Answer:
To provide food for migratory birds.
Explanation:
Answer:
Letter C is the correct answer.
Explanation:
Salt marshes are is a coastal ecosystem located in the upper coastal intertidal zone, between land and brackish water usually flooded by the tides. Salt marshes have an important role since they deliver food to different groups of animals.
The value of a stock increases 1423 points twice in one week. The other three days the value decreases by 10 points, 813 points, and 1223 points. By how many points did the value of the stock change that week?
Answer: By [tex]800\ points[/tex]
Explanation:
You need to analize the information provided in the exercise.
You know that:
1. The value of a stock increases 1,423 points twice in one week. This indicates that you must multiply 1,423 points by 2:
[tex](1,423\ points)(2)=2,846\ points[/tex]
2. The other three days the value decreases by 10 points, 813 points, and 1,223 points. So you need to find the sum. This is:
[tex]10\ points+813\ points+1,223\ points=2,046\ points[/tex]
Finally, you need to subtract 2,846 points and 2,046 points in order to calculate by how many points the value of the stock changed that week.
Therefore, the result is:
[tex]2,846\ points-2,046\ points=800\ points[/tex]
Answer:
Answer: By 800 points
What would happen to the supply of ATP (the energy molecule) in your cells if you did not eat enough carbohydrates? How would this affect your cells?
Answer:Cell contains mitochondria which is known as power of the cell as it synthesises ATP ( energy currency of the cell ). cell already contain sufficient amount of ATP so if supply ATP externally cell will burst.
what would most likely be included in the "Analysis" section of a lab report
Answer:
The correct option is "a discussion of any errors in the experimental data"
Explanation:
The analysis section of a lab report describes the critical analysis of the experiments and observations that were carried out. It also describes the defaults in any observational method which they got to know during the experimental method. The analysis section also tells how the experimental and observational methods could be made better. Hence, we can say that the analysis section of a lab report shows discussion of any errors in the experimental data.
how do organism interactions ensure that energy flows through and ecosystem?
Answer:
Organisms can be either producers or consumers in terms of energy flow through an ecosystem. A trophic level refers to an organism's place in the food chain.
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7. What is an atoke?
Answer:
The atoke is a single metal bell and looks like a large pea-pod.
or
the anterior sexless part of certain polychaete worms from which grows the sexual portion
An atoke is the anterior, non-reproductive segment of a polychaete worm. During reproduction, the posterior segment, called the epitoke, detaches to spawn. This process is observed in marine worms like the palolo worm.
An atoke is a part of a marine worm known as a polychaete, which belongs to the class Polychaeta in the phylum Annelida. It refers to the anterior, non-reproductive segment of the worm. During the reproductive period, the atoke remains in its habitat while the posterior segment, called the epitoke, detaches and swims to the surface to spawn. This fascinating reproductive strategy is seen in some species of polychaetes, such as the palolo worm.
Example:
As an example, in the Pacific palolo worm (Palola viridis), the atoke remains hidden in coral reefs, while the epitoke breaks off and releases gametes into the ocean during a mass spawning event. This event usually coincides with a specific lunar phase, ensuring that many worms spawn simultaneously for greater reproductive success.Tornadoes are rotating, funnel-shaped clouds that often appear with little to no warning. Wind speeds in a tornado can reach up to 300 miles per hour, and damage paths can extend for miles. Which of the following is the cause of most of the injuries and deaths from tornadoes? A. lightning strikes B. flying debris C. poor visibility D. heavy rain
Answer:
a lightinging strikes that is because i am farting oops
Explanation:
Answer:
Flying debris.
Explanation:
You can get hit by something flying in the air
During cellular respiration, mitochondria use oxygen to
break down food molecules. What is created as a result? *
a. Glucose
b. Energy
c. Sunlight
d. Lipids
Answer:
B, Energy
Explanation:
During cellular respiration, mitochondria use oxygen to break down glucose (food molecules) in order to turn it into energy that the organism can use for cell functions.
in case you were wondering, the equation for cellular respiration looks like this:
[tex]6O_{2} + C_{6} H_{12} O_{6} = 6CO_{2} + 6H_{2} O[/tex]
Hope this helped.
An estuary collects sediments from the ocean and rivers that feed into it. The sediments swirl around and then settle to form a mudflat. Eel grass is then established on the mudflat. The ecosystem changes over time and ultimately develops into a salt marsh that contains mangrove trees. Which of the following is likely NOT involved in this example of ecological succession?
Answer: The concentration of salt becomes so high that all plant life is destroyed.
Explanation:
Explain how population sizes in nature are regulated
Answer:
Understanding Populations
Section 1 How Populations Change in Size
Objectives
Describe the three main properties of a population.
Describe exponential population growth.
Describe how the reproductive behavior of individuals can affect the growth rate of their population.
Explain how population sizes in nature are regulated.
What Is a Population?
A population is a group of organisms of the same species that live in a specific geographical area and interbreed. A population is a reproductive group because organisms usually breed with members of their own population.
Properties of Populations
Density is the number of individuals of the same species that live in a given unit of area. Dispersion is the pattern of distribution of organisms in a population. A population’s dispersion may be even, clumped, or random. Size, density, dispersion, and other properties can be used to describe populations and to predict changes within them.
How Does a Population Grow?
A population gains individuals with each new offspring or birth and loses them with each death. The resulting population change over time can be represented by the equation below.
Growth rate is an expression of the increase in the size of an organism or population over a given period of time. It is the birth rate minus the death rate. Overtime, the growth rates of populations change because birth rates and death rates increase or decrease. For this reason, growth rates can be positive, negative, or zero.
For the growth rate to be zero, the average number of births must equal the average number of deaths. If the adults in a population are not replaced by new births, the growth rate will be negative and the population will shrink.Explanation:
Nature's population sizes are restrained through density-dependent factors like predation and competition, and density-independent factors such as weather, with humans impacting these through agriculture, medical advances, and urbanization. Models like exponential and logistic growth help predict population dynamics but simplify the complexity of real-life scenarios where factors change over time.
Explanation:Population sizes in nature are regulated by density-dependent and density-independent factors. Density-dependent factors include competition, predation, disease, and parasitism, which become more significant as the population density increases. Conversely, density-independent factors such as natural disasters, severe weather, and human activities like pollution affect populations regardless of their size.
Humans overcome density-dependent regulation through techniques like agriculture, which increases food supply, medical advancements that reduce death from diseases, and urbanization that provides living space. However, these interventions can lead to overpopulation and environmental degradation.
Population ecologists use models like the exponential growth and logistic growth models to predict population dynamics; the latter incorporates carrying capacity, which is the maximum population size that the environment can sustain over time. While useful, these models are simplifications of complex real-life population dynamics where carrying capacity and other factors can fluctuate significantly with time and conditions.
why do cells use more than one photosynthetic pigment?
Answer:
Plant cells use more than one pigment because more than one pigment or multiple pigments absorb different wavelength of light from sun and this difference absorption spectra is very much important during photosynthesis.
Explanation:
Plant cells use multiple pigments because some pigments also called principle pigments function within the reaction center where some accessory pigments are also present such as carotene,phycobillin, xanthophyll which act as antena complex that play an important in light absorption.
The presence of different pigment provides different coloration of fruits,leaves.For example presence of carotene gives orange,yellow coloration to carrot,tomato.
Which of the following best characterizes natural selection?
inment in which leaves grew only at the tops of short trees, giraff
A. Faced with an environment in which leaves grew only at the to
responded by growing long necks.
onment where leaves grew only at the
B. Only giraffes with long necks moved into an environment where leaves
tops of short trees.
iraffes that did not eat leaves from the tops of short trees grew shorter
C. The necks of giraffes that did not eat leaves from the tops
lack of exercise.
D. Among a population of giraffes, those with long necks were able to survive better i
environment in which leaves grew only at the tops of short trees.
The answer is D, because natural selection is when species adapt in order to live. Giraffes with long necks were able to eat more than those with short necks. Which is why they survived better. There long necks are an adaptation created so they can survive.
Final answer:
Option D best characterizes natural selection, as it describes how giraffes with long necks had a survival advantage in accessing food, leading to greater reproductive success and an eventual increase in long-neck traits in the population.
Explanation:
The best characterization of natural selection among the given options is D: Among a population of giraffes, those with long necks were able to survive better in an environment in which leaves grew only at the tops of short trees. Natural selection is a process described by four main concepts:
Heritable variation within a population.
Overproduction of offspring leading to a struggle for existence.
Differential survival and reproduction, meaning individuals that are better adapted to their environment are more likely to survive and reproduce.
Gradual change in traits within the population over generations as advantageous genes increase in frequency.
In the case of giraffes, they once had varying neck lengths. Due to environmental changes such as drier climates and scarcer leaves, giraffes with longer necks had an advantage in reaching food sources. Consequently, these giraffes were more likely to survive and reproduce, passing down the long-neck trait to offspring. Over time, this led to a population dominated by long-necked giraffes, demonstrating evolution through natural selection.
How can gene editing be used in medical research?
A. It can map the locations of whole genes on chromosomes.
B. It can make several exact copies of mutated genes.
C. It can insert genes from one species into another.
D. It can change a few bases in a piece of mutated DNA.
Answer:
D. It can change a few bases in a piece of mutated DNA.
It can change a few bases in a piece of mutated DNA. Therefore, option (D) is correct.
What is gene editing?Gene editing is a powerful technique used to modify the DNA sequence in an organism's genome. It allows scientists to make precise changes to the genetic code by adding, deleting, or altering specific DNA segments. The most widely used gene editing tool is CRISPR-Cas9, which utilizes a guide RNA to target specific locations in the genome and the Cas9 protein to cut the DNA at those sites.
Gene editing holds significant potential in various fields, including medical research. It offers opportunities to study gene function, investigate disease mechanisms, and develop potential treatments for genetic disorders. By correcting disease-causing mutations or introducing therapeutic genes, gene editing can provide new possibilities for precision medicine and personalized therapies.
However, ethical considerations and careful evaluation of potential risks and benefits are essential when applying gene editing technologies to ensure their responsible and safe use
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Which of the following is an example of an electrolytic solution? Select all that apply.
A. sea water
B. fresh water
C. carbonic acid
D. salt (NaCl)
Answer:
C carbonic acid and D salt are the example of electrolytic solution.
Explanation:
Carbonic acid is an weak electrolyte because in aqueous solution carbonic acid undergo partial hydrolysis to generate H+ and HCO3- ions.
H2CO3 ⇄ H+ + OH-
NaCl is a strong electrolyte because in aqueous solution NaCl undergo hydrolysis to generate Na+ and Cl- ions.
NaCl ⇄ Na+ and Cl-
Sea water and salt (NaCl) when dissolved in water are examples of electrolytic solutions that can conduct electricity. Fresh water typically does not conduct electricity well unless it contains dissolved minerals, and carbonic acid acts as a weak electrolyte. Substances like NaOH and Fe(NO3)3 are strong electrolytes, while CH3COCH3 and Br2 are nonelectrolytes.
Explanation:An electrolytic solution is a solution that contains ions and can conduct electricity when dissolved in water. Out of the options provided, both sea water (which contains a variety of dissolved salts) and salt (NaCl) when dissolved in water are examples of electrolytic solutions. In contrast, fresh water is typically a poor conductor of electricity since it lacks free ions unless it has dissolved minerals. Carbonic acid, formed when carbon dioxide dissolves in water, also acts as a weak electrolyte.
Given substances and their classification as electrolytes or nonelectrolytes include:
Sodium hydroxide (NaOH) and iron(III) nitrate [Fe(NO3)3] are strong electrolytes.Acetone (CH3COCH3) and elemental bromine (Br2) are considered nonelectrolytes because they do not dissociate into ions in solution.As for whether solutions of certain solutes will conduct electricity:
AgNO3 (silver nitrate) will conduct electricity as it is a strong electrolyte.CHCl3 (chloroform) will not conduct electricity because it is a nonelectrolyte.
Coral reefs are ideal breeding grounds for a variety of fish and sea creatures, and coral is considered a foundation species. Unfortunately, coral reefs are fragile ecosystems and are easily disrupted. Because coral contain calcium carbonate deposits, one situation poses a growing threat to coral as well as the many organisms that are dependent on them. That situation is
Answer:
whats is. define represent
Answer:
D) acidification of the ocean caused by increased atmospheric carbon dioxide emissions that dissolve in water.
Explanation:
USATestprep said so
Which of the following is NOT a component of a nucleotide?
a. Phosphate
b. Nitrogenous base
c. Pentose sugar
d. DNA
Answer:
D
Explanation:
Which of the following is not a component of DNA's nucleotides?
a. A phosphate group
b. A base (A, C, T, or G)
c. A deoxyribose backbone
d. RNA
Final answer:
DNA is not a component of a nucleotide; instead, nucleotides form DNA. Each nucleotide consists of a nitrogenous base, a pentose sugar, and phosphate groups.
Explanation:
The component that is NOT a part of a nucleotide is option d. DNA. Nucleotides themselves are the building blocks of nucleic acids, such as DNA and RNA. Each nucleotide is composed of three main components: a nitrogenous base, a pentose sugar, and one or more phosphate groups. The pentose sugar could be either deoxyribose, in the case of DNA, or ribose for RNA. The nitrogen-containing bases are divided into purines (adenine and guanine) and pyrimidines (cytosine, thymine, and uracil). However, DNA itself is not a component of a nucleotide but rather a macromolecule that is made up of many nucleotides joined together through phosphodiester bonds.
Identify the producers,primary consumers, and secondary consumers in this ecosystem
Answer:
The producer is the grass and ferns, the primary consumer is caterpillar, grasshopper, and rabbit, secondary consumer is robin
Explanation:
Rosa drew a flow chart of the carbon cycle.
Which labels best complete the flow chart?
CO2 is in the
atmosphere.
X: Producers undergo photosynthesis.
Y: Decomposers return carbon to the soil and release
waste.
X: Decomposers return carbon to the soil and release
waste.
Y: Producers undergo photosynthesis.
X: Decomposers take in carbon dioxide.
Y: Producers absorb carbon through their roots.
X: Producers absorb carbon through their roots.
Y: Decomposers take in carbon dioxide.
O
Consumers
eat producers.
Answer:
X: Producers undergo photosynthesis.
Y: Decomposers return carbon to the soil and release
waste.
Explanation:
The label X shows producers which will undergo photosynthesis. Photosynthesis can be described as a process by which plants make their own food by converting water and carbon dioxide into glucose and oxygen. Light energy is required for this process to occur.
The label Y shows decomposers. Decomposers feed on dead and decaying material and release carbon into the environment. The decomposers feed on dead plants and animals and release
Answer:A.
Hope this helps
Explanation:
Which of these activities increases the amount of carbon in the atmosphere?
A.
animals eating plants
B.
burning of fossil fuels
O
C.
fossilization
D.
photosynthesis
nado
Next
Answer:
B.
burning of fossil fuels
it increase the amount of carbon present in atmosphere.
Answer:
B.
Explanation:
as when we burn of fossel fuel causes nitrogen and carbon and other gases in air
WILL GIVE BRAINLIEST *IF IT IS CORRECT*
Which list below describes the next steps of evaporated water through the water cycle?
A) Condensation, precipitation, runoff, ocean storage
B) Transpiration, condensation, precipitation, ocean storage
C) Precipitation, condensation, runoff, groundwater
It most likely is B or C idk tho
Answer:
A) Condensation, precipitation, runoff, ocean storage
Explanation:
Water cycle is a natural phenomena by which water from the surface of the earth gets evaporated by the heat of the sun , rises high condenses and precipitates in the form of rain, snowfall etc. returning the water to the earth.After evaporation from the surface of water bodies and other sources the water vapor rises high where it faces a colder temperature that results in the condensation of water vapor.This combines with dust and forms cloud.As the mass increases. the water precipitates as a result of gravity.This precipitation may be in the form of rain, snow or dew.The water that comes back to the earth's surface is store in oceans and as ground water.Thus, the next steps after evaporation is, condensation, precipitation, runoff and ocean storage.Glaciers existed in many parts of the world but have melted. Scientists can detect that an area was once covered by a glacier using the evidence of
A) V-shaped valley
B) loess deposits
C) alluvial fan
D) U-shaped valley
what do you think would happen if you took an antacid prior to eating a hamburger? think about this in terms of what buffers do (you may need to look up the term"buffer").
This might cause indigestion or slow digestion.
Explanation:
The normal nature of stomach is acidic due to the presence of HCL. his acidic pH is necessary to facilitate the process of digestion. An antacid is usually consumed when the acidic level of the stomach exceeds beyond normal causing symptoms of the condition called acidity.
When we take antacids without any reason it will work like a buffer that alters the pH of a medium and reduce the normal acidic level in the stomach. Normal digestion cannot take place at this new pH. If we take any food after that indigestion will be the result.
So taking a hamburger after consuming antacid will cause indigestion or slow digestion.
The gradual change in species over time
Answer: Gradualism [GRAJ-oo-uh-liz-uhm] – the theory that all evolution is slow and proceeds at a steady rate over a long period of time
17. Name 3 scientists that helped to discover the structure of DNA.
Answer: James Watson, Francis Crick, and Rosalind Franklin (these are just 3)
Explanation:
In 1952, Watson and Crick took the first X-ray picture of DNA. Created by Rosalind Franklin, she used a technique called X-ray Crystallography, that is how they discovered the helical structure of DNA
Francis Crick, James Watson, and Rosalind Franklin played crucial roles in discovering the DNA's structure. Watson and Crick proposed the double helix model, but Franklin's X-ray diffraction data were essential to confirm that model.
Three scientists that were instrumental in discovering the structure of DNA were Francis Crick, James Watson, and Rosalind Franklin. Crick and Watson, working at the University of Cambridge, are often given the most credit for describing the molecular structure of DNA as a double helix. However, Rosalind Franklin's contributions, particularly her X-ray diffraction pattern of DNA, were crucial. This pattern provided key insights that supported the double helix model. Thus, while Watson and Crick were the ones to publish the proposed structure of DNA, it was Franklin's work that was essential in validating their model.
Cellular reactions can be made spontaneous by
Cellular relations can be made spontaneous by the application of heat to the reactions.
The correct option is (B).
What are cellular reactions?Cellular respiration is a series of metabolic activities and processes that occur within organisms' cells.
They transform chemical energy from oxygen molecules or nutrients into adenosine triphosphate (ATP) and then release waste products.
Thus, option (B) is correct because on applying heat the reaction becomes spontaneous.
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explain Why DNA must be copied during interphase before cell division can occur?
Answer:
Explanation:
The S phase of a cell cycle occurs during interphase, before mitosis or meiosis, and is responsible for the synthesis or replication of DNA. In this way, the genetic material of a cell is doubled before it enters mitosis or meiosis, allowing there to be enough DNA to be split into daughter cells.
science homework plz this is 2 grades for some reason
Answer:
So it is saying that Plate tectonics influence earth layers and earth layers influence plate tectonics. Plate tectonics affects minerals and the rock cycle as well as mountain building, and explains earthquakes and volcanoes.
The most important factors in determining the rate of weathering are
A) animal actions and oxygen
B) abrasion and acids from plant roots
C) carbon dioxide and acid rain
D) rock type and climate
Answer:
The answer is D
Explanation:
Answer:
D) rock type and climate
Explanation:
Weathering is the process of transformation of rocks by disintegration (physical) or decomposition (chemical) of their structures, giving rise to sediments and interfering in sedimentary processes, such as erosion, diagenesis and pedogenesis (formation of soils). Although weathering has several factors that may or may not accelerate the decomposition of rock structures, the most important factors in this are the climate and the type of rock. these factors are the most important because they act constantly and uninterruptedly on the rock.
Why is the destruction of a natural environment a risk to the survival of humans?
Answer:
Destruction of a natural environment is a big threat to the humanity. With the destruction of forests, the wild life is becoming extinct. Lesser number of trees means more harmful gases to be transferred to the ozone layer. Without the ozone layer, the survival of humans on the Earth will be impossible.
If plant or animals become extinct or endangered from a natural environment, this will mean lesser food for the humans. There will be increased competition for food and other resources.
Bacteria and archaea function in the nitrogen cycle
Answer:Archaea are able to perform different reductive pathways of the N-cycle, including both assimilatory processes, such as nitrate assimilation and N(2) fixation, and dissimilatory reactions, such as nitrate respiration and denitrification. However, nitrogen metabolism is much less known in archaea than in bacteria.
Explanation:
Bacteria and archaea are essential to the nitrogen cycle, converting atmospheric nitrogen into forms usable by plants and animals. They engage in nitrogen fixation, nitrification, and denitrification, crucial for ecological balance and the biosphere.
Bacteria and archaea play crucial roles in the nitrogen cycle, a fundamental process that converts atmospheric nitrogen into various chemical forms usable by plants and animals. Bacteria in the genus Rhizobium, for instance, are known for their nitrogen-fixing abilities, living symbiotically within the roots of legume plants like clover and peas, converting atmospheric nitrogen into ammonia. This ammonia is essential for the plants to synthesize nucleic acids and other vital biomolecules.
Apart from nitrogen fixation, these prokaryotes are also involved in other stages of the nitrogen cycle such as nitrification, where soil and oceanic archaeal microbes, particularly those within the Crenarchaeota group, convert ammonia to nitrites. Further, nitrifying bacteria and archaea are involved in converting these nitrites to other nitrogenous compounds through processes like ammonification and denitrification. Denitrifying bacteria, for example, reduce nitrates back to atmospheric nitrogen, completing the cycle.
These microbial processes are not only essential for the survival of plants and by extension, animals, but also for maintaining the balance of nitrogen in the atmosphere, soil, and water ecosystems. The efficient conversion of nitrogen in its various forms by bacteria and archaea highlights their indispensable role in the earth's ecological and biological systems.
Which statements correctly describe the inheritance pattern for the alleles that control blood type? Check all that apply. IA is dominant. IB is dominant. i is dominant. IA is recessive. IB is recessive. i is recessive.
Explanation:
both IA and IB are dominant- A and B groups show co-dominance
Inheritance describes the way in which certain traits are passed onto offspring of sexual reproduction. For co-dominance, both of a gene's alleles are present, and notable in the phenotype.
Blood glycoprotein alleles are crucial to blood type determination for the ABO system in humans- i does not lead to modifications, while IA leads to the modification of adding N-acetylgalactosamine to the H-antigen on red blood cells; and IB adds galactose
[tex]I_{A} I_{B}[/tex] = blood type AB while [tex]I_{A} I_{A}[/tex] = blood type A while [tex]I_{B} I_{B}[/tex] = blood type B. Since [tex]I_{A} I_{B}[/tex] are both dominant over ii, those with that allele have blood type O.
The nucleus is a large membrane-bound organelle that houses the genetic information, DNA, in the cell. Sequences of DNA make up genes which can have different forms called alleles and comprise the genotype. DNA is transcribed into mRNA and later translated into amino acids which are linked together by rRNA to form proteins. These proteins, when expressed, are referred to as an organism's phenotype.
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Answer:
a, b, and f
Explanation: