According to the punnett square, 1) Phenotype long hair and Tortoise shell. 2) Genotype Ll XBXb 3) Gametes: L XB, L Xb, l XB, l Xb. 4) Phenotype Short hair and Black. 5) Genotype ll XbY. 6) Gametes: l Xb, l Xb, l Y, l Y. 7) 4/16 = 1/4. 8) 4/16 = 1/4. 9) 2/16 = 1/8. 10) 2/16 = 1/8. 11) 0/16. 12) 2/16 = 1/8. 13) 2/16 = 1/8. 14) 1/8. 15) 1/8. 16) 1/8. 17) 1/8. 18) 0/8. 19) 0/8. 20) 1/8. 21) 1/8. 22) 1/8. 23) 1/8.
To answer this question, we will use a punnett square which is the best representation of a cross.
What is a Punnett square?The Punnett square is a graphic representation that shows the different types of gamete combinations according to the alleles involved in a cross.
Punnett square shows the probabilities of getting offspring with different genotypes and their consequent phenotypes.
Let us also remember that,
Codominance is an inheritance pattern in which both alleles are expressedComplete dominance is the inheritance pattern in which the dominant alleles hides the expression of the recessive alleleAutosomal genes are those located in autosomal chromosomesX-linked genes are those located in the X chromosome.In the exposed example, two genes code for two traits,
- Color ⇒ X linked gene ⇒ co-dominant
XB XB → organgeXb Xb → blackXB Xb → tortoise shell- Length ⇒ Autosomal gene ⇒ complete dominance
LL and ll → longll → shortThese genes are independent from each other.
Female
1) Phenotype
Long hairTortoise shell2) Genotype ⇒ Ll XBXb
3) Gametes ⇒ L XB, L Xb, l XB, l Xb
Male
4) Phenotype
Short hairBlack5) Genotype ⇒ ll XbY
6) Gametes ⇒ l Xb, l Xb, l Y, l Y
Cross:
Parentals) Ll XBXb x ll XbY
Punnett square) LXB LXb lXB lXb
lXb LlXBXb LlXbXb llXBXb llXbXb
lXb LlXBXb LlXbXb llXBXb llXbXb
lY LlXBY LlXbY llXBY llXbY
lY LlXBY LlXbY llXBY llXbY
F1) 50% of the progeny are expected to be females
50% of the progeny are expected tp be males
From the whole progeny,
1/8 are expected to be females with long hair and Tortoise shell color, LlXBXb.1/8 are expected to be females with long hair and black color, LlXbXb.1/8 are expected to be females with short hair and Tortoise shell color, llXBXb.1/8 are expected to be females with short hair and black color, llXbXb.1/8 are expected to be males with long hair and orange color, LlXBY.1/8 are expected to be males with long hair and black color, LlXbY.1/8 are expected to be males with short hair and orange color, llXBY.1/8 are expected to be males with short hair and black color, llXbY.7) long hair: 4/16 = 2/8 = 1/4 ⇒ LlXBXb + LlXbXb + LlXBY + LlXbY
8) short hair: 4/16 = 2/8 = 1/4 ⇒ llXBXb + llXbXb + llXBY + llXbY
9) tortoise shell female: 2/16 = 1/8 ⇒ LlXBXb, llXBXb
10) black female: 2/16 = 1/8 ⇒ LlXbXb, llXbXb
11) orange female: 0/16
12) black male: 2/16 = 1/8 ⇒ LlXbY, llXbY
13) orange male: 2/16 = 1/8 ⇒ LlXBY, llXBY
14) long tortoise female: 1/8 LlXBXb
15) short tortoise female: 1/8 llXBXb
16) long black female: 1/8 LlXbXb
17) short black female: 1/8 llXbXb
18) long orange female: 0/8
19) short orange female: 0/8
20) long black male: 1/8 LlXbY
21) short black male: 1/8 llXbY
22) long orange male: 1/8 LlXBY
23) short orange male: 1/8 llXBY
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Which gland produces 60 percent of seminal fluid volume, including fructose and prostaglandins?.
Answer:
Seminal Fluid
Secretions from the seminal vesicles make up about 60 percent of the volume of the semen, with most of the remainder coming from the prostate gland. The sperm and secretions from the bulbourethral gland contribute only a small volume.
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Why is the energy source for active nuclei like seyferts thought to be compact?.
The energy source for active nuclei like Seyferts is thought to be compact because of the high luminosity and rapid variability of their emission.
Seyfert galaxies are a type of active galactic nucleus (AGN) characterized by strong and variable emission lines. It is believed that the energy source for Seyferts is a supermassive black hole at the center of the galaxy.
The high luminosity of Seyfert nuclei suggests that a large amount of energy is being released in a small volume, which is why the energy source is thought to be compact. In addition, the rapid variability of the emission lines indicates that the energy source is small and rapidly changing, consistent with a compact object like a black hole.
Observations have confirmed the presence of supermassive black holes at the centers of many Seyfert galaxies, providing strong evidence for the compact energy source hypothesis.
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how does adding wolves help the ecosystem
Answer:It depends on the situation
Explanation:
In north america, people hunted wolves to near extinction because they were predators, but when that happened, deer populations started going out of control. This is why adding the wolves was beneficial for that situation so that the balance of the food chain would be restored. If you add wolves to an ecosystem that they did not originate from, it will not benefit the ecosystem and instead destroy it since the native species will not know how to deal with them.
What would you predict would happen if you inserted and expressed a pax-6 gene from a mouse into the embryo of an octopus
If a pax-6 gene from a mouse was inserted and expressed in an octopus embryo, it is likely that the octopus would experience some changes in its development.
The pax-6 gene is responsible for the formation of eyes and the central nervous system in many animals, including mice and humans.
Octopuses already have complex eyes, so it is possible that the introduction of the pax-6 gene could lead to modifications or improvements in their vision.
Additionally, the introduction of the gene could potentially affect the development of the octopus's nervous system, leading to changes in behavior or cognitive abilities.
However, it is important to note that genetic engineering is a complex and unpredictable process, and the exact effects of inserting a pax-6 gene from a mouse into an octopus embryo are difficult to predict with certainty.
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Before beginning the activity, collect water from two different water sources. One source should be
indoor tap water. The other source should be outdoors, such as a pond, stream, or well. You will need
approximately one gallon from each water source to complete each test.
Part A
Before analyzing the two water samples, predict the outcome of the test from each source. How
do you anticipate the concentration of contaminants will compare between the outdoor and
indoor water sources?
When we sample water from two different sources that is indoor tap water and outdoor pond water. On testing the level of contaminants or pathogens in the outdoor pond water would be more as compared to that in indoor tap water. This is because the pond water is exposed to all the physical, biological, and chemical contaminants present in the atmosphere.
Water sampling is done to look for potent pathogens in the drinking water or the water for regular use. It is also done for determining the quality of water, so as to ensure that it is safe for human use. Testing of water in healthcare settings is done to look for pathogens of clinical significance.
Testing of water samples helps to determine the effective control measures that can be taken to reduce the contaminants or to eliminate the potential pathogens.
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Alzheimer's disease: piecing together the evidence assignment answers????
Alzheimer's disease is a neurodegenerative disorder characterized by cognitive decline and memory loss. It is an incurable and progressive condition that is estimated to affect more than five million Americans.
To better understand this devastating illness, researchers have put together evidence from a variety of sources. These include brain imaging studies, studies of genetic risk factors, and analyses of postmortem brain tissue from Alzheimer's patients.
Collectively, these studies have provided important information about the pathology of Alzheimer's and its potential causes. Through this research, scientists have been able to identify changes in the brain that are associated with the illness, and to develop treatments that may slow its progression or alleviate some of its symptoms.
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Match the following terms and definitions.
1. tiny sacs within the lungs which increase the surface available for gas exchange
amylase
2. a digestive enzyme that breaks down starches and glycogen into sugars
bronchi
3. the two thin-walled chambers that receive blood into the heart from the veins
atria
4. the two tubes into which the trachea divide to go into each lung
alveoli
5. a tiny vessel through which diffusion takes place between the blood and the body tissues
capillary
6. a mass of nerve tissue not part of the brain
ganglia
Answer in pic below ^^
I need help with this biology worksheet
Answer:
Explanation:
I pretty sure its
Look at structure A. Use the drop downs to answer the
questions about this structure,
What is the name of this part of the flower?
What is the function of this part of the flower?
Please help I will mark u as brainliest
Structure A is the stigma of a flower. The stigma is the sticky end of the female reproductive organ of the flower, which is the pistil.
The purpose of stigma is to receive pollen from the male reproductive organ of the flower, which is the anther. The pollen sticks to the stigma, and then travels down the style, which is the stalk of the pistil, to the ovary, which contains the egg cells to be fertilized.
The stigma also has a role in the dissemination of the flower’s scent, which helps to attract pollinators such as bees, butterflies, and hummingbirds.
The stigma is also important for the genetic diversity of the plant, as the pollen from different plants will often have different genetic material, which will help the plant to be more resistant to disease and better adapted to its environment.
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How do white blood cells compare to red blood cells?.
White blood cells and red blood cells are two types of cells found in the bloodstream, and they differ in their structure, function, and characteristics.
Red blood cells, also known as erythrocytes, are the most abundant cells in the bloodstream, responsible for carrying oxygen from the lungs to the body's tissues. They are small, disk-shaped cells without a nucleus, filled with hemoglobin protein. Hemoglobin gives red blood cells their distinctive red color and is responsible for binding and carrying oxygen molecules.
White blood cells, also known as leukocytes, are less abundant than red blood cells but are critical components of the immune system. They are larger than red blood cells and have a nucleus. There are several types of white blood cells, each with a specific function in fighting infections, including phagocytosis (engulfing and destroying pathogens), producing antibodies, and coordinating immune responses.
In summary, while red blood cells are primarily responsible for oxygen transport, white blood cells play a crucial role in defending the body against infections and diseases.
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Describe the motion of the pulse with respect to the source
The motion of a pulse with respect to its source is the movement of the disturbance created by the source as it travels through the medium away from its origin.
To describe the motion of a pulse with respect to the source, we can consider the following terms:
1. Source: The origin of the pulse, typically an object or event that generates a disturbance in a medium.
2. Pulse: A single disturbance that travels through a medium, such as a wave or a vibration.
3. Medium: The substance through which the pulse propagates, like air, water, or a solid material.
4. Motion: The change in position of the pulse as it moves away from the source.
With these terms in mind, we can describe the motion of a pulse with respect to its source as follows:
Step 1: The source generates a disturbance or vibration, creating a pulse.
Step 2: The pulse propagates through the medium, moving away from the source.
Step 3: As the pulse travels, its motion can be observed by tracking the change in position over time.
Step 4: The motion of the pulse may be influenced by factors such as the properties of the medium, the energy of the source, and any external forces acting upon it.
In summary, the motion of a pulse with respect to its source is the movement of the disturbance created by the source as it travels through the medium away from its origin.
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What is sustainable development? Write its any two principles.
How is thermal energy within the earths layers of related to some of its natural disasters
Thermal energy within Earth's layers is related to some natural disasters, such as volcanic eruptions and earthquakes.
The Earth's interior contains significant heat, which is generated by radioactive decay and residual heat from the planet's formation. This thermal energy drives plate tectonics, which is the movement of Earth's lithosphere.
Volcanic eruptions occur when magma, generated by the melting of Earth's mantle due to thermal energy, rises to the surface. This process can result in explosive eruptions and lava flows, causing widespread damage and posing risks to human life.
Earthquakes, on the other hand, are often caused by the movement of tectonic plates, driven by the same thermal energy.
As plates move, they interact with each other, leading to the buildup of stress along faults. When this stress is released, it generates seismic waves, resulting in an earthquake.
In conclusion, thermal energy within Earth's layers plays a crucial role in driving natural disasters like volcanic eruptions and earthquakes by influencing the movement of tectonic plates and the generation of magma.
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at what week do fingernails start to form for a developing baby
Answer:
During the first trimester, the formation of a baby's nails in the womb starts. At 12 weeks of pregnancy, the baby's fingernails begin to develop. And around 17 weeks, the baby's toenails start to grow.
Early seed plants were pollinated by: Group of answer choices bees. Butterflies. Wind. Birds. Still water
Early seed plants were pollinated by a variety of organisms, including bees, butterflies, wind, and birds.
Here, all the options are correct.
Bees are important pollinators for many flowering plants, and in the case of early seed plants, they would have been a key factor in pollinating the flowers and helping them to reproduce. Butterflies are also important pollinators and may have been active in helping early seed plants reproduce as well.
Wind can also be important in pollination, particularly for plants that produce large amounts of pollen and dispersing it over a wide area. Finally, birds can be important pollinators as well, particularly in the case of plants that rely on large, brightly colored flowers to attract them.
Still water can also be important for some plants, as it can help to disperse their pollen and provide a medium for their reproduction. All of these factors would have been important for the success of early seed plants and the evolution of the plant kingdom.
Therefore, all the options are correct.
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Many of Earth's biodiversity hotspots are also home to communities of people who are living at the subsistence level-able to obtain just what they need for daily survival. Is it realistic to think conservation plans for such regions can be designed to serve local people as well? explain why or why not. BRAIN LIST
It is realistic to think that conservation plans for biodiversity hotspots can be designed to serve local people living at the subsistence level.
This can be achieved by incorporating sustainable resource management, community-based conservation initiatives, and eco-tourism. By addressing both ecological and socio-economic needs, such plans can help protect biodiversity while improving the well-being of the local communities.
Sustainable Resource Management: Conservation plans for biodiversity hotspots should prioritize sustainable resource management practices.
This involves promoting responsible harvesting of natural resources, such as timber, non-timber forest products, and fisheries, ensuring that their extraction does not exceed the ecosystem's capacity to regenerate.
By adopting sustainable practices, local communities can continue to meet their subsistence needs while preserving the biodiversity upon which they depend.
Community-Based Conservation Initiatives: Conservation plans can be designed to empower local communities and involve them as key stakeholders in biodiversity protection.
By recognizing the rights and traditional knowledge of indigenous peoples and local communities, conservation initiatives can benefit from their deep understanding of the local ecosystems.
Eco-Tourism: Sustainable eco-tourism can play a crucial role in biodiversity conservation while generating economic benefits for local communities.
By promoting responsible tourism practices that minimize negative impacts on ecosystems, conservation plans can leverage the natural and cultural assets of biodiversity hotspots to create economic opportunities for local people.
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Improvements in harvesting systems include all of the following advances EXCEPT
trees are now cut closer to the ground.
trees are lifted by machine instead of manually.
trees can be transported using much smaller equipment.
trees grow at faster rates than they did in previous decades
Improvements in harvesting systems include all of the following advances except trees grow at faster rates than they did in previous decades.
The other improvements mentioned involve advancements in technology and machinery used in the harvesting process, while the growth rate of trees is a natural factor and not directly related to the improvements in harvesting systems.
Advancements in technology and machinery: Harvesting systems have witnessed significant advancements in technology and machinery, aimed at improving productivity and reducing labor requirements.
For example, the introduction of mechanized equipment such as harvesters, forwarders, and skidders has increased the efficiency and speed of tree felling, extraction, and transportation. These technological advancements have led to increased productivity and reduced manual labor in the harvesting process.
Precision and selective harvesting: Modern harvesting systems increasingly employ precision and selective harvesting techniques. These methods allow foresters to target specific trees for harvesting while leaving others standing, promoting sustainable forest management.
Selective harvesting helps preserve the overall forest ecosystem and ensures the continuity of tree growth by maintaining a diverse age and species structure within the forest.
Reduced environmental impact: Improvements in harvesting systems also focus on minimizing environmental impact.
Techniques such as low-impact logging, which involves careful planning and utilization of best practices, aim to minimize soil compaction, protect water quality, and maintain the integrity of the forest ecosystem during harvesting operations.
In addition, the use of lighter equipment and improved transportation methods helps reduce soil disturbance and damage to the forest floor.
Increased efficiency and waste reduction: Modern harvesting systems strive to optimize resource utilization and minimize waste. For instance, the utilization of tree-length harvesting techniques allows for the extraction of longer logs, reducing the amount of waste generated during the harvesting process.
Moreover, advancements in processing and sorting technologies enable better utilization of harvested timber by maximizing the recovery of high-quality wood products.
Safety improvements: Harvesting systems have seen advancements in safety measures to protect workers and reduce the risk of accidents.
Improved training programs, safety protocols, and the use of protective equipment have contributed to a safer working environment for forest workers.
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Letha is researching the effects of temperature on the metabolism of yeast. she
sets up her experiment and carefully adds sugar and yeast to a beaker of water.
letha then measures and records the volume of gas produced by the mixture.
which variables should be the constants in her experiment?
mass of yeast and mass of sugar
mass of sugar and water temperature
volume of gas and water temperature
volume of gas and mass of yeast
In Letha's experiment, the constants should be the mass of yeast and mass of sugar. This is because she wants to study the effect of temperature on yeast metabolism, and keeping the mass of yeast and sugar constant will ensure that any changes observed in the volume of gas produced are due to temperature changes, not variations in the amounts of reactants.
In Letha's experiment on the effects of temperature on the metabolism of yeast, the variables that should be constants are the mass of yeast and mass of sugar.
How to Calculate mass of sugar ?
Calculate the formula unit mass of sugar ( C ₁₂H ₂₂ O ₁₁ ). Hint: The key to finding out the formula mass of any given compound is to multiply the atomic mass to the count of each atom that is there in the formula. By utilizing the atomic masses, we can compute the formula mass for every ionic compound.
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Try to come up with a single sentence that is both TRUE and uses the following words/concepts correctly : ecosystem, biodiversity, greenhouse effect, and deforestation.
Answer:
Deforestation reduces the biodiversity of ecosystems, contributes to the greenhouse effect by releasing carbon dioxide, and increases the risk of zoonotic diseases
Explanation:
In the human body, the circulatory system transports and delivers substances. Within the cell, which organelle performs a similar function?.
Answer:
Endoplasmic reticulum.
Explanation:
In the human body, the circulatory system transports and delivers substances. Within the cell, the endoplasmic reticulum performs a similar function.
Which organelle in the cardiac muscle stores calcium?.
The organelle in the cardiac muscle that stores calcium is the sarcoplasmic reticulum (SR). The SR is a specialized type of endoplasmic reticulum found in muscle cells, including cardiac muscle cells.
It is responsible for regulating the levels of calcium ions in the cytoplasm, which is crucial for muscle contraction.
When a cardiac muscle cell is stimulated to contract, calcium ions are released from the SR into the cytoplasm. This influx of calcium ions triggers a series of biochemical reactions that ultimately lead to muscle contraction. When the contraction is complete, the calcium ions are pumped back into the SR, where they are stored until the next contraction.
The importance of the SR in cardiac muscle function is highlighted by the fact that mutations in genes that encode proteins involved in SR function can lead to heart disease. For example, mutations in the gene that encodes the SR calcium release channel (ryanodine receptor) are associated with arrhythmias and heart failure.
In summary, the sarcoplasmic reticulum is the organelle in the cardiac muscle that stores calcium, and its proper function is essential for normal cardiac muscle contraction and heart health.
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The fixed idea in Symphonie fantastique represents
A. a carnival.
B. the artist's beloved.
C. a dance..
D. a river.
Answer:
B. the artist's beloved.
Explanation:
Life appeared 3.5 billion years ago. What was the first life on earth?
Prokaryotic single celled organisms
Eukaryotic single celled organisms
Multicellular organisms
The two-word name assigned to every species, as devised by linnaeus, consists of the ______ of the organism followed by a second word that designates the species
Answer:
Genus.
The first is Genus which is Capitalized and second is species which is not capitalized.
for example Homo sapiens for Humans
A young child has been diagnosed with a rare genetic mutation in a protein called myostatin, which plays a role in regulating muscle growth. the child has very high amounts of muscle and very little fat because of the mutation. having such high muscle content makes the child stronger and faster than peers, allowing the child to excel in sports. the parents must provide enough fat in the child’s diet to keep the brain healthy since the body cannot store fat.
how is the mutation experienced by this child best classified?
The child's rare genetic mutation in myostatin results in very high muscle content and very little fat in the body.
While this gives the child advantages in sports due to increased strength and speed, it also poses a risk to brain health since the body cannot store fat.
Fat is essential for the development and functioning of the brain, and therefore, the child's diet must include sufficient amounts of fat to keep the brain healthy.
The parents may need to work with a nutritionist or doctor to ensure that the child's diet includes enough healthy fats, such as omega-3 fatty acids, which can be found in foods like fish, nuts, and seeds, to support brain function and overall health.
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Which organelle stores the information that determines an individual's hair color?
A. Organelle 1
B. Organelle 2
C. Organelle 3
D. Organelle 4
The organelle that stores the information that determines an individual's hair color is the nucleus. The genetic information or DNA, which contains the instructions for making proteins including those that determine hair color, is stored in the nucleus of cells.
The nucleus is the organelle that contains the data that establishes a person's hair color. Chromosomes in the nucleus include genes that are responsible for a number of characteristics, including hair color. Melanin, the pigment that gives hair its colour, is produced according to the instructions provided by these genes. Blonde, brown, black, or red hair can all be produced by different variations of these genes. Therefore, each cell's nucleus contains DNA, which contains the information about hair color.
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Complete question is:
The diagram below shows parts of the cell. Which organelle stores the information that
determines an individual's blood type?
Organelle 1
Organelle 2
Organelle 3
Organelle 4
several general characteristics of metabolic reactions or reaction pathways are listed. classify them into the appropriate metabolic category.
General characteristics of metabolic reactions are of 3 types :anabolic reaction, catabolic reaction and amphibolic reactions
Further explanation on the above reactions and there work are given below,
- Catabolic pathways: break down large molecules into smaller ones, releasing energy. Example characteristics include:
- Produce ATP - Release energy - Degrade molecules- Anabolic pathways: build larger molecules from smaller ones, using energy. Example characteristics include:
- Consume ATP - Require energy - Synthesize molecules- Amphibolic pathways: have both catabolic and anabolic functions. Example characteristics include:
- Participate in both anabolic and catabolic reactions - Can convert between different forms of energy - Often involve key metabolic intermediatesTo know more about "ATP" refer here:
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Exchange are surfaces that are adapted to maximise the efficiency of and solute (a substance dissolved in a liquid) exchange across them
Exchange surfaces are those surfaces that are adapted to maximize the efficiency of solute exchange across them. These surfaces have many features that are designed to increase the rate of exchange.
For example, the surface area of exchange surfaces is often increased to allow for greater exchange of solutes. In addition, the surface may be made of materials that allow for faster diffusion of solutes.
Furthermore, the structure of the surface may be adapted to create channels or pores that allow for faster transport of solutes. Finally, the surface may be modified to contain specialized proteins, such as ion pumps, that allow for more efficient exchange of solutes.
Exchange surfaces are important as they allow for faster and more efficient exchange of solutes, and thus can have a significant impact on the overall rate of exchange.
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what do the guard cells in the dermal tissue of a plant do?
-extend into the soil and increase the surface area of the root
-control the passage of carbon dioxide, oxygen, and water vapor
-form a hard covering that turns into lignin and wood
-allow the plant to move in response to sunlight
Answer:
control the passage of carbon dioxide, oxygen, and water vapor
Explanation:
Guard cells are specialized plant cells in the epidermis of leaves, stems and other organs that are used to control gas exchange. They are produced in pairs with a gap between them that forms a stomatal pore.
which of the following is not a characteristic of members of the domain archaea? answer unselected may be hyperthermophiles or extreme halophiles unselected cause disease in humans unselected carry out unusual metabolic processes unselected found in extreme environments sure i am sure lack peptidoglycan in cell walls
The characteristic that is not found in members of the domain archaea is the lack of peptidoglycan in their cell walls.
Archaea are single-celled organisms that have a distinct cellular structure from both bacteria and eukaryotes. They are found in a wide range of environments, from extreme hot springs to deep-sea vents, and are known for their ability to carry out unusual metabolic processes.
Some archaea, such as hyperthermophiles, thrive in extremely high temperatures, while others, like extreme halophiles, can tolerate highly saline conditions. Despite their ability to survive in harsh environments, archaea are not known to cause diseases in humans.
In fact, some archaea have been found to have potential benefits for human health, such as producing antibiotics and aiding in the digestion of food. Overall, the lack of peptidoglycan in the cell walls of archaea sets them apart from bacteria and is a key characteristic of this domain.
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