PLS HELP !!!!!! The table below shows the role of different substances during photosynthesis.


Substance Role During Photosynthesis
Glucose Stores chemical energy
Water Combines with glucose to form carbon dioxide
Chlorophyll Traps sunlight


Which of the following statements would correct one of the roles listed in the table?
Glucose combines with carbon to form water.
Chlorophyll reacts with light to produce carbon dioxide.
Water combines with carbon dioxide during photosynthesis.
Chlorophyll stores chemical energy needed for photosynthesis.

Answers

Answer 1
Final answer:

The correct statement that should replace the incorrect one in the table is 'Water combines with carbon dioxide during photosynthesis'. This process uses water and carbon dioxide to produce glucose and oxygen under the influence of sunlight and chlorophyll.

Explanation:

In the table about the role of different substances during photosynthesis, there is a mistake. The role of water is incorrectly listed. The correct statement should be 'Water combines with carbon dioxide during photosynthesis'. In this process, water and carbon dioxide are used to produce glucose and oxygen under the influence of sunlight and chlorophyll. Glucose is the form in which the energy from the sun is stored, and oxygen is the byproduct of the process.

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Related Questions

Which base is found only in RNA?
ribose
Othymine
ouracil
O deoxyribose
DETECTEET

Answers

That would be C. Uracil.

In RNA we’ve got Uracil instead of Thymine.(which is in DNA)
Final answer:

Uracil is the base found only in RNA. The main difference between RNA and DNA is that RNA contains Uracil while DNA contains Thymine. Ribose and Deoxyribose are sugars, not bases.

Explanation:

The base that is found only in RNA, as listed in your options, is Uracil. Both RNA and DNA use the bases Adenine, Cytosine, and Guanine. However, unlike DNA which uses Thymine, RNA uses Uracil. Your options also include Ribose and Deoxyribose, but these are not bases, they are sugars. Ribose is present in RNA and Deoxyribose is present in DNA. Therefore, the real difference in base composition is between Thymine in DNA and Uracil in RNA.

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If a person had a low level of neurotransmitters, how could this affect the person?

A) Sensory neurons would not be able to form action potentials

B) Neurons would not be able to communicate across synapses

C) Axons would not be able to receive messages

D) The endocrine system would not be able to produce hormones

Answers

Answer:

B

Explanation:

Neurotransmitters such as acetylcholine, epinephrine are important at a neuron-neuron junction called synapses. When an impulse reaches the end of one neuron, at the synapse, it causes the release of neurotransmitters from synaptic vesicle that diffuse across the synapse and when they bind to their reports on the other end. An impulse is then generated on the subsequent neuron that travels down the axon to the next synapse.

A low level of neurotransmitters would lead to impaired neuron-to-neuron communication across synapses because neurotransmitters facilitate the transfer of action potentials between neurons. This can affect various bodily functions and potentially lead to mood disorders or impairments in muscle movement and memory, depending on the affected neurotransmitter systems. The correct option is B.

If a person had a low level of neurotransmitters, it could significantly affect their ability to function normally. Neurotransmitters are crucial for the communication between neurons across the synaptic cleft. The correct answer to the question is B) Neurons would not be able to communicate across synapses. When an action potential reaches the end of an axon, it usually triggers the release of neurotransmitters into the synaptic cleft, which then bind to receptors on the postsynaptic neuron's membrane to continue the transmission of the signal.

With low levels of neurotransmitters, the signals sent by neurons would be less likely to cause an action potential in the next neuron. This insufficiency would lead to weakened neural signaling, which can manifest in various ways depending on which neurotransmitters are low and what areas of the brain or body are affected. For example, a deficiency in neurotransmitters like serotonin or dopamine can lead to mood disorders, whereas a lack of acetylcholine can impact muscle movement and memory functions.

Which of the following are the functions of the skeletal system?

Blood cell production in soft marrow tissues and mineral reserves
Largest organ of the body for defense and support
Vitamin D production and pumping blood through vessels
Voluntary movement and contractile movement

Answers

That would be A. Blood cell production in soft marrow tissues and mineral reserves.

Blood cells are made in the bone marrow of our bones and bones also reserve minerals.

Blood cell production in soft marrow tissues and mineral reserves. Therefore, option (A) is correct.


What is skeletal system?

The skeletal system is a complex framework of bones, cartilage, and connective tissue that provides structural support and protection for the body's organs and tissues. It consists of 206 bones in adults, which are connected to each other by ligaments, tendons, and muscles, allowing for movement and flexibility.

The skeletal system also plays a crucial role in producing blood cells, storing minerals such as calcium and phosphorus, and supporting the body's weight. Without the skeletal system, the body would not have the necessary support to maintain its shape, nor would it be able to move or perform many of its vital functions.

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How does mining impact the environment ?

Answers

Answer:

It has a negative impact on the environment by allowing toxic chemicals to harm wildlife

Explanation:

;)

Mining impacts the environment by causing deforestation, habitat destruction, soil erosion, water pollution, and air pollution, as well as contributing to climate change through greenhouse gas emissions and releasing toxic substances into the environment.

Mining activities have significant and widespread environmental impacts due to the extraction of valuable minerals and metals from the Earth's crust. Deforestation often occurs when mining companies clear large areas of forest to access mineral deposits, leading to the loss of biodiversity and disruption of ecosystems.

Habitat destruction is a consequence of mining that can result in the displacement or extinction of plant and animal species, further contributing to the loss of biodiversity. The removal of vegetation during mining operations also leads to soil erosion, making the affected areas more susceptible to landslides and loss of fertile topsoil.

Water pollution is a common environmental consequence of mining activities. Toxic chemicals and heavy metals used in mining processes can leach into nearby water bodies, contaminating them and harming aquatic life. Additionally, acidic mine drainage can occur when exposed rocks and minerals react with air and water, leading to increased acidity and further pollution of streams and rivers.

Air pollution is another significant impact of mining, particularly from dust emissions during excavation and transportation of materials. In some cases, mining operations can release harmful gases and particulate matter into the atmosphere, contributing to respiratory problems and affecting local air quality.

Furthermore, mining activities can contribute to climate change through greenhouse gas emissions. Fossil fuel consumption during mining operations releases carbon dioxide and methane, both potent greenhouse gases that contribute to global warming.

Moreover, the disposal of waste materials from mining can lead to the release of toxic substances into the environment, posing a long-term threat to ecosystems and human health.

Overall, mining's environmental impacts are complex and can vary depending on the type of mining, the location, and the management practices employed. Proper regulation, mitigation strategies, and sustainable mining practices are essential to minimize these negative environmental impacts and ensure the protection of natural resources and ecosystems for future generations.

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The fruit of a certain plant is sweet and fleshy. The seeds of this plant have a seed coat that is
fairly tough. The seeds germinate better if they are exposed to acid, or scarification. What is
the most likely type of dispersal for this seed?
water
animal
wind

Answers

Answer:

Animal

Explanation:

The fact that the seed is sweet and fleshy means it attracts animals who ingest it due to its palatability. The animals get to diperse the plant seeds. The acidic environment of the digestive tract of the animals helps soften the seed coat. When the seed is finally excreted by the animal, is can easily germinate.  

mikael runs with a speed of 3 m/s of 45 seconds . How far does mikael run

Answers

135 meters

v=d/t so vt=d

3m/s*45s=135m

Answer:

Mikael runs 135m

Explanation:

To find out how far Mikael ran we will need to do a calculation. The calculation is very simple and can be solved according to the following formula:

distance = speed x time

distance = 3m / s x 45s

distance = 135 meters.

That is, Mikael ran 135 meters in 45 seconds at a speed equal to 3m/s.

Where do homologous chromosomes exchange genetic material through crossing over? 

      A. Chlorophyll  B. Centrosomes  C. Centromeres  D. Chiasma

Answers

Answer:

D. Chiasma

Explanation:

In Prophase I of Meiosis, a process called synapsis occurs. Synapsis is the process where homologous chromosomes pair up.  Within this process, sister chromatids cross-over at certain points, and these points are called chiasmata. Chiasmata is just the plural of chiasma. In these points, the chromatids intertwine and exchange genetic material through a process called, cross-over.  

What did the miller urey experiment demonstrate

Answers

Answer: It demonstrated what Early Earth was like long ago, when organisms were basic. They tested what organisms were alive and what they were like.

Answer:

The Miller and Urey experiment was based on the origin of life. The experimented demonstrated that the important molecules of life were made on the earth with the similar conditions which were stated by Oparin and Haldane hypothesis.

Explanation:

The Oparin and Haldane suggested that the life is originated from simple inorganic molecules. To prove this hypothesis, Miller and Urey performed a experiment to show that organic molecules are formed from inorganic molecules.

The experiment was performed by providing similar conditions of reducing atmosphere. The methane, water, ammonia and hydrogen were used in the experiment and electrodes were placed for electric discharge. Thus, it results in the formation of five amino acids.

. How did the sequencing of the human genome change the way doctors are analyzing personal disease and risk?

Answers

the sequencing of the human genome changed the way doctors are analyzing personal diseases and risk because now they are able to diagnose the diseases risk factors and better treatment for patients. they can also determine and predict diseases instead of reacting.

Once a disease gene has been discovered, new diagnostic and treatment techniques can be created using this knowledge. A number of illness genes have already been discovered, allowing for more accurate diagnosis and inventive therapeutic modalities.

What is genome?

The whole of an organism's genetic instructions are included in its genome. Every genome includes all the data required to create that organism and for its growth and development.

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Some jellyfish have skeletons that are formed by fluid-filled compartments. This fluid resists compression and thus supports the body structure from deforming. Which term describes these skeletons? A. Fluid skeletons B. Hydrostatic skeletons C. Exoskeleton D. Endoskeleton

Answers

Answer:

B. Hydrostatic skeletons

Explanation:

Answer:

B. Hydrostatic skeletons

Explanation:

A hydrostatic skeleton is a fluid-filled skeleton that is present in many invertebrates that have soft bodies. Some of the jelly fishes are among them. The hydrostatic skeleton of jelly fishes can be compressed as it is filled with fluid.

However, it can regain the original shape once the pressure is removed. The ability of hydrostatic skeleton to be compressed and to regain the original shape help these jellyfishes to resist deformation of the body.  

The hypothetical island country of Gilder lies in the Mediterranean Sea off the coast of France. Demographers have studied Gilder for the past 50 years. At the beginning of the study, Gilder had a population of 20 million. The demographers have measured birth and death numbers, as well as immigration and emigration numbers, as shown in the data table. From the data, Calculate the population of Gilder for each 10-year period by filling in the Population (NO) and Population (Nt) columns in the data table. Use this formula to do your calculations: Population size: Nt = No + (B + I) – (D + E)initial population = 20,000,000

Answers

Answer:

Year 10 - No = 20,000,000 : Nt = 20,820,000

Year 20 - No = 20,820,000 : Nt = 22,000,000

Year 30 - No = 22,000,000 : Nt = 23,735,000

Year 40 - No = 23,735,000 : Nt = 25,843,000

Year 50 - No = 25,843,000 : Nt = 28,183,000

Given, initial population = 20,000,000. So, we can measure population size by  population geometric growth model:

Nt = No + (B + I) – (D + E)

What is Population?

Population is defined as the inhabitants of a particular area, town, or country.

Whereas, B is birth rate,

D: death rate of population

I : immigration of population

E:  Emigration of population

Nt: population size during time intervel

No: Initial population size,

Year 10 - No = 20,000,000 : Nt = 20,820,000

Year 20 - No = 20,820,000 : Nt = 22,000,000

Year 30 - No = 22,000,000 : Nt = 23,735,000

Year 40 - No = 23,735,000 : Nt = 25,843,000

Year 50 - No = 25,843,000 : Nt = 28,183,000

Conclusion, after the 50 years  (Nt) the population size will be 28,183,000.

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.   A species of moth has evolved a very long tongue to reach nectar at the bottom of a species of orchid. This orchid has evolved a long nectar tube, so that moths feeding on its nectar contact its pollen, helping it to reproduce. This is an example of 

      A. coevolution.  B. independent evolution.  C. chemical evolution.  D. predatory evolution. ​

Answers

This is an example of <b>co-evolution</b>.

Co-evolution is when species influence each other in their evolution.

Which would be an adaptation in a rainforest, but not in a tundra?

A. Ability to store water for a long time

B. Fur that blends in with snow

C. Strong claws for killing prey
D. A beak that can dig into thick trees

Answers

D, A beak that can dig into thick trees.
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A, would be perfect for a tundra because difficulty in water supply, which it rains lots in the rain forest.
B, this would only be good in the tundra, which snow is at
C, this would be good for both, depending on which animal we are talking about.
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A beak that can dig into thick trees would be an adaptation in a rainforest.

What is adaptation in the rainforest?

leaves and flowers grow in the canopy. Tree trunks are tall and thin to allow trees to reach the sunlight.

Which would be an adaptation for living in the tundra?

Adaptation in tundra includes :

low-lying seeds that scatter in the wind.narrow leaves helping to reduce transpiration.adapted to a short growing season (so has a short life cycle)dense flowerheads reducing heat loss.darker leaves helps absorb energy from Sun.

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Which is an example of a population?​

Answers

     A population refers to a group of individuals of the same species that inhabit a specific area and can potentially interbreed. One example of a population is a group of lions (Panthera leo) living in the Serengeti National Park in Tanzania.

     In the Serengeti, lions form distinct populations within the ecosystem. Each population consists of individuals that share common genetic characteristics and interact within a defined geographic range. These lions exhibit behaviors such as hunting, mating, and raising offspring within their population boundaries.

    The Serengeti lions are interconnected through gene flow, as individuals may disperse between populations, albeit relatively infrequently due to territorial behaviors and environmental barriers. However, occasional movements between populations allow for genetic exchange, contributing to the overall genetic diversity of the species.

     The population size of Serengeti lions fluctuates due to various factors such as predation, disease, availability of prey, and human activities. Changes in population size can impact genetic diversity, demographic structure, and ecological dynamics within the ecosystem.

    Understanding the dynamics of lion populations in the Serengeti is crucial for conservation efforts and ecosystem management. Conservationists monitor population trends, demographics, and genetic diversity to assess the health and viability of lion populations. Conservation strategies may include habitat protection, anti-poaching measures, and community engagement to mitigate human-wildlife conflicts.

    Studying lion populations in the Serengeti also provides insights into broader ecological processes. Lions are apex predators that influence prey populations and ecosystem dynamics through predation. Changes in lion populations can have cascading effects on other species within the ecosystem, shaping community structure and ecosystem function.

    In summary, the population of lions in the Serengeti exemplifies a dynamic and interconnected group of individuals sharing a common geographic area and genetic heritage. Studying these populations enhances our understanding of species ecology, evolution, and conservation, while also highlighting the intricate relationships between organisms and their environment.

Complete Question:

Which of the following is an example of a population?

A. all of the organisms that live in a desert

B. all of the white-tailed deer that live in a forest

C. all of the animals that live in and around a pond

D. all of the birds that live in a forest

ANSWER STAT PLEASEEEE


A pea plant purebred to produce round yellow peas is crossed with a plant purebred to produce wrinkled green peas. Round pea shape is dominant to wrinkled, and yellow pea color is dominant to green. Members of the resulting F1 generation are then crossed to produce an F2 generation, as shown in the figure. On average, what fraction of the F2 generation will display both dominant traits?

A. 16 out of 16 plants will display both dominant traits.
B. 12 out of 16 plants will display both dominant traits.
C. 9 out of 16 plants will display both dominant traits.
D. 4 out of 16 plants will display both dominant traits.

Answers

Answer:

option B,12 out of 16 plants will display both dominant traits.

Explanation:

Round (R)pea shape is dominant to wrinkled (r), and yellow (Y) pea color is dominant to green(y)

F1 generation - Round yellow peas is crossed with a plant purebred to produce wrinkled green peas.

So the genotype of offspring of F1 generations will be

RY * ry

RrYy

F2 generations - A cross is carried out between the offspring of F1 generation. Thus, The cross between "RrYy" and  "RrYy" is represented by the punnet square as below -

RY          Ry          rY          ry

RY RRYY RRYy RrYY RrYy

Ry RRYy RRyy RrYy Rryy

rY RrYY RrYy rrYY          rrYy

ry RrYy Rryy          rrYy rryy

Hence, out of total 16, genotype rrYY  , rrYy, rrYy and rryy , do not have both dominant traits.

Rest all 12 have both the dominant traits.

Hence, option B is correct

Nine out of sixteen members of the [tex]F_2[/tex]generation will exhibit both dominant characteristics. So, the correct option is C.

We must take into account the genetic potential coming from hybridization between plants of the [tex]F_1[/tex] generation to estimate the proportion of the [tex]F_2[/tex] generation that will display both dominant characteristics. With one dominant allele (R for round shape and Y for yellow color) and one recessive allele (R for wrinkled shape and Y for green color), all plants in the [tex]F_1[/tex] generation are heterozygous for both characteristics.

We can use Punnett squares to obtain an estimated phenotypic ratio when these [tex]F_1[/tex] plants are crossed to the [tex]F_2[/tex] generation:

       

According to the Punnett square, there are 16 possible genotypes in the [tex]F_2[/tex] generation. Nine of these genotypes (RRYY, RRYy, RrYY, and RrYy) will display both dominant features (round shape and yellow color). Plants with these genotypes will have both dominant characteristics.

Therefore, nine out of sixteen members of the [tex]F_2[/tex]generation will exhibit both dominant characteristics. So, the correct option is C.

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Why are fossils found mainly in sedimentary rock? Choose all that apply.


All fossilized organisms lived in the sea.


Igneous rocks form under conditions too hot for lifeforms.


Sedimentary rocks form in layers.


Sedimentary rocks form at the Earth’s surface.

Answers

Answer:

Sedimentary rocks form at the Earth's surface.

Hope this helps!

Explanation:

Answer:

Sedimentary Rock- "They are formed by the accumulation and solidification of sediments, as the sediments are supplied by the wind, air or even ice(water)."

As the sedimentary rocks are formed under low temperature,T and low pressure,P.

Explanation:

Sedimentary rocks mainly posses the fossilized bodies because when the living organism or plant dies there body is buried under the layer of sediment. As the sedimentary rocks are formed by the action of slit and mud. As for Igneous rocks they do not posses any fossilized body just because they are formed under very harsh conditions.

Use evidence from your chosen maps to explain how hydrosphere and atmosphere are related

Answers

Final answer:

The hydrosphere and atmosphere are closely related and interact through the water cycle. Water evaporates from the hydrosphere into the atmosphere, condenses to form clouds, and returns to the hydrosphere through precipitation. The atmosphere also influences the climate and distribution of water in the hydrosphere.

Explanation:

The hydrosphere and atmosphere are closely related and interact with each other. The water cycle is a key process that connects the two systems. Water from the hydrosphere evaporates into the atmosphere, forming water vapor. This water vapor then condenses to form clouds, and eventually, precipitation occurs, returning water back to the hydrosphere in the form of rain or snow.

Additionally, the atmosphere plays an important role in maintaining Earth's water balance by providing water through precipitation and transporting it across the globe through wind patterns. The atmosphere also influences the temperature and climate, which in turn affects the water cycle and the distribution of water in the hydrosphere.

Overall, the hydrosphere and atmosphere are interconnected and depend on each other for the continuous cycling of water and the regulation of Earth's climate.

Convert 0.14 kilograms to grams.
grams​

Answers

Answer:

140 grams

Explanation:

Converting kilograms to grams is very easy, you just need to remember that 1 kilogram has 1000 grams. In this box to do the conversion you only need to multiply the value in kilograms that you have by 1000, as shown below:

0.14 kilograms * 1000 grams = 140 grams.

The conversion of 0.14 kilograms to grams can be written as 140 grams.

We use the conversion factor that 1 kilogram is equivalent to 1000 grammes to convert weights in kilogram to weights in gram.

By multiplying 0.14 by 1000, we can convert 0.14 kilogram to gram:

0.14 kilograms * 1000 grams/kilogram = 140 grams

Gram are frequently used to express lesser amounts of mass because they are a smaller unit of measurement than kilogram.

Thus, 140 grams are therefore equal to 0.14 kilograms. Since there are 1000 grams in a kilograms, the value in kilograms is multiplied by 1000 in order to convert it.

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Homes that have less/fewer_
most likely have worse indoor pollution.

Answers

Answer:Air Flow.

~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~

Airflow.

Therefore, the quality of indoor air may be even more important than outdoor quality because of exposure time to pollution. According to the EPA, indoor air quality can be two to five times worse than outdoor air quality, especially with regard to airborne chemicals.

Which is more harmful indoor or outdoor air pollution?

According to the EPA, however, the levels of indoor air pollutants are often 2 to 5 times higher than outdoor levels, and in some cases, these levels can exceed 100 times that of outdoor levels of the same pollutants. In other words, sometimes the air inside can be more harmful than the air outside.

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does a large open forest have a high or low rate of speciation

Answers

Answer:

A large open forest would have a high rate because it is in an expanded area.

Explanation:

Large open forest have a high rate of speciation because species which have traveled to far away distance might not come back and hence get isolated there by causing speciation.

What is speciation?

Speciation is defined as a process where species get isolated from the main group and then transformed into re productively isolated and diverge and therefore form new species.

Example of speciation is a rugged mountain terrain, which can become a physical barrier there by allowing speciation.

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How would you define energy How would you define energy and why do living things need energy

Answers

Answer:

Living things obtain and use energy

Explanation:

Cells cannot survive on their own. They need power to stay alive. They need energy to perform functions such as growth, maintaining balance, repair, reproduction, movement and defense. This means all living organisms must obtain and use energy to live.

Answer:

PLATO SAMPLE ANSWER:

Energy is the ability to do work. Living things need energy to grow, develop, move, and perform voluntary and involuntary body processes.

Explanation:

An example of what is geese flying south for the

Answers

Answer:

migration

Explanation:

birds move one place to another, geese is one of them, usually they migrate is because winter is coming and there isn't so much food,need shelter, surviving and driving to safety. All they want is a good home

what best explain how green house gases effect the earth

Answers

Gases in the atmosphere, such as carbon dioxide, trap heat just like the glass roof of a greenhouse. These heat-trapping gases are called greenhouse gases. During the day, the Sun shines through the atmosphere. Earth's surface warms up in the sunlight.

Answer:

Effect of the green house gases are discussed below.

Explanation:

The major effects of the Greenhouse gases on the Earth's atmosphere are such as:

The greenhouse effect is the effect that stated how natural gases of the earth stop the warm gases to go outside from the earth's atmosphere.Due to this result the rise in the temperature of the earth which is not good for the atmosphere of the earth it creates a dis-balance between Environment and temperature.This increased heat creates a problem for humans, Plants, and Animals.

Phylogenetic trees represent

A. unique species that share few characteristics with species today.
B. points in time where species went extinct.
C. geographical areas that supported a variety of species in the past.
D. evolutionary relationships between species

Answers

The answer for this is D.

Think of phylo- as a group of organisms and -genetic as genes of these organisms. Put it into a tree formar and it’ll show how genetics will group these organisms and how they are related (like a family tree).
The correct answer would be D

What happens during prophase

Answers

The cell membrane disintegrates and the spindles begin to go form
Final answer:

Prophase is the first stage of cell division, during which the genetic material condenses into chromosomes, the nuclear envelope breaks down, and the mitotic apparatus forms.

Explanation:

During prophase, the first stage of cell division in both mitosis and meiosis, several important events occur. Initially, the genetic material within the nucleus, which usually exists in a loose, unorganized state, condenses into visible and distinct chromosomes. Each chromosome replicates into two identical sister chromatids, bound together by a structure called a centromere.

As prophase progresses, the nuclear envelope begins to break down, and the nucleolus disappears. In the cytoplasm, specialized structures known as centrioles start to move towards opposite ends of the cell, forming a structure known as the mitotic (or spindle) apparatus, which will aid in the separation of the sister chromatids in later stages.

In essence, what happens during prophase is the preparation of the cell for subsequent stages of cell division, by organizing its genetic material and forming necessary structures.

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Which are the Major components of ribosomes? NEED HELP ASP PLEASE

(a) single strands of sugar

(b) DNA and proteins

(c) RNA and proteins

(d) double strands of nucleic acids

Answers

Answer:

C

Explanation:

RNA or Rybo-nucleic Acids are used to make the Proteins that have different functions within the cell.

Question:

Which are the Major components of Ribosomes?

Answer choices:

(a) single strands of sugar

(b) DNA and proteins

(c) RNA and proteins

(d) double strands of nucleic acids

Answer:

(C) RNA and proteins

Explanation:

RNA or Ribonucleic acid Makes Ribosomes in cells

HOPE THIS HELPS

Which phrase describes the element carbon-14?

A-decays at an unknown rate
B-found in an organism’s remains
C-forms from the breakdown of nitrogen-14
D-is measured to determine the age of sedimentary rocks

Answers

The element of carbon-14 would be that B. It is found in the remains of organisms

The correct option is B.

Carbon-14 is a carbon radioisotope discovered on february 27, 1940 by Martin Kamen and Sam Ruben.

It is used to determinate the age of fossils or archaelogical remains that contain organic material : remains of living beings or objects made of natural raw materials such as wood.

The radiocarbon dating method is the most reliable technique for knowing the age of organic samples less than 60.000 years old.

Paleontologists as they know the average time of disintegration of that isotope, examining the amount of that compound and its extinction curve, can know the antiquity of a fossil.

The mass of the 14C isotope of any specimen decreases at an exponential rate, which is known at 5.730 years after the death of a living being, the amount of 14C in its remains has been reduced by half. Thus, by measuring the amount of radioactivity in a sample of organic origin, the amount of 14C still remaining in the material is calculated. This way it can be dated the moment of the death of the corresponding organism.


As erosion removes the tops of mountains, the crust will rise upwards. This is an example of _____.


orogenesis


mountain building due to uplift


normal faulting


isostatic adjustment

Answers

Answer:

As erosion removes the tops of mountains, the crust will rise upwards. This is an example of isostatic adjustment ( last choice).

Hello There!

This is an example of “Isostatic Adjustment”

Isostatic adjustment is the process of establishing a new level of gravitational balance.

All of the following statements are true, except: (1 point)
The US is largest producer of corn in the world.
Corn is the main cattle and production animal feed in the US.
Almost all of the corn grown in the US is exported.
Corn alcohol is distilled to make the cleaner fuel called ethanol.

Answers

Answer:

Almost all of the corn grown in the US is exported

Explanation:

The US is the largest producer and the largest consumer of corn and corn products in the world. The corn is used in both the human and the cattle diet, with a special accent on the cattle diet, as it is the primary food used for the tens of millions of cattle that the country has. Considering the enormous amount of corn produced, it is also used for production of ethanol. Despite being the largest producer of corn in the world, the US is not exporting a lot of its corn, but instead it is actually importing more corn, as the demand for it, and the versatility in its usage and well established in the American economy.

After a major forest fire, the process of succession begins in an ecosystem.
Which best describes how succession changes the ecosystem?​

Answers

Succession is a gradual, predictable process of ecological change after a disturbance, leading to the establishment of pioneer species, development of more complex communities, and eventual stability in the form of climax communities.

Succession is the gradual and predictable process by which the structure and composition of an ecosystem change over time after a disturbance, such as a forest fire. It typically involves the following stages:

1. Pioneer Species: After the disturbance, pioneer species, often well-adapted to colonize bare or disturbed areas, establish themselves.

2. Primary Succession: Over time, more complex plant and animal species colonize the area, leading to the development of a more stable and diverse community. This process is known as primary succession and occurs in areas where no soil is initially present.

3. Climax Community: Eventually, the ecosystem reaches a climax community, which is a stable and self-sustaining community of plants and animals. This community can persist for an extended period under the prevailing environmental conditions.

4. Secondary Succession: In cases where the soil is already present, secondary succession may occur. This process is faster than primary succession as it builds upon the existing soil and seed bank.

Overall, succession brings about a gradual and dynamic transformation in the structure and biodiversity of an ecosystem, leading to increased complexity, stability, and diversity over time.

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