 Rh factors × 2 genders = 16 different ways.
As we know, there are four different basic blood types A, B, AB, and O. The Rh factor is represented by either positive or negative. There are two genders that can be categorized as male and female. So, the different ways a blood sample can be labeled would be:
4 blood types × 2 Rh factors × 2 genders = 16 different ways.
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when ochre starfish are removed from intertidal communities of the northeastern pacific ocean, the mussels, which are a favorite food of starfish, become dominant and the number of sessile animal species declines. the interactions between the mussels and the other sessile animals that are not eaten by starfish is an example of:
When ochre starfish are removed from intertidal communities in the northeastern Pacific Ocean, the mussels, which are a favorite food of starfish, become dominant and the number of sessile animal species declines. The interactions between the mussels and the other sessile animals that are not eaten by starfish is an example of competitive exclusion.
Competitive exclusion is a principle in ecology stating that two species competing for the same limited resource cannot coexist in the same environment. One species will always outcompete the other, leading to the decline or extinction of the less competitive species.
In this case, when ochre starfish are removed, the predation pressure on mussels is reduced, allowing them to thrive and compete with other sessile species for space and resources. As a result, the mussels become dominant and outcompete other sessile species, leading to a decline in their numbers.
This example highlights the importance of top predators like ochre starfish in maintaining the balance and biodiversity within ecosystems. The presence of predators can limit the growth of certain species, preventing them from dominating the environment and ensuring the survival of a diverse range of other species.
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Which type of fatty acid would result in a lipid that is the most liquid?
The fatty acid that we're talking about is liquid at room temperature because its building blocks have bends that don't allow the blocks to be tightly stacked, therefore it appears more fluid and is liquid. Those are the unsaturated fats.
Therefore, the correct answer is unsaturated fat.
explain what happens in the dialysis machine
Answer:
A dialysis machine is a medical device used to treat individuals with kidney failure or impaired kidney function. It performs the vital function of removing waste products and excess fluids from the blood when the kidneys are unable to do so effectively. Here's a general overview of how a dialysis machine works:
Explanation:
Blood Access: Before dialysis can begin, a vascular access site is prepared, typically in the form of an arteriovenous fistula (AV fistula) or an arteriovenous graft (AV graft). These are surgically created connections between an artery and a vein, providing a high-flow pathway for blood to be withdrawn and returned during dialysis.
Blood Withdrawal: The dialysis machine is connected to the patient's vascular access, and the blood is withdrawn from the body through one tube. The machine incorporates a pump to ensure a controlled flow of blood.
Blood Cleaning: Once the blood is withdrawn, it enters the dialysis machine, which contains a dialyzer or artificial kidney. The dialyzer consists of thousands of tiny hollow fibers, which act as a semi-permeable membrane. The blood is distributed across these fibers while a dialysis solution, called dialysate, flows around the fibers.
Diffusion and Filtration: The dialyzer facilitates the process of diffusion and filtration. Diffusion is the movement of waste products, toxins, and excess fluids from an area of higher concentration (blood) to an area of lower concentration (dialysate) across the semi-permeable membrane. Filtration helps remove larger molecules and substances from the blood.
Dialysate Composition: The dialysate is a carefully formulated solution that contains electrolytes and other substances to help regulate the composition of the patient's blood. It is mixed and monitored by the dialysis machine, adjusting its composition based on the patient's needs.
Ultrafiltration: Along with removing waste products, the dialysis machine also helps control fluid balance by incorporating a process called ultrafiltration. By applying a negative pressure gradient, excess fluid is removed from the blood across the membrane, helping to alleviate fluid overload.
Blood Return: After the blood is cleansed and excess fluid is removed, it is returned to the patient's body through a separate tube connected to the vascular access. Again, a pump is used to maintain a controlled flow rate during this process.
Monitoring: Throughout the dialysis session, the machine continually monitors various parameters such as blood pressure, blood flow rate, and dialysate composition to ensure the procedure is safe and effective. Alarms are triggered if any values deviate from the desired range.
Duration: A typical dialysis session can last for several hours, usually three to four times a week, depending on the patient's needs and prescribed treatment plan.
It's important to note that there are different types of dialysis machines and techniques available, such as hemodialysis and peritoneal dialysis. The process described above is specific to hemodialysis, which is the most commonly used form of dialysis.
how does hydropower and solar power work together?
Solar energy is energy that comes from the sun and is captured by solar cells. These cells transform the energy of photons of light into electrical energy. One mechanism is the energization of electrons, here the energy of the photons is transferred to the electrons, which can already be considered electric energy.
As for the hydroelectric energy, here the waterfalls or rivers flow driving a turbine, which will transform the movement into usable electric energy as it rotates.
Climate is defined as weather conditions at some locality averaged over a standard period of _____ years.
Climate is defined as weather conditions at some locality averaged over a standard period of 30 years.
Climate refers to the average weather conditions in a particular region over a long period of time. This includes factors like temperature, humidity, precipitation, and wind patterns.
To determine climate, meteorologists and climatologists typically average weather data over a 30-year period. This helps in understanding the overall trends and patterns of a region's climate, as opposed to short-term fluctuations in weather conditions.
In summary, climate is the long-term average of weather conditions in a specific area, calculated over a standard period of 30 years.
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the first chemist to begin quantifying the process of photosynthesis was:
The first chemist to begin quantifying the process of photosynthesis was Jan Ingenhousz. He conducted experiments in the late 18th century that demonstrated the role of sunlight in the production of oxygen by plants.
Jan Ingenhousz, a Dutch-British physician and chemist, made significant contributions to the understanding of photosynthesis. In the late 18th century, Ingenhousz conducted experiments that laid the foundation for quantifying the process of photosynthesis. He observed that plants produce oxygen in the presence of sunlight and that this process occurs mainly in the green parts of the plant.
One of Ingenhousz's notable experiments involved placing aquatic plants in sunlight and darkness and monitoring the production of bubbles. He found that oxygen bubbles were released by the plants only in the presence of sunlight. Ingenhousz also recognized the importance of carbon dioxide in the process, noting that plants require both sunlight and carbon dioxide to carry out photosynthesis.
Ingenhousz's work paved the way for further research on photosynthesis and contributed to the understanding of how plants convert sunlight into chemical energy. His experiments and observations laid the groundwork for future scientists to delve deeper into the intricate mechanisms of photosynthesis and its role in sustaining life on Earth.
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A molten, sticky rock thant forces its way through a crack in the Earth’s crust
A.Lava
B.Lahar
C.Magma
D.Scoria
Answer:
Magma.
Explanation:
This magma can push through holes or cracks in the crust, causing a volcanic eruption. When magma flows or erupts onto Earth's surface, it is called lava. Like solid rock, magma is a mixture of minerals.
___________________ activities and strategies influences where we live, what we wear, how we conduct business, and how we spend our time and money
meaning of
biology and living things
Answer:
biology means that study of living things...
living things means things that have life in them...
Plant domestication occurred in north america by 10,000 years ago and included important cereal grains such as wheat, barley, and oats
a. True
b. False
The given statement is false that Plant domestication occurred in north america by 10,000 years ago and included important cereal grains such as wheat, barley, and oats.
The process of modifying wild plants and animals for human use is known as domestication. Between the Tigris and Euphrates rivers in Mesopotamia, people first tamed plants some 10,000 years ago (which includes the modern countries of Iran, Iraq, Turkey, and Syria).
In Mesopotamia, wheat, barley, lentils, and many kinds of peas were among the first domesticated plants. The development of agriculture and more durable civilizations began with the domestication of plants, which was a significant turning point for human history. It was no longer necessary for humans to go in search of game and plants to harvest for food.
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Many species of trees in the desert are seen to have long tap roots that grow very deep into the ground - sometimes as long as 2-3 times the tree's height. Which of the following is the MOST LIKELY reason for these long roots?
a. to allow the trees to store more food
b. to fix the tree firmly to the sand to withstand desert storms
c. to draw water from deep below the surface
d. to help the tree grow back if the part above the ground is destroyed
Where do upper motor neurons synapse onto lower motor neurons?.
Upper motor neurons synapse onto lower motor neurons in the ventral horn of the spinal cord.
Upper motor neurons are responsible for transmitting signals from the brain to the lower motor neurons, which in turn directly innervate the muscles. These synapses between upper and lower motor neurons occur in the ventral horn of the spinal cord, specifically in the region called the anterior horn. The axons of the upper motor neurons descend from the motor cortex in the brain and travel through the corticospinal tracts. Upon reaching the ventral horn, they make connections, or synapses, with the lower motor neurons. This synaptic connection allows the upper motor neurons to influence and control the activity of the lower motor neurons, which ultimately leads to voluntary movement and motor function.
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you are on a committee that is planning whether or not to build a dam on a nearby river to produce hydroelectric power. describe some of the advantages and disadvantages you should consider before deciding to build the dam.
Dams preserve water, generate power, cause mass migration, and are expensive. Dams regulate water supply for domestic, industrial, and electric uses.
What are the advantages and disadvantages of dams?A dam is a structure that stops or slows the flow of water on the surface or in the ground.
Advantages of building a dam are:
Water flow is controlled and used to meet household, agricultural, and industrial demands.The reservoir that was formed behind the dam can be utilized for a variety of purposes, including irrigation, water sports, and even other forms of recreational pursuits.The production of energy by dams does not result in any pollution because there is no release of greenhouse gases during this process.Dams are utilized in conjunction with the hydroelectric plant in order to produce electricity.Disadvantages are:
The construction of dams takes many years, which results in a decrease in the quality of life for individuals who live in areas that are now undergoing construction.The process of constructing dams is one that is both time-consuming and incredibly expensive.The building of massive dams causes significant damage to the surface of the earth, which in turn has negative effects on geological processes.People are leaving in large numbers because they don't want to live in the area where the dam is going to be built.Learn more about dams, here:
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What is an acid?
What is the ph level of an acid?
Answer:
• An acid is an electrolyte that hydrolyses in water to release hydrogen ions.
\({ \rm{HA _{(aq)} \: \: {}^{ \dashrightarrow} _{ \dashleftarrow} \: \: H {}^{ + } _{(aq)} +A {}^{ - } _{(aq)}}} \\ \)
• pH level of an acid;
Strong acid → 0 - 3.8Weak Acid → 4.0 - 6.7a retrovirus has a(n) genome that must pass through a stage in which converts the genome to (a) . The latter material must the host's in order for the viral genome to be expressed.
A retrovirus has a(n) RNA genome that must pass through a stage in which Reverse transcriptase converts the genome to (a) DNA . The latter material must recombine with the host's DNA in order for the viral genome to be expressed.
Reverse transcription helps retroviruses convert their single-stranded RNA into double-stranded DNA. Human and other life form cells' genetic information is stored in DNA molecules. The viral DNA is incorporated into the host cells' genome after being converted from RNA to DNA.Through a complex set of steps, reverse transcription produces a linear DNA duplex in the cytoplasm. Although this DNA and its RNA template are colinear, it has terminal duplications called long terminal repeats (LTRs) that are absent from viral RNA.They are known as reverse transcriptase and are RNA-dependent DNA polymerases because, in contrast to the core dogma's DNA-to-RNA flow, they convert RNA templates into cDNA molecules.learn more about Reverse transcription here: https://brainly.com/question/15064737
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what kind(s) of cells can develop from multipotent stem cells?
Scientists studied reproduction in the New Zealand mud snail to answer the question, “Are there benefits to reproducing sexually or asexually?” Which of these hypotheses would least likely aid the scientists as they worked to answer the question?
Sexual reproduction is advantageous over asexual reproduction because it reduces the rate of mutation accumulation.
Asexual reproduction is advantageous over sexual reproduction because it allows the snails to produce more offspring.
Sexual reproduction is advantageous over asexual reproduction because it allows for snails to have increased genetic variation.
Asexual reproduction is advantageous over sexual reproduction because it decreases the snails’ need for social interaction.
Answer:
Sexual reproduction is advantageous over asexual reproduction because it reduces the rate of mutation accumulation.
Explanation:
The main advantage of sexual reproduction is that it increases the genetic variation in the species by creating new combinations of alleles.
However, asexual reproduction produces more offspring, as it is usually a quicker method of reproduction. It also does not require the organisms to socialise to mate.
Sexual reproduction does not reduce the rate of mutation, which is influenced by environmental factors as well as the genome itself.
Answer:
Ur answer is D or Asexual reproduction is advantageous over sexual reproduction because it decreases the snails’ need for social interaction.
Explanation:
i got it right on Edge 2020 ^^
Describe the type of movement as either facilitated diffusion, osmosis, or diffusion.
Answer:
1. Diffusion
2. Osmosis
3. Diffusion
4. Facilitated Diffusion
5. Osmosis
6. Diffusion
Explanation:
Facilitated Diffusion- Move molecules across the cell membrane in a passive transportation with membrane protein.
Osmosis- Move water molecules from high concentration to low concentration.
Diffusion- Evenly spread molecules from high concentration to low concentration.
1. Gases move across the room with ease without energy.
2. Water enter skin cells allowing cells to grow and wrinkle without energy.
3. Gases move with ease without energy.
4. Glucose requires energy to transfer.
5. Water leaves throat when concentration outside of throat is less that that inside the trough so water moves outwards.
6. Oxygen is uses passive diffusion does not require energy and will with ease move in and through a cell.