The basic unit by which angles are measured cells is the degree. However, degrees are the most common and widely used unit of angle measurement.
Angle is defined as the figure obtained by the union of two rays that share a common endpoint. Angles are measured in degrees, which are the basic unit of angle measurement. One degree is equal to one-three-hundred-sixtieth of a circle, and angles are often given in terms of degrees, minutes, and seconds.
There are two main systems used to measure angles in mathematics and geometry: degree measurement and radian measurement. Radians are an alternative to degrees for measuring angles. However, degrees are the most common and widely used unit of angle measurement.
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Eidetic memory refers to the ability of exactly recalling an image or text after only seeing it once without using mnemonic devices. It has higher prevalence in children. Lets assume that a recessive allele (e) codes for Eidetic memory and it is inherited as a maternal effect. The dominant allele E, codes for normal memory. Using the same alleles with maternal effect how can we explain that a man who is ee does not have eidetic memory? a. The mother has either EE or Ee genotype. b. The trait is sex limited c. The mother has an ee genotype but penetrance is low d. The mother has an Ee genotype but the father has also an Ee genotype
Using the same alleles with maternal effect The mother has an ee genotype but penetrance is low. (C)
Penetrance refers to the probability of a gene expressing its associated trait. When a gene is inherited as a maternal effect, the mother must have the allele responsible for the trait in order for it to be expressed in her offspring.
In this case, the man has an ee genotype, meaning that his mother must have at least one e allele in order for him to have the potential to possess the eidetic memory trait.
However, the penetrance of this trait may be low, meaning that even though the mother has the necessary allele, the man may not express the trait due to incomplete penetrance. Thus, the man who has an ee genotype may not have eidetic memory even though his mother has the necessary allele.
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What is an example of a control in risk management?
Testing, routine internal audits as well as inspections, and sometimes even your training programme are examples of controls. The risk evaluation will determine the dangers that your business faces and what controls need to be put in place to safeguard your assets.
Avoidance, asset protection, loss reduction, segregation, duplication, & diversity are all examples of risk control techniques. In risk management, controls are defined as "any process, policy, device, practise, or other acts that change risk," according to the ISO 31000 standard. When examining numerous risk registers, "controls" are identified as a variety of items, including: HR guidelines Risk control is a business technique that enables firms to assess prospective losses and take steps to reduce or eliminate such risks. It is an essential component of a risk management process. Personal protective equipment (PPE), extraction systems, decontamination equipment, and ventilation equipment all fall under the category of control equipment. Controlling is a management function that aids in obtaining desired results from employees at all organisational levels, including managers and subordinates.
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Exercise is physical activity quith the goal of improving physical fitness.
Please select the best answer from the choices provided.
ОТ
OF
Answer:
true
Explanation:
I cant tell if yoire saying t or f as the answers. but I am quite sure this woukd be true because having the goal of phsycial fitness whike being active woukd be considered excercise
Biggest bone in the body
Adipose cells store nothing but glucose. true or false
Answer: False
Explanation:
Answer:
The answer to your question in false.
Question 16 of 25
An ecosystem is made up of all the living and nonliving things that interact in
a particular area. Sometimes similar ecosystems are found near one another,
but the communities within them do not interact. What are these areas
called?
O A. Biozones
B. Biomes
C. Systems
D. Biospheres
SUBMIT
PREVIOUS
An ecosystem is made up of all the living and nonliving things that interact in a particular area. Sometimes similar ecosystems are found near one another, but the communities within them do not interact. These areas called B. Biomes.
Biomes are areas with similar climatic conditions, vegetation, and animal life, they are larger in size than ecosystems and can encompass several ecosystems. Biomes are typically classified into categories such as tropical rainforests, deserts, tundra, and grasslands. Although biomes may have similar environmental conditions and ecosystems, the communities within them may not necessarily interact due to physical barriers or differences in adaptations.
For example, a desert biome may have different ecosystems such as sand dunes, oases, and rocky outcrops, but the animals in these ecosystems may not interact due to differences in their adaptations and behavior. Similarly, a rainforest biome may have different ecosystems such as canopy, understory, and forest floor, but the animals in these ecosystems may not interact due to physical barriers such as height and vegetation density. So therefore the correct answer is B. Biomes
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what is organelle
a part
of a cell that has a special function, much like an organ.
a genus
of sphere-shaped or oval bacteria. They occur in chains and cause many
illnesses in humans, including tonsillitis and strep throat.
An organelle is option A- a part of a cell that has a special function, much like an organ in a multicellular organism.
Organelles are membrane-bound structures that are found within the cytoplasm of eukaryotic cells. Examples of organelles include the nucleus, mitochondria, endoplasmic reticulum, Golgi apparatus, lysosomes, peroxisomes, and chloroplasts.
Each organelle performs a specific function that is essential for the overall functioning of the cell. The concept of organelles is one of the defining features of eukaryotic cells and distinguishes them from prokaryotic cells, which lack membrane-bound.
In addition to the organelles mentioned earlier, there are several other types of organelles found in eukaryotic cells. For example:
Ribosomes: These are small, non-membrane-bound structures that are involved in protein synthesis. Ribosomes can be found in the cytoplasm or attached to the endoplasmic reticulum.
Cytoskeleton: This is a network of protein fibers that provides structure and support to the cell. The cytoskeleton is composed of three types of fibers: microfilaments, intermediate filaments, and microtubules.
Vacuoles: These are membrane-bound sacs that store materials such as water, nutrients, and waste products. Plant cells have large central vacuoles that help maintain turgor pressure and support the structure of the plant.
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Protein List 4 differences
Answer:
The different levels of protein structure are known as primary, secondary, tertiary, and quaternary structure
Explanation:
Answer:
actin myosin hemoglobin titin
Scenario 1: The bell rings at the end of class and you jump up to head for the door. When you stand up, you feel light-headed. What happens in your body to keep you from continuing to feel light-headed?
1. List each body system that is at work. You must explain how the body system is functioning and the main organs that the body system is using. In your explanation, explain how various body systems and organs are working together.
2. List any body system that might be suppressed or lessened. Explain why.
PLEASE DONT SCAM
Answer:
Explanation:el sapo
Answer:When we stand up from sitting or lying down, our blood vessels respond to gravity by narrowing to prevent our blood pressure falling. This ensures a steady supply of oxygenated blood to the brain.
Orthostatic hypotension is a form of low blood pressure. It happens when the blood vessels do not constrict (tighten) as you stand up. It is usually a symptom of an underlying disorder rather than a disease in itself. The condition is also known as postural hypotension.
Everyone is likely to experience a mild form of postural hypotension at some time. It’s the lightheaded feeling you may get if you leap out of bed very quickly.
Orthostatic hypotension — also called postural hypotension — is a form of low blood pressure that happens when you stand up from sitting or lying down. Orthostatic hypotension can make you feel dizzy or lightheaded, and maybe even cause you to faint.
Orthostatic hypotension may be mild, and episodes can last for less than a few minutes. However, long-lasting orthostatic hypotension can signal more-serious problems, so it's important to see a doctor if you frequently feel lightheaded when standing up.
Occasional (acute) orthostatic hypotension is usually caused by something obvious, such as dehydration or lengthy bed rest, and is easily treated. Chronic orthostatic hypotension is usually a sign of another health problem, so treatment varies.
Dizziness is a word that is often used to describe two different feelings. It is important to know exactly what you mean when you say "I feel dizzy," because it can help you and your doctor narrow down the list of possible problems.
Lightheadedness is a feeling that you are about to faint or "pass out." Although you may feel dizzy, you do not feel as though you or your surroundings are moving. Lightheadedness often goes away or improves when you lie down. If lightheadedness gets worse, it can lead to a feeling of almost fainting or a fainting spell (syncope). You may sometimes feel nauseated or vomit when you are lightheaded.
Vertigo is a feeling that you or your surroundings are moving when there is no actual movement. You may feel as though you are off balance, spinning, whirling, falling, or tilting. When you have severe vertigo, you may feel very nauseated or vomit. You may have trouble walking or standing, and you may lose your balance and fall.
Although dizziness can occur in people of any age, it is more common among older adults. A fear of dizziness can cause older adults to limit their physical and social activities. Dizziness can also lead to falls and other injuries.
Lightheadedness
It is common to feel lightheaded from time to time. Brief episodes of lightheadedness are not usually the result of a serious problem. Lightheadedness often is caused by a momentary drop in blood pressure and blood flow to your head that occurs when you get up too quickly from a seated or lying position (orthostatic hypotension). Ongoing lightheadedness may mean you have a more serious problem that needs to be evaluated.
Sporozoans all have a structure called the ______ complex at one end of the cell, which is composed of fibrils, microtubules, and organelles.
Sporozoans all have a structure called the apical complex at one end of the cell.
The apical complex is a unique structure found in sporozoans, a group of parasitic protozoans. This complex is composed of several components, including fibrils, microtubules, and organelles, that work together to help the parasite invade host cells.
The apical complex is involved in the secretion of enzymes and other molecules that allow the parasite to penetrate the host cell membrane and establish infection.
The apical complex is a key feature of sporozoans and plays an important role in their ability to infect and cause disease in their hosts. Understanding the structure and function of this complex is essential for developing effective treatments for parasitic infections.
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help help help help!!!!
the answer is c
because : the man has blindsss while femal hasn't
Brenda and her friend are relaxing in a paddleboat, slowly working the paddles with their legs to move the boat. Which organelles in the muscle cells of Brenda’s legs enable Brenda to have the energy for this activity?
Answer:
Mitochondria
Explanation:
Powerhouse of the cell
Answer:
Mitochondria
Explanation:
I got it right on the test.
which of the following effectors acts as as feedforward stimulation to the pathway it is produced in when it is in excess?
The effector that acts as a feedforward stimulation to the pathway it is produced in when it is in excess is the Inhibitory effector.
A feedforward mechanism is a way of regulating a system's output by anticipating disturbances that have not yet occurred. It is a predictive system that functions by taking an action in anticipation of a disturbance or signal, resulting in a pre-emptive response. Feedforward controls are found in a variety of physiological and biochemical systems. They are capable of controlling the sensitivity of a system to stimulation. The inhibitory effector is an effector that serves as a feedforward stimulation to the pathway it is produced in when it is in excess. In a system, it inhibits the rate of the formation of the product of the pathway that produced it. How does an inhibitory effector work? When the concentration of the inhibitory effector in the system is excessive, it activates an inhibitory signal, which results in a decrease in the rate of product formation from the pathway. The inhibitory effector may act to prevent the product from being generated if it becomes too abundant or if it may have a negative impact on the system.
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8 incorrect things for a lab
Answer:
Things NOT to Do in a Research LabWearing open-toed shoes.
Keeping long hair down.
Eating or drinking.
Erasing data from your notebook.
Showing up late.
Forgetting to label samples or materials.
Incorrectly disposing of your materials.
Wearing shorts.
Determine which word best describes the function of
hormones.
A. Protein
B. Molecule
C. Growth
D. Communication
Answer:
d
Explanation:
Prepare an assinment about types of pollution in atmosphere and it's causes and health hazards
The types of pollution in the atmosphere include air pollution, which is caused by the release of harmful gases, particulate matter, and chemicals into the air.
This pollution can come from both natural and human sources, such as industrial activities, transportation, and burning of fossil fuels. Other types of pollution include indoor air pollution, ozone depletion, and climate change.
The health hazards associated with air pollution are numerous and include respiratory and cardiovascular problems, such as asthma, lung cancer, and heart disease. Air pollution can also cause skin problems, eye irritation, and neurological disorders. Children, the elderly, and people with pre-existing health conditions are especially vulnerable to the harmful effects of air pollution.
Reducing air pollution requires a combination of individual actions, such as reducing the use of personal vehicles and reducing energy consumption at home, and government policies, such as stricter regulations on industries and promoting the use of renewable energy sources.
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Name the layer in the atmosphere where temperatures can reach over 1,000 °C?
Answer:
the Thermosphere
Explanation The uppermost atmosphere is called the Thermosphere (therm-os-feer). Here, the temperature again increases with altitude. This is because atoms of nitrogen and oxygen absorb high-energy solar radiation and give off thermal energy... this causes the temperature to increase up to 1,000 degrees Celsius.
Plants can use the glucose they have made to supply them with energy.
Give four other ways in which plants use the glucose they have made.
Answer:
4 ways in which plants use the glucose -
It is used in maintaining plant structure and for the repaired parts2. It is used in providing energy for work whenever plant needs it .
3. It is used by xylem and phloem to transport food, water, miners etc to different parts
4. It is used in osomosis.
Why does dna flow toward the positive side of the gel chamber?.
Answer:
DNA has a negative charge and is attracted by the positive side.
Explanation:
The DNA flows toward the positive side of the gel chamber because the positive side attracts DNA, which has a negative charge.
What is a DNA?The hereditary substance in humans and virtually all other animals is DNA, or deoxyribonucleic acid.
In conclusion, This means that in the gel chamber the laws of attraction still apply.The law that state that unlike charges attract.
Hence,The positive side attracts DNA, which has a negative charge.
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In contrast to most animals, which resource do plants typically compete for? sunlight water space food *will mark brainliest!*
Answer:
Sunlight
Explanation:
Plants typically compete for sunlight since it helps them split Water molecules or H2O into hydrogen molecule and oxygen molecule. The splitting of water molecules helps them to prepare food by undergoing the photosynthesis process.
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Protein metabolism is difficult because.......
Group of answer choices
fad diet products are expensive; exercise is free!
the proteins shape can change
nitrogenous wastes like ammonia and urea build up.
ATP cannot be made from protein.
proteins contain 9kcal/gram.
Protein metabolism is difficult because nitrogenous wastes like ammonia and urea build up. This is the answer. A long answer is given below.
Protein metabolism is one of the most complex processes carried out by living organisms because it includes the breakdown of amino acids and their conversion into other amino acids, sugars, fats, and other metabolic intermediates. The products of protein metabolism, which include nitrogenous wastes like ammonia and urea, are potentially toxic and must be removed from the body. The liver is responsible for metabolizing the nitrogenous wastes produced by protein metabolism, which are excreted by the kidneys.
If the liver or kidneys are damaged or functioning poorly, the buildup of nitrogenous wastes in the bloodstream can lead to serious health issues. Additionally, the energy required for protein metabolism is higher than that required for other types of metabolism, as proteins contain 9 kcal/gram of energy, compared to 4 kcal/gram for carbohydrates and fats. Therefore, the body must expend more energy to break down and metabolize protein. Finally, ATP cannot be made from protein, as it can from carbohydrates and fats, which are more efficient energy sources. As a result, the body must use protein to make glucose or fatty acids, which can then be used to produce ATP.
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how and what can affect the stability of ecosystems, and how changes in the environment may affect the types and number of living things in an ecosystem
Environmental changes can disrupt ecosystem stability and impact the types and numbers of living organisms within it.
What factors affect the Stability of Ecosystems?The stability of ecosystems can be affected by a range of factors, including natural disasters, human activities such as habitat destruction, pollution, climate change, and the introduction of invasive species.
Alterations in environmental conditions like temperature, rainfall patterns, and resource availability can have substantial consequences for the variety and population sizes of living organisms, resulting in shifts in species composition, changes in population sizes, and the potential for extinctions, ultimately disrupting the delicate balance within the ecosystem.
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if transcription progresses at the rate of 40 nucleotides per second, how long it would take to transcribe a sequence
It would take 2.5 seconds to transcribe a sequence of 100 nucleotides if transcription progresses at the rate of 40 nucleotides per second.
It depends on the length of the sequence. The time required to transcribe a sequence can be calculated using the formula:
time = length of sequence / rate of transcription
Assuming the sequence is 100 nucleotides long, it would take:
time = 100 nucleotides / 40 nucleotides per second
time = 2.5 seconds
Therefore, it would take 2.5 seconds to transcribe a sequence of 100 nucleotides if transcription progresses at the rate of 40 nucleotides per second.
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What is the Texas state tree?
Plant: Pecan Tree. 1919 saw its designation as the state tree. The pecan tree, which is native to Texas and well-liked as a yard tree and provides the only nut that is farmed there for commercial purposes, is widespread in the wild.
Former governor James Stephen Hogg asked that his tomb be marked by a pecan tree before he passed away in 1906. This led to an increase in popularity for the local tree. 1919 saw its designation as the state tree. The pecan tree, which is native to Texas and well-liked as a yard tree and provides the only nut that is farmed there for commercial purposes, is widespread in the wild. For usage in pies, candies, and other delights, millions of pounds of the soft-shelled, sweet-meat nuts are gathered each year.
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What happens during a convergent: oceanic to continental boundary?
Answer:
When oceanic crust converges with continental crust, the denser oceanic plate plunges beneath the continental plate. This process, called subduction, occurs at the oceanic trenches. ... The subducting plate causes melting in the mantle above the plate. The magma rises and erupts, creating volcanoes
Explanation:
A heterotroph is also known as a consumer. True or False.
Answer:
TRUE
Explanation: They are a primary consumer aswell
FILL IN THE BLANK. Meiosis II typically produces _____ cells, each of which is _____.
Meiosis II typically produces four haploid cells, each of which is genetically unique.
Understanding meiosis IIDuring meiosis II, the two daughter cells produced during meiosis I divide again, resulting in a total of four daughter cells.
These daughter cells contain half the number of chromosomes as the original parent cell and are considered haploid.
Additionally, during meiosis II, genetic recombination does not occur, as the chromosomes have already exchanged genetic material during meiosis I.
As a result, each of the four haploid daughter cells produced during meiosis II is genetically unique due to independent assortment and random alignment of homologous chromosomes during meiosis I.
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Questions: Write out and answer in your own words
1. Why are human gametes haploid instead of diploid?
2. ___ cells are formed after Meiosis I.
3. ___ cells are formed after Meiosis II.
4. What events occur during Meiosis I and Meiosis II?
5. What happens in cytokinesis?
Human gametes are haploid instead of diploid because during sexual reproduction, haploid gametes from each parent combine to form a diploid zygote. This allows for genetic diversity in offspring as each gamete contributes unique genes.
The other answers are:Haploid cells are formed after Meiosis I.Four haploid cells are formed after Meiosis II.Meiosis I and Meiosis II are two separate cell division processes that occur in the production of gametes. During Meiosis I, homologous chromosomes are separated and cross-over occurs to exchange genetic material. In Meiosis II, the chromosomes separate to form four haploid cells.
Cytokinesis is the final step in cell division where the cytoplasm divides and the cell membrane pinches inward to separate the two new daughter cells.
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Over time, some of the decaying organic matter and sediment on the ocean floor may be converted into fossil fuels (oil and gas). How does this stored carbon get released back into the carbon cycle?
A.
as bicarbonate when it is reabsorbed
B.
as calcium carbonate when it fossilizes
C.
as carbon monoxide when it is mined
D.
as carbon dioxide when it is burned
Over time, some of the decaying organic matter and sediment on the ocean floor may be converted into fossil fuels. The stored carbon get released back into the carbon cycle is carbon dioxide when it is burned. Thus, the correct option is D.
What is Carbon cycle?The carbon cycle is the nature's way of reusing carbon compounds, which travel from the atmosphere into living organisms in the Earth and then back into the atmosphere over and over again in ecosystem. Most of the carbon is stored in the rocks and sediments, while the rest is stored deep in the ocean, atmosphere, and living organisms.
When the animals die, they decompose, and their remains become the sediments, which traps the stored carbon in layers which eventually turn into rocks or minerals. Some of this sediment might form fossil fuels, such as coal, oil, or natural gas, which then release the carbon compounds back into the atmosphere when the fuel is burned in air.
Therefore, the correct option is D.
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if a substance muyst move up a concentration gradient, there is an input requirment of what from the cell
If a substance must move up a concentration gradient, it means that it is moving from an area of low concentration to an area of high concentration. In order to achieve this, the cell would need to provide energy in the form of ATP (adenosine triphosphate) to transport the substance against the concentration gradient. This process is known as active transport, and it allows cells to maintain internal concentrations of substances that differ from their surroundings.
Hi! To move a substance up its concentration gradient, the cell must provide energy, which is typically in the form of adenosine triphosphate (ATP). This process is called active transport, as it requires the cell to expend energy to transport the substance against its concentration gradient.