Answer:
1. selectively permeable
2. proteins, carbs, & lipids
3. to control what enters and leaves the cell
Explanation: you're welcome ;)
Genetic variation occurs in all organisms. Bacteria that cause ear infections, for example, are genetically similar and produce the same effect, but some variations may exist such that some of the bacteria might be resistant to antibiotics, while others are not.
Which of the following would increase the antibiotic resistant bacterial populations?
A.
newer and better antibiotics
B.
contracting multiple diseases simultaneously
C.
using a warm-air humidifier
D.
an overusage of antibiotics
Reset Submit
Answer: D
Explanation: The more antibiotics are used the more the bacteria is exposed to the antibiotics. This helps the bacteria get used to the antibiotics becoming immune.
The Earth's core has an estimated temperature between
6,000°C and 7,000°C.
1,000°C and 2,000°C.
500°C and 1,000°C.
8,000°C and 9,000°C.
Epigenetic changes may be__ but they aren’t necessarily___
Epigenetic changes may be heritable, but they aren't necessarily permanent.
Epigenetic changes can be passed down from one generation to the next, but they can also be modified by environmental factors and are not necessarily permanent.
Hope that helps! Good luck! :)
Name the appendages found on the head of a crayfish.
The appendages on the head of a crayfish are crucial for the survival of the organism. The antennae help the crayfish to perceive its environment, while the mandibles and maxillae aid in feeding.
The maxillipeds and chelipeds are important for defense and capturing prey. The walking legs are involved in locomotion and other activities such as grooming and feeding. All of these appendages work together to help the crayfish survive and thrive in its environment.
The appendages found on the head of a crayfish are:
1. Antennae: There are two pairs of antennae present in crayfish. The first pair of antennae are used for sensory perception, while the second pair is used for feeding.
2. Mandibles: The mandibles are the mouthparts of the crayfish. They are used for biting and crushing food.
3. Maxillae: There are two pairs of maxillae present in crayfish. The first pair is used to manipulate food, while the second pair aids in respiration.
4. Maxillipeds: There are three pairs of maxillipeds present in crayfish. They are used for feeding and defense.
5. Chelipeds: There are two pairs of chelipeds, which are the large claws present on the front of the crayfish. They are used for defense and capturing prey.
6. Walking legs: There are four pairs of walking legs present in crayfish. They are used for locomotion and are also involved in grooming and feeding.
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HURRY PLEASE
A film company is going to make an animated film showing how coal formed.
Your job is to create storyboards and text that can provide information for the animator. Sketch three or four storyboards that show the process of fossil fuel formation, and write an explanatory caption for each storyboard
The first storyboard shows a barren landscape. The second storyboard shows much larger plants and animals can be seen. The third storyboard shows the plants and animals are no longer visible. The fourth storyboard shows sedimentary rock is covered with layers of rock.
Storyboard 1: The first storyboard shows a barren landscape. There is a layer of sedimentary rock covering the ground. In the distance, small plants and animals can be seen.
Caption: Millions of years ago, Earth was a barren landscape, with sedimentary rock covering much of the ground. Small plants and animals could be seen in the distance.
Storyboard 2: The second storyboard shows the same landscape, but now, much larger plants and animals can be seen. The sedimentary rock is still present.
Caption: Over time, the plants and animals got larger and more diverse, while the sedimentary rock remained.
Storyboard 3: The third storyboard shows the same landscape, but now, the plants and animals are no longer visible. Instead, large amounts of dead plants and animals can be seen. The sedimentary rock is still present.
Caption: Eventually, the plants and animals died, leaving large amounts of dead plant and animal matter behind. The sedimentary rock still remained.
Storyboard 4: The fourth storyboard shows the same landscape, but now, the sedimentary rock is covered with layers of rock.
Caption: Over time, more layers of rock buried the sedimentary rock and the dead plants and animals.
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a bacteriophage uses lysogenic cycle to replicate itself. Describe the bacteriophage replication process
The 6 steps of the lysogenic cycle are described bellow, these are:
AttachmentPenetrationIntegrationReplicationLysogenic stateInductionHow does the bacteriophage replication process works?
The lysogenic cycle is one of the two replication cycles employed by bacteriophages, which are viruses that infect bacteria. In the lysogenic cycle, the bacteriophage's genetic material is integrated into the host bacterium's DNA, and the phage DNA replicates along with the bacterial DNA during cell division. The key steps of the bacteriophage replication process in the lysogenic cycle are as follows:
Attachment: The bacteriophage attaches to a specific receptor on the surface of the host bacterium, using its tail fibers or other surface proteins. This attachment is essential for the phage to infect the bacterium.
Penetration: The phage injects its genetic material, either DNA or RNA, into the host bacterium through the cell wall and membrane using its tail or other specialized structures. The phage genetic material takes over the host bacterium's cellular machinery.
Integration: The phage genetic material becomes integrated into the host bacterium's DNA. It is often inserted into a specific site in the bacterial genome, and this integrated phage DNA is known as a prophage.
Replication: The integrated phage DNA is replicated along with the host bacterium's DNA during bacterial cell division. As the host bacterium multiplies and divides, the phage DNA is also replicated, and the progeny cells carry the phage DNA.
Lysogenic state: The host bacterium continues to grow and divide, and the phage DNA remains integrated in its genome. The bacterium, now called a lysogen, can pass on the integrated phage DNA to its progeny cells, allowing the phage DNA to be replicated in subsequent generations without causing immediate harm to the host bacterium.
Induction: Under certain conditions, such as environmental stress or changes in the host bacterium's physiology, the prophage may be induced to enter the lytic cycle. This triggers the production of new phage particles, and the host bacterium is ultimately lysed (destroyed) to release the newly formed phages.
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Directions: classify the following cleaners. write dc for detergent, sc for solvent cleaners,
ac for acid cleaners, and abc for abrasive cleaners on the space provided.
____1. muriatic acid
____2. vinegar
____3. scouring pad
____4. dishwashing soap
____5. sandpaper
____6. bleach
____7. bar soap
____8. salt
Salt is not a traditional cleaner, but can enhance the effectiveness of other cleaning agents when used in combination with them.
1 - ac (acid cleaner)
2 - ac (acid cleaner)
3 - abc (abrasive cleaner)
4 - dc (detergent cleaner)
5 - abc (abrasive cleaner)
6 - ac (acid cleaner)
7 - dc (detergent cleaner)
Salt is a common household ingredient used for a variety of purposes, but it is not typically classified as a cleaner. While it can help remove stains and odors from surfaces, salt is not designed specifically to clean or disinfect.
That being said, salt can be used in combination with other cleaning agents to enhance their effectiveness. For example, a mixture of salt and vinegar can be used to clean and disinfect cutting boards, while a paste of salt and lemon juice can be used to clean copper or brass surfaces.
Overall, while salt is not a traditional cleaner on its own, it can be a useful addition to a cleaning routine when used in combination with other cleaning agents.
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Question 3(Multiple Choice Worth 3 points)
(06. 03 LC)
What are some of the immune functions of the lymphatic system?
O Cleaning red blood cells from the blood and creating lymph fluids
Transporting lymph to the tissues and creating lymph fluids
O Removing infectious agents and making white blood cells
O Making red blood cells and removing infectious agents
Question 4 Multiple Choice Worth 3 points)
(06. 03 MC)
Answer:
O) Removing infectious agents and making white blood cells are some of the immune functions of the lymphatic system.
Give a reason why the total population in the world might be close to 50:50 males to females, but any one family, town, state, country might have a 50:50 ratio
The total population in the world may be close to a 50:50 ratio of males to females due to the biological nature of human reproduction.
The likelihood of conceiving a male or female child is determined by the sperm of the father, which carries either an X or a Y chromosome. Since there is an equal chance of conceiving a male or female child, over time, the natural balance of males to females is maintained.
However, any one family, town, state, or country may not have an exactly equal ratio of males to females due to various factors such as migration patterns, cultural practices, and social norms. For example, in some cultures, there may be a preference for male children, leading to a higher number of males being born. Conversely, in countries with higher rates of female education and employment, there may be more women than men. Additionally, migration patterns may result in a skewed gender ratio in certain areas.
Overall, while the biological likelihood of a 50:50 ratio of males to females is present, societal factors can lead to a different ratio in any given population.
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As you consider your answer, you might think about a spool of thread. If you pass a length of thread through the center hole, is the thread inside the spool?
Yes, the thread is inside the spool when it is passed through the center hole.
This is because the spool is a three-dimensional object with a hollow center, which is designed to hold the thread. Even if only a small portion of the thread passes through the center hole, it is still considered to be inside the spool because it is contained within the spool's structure.
From a technical standpoint, we could say that the thread is "partially" inside the spool. However, in everyday language, we would simply say that the thread is inside the spool. This is because the spool is primarily designed to hold the thread, and the fact that the thread is passing through the center hole is just a means of accessing it.
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Lactose intolerance is inherited through a recessive allele. A husband and wife both digest lactose properly. However, the wife's Mom is lactose intolerant. The husband's Dad is also lactose intolerant. What is the probability this couple will have children with a lactose intolerance problem?
There is a 25% chance that each child will inherit two dominant alleles for lactose tolerance and be completely lactose tolerant. Therefore, the probability that this couple will have children with a lactose intolerance problem is 25%.
If both the husband and wife digest lactose properly, then they both have at least one dominant allele for lactose tolerance. However, since the wife's mother is lactose intolerant, she must have two recessive alleles for lactose intolerance. This means that the wife has one dominant allele for lactose tolerance and one recessive allele for lactose intolerance.
Similarly, since the husband's father is lactose intolerant, he must also have two recessive alleles for lactose intolerance. This means that the husband has one dominant allele for lactose tolerance and one recessive allele for lactose intolerance as well.
When these two individuals have children, each child will inherit one allele from each parent. Since both parents have a recessive allele for lactose intolerance, there is a 25% chance that each child will inherit two recessive alleles for lactose intolerance and therefore be lactose intolerant.
However, there is also a 50% chance that each child will inherit one dominant allele for lactose tolerance and one recessive allele for lactose intolerance, making them lactose tolerant but still carriers of the recessive allele for lactose intolerance. Finally, there is a 25% chance that each child will inherit two dominant alleles for lactose tolerance and be completely lactose tolerant. Therefore, the probability that this couple will have children with a lactose intolerance problem is 25%.
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If the mouse population disappeared
from the ecosystem, the fox would
most likely-
A hunt owls and birds
Beat grasses and grains
C disappear from the food web
D eat more rabbits and squirrels
Answer: D. Eat more rabbits and squirrels
Explanation: If the mouse population disappeared from the ecosystem, the fox would most likely eat more rabbits and squirrels.
When a species fails to produce any more
descendants, it is said to
A. be extinct
B. be divergent
C. have speciated
D. have become isolated
Answer: A. Become Extinct
Explanation:
Since the species has no more living descendants and failed to reproduce more, it would be extinct.
What statement is best supported by the survivorship curves?
A. American robins have a high survival rate for most of their lifespan and then decline rapidly in old age.
B. American robins have similar death rates throughout their lifespan, while the death rate of common green darners changes over their lifespan.
C. A very high proportion of common green darners reach adulthood and live to older ages.
D. Younger American robins have higher death rates than older American robins, while younger and older common green
Survivorship curves are graphs that show the proportion of individuals in a population that survive to each age. Based on the survivorship curves, the statement that is best supported is option A: American robins have a high survival rate for most of their lifespan and then decline rapidly in old age.
Survivorship curves are categorized into three types: Type I, Type II, and Type III. Type I curves show a high survival rate for most of an organism's lifespan, with a rapid decline in old age. Type II curves show a relatively constant death rate throughout an organism's lifespan, while Type III curves show a high death rate for young individuals, with a sharp decrease in death rate for those that survive to adulthood.
The survivorship curve for American robins shows a Type I pattern, indicating that they have a high survival rate for most of their lifespan, with a rapid decline in old age. In contrast, the survivorship curve for common green darners shows a Type III pattern, indicating that they have a high death rate for young individuals, with a sharp decrease in death rate for those that survive to adulthood.
Therefore, option A is the statement that is best supported by the survivorship curves.
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Orchids are epiphytes that live on the surface of trees. Orchids get their nutrients from the air, rain, and debris that accumulate around them.
What type of symbiosis is this? Explain your answer in 2 to 3 complete sentences
This type of symbiosis is known as commensalism, where one organism benefits from the relationship while the other is neither helped nor harmed.
In this case, the orchids benefit by obtaining nutrients and support from the tree without causing any harm to the host tree. The tree is not affected by the presence of the orchids, but rather serves as a convenient location for them to grow and obtain nutrients.
This type of symbiosis is common in many ecosystems, where different species interact with each other in different ways, ranging from mutualism to parasitism.
In the case of orchids, the relationship is an example of how organisms can coexist and benefit from each other without causing harm or competing for resources.
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A shade-loving plant thrives underneath the trees in a forest. when the seeds of the plant are blown into areas where the plant receives direct sunlight, the seed sprouts but the young plant soon dies. if a series of mutations occurred in the plant that caused the plant to need more sunlight, when might the mutated plants survive?
The mutated plants might survive if the mutations result in adaptations that allow the plant to better tolerate or utilize direct sunlight.
Shade-loving plants have adapted to thrive in low light conditions by developing traits such as large leaves with a low surface area to volume ratio to maximize light absorption and photosynthesis in low light conditions. These adaptations are not beneficial in direct sunlight as they may cause the plant to overheat or lose too much water through transpiration.
If the series of mutations in the plant lead to adaptations such as smaller leaves with a higher surface area to volume ratio, increased production of protective pigments or the ability to utilize different wavelengths of light, the mutated plant may be better suited to survive and thrive in direct sunlight.
However, it is important to note that the process of natural selection is slow and not all mutations lead to beneficial adaptations. Additionally, the plant's survival in direct sunlight may also depend on other factors such as soil composition and water availability.
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I'm 16 and I'm 5'11 and my dad is only 5'7. Also my mom is only 5'5, how is this possible?
When a plant lacks water, the vacuole shrinks causing the plant to wilt. This is a response of what internal stimuli?.
The plant's response to lack of water and subsequent wilting is an example of a response to an internal stimulus. Internal stimuli are changes that occur within an organism's body, such as changes in hormone levels or nutrient availability, that can trigger physiological responses.
In the case of plants, water is essential for maintaining cell turgor pressure, or the pressure that water molecules exert against the cell wall. When a plant lacks water, the vacuole, which is a membrane-bound organelle that stores water and other substances, shrinks. This causes the cell to lose turgor pressure and the plant to wilt.
The plant's response to water deprivation involves various physiological and biochemical mechanisms that allow the plant to conserve water and maintain cellular homeostasis. These mechanisms may include closing stomata (pores on the surface of leaves) to reduce water loss through transpiration, producing drought-resistant proteins and sugars, and activating signaling pathways that regulate gene expression and cellular metabolism.
Overall, the plant's response to lack of water and wilting is an important adaptation that allows it to survive in environments where water is limited, highlighting the complex and dynamic nature of plant physiology.
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Quick pls! 20 pts each Which of these statements best contrasts the dangers of working with cows versus horses?
Horses spook or startle quicker than cows do, but cows are more combative.
Cows tend to react as a herd, but horses react more quickly to danger.
Horses are more naturally aggressive than cows, but cows weigh more.
Cows are more territorial than horses, but horses are more protective
Working with cows and horses can present different dangers. Horses are more naturally aggressive than cows and spook or startle quicker than cows do.
This can make working with horses a bit more unpredictable than working with cows. However, cows are more combative and tend to react as a herd, so they can be more dangerous in certain situations. Moreover, cows are more territorial than horses, but horses are more protective.
This means that horses may be more likely to defend an area from a perceived threat, whereas cows may be more likely to attack a perceived intruder.
Additionally, cows weigh more than horses, so they can cause more physical damage if they become aggressive. Ultimately, it is important to recognize the different dangers that come with handling cows and horses and to take proper safety precautions when working with either animal.
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Give three importance of carbon cycle in maintaining balance in the composition of the environment
Answer:
Carbon compounds regulate the Earth's temperature, make up the food that sustains us, and provide energy that fuels our global economy.
How is the carbon cycle important to the balance of nature?
The carbon cycle is vital to life on Earth. Nature tends to keep carbon levels balanced, meaning that the amount of carbon naturally released from reservoirs is equal to the amount that is naturally absorbed by reservoirs. Maintaining this carbon balance allows the planet to remain hospitable for life.
What is the role of the carbon cycle in maintaining balance in the composition of air in the environment?
As plants and animals die, the carbon they were storing gets released back into the atmosphere and the cycle continues. Left undisturbed, the carbon cycle will keep the concentrations of carbon dioxide in the atmosphere balanced and global temperatures steady.
What are three ways that we can help to keep the carbon cycle balanced?
We can maintain the carbon cycle by burning less fossil fuels and using more solar energy or using wind power. Trees also use carbon dioxide through photosynthesis to make glucose, so we could also maintain it by cutting down less forests.
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Pls brainliest...
You are a farmer who raises swine. A case of swine flu has been reported nearby. What steps can you take to ensure your swine are less likely to contract the swine flu? What physical signs would you monitor in your swine to determine if a case might be occurring in your livestock? What would you do to protect your human workers from potential exposure?
4-5 sentences pls
Answer: sure
Explanation:
Swine flu can spread rapidly among pig populations, and it can also pose a risk to humans. Therefore, it is important for swine farmers to take appropriate measures to minimize the risk of swine flu outbreaks. These measures may include biosecurity practices, such as limiting contact with the swine and isolating new animals, as well as monitoring for symptoms of illness in the swine. If a case of swine flu is suspected, farmers should isolate the affected animals and seek veterinary assistance. To protect human workers from potential exposure, appropriate personal protective equipment should be provided, along with training on proper biosecurity practices and adequate sanitation facilities. By implementing these measures, farmers can help prevent swine flu outbreaks, protect the health of both animals and humans, and contribute to the overall well-being of their livestock.
which selective serotonin reuptake inhibitors has been associated with reports of cardiac defects quizelt
Paroxetine is the SSRI most commonly associated with reports of cardiac defects.
Selective serotonin reuptake inhibitors (SSRIs) are a class of medications commonly used to treat depression and anxiety disorders. They work by increasing the availability of serotonin, a neurotransmitter, in the brain. This results in improved mood and reduced anxiety symptoms.
Among SSRIs, Paroxetine (marketed as Paxil or Seroxat) has been associated with reports of cardiac defects, particularly when taken during the first trimester of pregnancy. Several studies have suggested that the use of Paroxetine may increase the risk of congenital heart defects in newborns, including ventricular and atrial septal defects. These defects involve abnormal openings in the walls separating the heart's chambers, leading to compromised blood circulation and potential health complications.
It is important to note that the overall risk of cardiac defects remains low, even among those exposed to Paroxetine during pregnancy. Nevertheless, the association has led to increased caution and recommendations for pregnant women or those planning to become pregnant to discuss alternative treatment options with their healthcare providers.
In summary, Paroxetine is the SSRI most commonly associated with reports of cardiac defects. Pregnant women and those planning to conceive should consult their healthcare providers about the potential risks and explore alternative treatments to maintain their mental health during pregnancy.
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Darwin discovered that variations in genes better adapt some individuals to their environment. How does this relate to natural selection?
A. They are more likely to survive, but would have more competition having those characteristics.
B. They are more likely to survive, but less likely to pass along those genes to offspring.
C. They are more likely to survive and reproduce, passing along those helpful characteristics.
D. They are more likely to survive, and change during their lifetimes by selectively using or not using various parts of their bodies.
Answer:
C. They are more likely to survive and reproduce, passing along those helpful characteristics
Explanation:
Darwin discovered that variations in genes better adapt some individuals to their environment. This relates to natural selection in that individuals with helpful characteristics are more likely to survive and reproduce, passing along those characteristics to their offspring. This process is known as natural selection, where the environment selects individuals with advantageous traits, allowing them to survive and reproduce at higher rates than individuals without those traits. Over time, this can lead to the evolution of new species as the frequency of advantageous traits increases in a population.
2. Sam and Jerry are having a discussion in their Environmental Science class. Sam
says that abiotic factors determine what biotic factors can be in an ecosystem. Jerry
says that biotic factors determine what abiotic factors can be in an ecosystem. Who
is correct? Use an example to support your answer. (2 points)
says that abiotic factors determine what biotic factors can be in an ecosystem. Jerry
The picture shows the fruit of the plant commonly called the beggar-tick. The spines on the tip of the
fruit help in its dispersal by allowing the fruit to be-
c. attached to animals
d.
eaten by birds
a. blown by the wind
b. carried on water
Answer:
Attached to animals
Explanation:
In some cases, our bipedal adaptations have changed areas of our bodies so much that it is difficult (if not impossible) for these areas to perform other functions. For example, our pelvis provides the areas of muscle attachment that we need, but its unusual shape makes human childbirth more difficult. The foot is another area that reflects the impact of bipedal specialization. What foot traits and corresponding functions seen in other primates has been lost in our feet, why would we have lost helpful features such as this?
We have lost helpful features Because The feet of other primates are adapted for both grasping and locomotion, with a wide range of motion that allows for climbing and leaping among branches.
In contrast, human feet are adapted for locomotion only, and as a result, human feet lack the grasping traits that other primates possess. The toes of humans are shorter and straighter than those of other primates, and the human foot lacks the strong curved arch and opposable big toe that are found in other primates.
This specialization of the human foot has been a result of bipedal adaptation, and has in turn led to the loss of certain helpful features. For example, with the loss of the curved arch, humans have much less balance than other primates, and the inability to grasp objects with the feet has led to the development and reliance on tools.
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The diagram below shows the steps of DNA replication.
Which of the following is the correct sequence of replication?
2, 1, 4, 3
3,4, 1, 2
3, 4, 2, 1
3, 1,4, 2
Answer:
B
Explanation:
Where did the alleles (or letters) of each individual’s genotype originate or come from?
The alleles of each individual's genotype originate from their parents. Each parent contributes one allele of each gene to the offspring, forming a unique combination of alleles.
This combination of alleles is known as a genotype. A genotype is made up of two alleles, one from each parent. Alleles are variations of genes, which are the instructions for making proteins in a cell. These instructions are passed from parents to their offspring, and the combination of alleles is what makes each individual unique.
All of the alleles that make up an individual's genotype come from their parents, each parent contributing a unique set of alleles. This is why siblings may look similar but still be genetically distinct from one another.
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which method of fossilization is correctly described? which method of fossilization is correctly described? a fossil impression is created when an organism that was preserved in amber decomposes, leaving an empty space that takes its shape. a mold of an organism is created when a cast is infilled with mineral matter. carbonization encases delicate plants and animals in the hardened resin of ancient trees. permineralization is the process in which pores in bones and wood are permeated by mineral-laden water. a cast of an organism faithfully reflects only the outer surface of an organism
The correct method of fossilization described as permineralization is the process in which pores in bones and wood are permeated by mineral-laden water, the correct option is D.
Permineralization is a type of fossilization that occurs when mineral-rich water permeates the pores and spaces within bones, shells, or wood and deposits minerals in the spaces, effectively creating a mineralized replica of the original organism.
This type of fossilization is commonly seen in petrified wood, where the cellular structure of the wood is replaced by minerals such as quartz or calcite. Permineralization can also occur in bones, creating fossils that preserve the shape and structure of the original animal, the correct option is D.
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The complete question is:
Which method of fossilization is correctly described?
A. A fossil impression is created when an organism that was preserved in amber decomposes, leaving an empty space that takes its shape.
B. A mold of an organism is created when a cast is infilled with mineral matter.
C. Carbonisation encases delicate plants and animals in the hardened resin of ancient trees.
D. Permineralization is the process in which pores in bones and wood are permeated by mineral-laden water.
E. A cast of an organism faithfully reflects only the outer surface of an organism
The diversity of alleles and genotypes within a population is known as:.
Answer:
genetic variance.
Explanation:
The diversity of alleles and genotypes within a population is known as genetic variance.