Archeology helps people and society to make informed decisions about what?

Answers

Answer 1

Answer:

Explanation:

analysis of artifacts, structures, and other physical remains. It helps people and society to make informed decisions about a wide range of things, such as:

Cultural Heritage Preservation: Archaeology can help to preserve and protect cultural heritage sites, such as historic buildings, monuments, and archaeological sites, for future generations to learn from and appreciate.

Environmental Conservation: Archaeology can provide important information about how past societies interacted with their environment and managed natural resources. This information can help us make informed decisions about how to sustainably manage our environment and resources.

Urban Planning: Archaeological data can inform urban planners about the history of a particular area and help them make decisions about how to develop it in a way that is both respectful of its history and sustainable for the future.

Public Education: Archaeology can be used to educate the public about history and cultural heritage, and to promote a greater understanding and appreciation of the diversity of human cultures.

Policy-making: Archaeological research can provide important information about past social, economic, and political systems that can inform modern-day policy-making. For example, archaeological research has contributed to our understanding of the origins of agriculture and the development of early political systems, which can inform modern-day agricultural and political policies.


Related Questions

drag the images to their corresponding class to test your understanding of various types of microbiological stains.

Answers

Images 2 and 5 belong to gram stain, image 3 belongs to negative stain, image 4 belong to simple stain, and image 1 belongs to acid-fast stain.

What is staining?

Staining is a technique used to magnify and contrast a biological specimen at the microscopic level in microbiology. For histological analyses and diagnostic purposes, the specimen is highlighted at the microscopic level using stains and dyes before being examined at higher magnification.

There are four types of staining and that are gram stain, negative stain, simple stain, and acid-fast stain.

Thus, images 2 and 5 belong to gram stain, image 3 belongs to negative stain, image 4 belongs to simple stain, and image 1 belongs to acid-fast stain.

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Your question is incomplete, most probably the full question is this:

drag the images to their corresponding class to test your understanding of various types of microbiological stains.

The image is attached below:

Which of the following is NOT part of the attempt to address overfishing by the Magnuson-Stevens Fishery Conservation and Management Reauthorization Act?

A) Establishing quotas for fishing
B) Research on marine environments
C) Compensation for sustainable fishing practices
D) Setting aside 200 nautical miles of the U.S. coast​

Answers

The one that is  NOT part of the attempt to address overfishing by the Magnuson-Stevens Fishery Conservation and Management Reauthorization Act is : Setting aside 200 nautical miles of the U.S. coast is NOT part of the attempt to address overfishing by the Magnuson-Stevens Fishery Conservation and Management Reauthorization Act. Option D) is the correct answer.

What is  Magnuson-Stevens Fishery Conservation and Management Act?

The Magnuson-Stevens Fishery Conservation and Management Act primarily focuses on the conservation and management of marine fishery resources in the United States. The Act addresses overfishing by implementing a number of measures, including establishing quotas for fishing, conducting research on marine environments, and promoting sustainable fishing practices. However, the Act does not include a provision for setting aside 200 nautical miles of the U.S. coast.

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The following which is not part of the attempt to address overfishing by the Magnuson-Stevens Fishery Conservation and Management Reauthorization Act is research on marine environments and is therefore denoted as option A.

What is  Magnuson-Stevens Fishery Conservation and Management Reauthorization Act?

This is referred to as the primary law that governs marine fisheries management in U.S. federal waters and it fosters the long-term biological and economic sustainability of marine fisheries.

It is however not concerned with research on marine environments which is therefore the reason why it was chosen as the correct choice.

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If the ecosystem is a closed system, which of these things does not change as it cycles through the ecosystem?

A. the location of matter
B. the form of matter
C. the total amount of matter
D. all of these

Answers

Answer:

c

Explanation:

it is c, the total amount of matter won't change as its closed

What are homologous chromosomes?
Chromosomes that are the same length
Chromosomes that are completely different
than one another
Chromosomes that are identical to each other
in every single way

Answers

Answer:

chromosomes that are identical to each other in every single way

Explanation:Homologous chromosomes are those chromosomes which pair up during the time of fertilization . They consist of same genes which are present at same loci. During the time of fertilization when maternal and paternal chromosomes segregated and each one of them pair up i.e one comes from maternal side and other from paternal side and leads to the formation of homologus chromosomes.

What is not used as evidence to support evolution?

Answers

The evidence in support of evolution is not provided by the most well adapted individuals will not always reproduce the most fit offspring.

What is natural selection?

Natural selection is the process by which populations adapt and evolve to conditions. Well-adapted individuals survive and reproduce better because they produce well-adapted offspring.

One of the driving mechanisms of evolution is natural selection. Thus, nature uses selective pressures (environmental factors) in the environment of organisms to select or favor optimal organisms over non-optimal organisms, increasing gene flow and thereby recognizing individuals as adaptive organisms. resulting in increased populations of the herd and subsequent offspring.

Natural selection is caused by mutations that cause mutations. These interrelated forces altered the genotypes of adapted organisms, giving them a superior advantage over less fit organisms. Over time, populations of adapted organisms evolved to dominate the environment, while populations of less-adapted organisms disappeared.

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Natural variation is simply the distinctions between individual cells, organisms, or species. This does not offer proof of evolution.

What is variation exactly?

Any difference between both the individuals inside a species or between groups of organisms from any species is referred to as variation. Genetic variety is mostly caused by mutation, but other processes like sexual reproduction & gene flow also play a role.

What does cell variation entail?

Cell-to-cell variation can be described most simply as the expression of the same gene at different levels in genetically and chronologically identical cells. For isolated single cells, the explanation is adequate, but in a multicellular organism, there may be more to it.

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FILL IN THE BLANK. Wetlands provide a multitude of ecological, economic, and social benefits. They provide habitat for many organisms and are nurseries for many saltwater and freshwater fishes and shellfish. Wetlands also hold and slowly release floodwater and snow melt, recharge groundwater, act as cleansing filters, recycle nutrients, and provide recreation. As of 2000, the contiguous United States was estimated to have about 105 million acres of wetlands remaining. Over the past 60 years, it has lost over 16 million acres of wetlands, and the loss continues at about 58,000 acres annually. Nearly one-third of the loss is due to urban development, with the rest being nearly equally divided between rural development, agriculture, and silviculture (predominantly logging). The southeastern United States is experiencing the greatest losses. The Emergency Wetlands Resources Act of 1986 requires the Fish and Wildlife Service to conduct status and trend studies of the nation's wetlands and to report the results to Congress each decade. The overall goal is to have no more net loss of wetlands. In the past 5 years, money for flood control projects in Louisiana has been cut dramatically. During that time, two simulations, one of a category 4 hurricane and one of a category 5 hurricane, indicated catastrophic damage and loss of life along the Gulf Coast. The levees were predicted to break, and massive flooding to occur, in part due to the loss of the sheltering wetlands.
Wetlands in the United States ________.
-have increased due to natural causes, such as floods and hurricanes
-have decreased due to human development
-have stayed about the same over the past 40 years
-have decreased due to natural causes, such as floods and hurricanes
-have increased due to human development

Answers

Wetlands in the United States have decreased due to human development.

What are wetlands?

Wetlands is a distinct ecosystem that is flooded / saturated by water,  permanently or seasonally. Flooding results in the oxygen-free processes prevailing, especially in soils.

Over the past decades, wetlands have been drained and filled in to make way for agriculture, urbanization and other types of development. This has led to significant loss of wetland habitat and ecosystem services they provide like flood control, water filtration, and wildlife habitat. Despite efforts to protect and restore wetlands,  overall extent continues to decline in many parts of country.

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infoldings of the prokaryotic plasma membrane are thought to have given rise to the eukaryotic endomembrane system that includes which of the following? multiple choice question.

Answers

Infolding of the prokaryotic plasma membrane is thought to have given rise to the eukaryotic endomembrane system that includes the endoplasmic reticulum and nuclear envelope.

How did a prokaryotic cell give rise to the eukaryotic cell?

A prokaryotic cell eventually gives rise to the eukaryotic cell through the process of endosymbiosis theory. According to this theory, the first eukaryotic cells evolved from a symbiotic relationship between two or more prokaryotic cells.

The endomembrane system of prokaryotic cells generally includes certain cell organelles like the endoplasmic reticulum, Golgi complex, lysosomes, and vacuoles. These systems are further modified into eukaryotic cells through endosymbiosis mechanisms.

Therefore, the infolding of the prokaryotic plasma membrane is thought to have given rise to the eukaryotic endomembrane system that includes the endoplasmic reticulum and nuclear envelope.

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HELPPPPPPPPPPPPPPPPP​

Answers

Compass Rose - Okay, so this is a true yes. It literally tells you which direction is North, East, South, and West. You can always remember this by the phrase of Never Eat Soggy Waffles.

Legend - Okay, so this is a no. Legends tell you about specific symbols located on a map, not direction.

Latitude and Longitude Lines - No. So, these lines refer to a coordinate point on the world map, this does not indicate direction. These lines are helpful for if someone gave you a coordinate point to look for.

Arrow pointing north - Yes, this can indicate a direction, especially since it points North.

Answer:

A and D

Explanation:

Only Compass Nose and Arrow pointing North

Conclusion: Use your data to answer the following questions. Use complete sentences, and be as detailed as possible. 1. How did scientists discover that all living things are made of cells? 2. How did Pasteur’s experiment with the flasks help disprove the idea that living things could just appear or come from nonliving things like water and air? 3. Why are nutrients needed for living things? Describe the difference between living and nonliving things.

Answers

Utilize full phrases, and be as specific as you can. 1. Explain how the test factor you selected changed the level of water in

What characteristics does water have?

Although the structure of water molecules (H 2 O) is straightforward, the compound's physical and chemical characteristics are incredibly complex and untypical of most substances on Earth.

Describe water.

The earth, the atmosphere, the sky, the mountains, the gods and humans, the species down to worms, flies, and ants are all made of water in various ways. These are all several types of water. Reflect on the water

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FILL IN THE BLANK Sometimes, older xylem cells lose their ability to conduct water when the protoplasts of adjacent parenchyma cells protrude into the xylem. These protrusions, or _______ create a spot where resins and tannins accumulate.

Answers

Sometimes, older xylem cells lose their ability to conduct water when the protoplasts of adjacent parenchyma cells protrude into the xylem. These protrusions, or Vascular cambium create a spot where resins and tannins accumulate.

What is Vascular cambium?

Vascular cambium continues to divide, and cells of its inner surface differentiate to form additional secondary xylem cells.

The xylem tracheary elements comprises cells called tracheids and vessel members, both of which are usually hollow, normal, and elongated.

Therefore, the tracheids are less unique in comparison to the vessel members and are the only kind of water-conducting cells in the majority of gymnosperms and seedless vascular plants.

Therefore,  Vascular cambium create a spot where resins and tannins accumulate.

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You do a Gram stain on a known mixed culture and all you see are red-stained bacteria. It had been a long time since you did a Gram stain, and you did not have a written procedure to follow so you may have messed up a step. Choose all of the following scenarios which could be true.
Select one or more:
a. The culture contains only Gram-negative bacteria
b. You may have decolorized too long
c. The culture could contain Stapylococci that are older than 24 hrs
d. You forgot to add iodine

Answers

There are exclusively Gram-negative bacteria present in the culture. Maybe you've been decolorizing too long. The Stapylococci in the culture may be older than 24 hours. You failed to include iodine.

Where can you often find gram-negative bacteria?

Sink drains, refrigerator condensate pans, and other sources of standing water are the principal sources of Gram-negative bacteria contamination in ISO-classified environments.

Gram-negative bacteria: beneficial or harmful?

Gram-negative bacteria (GNB) are among the most serious public health issues in the world because of their high level of antibiotic resistance. Hospitals must take these bacteria seriously because they put patients in the intensive care unit (ICU) at risk and increase morbidity and mortality.

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fungi is benefical to us because of the following reason:

《1》 they are a source of oxygen.
《2》 they can clean up pollution.
《3》 they are a source of antibiotics
《4》 they help to clean run off from waste​

Answers

Answer: ITS 33333333

Explanation: ik im right

A Biology student is investigating DNA replication in peony flowers; which of the
following is a specific and testable question that could guide their research?
A. What is the complementary DNA strand sequence of a peony flower?
B. What is the rate of error in DNA replication?
C. What is the error rate in complementary DNA strand sequences of peony flower
after replication?
D. What is the DNA sequence of a peony flower?

Answers

Answer: C. What is the error rate in complementary DNA strand sequences of peony flower after replication?

Explanation: This is a specific and testable question because the student can analyze the DNA sequence of a peony flower before and after replication, and compare the two sequences to determine the error rate in the complementary DNA strands.

ryptic molecular variation uncovered by enzyme electrophoresis in the 1960s stimulated development of the neutral theory because of which of the following reasons?

Answers

The cryptic molecular variation uncovered by enzyme electrophoresis played a key role in the development of the neutral theory by challenging existing assumptions and providing a new framework for understanding the patterns of genetic variation observed in nature.

What is genetic variation?

Genetic variation refers to the diversity of genetic information, or alleles, that exist within and among populations of organisms. It arises from changes, or mutations, in the DNA sequence of genes over time.Genetic variation can occur at different levels, such as at the nucleotide level (i.e., changes in individual DNA letters), gene level (i.e., changes in the entire gene sequence), or chromosome level (i.e., changes in the number or structure of chromosomes).Genetic variation can have different effects on an organism's phenotype (observable traits), including no effect, beneficial effect, or harmful effect. Genetic variation is the basis of evolution by natural selection, as it provides the raw material for the process of adaptation, speciation, and ultimately, biodiversity.

The cryptic molecular variation uncovered by enzyme electrophoresis in the 1960s stimulated the development of the neutral theory for several reasons:

Enzyme electrophoresis revealed that there was much more genetic variation in populations than previously thought. This observation challenged the prevailing view of the time, which held that most genetic variation was subject to natural selection.

The neutral theory proposed that much of this variation was selectively neutral, meaning that it did not confer any advantage or disadvantage to individuals carrying it. This was in contrast to the traditional view that genetic variation was largely adaptive.

The neutral theory was able to explain the observed patterns of molecular variation using simple mathematical models. This made it an attractive alternative to more complex, but less parsimonious, explanations based on natural selection.

The neutral theory helped to reconcile conflicting observations from different areas of biology, such as the apparent constancy of molecular evolution rates over long periods of time and the high levels of genetic variation observed within populations.

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What codon triplet makes up Leucine and how does this codon triplet create Leucine?

Answers

The codon triplet that makes up Leucine is UUA.

What does codon triplet mean?

A codon triplet is three nucleotide bases (DNA or RNA) that form the genetic code for a particular amino acid or stop signal. The sequence of codons in a gene's DNA or messenger RNA determines the sequence of amino acids in a protein. Each codon triplet corresponds to a specific amino acid, or signals the end of a protein. Codons are formed from the four nucleotides adenine (A), cytosine (C), guanine (G), and thymine (T).For example, the codon triplet UUU encodes the amino acid phenylalanine, while UAG signals the end of a protein.

This codon triplet creates Leucine by specifying the mRNA codon sequence that is read by the ribosome and translated into an amino acid sequence. The UUA codon signals the ribosome to attach the amino acid Leucine to the growing polypeptide chain.

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A cross between two F1 pink dahlia yields plants with 9 varieties of flower color. This is an example of
A. complete dominance.
B. incomplete dominance.
C. co-dominance.
D. polygenic inheritance.
E. linkage.

Answers

A cross between two F1 pink dahlia yields plants with 9 varieties of flower color. This is an example of co-dominance.

What is F1 pink dahlia yields plants?

The term "F1 pink dahlia" refers to the first generation of a cross between two different pink dahlia plants, which are known as the parental generation or P generation. When the P generation plants are crossed, their offspring are referred to as the F1 generation. The F1 generation will have a combination of genetic traits inherited from both parental plants.

Co-dominance is a type of inheritance pattern where both alleles of a gene are expressed equally in the phenotype of the individual. In the case of the pink dahlias, the two F1 parents each had a different allele that contributed to the color of the flower. When these two alleles were combined in the offspring, both were expressed equally, resulting in a range of flower colors that exhibited characteristics of both parental alleles. This produced 9 varieties of flower color in the offspring, indicating a co-dominant inheritance pattern.

Complete dominance occurs when one allele completely masks the expression of the other allele in the heterozygous individual, resulting in only one phenotype being expressed. Incomplete dominance occurs when neither allele is completely dominant over the other, resulting in a blending of phenotypes in the heterozygous individual.

Polygenic inheritance occurs when a trait is controlled by multiple genes, each contributing a small effect to the phenotype. Linkage occurs when two or more genes are physically located close together on the same chromosome and tend to be inherited together.

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A cell is placed in a hypertonic solution. Which will most likely occur as homeostasis is maintained in the cell?.

Answers

Answer:

shrivel and die

Explanation:

A cell placed into a hypertonic solution will shrivel and die by a process known as plasmolysis. An isotonic solution is any external solution that has the same solute concentration and water concentration compared to body fluids. In an isotonic solution, no net movement of water will take place.

Please help me answer this question ASAP!!

Answers

Both claims are wrong because the expression represents the quotient of 9 and y times the product of 3 and t.

What is the correct description of the given expression?

The correct description of the given expression 9/y (3t) is obtained from the order of mathematical operation.

The expression represents the quotient of 9 and y times the product of 3 and t.

This is given below:

9/y (3t) = 9/y * (3 * t)

Therefore:

Student A who represents the expression as the product of 9 and y times the product of 3 and t is wrong.

Student B  who represents the expression as the quotient of 9 and y times the sum of 3 and t is also wrong.

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a. Describe what happened during the above light forest simulation in 2-3 sentences.
Type your answer here:

Answers

Aunty has 2 apples and gave away three and now she has -1 apples

a student argues that some microorganisms are harmful. which is evidence the student could use to support her argument.

《1》 Some bacteria cause diseases.
《2》 Some fungi are microorganisms.
《3》 Some algae are producers in oceans.
《4》 Some bacteria live in the human gut


•••ĥèĺp••• ​

Answers

The student's claim that some germs are dangerous could be supported by evidence of several bacteria, including streptococcus, and E. coli, are known to cause illnesses in people and other animals.

In a nutshell, what are hazardous microorganisms?

A few examples of harmful microorganisms are fungi, bacteria, and protozoa. They induce a number of illnesses in people, animals, and plants that can potentially be fatal. The dangerous germs hurt not only our bodies but also the food we consume. Pathogens are those germs that cause disease.

Which bacteria are the most dangerous?

Mycobacterium tuberculosis, which causes more than 1,700,000 fatalities annually, is the most lethal bacterial illness that can infect humans. Up to 13% of patients are resistant to the majority of antibiotics, and 6% are non-responsive to virtually every form of treatment.

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Types of Macromolecules: Part A
Decide whether each label describes proteins, nucleic acids, or carbohydrates, and then drag it into the appropriate bin.

Answers

Large, intricate molecules known as proteins perform a variety of vital functions in the body. They are crucial for the structure, operation, and regulation of the body's tissues and organs and carry out the majority of their job inside cells.

What are nucleic acids and what do they do?

Large biomolecules called nucleic acids are necessary for all organisms and viruses to function. The preservation and release of genomic data is a key role of nucleic acids. The information cells require to produce proteins is encoded in deoxyribonucleic acid, or DNA.

A broad variety of both beneficial and unhealthy meals, including bread, beans, milk, popcorn, potatoes, cookies, spaghetti, soft drinks, corn, and cherry pie, contain carbohydrates. They can take on various shapes as well. Sugars, fibers, and starches are the most prevalent and plentiful types.

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Students are designing an experiment to model the transfer of heat from the sun to the Earth. What must the students consider in their design to represent this form of energy transfer?

A. The Sun is a ball of fire therefore the students must use fire to represent the heat source.
B. Heat from the sun travels through space therefore the students will need a vacuum chamber to demonstrate this form of heat transfer.
C. Heat transfer from Sun to the Earth requires the students to model convection since the heat travels through our atmosphere.
D. Heat from the Sun travels to the Earth via conduction and convection as the Earth is comprised of solids, liquids, and gases.

Answers

Heat from the Sun travels through space therefore the students will need a vacuum chamber to demonstrate this form of heat transfer.

How transfer of heat occurs from sun?

All heat from the sun comes to us in the form of radiation, since there is no matter in the space between the sun and the earth.) There is matter inside the sun, and other forms of heat transfer are at work. The sun uses two methods to transport energy from within. The first is radiation. Radiation originates from the core of the sun. In the sun's radiation belt, heat moves from the core as electromagnetic waves (radiation) to the sun's convective belt.

Convection is a flow that occurs when there is a difference in temperature or density. (Emphasis: Warm liquids and gases are less dense, so they float (or rise) in cooler liquids and gases.) As the warm gas (or liquid) rises, the colder gas (or liquid) moves, causing its Lost place, lost where to ingest. it is heated.

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The students take into account representing this type of energy transfer in their design. Students will require a vacuum chamber to illustrate this type of heat transfer since solar heat moves across space.

Energy transfer What is it?

The universe's overall energy level doesn't change. For instance, the potential energy of a block at the top of a slope is transformed into the kinetic of the block's motion when it slides down the slope. The kinetic energy is transformed into thermal energy when friction brings the block to a stop. Instead of being created or destroyed, energy only switches between potential, kinetic, and thermal energy.

What nine different ways does energy transfer?

Thermal energy, radiant energy, chemical energy, nuclear energy, electrical energy, motion energy, sound energy, elastic energy, and gravitational energy are among the several types of energy.

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HELPHELPHELPHELPHELPHELPHELPHELPHELPHELPHELP​

Answers

We can see here that looking at the movement from point A to point B, we discover that the elevation is: D. Decreasing, then increasing.

What is elevation?

Elevation, in geography and cartography, refers to the height of a location or feature above a reference point, which is usually sea level. It is a measure of vertical distance and is often used interchangeably with altitude, which is the height of an object or point above the earth's surface.

We should know that contour lines are lines that connect points of equal elevation. When contour lines are actually closer together, it indicates a steeper slope or an increase in elevation. Conversely, when contour lines are farther apart, it indicates a flatter slope or a decrease in elevation. Thus, that is why the elevation was decreasing and at some points it started increasing.

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In a large population of approximately 1 million E. coli , one bacterium gains a mutation that gives it a fitness advantage , with a selective coefficient of . Which of the following statements is FALSE ? s = 0.001 Given the population size , the selective coefficient is large enough to overcome genetic drift . It is possible that the mutation could be lost from the population due to genetic drift . The mutation will likely sweep through the population to fixation if the individual has offspring with the new mutation Ans = 0.001 would not be considered large given that population size .

Answers

It is considered "fixed" inside the population that once frequency of a allele reaches 100%, i.e., is the only genetic variant present in either member.

What do you name a gene that is fixed inside the population due to a mutation?

December 2020) An allele is considered permanent if it is the only variety of that gene in the population. The entire population is heterozygous for a fixed allele. The term "allele" typically refers with one variant gene from out numerous that could exist for a specific Genomic region.

What impact does population size have on these alleles' time to fixation?

The likelihood of fixation increases because individuals with the mutant gene are much more likely to reproduce in a population that is expanding. Since it's more rare and more apt to be established, the allele has a lower risk of being lost.

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HELP NOW
What is one major outcome of the improved monitoring of volcanoes around the world?(1 point)
Responses

Less seismic activity on Earth is being detected.
Less seismic activity on Earth is being detected.

More advanced warning time allows officials to prepare for human evacuations.
More advanced warning time allows officials to prepare for human evacuations.

More tourists are interested in visiting places known as hot spots.
More tourists are interested in visiting places known as hot spots.

Explosive eruptions can be prevented.
Explosive eruptions can be prevented.

Answers

Answer:

More advanced warning time allows officials to prepare for human evacuations.

Explanation:

Improved monitoring of volcanoes has led to a better understanding of the behavior and activity of these geological features. It has also led to the development of better tools and techniques for detecting and measuring volcanic activity, such as satellite imagery, ground-based sensors, and drones. As a result, scientists and officials are now better able to monitor volcanic activity in real-time and to issue early warnings of impending eruptions. This can help to save lives by giving people more time to evacuate and to prepare for the impact of an eruption.

Why does the GI tract have a plexus in the muscalaris and nerves in the mucosa? What physiological
functions of the tract are supported by these anatomical structures? Think about your answer in the
context of Hirschsprung's disease, a congenital disorder of the colon that involves a defect in the
myenteric plexus. What symptom or problem do you imagine the disease would cause?

Answers

The plexus in the muscularis and nerves in the mucosa of the GI tract play important roles in the physiological functions of the tract. The plexus in the muscularis controls the contractions of the smooth muscle, while the nerves in the mucosa control the secretion of digestive juices and the absorption of nutrients. The muscularis plexus, also known as the myenteric plexus, regulates the peristaltic movements of the tract that move the food along the digestive system. On the other hand, the submucosal plexus controls the secretion of enzymes and hormones that aid in digestion and absorption of nutrients.

In Hirschsprung's disease, a congenital disorder of the colon, there is a defect in the myenteric plexus, which causes an absence of nerve cells in the affected area of the colon. This leads to a blockage of the colon, preventing stool from passing through. Symptoms of the disease include constipation, abdominal distension, and vomiting, among others. This highlights the importance of the myenteric plexus in regulating the contractions of the smooth muscle in the colon, as the absence of nerve cells in this area disrupts the normal physiological function of the GI tract.

what breaks down dead organisms into simpler form

Answers

Answer: Bacteria

Explanation: Bacteria will break down dead organisms into simpler forms.

Answer:

Decomposers play a critical role in the flow of energy through an ecosystem. They break apart dead organisms into simpler inorganic materials, making nutrients available to primary producers.

how do cells in a meristem differ from cells in other types of plant tissue? see concept 35.2 (page)

Answers

Answer:sqwaaa

Explanation:sqwwwaa

FILL IN THE BLANK. The production process requires that management determine the amount of _____ to be used.

Answers

The production process requires that management determine the amount of resources to be used.

What steps are to be followed generally in a production process?

The specific steps in a production process may vary depending on the industry, product, and company. However, in general, a production process typically involves the following steps:

Planning: The first step, in the production process is planning. This involves identifying the product to be produced, setting production goals, and developing a strategy for achieving those goals.

Design: The next step is product design, where the product's specifications are determined and the necessary engineering and design work is completed.

Sourcing: In this step, the materials and resources required for production are sourced, whether that is raw materials, parts, or labor.

Assembly: In this step, the product is assembled, and any necessary quality control checks are performed to ensure that the product meets the required standards.

Testing: Once the product is assembled, it undergoes testing to ensure that it meets the desired quality standards.

Packaging: The next step is packaging, where the product is prepared for shipment or delivery to the end customer.

Distribution: In this final step, the finished product is distributed to wholesalers, retailers, or directly to customers.

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if a scientist wanted to compare the excat number of organisms at each trophic level within an ecosystem, which pyramid model would be the most useful? why?

Answers

The biomass pyramid is the most important because it depicts the total amount of living organic matter (biomass) rather than just the number of species at each trophic level.

What is depicted in an ecosystem's biomass pyramid?

The total biomass of the species present at each trophic level of an ecosystem is displayed as a pyramid of biomass. These pyramids are not always vertical. If the rate of primary production per unit biomass is high, the biomass concentrations near the base of the pyramid may be lower.

What is the biomass Mcq upright pyramid's one exception?

This particular ecological pyramid takes into account the amount of biomass that each trophic level generates at each level. The biomass pyramid is also upright, with the exception of what is seen in seas, where a lot of zooplanktons rely on a lot of phytoplanktons.

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