PLEASEEEEEE I NEED HELP IN THIS QUESTION!!!!! 78 Points!!!!

Answers

Answer 1

The answer would be D

Answer 2
The answer is D my friend. :)

Related Questions

Which environment change is likely to allow the most individuals to survive


A. Transition from a meadow to a forest

B. Massive volcanic eruption

C. Oil spill in the bay

D. Acres - wide forest fire

Answers

I’m pretty sure the correct answer would be A.

Based on option A the transition is just more trees, which gives out more oxygen. B having a massive volcanic eruption can cause certian things to die off and could eventually kill off certian species and forms of air. Example would be killing of the trees. C oil spill in the bay can cause damage by pollution and dieing of species. D acres- wide forest fire. Again that would take away oxygen supply and take away natural habbitates of animals/species. There for the answer would be A.

How does radiation from the sun affect earth?

Answers

The Sun's affect on global warming can mostly be attributed to variations in the near-infrared and visible wavelengths of solar radiation. As previously stated, these types of radiation are absorbed by the lower atmosphere, the oceans, and the land

Final answer:

Solar radiation is absorbed by Earth's surface, causing warming, while some is reflected back into space. It affects the ionosphere by altering its height due to ionization and can disrupt satellites. Additionally, it plays a key role in the greenhouse effect and Earth's radiation balance.

Explanation:

The effect of solar radiation on Earth is extensive, influencing numerous aspects of the environment. When radiation from the sun reaches Earth, it is mostly absorbed by the Earth's surface, which warms our planet. However, some of this energy is reflected back into space by the surface and atmosphere.

Radiation also impacts the ionosphere, a layer high in Earth's atmosphere. The ionosphere's boundary fluctuates between approximately 60 kilometers during the day to about 85 kilometers at night due to the sun's ionization effects. Solar radiation, which includes X-rays and gamma rays, creates ionization levels similar to those during the daytime, and it can even prompt sensitive satellites to shut down their electronics to protect against damage.

Most solar radiation falls within the visible spectrum, but ultraviolet radiation is also significant as it is absorbed on its way to Earth's surface, lessening UV levels experienced on the ground. The Earth emits radiation too, but in longer, infrared wavelengths which are associated with the greenhouse effect. Greenhouse gases absorb this infrared radiation and re-emit it, causing warming of the Earth's surface and lower atmosphere.

The radiation balance of the Earth is critical; the planet must emit as much energy as it absorbs to maintain a stable temperature. When greenhouse gases absorb and re-emit radiation, they contribute to this dynamic balance but also cause global temperatures to rise under certain conditions.

Which answer lists different behavioral responses that some animals use as defense mechanisms?

A) camouflage, mimicry, and stingers *


B) hibernation and migration


C) courtship and breeding behaviors


D) nesting and food gathering

Answers

You answer to this question will be: A) Camouflage, Mimicry, and Stingers*

I’m almost positive the answer is choice A

I need help i don't know the answer and the answer can you help me? you'll get 15 points if you answer this question

Answers

Answer: B

Explanation

Burns are devastating and debilitating because of loss of fluids and electrolytes from the body. How do physicians estimated the extend of burn damage associated with such dangerous fluid loss?

Answers

burns are estimated by class, 1st degree, 2nd degree, etc. there are characteristics associated with each degree. if you can see the muscle and fat tissue, that would be a 4th degree burn...

The extent of burn damage and fluid loss is estimated by physicians using the rule of nines, which relates body surface area to burn size. Severity is also classified by the degree of burn, from first to fourth degree. This information guides treatment decisions, addressing dehydration, electrolyte imbalance, and infection risks.

Physicians estimate the extent of burn damage and the associated dangerous fluid loss primarily through a method known as the rule of nines. This technique measures the size of the burn in relation to the total surface area of the body by associating specific anatomical areas with a percentage that is a multiple of nine. For instance, the entire arm is approximately 9% of the body surface area. Understanding the extent of the burn is essential for determining the appropriate level of care, such as the need for specialized treatment, intravenous fluids to counteract dehydration, and electrolyte balance, as well as to gauge the risk of infection and the requirement for procedures like debridement or skin grafting.

Burns are also classified by the degree of their severity, ranging from first-degree burns, which are superficial, to fourth-degree burns, which involve the underlying muscle and bone and can be life-threatening. In addition to the extent and degree, assessing the fluid loss and electrolyte imbalance is crucial for patient care, addressing the potential risks of dehydration, renal and circulatory failure, and the necessity for infection prevention.

Which of the following best compares bryophytes and pteridophytes? Bryophytes are nonvascular plants, and pteridophytes are seedless vascular plants. Bryophytes are seedless vascular plants, and pteridophytes are gymnosperms. Bryophytes are nonvascular seedless plants, and pteridophytes are angiosperms. Bryophytes are gymnosperms, and pteridophytes are nonvascular plants.

Answers

The answer is; Bryophytes are nonvascular plants, and pteridophytes are seedless vascular plants

Pteridophytes have a vascular system (phloem and xylem tissues) but produce spores for reproduction, unlike other higher plants. An example of pteridophytes is the fern. Bryophytes that include Moses are referred to as ‘lower plants because they do not have a true vascular system.

Answer: Bryophytes are nonvascular plants, and pteridophytes are seedless vascular plants.

Determine 3examples of surface water

Answers

Answer:

The example of surface water are lakes, creeks and streams etc

Explanation:

Surface water is the kind of water which is found above the earth's surface. It can be compared with groundwater and atmospheric water which is found below or above the surface of earth. Surface waters include streams, rivers, lakes, reservoirs, and wetlands because all of these sources are found on the surface of earth.

What is not true concerning the flow of energy through an ecosystem

Answers

A lot of the energy from photosynthesis flows out as heat.

^answer

When energy is being transported or flowed through the ecosystem most of the heat is lost.

Hope this helps!

Decomposers are organisms that A. use sunlight to produce food. B. can only be seen using a microscope. C. feed upon living organisms. D. break down matter from dead plants and animals

Answers

the answer is d. break down matter from dead plants and animals

Answer:D. break down matter from dead plants and animals

Explanation:

When an organism is finished growing, which of the following best describes what happens on the cellular level?
A. Its cells stop reproducing.
B. Its cells reproduce and die at the same rate.
C. Its cells stop growing.
D. Its cells grow and shrink at the same rate.

Answers

it’s cells reproduce and die at the same rate

Answer: Option B

Explanation: When the organism has stopped growing then there is no visible growth in the body of the organism.

When the cells proliferate and dies at the same rate, the change is zero and the body seems to be finished growing. This can be described on the cellular basis that the number of cells remains constant as the rate of proliferation and death is same.

Climate is primarily determined by the interaction of the air and _____. oceans winds lithosphere plants

Answers

Answer: Oceans

Explanation:

Climate is primarily determined by the interaction between air and ocean. The warm wind circulate and makes the temperature feasible for life.

Oceans heat the air above it and it circulates from the equator region to the polar region to make the temperature optimum. The circulation of air due to ocean leads to climate change.

hence, these two factors are responsible for the climate of a region.

Answer:

oceans

Explanation:

Contact metamorphism _____.
1.) is caused by high temperatures
2.) usually affects a very large area
3.)happens when mountains are formed
4.)occurs along fault lines

The answer is in this paragragh!!!!!!

[Diagram of location where contact metamorphism occurs] Contact metamorphism also happens at low pressure, but at high temperature. Magma from an intrusion contacts preexisting rock. It seeps into tiny spaces and heats the rock. Contact metamorphism affects a small area and forms fine-grained, non-foliated rock.

Answers

1.) is caused by high temperatures.

It says it in the very first sentence. That it happens at high temperatures.

Hope this helps.

Final answer:

Contact metamorphism is triggered by high temperatures from magma intrusion, affecting a small area and producing fine-grained, non-foliated rocks. Occurring at low pressure and relatively shallow earth's crust depths, it also involves hydrothermal fluids that alter the rock's mineral composition. This process differs significantly from regional metamorphism, which impacts large areas.

Explanation:

Contact metamorphism is caused by high temperatures and occurs when magma from an intrusion contacts preexisting rock, introducing heat into tiny spaces within the rock. This process happens at low pressure but at high temperatures varying widely from 400-1000°C. This type of metamorphism affects a small area, in contrast to regional metamorphism which affects large areas through extreme pressure from overlying rock or compression during mountain building processes. Contact metamorphism typically produces fine-grained, non-foliated rock due to the localized heat impact from the magma.

Hydrothermal fluids also play a crucial role in contact metamorphism by transporting heat and facilitating the alteration of the rock's mineral composition. Moreover, contact metamorphism commonly occurs at shallower depths of the earth's crust, where pressures are relatively low. The metamorphosed rocks are found in the aureole, the zone surrounding the body of magma where the heat impact is most intense. Interestingly, many profitable mines are located in these metal-rich aureoles, highlighting the economic significance of this geological process.

Following a tornado a population of birds is separated and they settle in two very different habitats after a long period of time what is most likely to occur with natural selection

Answers

When a bird population is divided by a natural disaster like a tornado, habitat isolation and different environmental pressures lead to divergent evolution through natural selection, possibly resulting in speciation over time.

After a tornado, a population of birds is separated into two very different habitats. As a result of habitat isolation and differing environmental pressures, the process of natural selection will likely lead to divergence in the two bird populations. Each group of birds will adapt to the specific conditions of their new environment, resulting in evolutionary changes that may ultimately lead to the formation of new species over long periods of time.

In a bird population forced into a new habitat after a natural disaster, like a hurricane on the Mississippi Gulf Coast, individuals with traits better suited to the new conditions will have higher survival and reproductive rates. Over successive generations, these advantageous traits become more common. This selective pressure could lead to noticeable differences between the now-separated populations in behavior, physical characteristics, and even their genetic makeup.

An example of this can be seen during periods of drought, where food availability changes. Birds with larger and broader beaks may be better suited to consume large seeds with hard shells, which become more common during droughts. If these conditions persist, the population's characteristics may shift towards these advantageous traits guided by natural selection.

which list shows the processes of respiration in the correct order?

Answers

Final answer:

The correct order of the processes of respiration starts with pulmonary ventilation, followed by external respiration, then inter-pulmonary respiration, and ending with internal respiration.

Explanation:

The processes of respiration should be in the following order:

pulmonary ventilation

,

external respiration

,

inter-pulmonary respiration

, and then

internal respiration

Pulmonary ventilation is the first step in the respiratory process where the air is moved into and out of the lungs. External respiration is the exchange of gases with the external environment and it occurs in the lungs. Interpulmonary respiration refers to the transportation of gases between the lungs and the cells of the body, this is conducted by the circulatory system. Finally, internal respiration is the process in which oxygen is used for the metabolic reactions in cells and carbon dioxide, as a byproduct, is produced.

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Many human diseases follow the dominant/recessive pattern of inheritance. If an individual possesses an allele for a disease, but does not have the disease, this person is known as a ___________.

Answers

That person is called a carrier of whatever trait it is, it isn’t always a disease.

based on the pictures of homologous structures in each organism, what do you think a homologous structure is

Answers

A homologous structure is an example of an organ or bone that appears in different animals, underlining anatomical commonalities demonstrating descent from a common ancestor. In other words, it's when very different animals have bones that appear very similar in form or function and seem to be related.

A homologous structure is an example of an organ or bone that appears in different animals, underlining anatomical commonalities demonstrating descent from a common ancestor. In other words, it's when very different animals have bones that appear very similar in form or function and seem to be related.

Main ideas are not identified within an outline.
Please select the best answer from the choices provided
T
F

Answers

The statement is false. Main ideas are identified within an outline.

An outline is a useful guide that a person uses before writing his/her essay in order to organize the ideas that are going to be discussed in it. A person can start working on an outline, one of the steps of the prewriting stage, after the topic of the essay has been chosen.

Answer: false  reeeeeeeeeeee

Explanation:

Why is biomass a better alternative to coal

Answers

Is this multiple choice?

Biomass has it's advantages and disadvantages. Biomass is a type of fuel that is not a limited substance, while coal is very limited. While this may be true, biomass in some ways is more expensive than coal. It also causes the same amount, or more, air pollution. Biomass as well does not create as much fuel when it's burnt in terms of carbon dioxide.

Because it can be created from sources that are renewable and can be continuously replenished, such as garbage and plants, bioenergy, also known as energy obtained from biomass, is a sustainable substitute for fossil fuels.

What is biomass?

Organic material, including plants, trees, and garbage from the agricultural and urban sectors, is the source of biomass.

It can be used as a fuel for transportation as well as for heating. By using biomass more frequently, the EU can diversify its energy sources, spur economic expansion and job development, and reduce greenhouse gas emissions.

All kinds of wood debris can be used in a wide range of biomass technologies and generate great biomass fuels.

Bioenergy, also known as energy from biomass, is a sustainable alternative to fossil fuels since it can be produced from renewable and perpetually replenishable sources like trash and plants.

Thus, it can be concluded that biomass is a better alternative to coal.

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How many calories does tali’s have

Answers

250 calories in a small bag

150 calories per serving

Pretty sure they have 36 calories per a tbsp.

In any ecosystem, blank are the point for energy for new energy.

A) consumers

B) detritivores

C) heterotrophs

D) producers ​

Answers

In any ecosystem, producers are the point for energy for new energy.

Hope this helps,

Davinia.

The answer is D producers

What water temperatures and resulting weather conditions are typically associated with El Niño?

A. Cooler waters warmer-than-average temperatures.

B. Cooler waters bring cooler-than-average temperatures

C. Warm waters bring warmer-than-average temperatures

D. Warm waters bring cooler-than-average temperatures


PLEASE HELP

Answers

I think it’s C, bc an El Niño happened in the pacific, with warm water is stopping the cold water from rising.

What is the bronsted lowry definition of an acid

Answers

Explanation:

According to Bronsted-Lowry, acids are the species that donate protons or [tex](H^{+})[/tex].

For example, HCl is a Bronsted-Lowry acid as it releases protons upon dissociation.

                   [tex]HCl \rightarrow H^{+} + Cl^{-}[/tex]

On the other hand, species that take up or accept a protons or [tex](H^{+})[/tex] are known as Bronsted-Lowry base.

For example, [tex]NH_{3} + H^{+} \rightarrow NH^{+}_{4}[/tex]

Therefore, [tex]NH_{3}[/tex] is a Bronsted-Lowry base as it accepts a proton.

How do these equations explain why the total amount of O2 and CO2 remains the same?

Answers

Final answer:

The total amount of O2 and CO2 remains the same due to the Conservation of Matter principle, which is exemplified in balanced chemical equations. Concepts like Dalton's law and Henry's law, alongside biological systems, maintain this balance.

Explanation:

The equations demonstrate the conservation of matter, a principle stating that total amount of matter remains constant in a closed system. In the context of respiratory systems, this principle is seen as the amount of oxygen (O2) and carbon dioxide (CO2) remaining the same. This can be explained through concepts like Dalton's law and Henry's law, which describe gas exchange and affirm that each specific gas in a mixture independently exerts force (its partial pressure).

Additionally, oxygen is used by the body's cells, and carbon dioxide is a waste product. Their ratio is referred to as the respiratory quotient (RQ), which varies depending upon the fuels (like fat and protein) used by the body. This also contributes to the balancing of O2 and CO2 amounts.

The balanced chemical equations, such as the reaction of C3H8 with O2, show that the atoms on the reactant side are equal to atoms on the product's side, upholding the conservation of matter. Therefore, as long as the system remains closed (e.g., the human body), the total amount of O2 and CO2 will not change unless expelled (exhaled in this case).

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The total amount of O2 and CO2 remains the same because the two processes are complementary. Photosynthesis consumes CO2 and produces O2, while aerobic respiration consumes O2 and produces CO2.

Photosynthesis

6CO2 + 6H2O + light → C6H12O6 + 6O2

Aerobic respiration

C6H12O6 + 6O2 → 6CO2 + 6H2O + energy

The oxygen that is produced during photosynthesis is consumed during aerobic respiration, and the carbon dioxide that is produced during aerobic respiration is consumed during photosynthesis.

This cycle ensures that the atmosphere maintains a relatively constant balance of O2 and CO2.

This is important because both O2 and CO2 are essential for life.

O2 is needed for aerobic respiration, which is the process by which cells produce energy. CO2 is needed by plants for photosynthesis.

Aerobic respiration is the process by which cells break down glucose (a type of sugar) to produce energy in the form of ATP (adenosine triphosphate).

ATP is the main energy currency of the cell and is used to power all of its activities, such as muscle contraction, protein synthesis, and transport of molecules across the cell membrane.

Aerobic respiration requires oxygen. Oxygen is used to oxidize glucose, which means that it helps to remove electrons from the glucose molecule.

This process releases energy, which is used to produce ATP.

Photosynthesis is the process by which plants use sunlight, water, and carbon dioxide to produce glucose and oxygen.

Glucose is used by the plant for energy and to build new tissues. Oxygen is released into the atmosphere as a byproduct of photosynthesis.

Carbon dioxide is used to build the carbon skeleton of glucose. The carbon skeleton is the backbone of the glucose molecule and is essential for its structure and function.

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Question

How do these equations explain why the total amount of O2 and CO2 remains the same?

Challenge: In the process of photosynthesis, plants use carbon dioxide (CO2), water (H2O), and light energy to produce a sugar (C6H12O6) and oxygen (O2). In the process of aerobic respiration, animals and plants release energy from sugar and oxygen and produce carbon dioxide and water. The chemical equations that describe these reactions look like this:

6CO2 + 6H2O + light + C6H12O6 + 6O2

C6H12O6 + 6O2 -> 6CO2 + 6H2O + energy

What is the difference between the two types of consumer

Answers

Answer:

there's primary consumers and secondary consumers. the primary consumers eats the producers and there herbivores. the secondary consumers eats the primary consumers and they can be omnivores

Explanation:

What is an explanation of why producers are always found at the lowest trophic level?

Answers

This answer is probably late, but the answer that you put is right :) ( C.)

Explanation:

The reason why producers are always found at the lowest trophic level is because there is no need for them to consume other organisms (or living things) to be able to get their energy.

In other words, they do not need to consume living things to produce energy. They make their own food.

Hope this helps! :)

In the lowest tropic level, it is found that the Producers convert that the trapped light energy into the chemical energy.

What is meant by lowest tropic level?

The first and lowest level contains the producers, green plants. The plants or their products are consumed by the second-level organisms, the herbivores, or plant eaters. At the third level, primary carnivores, or meat eaters, eat the herbivores; and at the fourth level, secondary carnivores eat the primary carnivores.

Plants have a pigment known as chlorophyll which is present in chloroplast which has the ability to entrap sunlight and help in photosynthesis.

During photosynthesis, chlorophyll captures the sun rays and creates sugary carbohydrates or energy.

Hence, the plant constitutes the lowest part of the tropic system. And it converts light energy into chemical energy. The correct option is C).

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Jessica recently moved to an apartment in the industrial area of Readington City. She noticed that the roads in her neighborhood warm up quickly. She also noticed that the temperature in her apartment is typically much warmer than the temperature of her previous apartment, which was near the mountains on the outskirts of the city. What is responsible for the change in temperature?

A. Urban areas absorb more of the Sun’s radiation.
B. Mountainous areas don’t absorb the Sun’s radiation.
C. Mountain areas experience more precipitation.
D. Urban areas experience lower precipitation.

Answers

the answer is A. because the roads are black and take in more light which makes the area hotter

Answer:

The correct answer is option A, that is, urban areas absorb more of the Sun’s radiation.

Explanation:

The cause for the urban regions exhibiting a warmer climate in comparison to the mountainous regions is the maximum captivation of the radiation of the Sun by these regions. This is termed as the urban heat island effect. This results in the air to be warmer in comparison to the other regions.  

There are various causes related to the elevation in the temperature. One of the causes is exhibiting a huge number of roads and buildings in the urban regions. This takes part in the captivation of the heat from the Sun. Another cause is the absence of green plants, which absorbs the heat and the cools the surrounding.  

what is pulled into long wires​

Answers

Ductile is pulled into long wires.

Which of the following factors is biotic?

Answers

it’s food i have to have 20 characters so

Biotic factors are the living components of an ecosystem.

I believe the correct answer is C food. Food meaning plants, berries, and living consumable organisms.

Use the drop-down menus to answer the questions about genetic recombination. involves the transfer of genetic material from one bacteria to another. involves scraps of genetic material. uses a virus to transmit genetic material. uses a pilus to transmit genetic information. introduces new genetic material to a bacterium.
-conjunction
-transformation
-transduction
-genetic recombination (all 3)

Answers

The right matches are:

• Involves the transfer of genetic material from one bacteria to another ==> Genetic recombination (all 3).

• Involves scraps of genetic material ==> Transformation.

• Uses a virus to transmit genetic material ==> Transduction.

• Uses a pilus to transmit genetic information ==> Conjugation.

• Introduces new genetic material to a bacterium ==> Genetic recombination (all 3).

In molecular biology the term genetic recombination is often used as a synonym for DNA recombination, that is, the processes by which one DNA (or RNA) molecule is cut off, then joined to another.

There are three possible mechanisms in the bacterium: bacterial conjugation, bacterial transformation and transduction.

Genetic recombination involves the transfer of genetic material from one bacteria to another.

Transformation involves scraps of genetic material. Transduction uses a virus to transmit genetic material. Conjugation uses a pilus to transmit genetic information. Genetic recombination introduces new genetic material to a bacterium.

It should be noted that genetic recombination simply means DNA recombination, and this implies the processes by which one DNA molecule is cut off and joined to another one.

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What's the role of a primary consumer in the food web? A. To eat secondary consumers and produce energy B. To combine parts of the ecosystem into one nutrient C. To eat producers and produce energy D. To break down organic matter in the soil

Answers

The answer is C To eat producers and produce energy

Answer:

C. To eat producers and produce energy.

Explanation:

In a food chain, a series of organisms are linked to together in a process whereby one eats the other and provides energy at each trophic level.

Every food chain typically starts with the producers who obtain the energy either through the sun or chemicals and make their own food,

The organisms who eat the producers are known as primary consumers and they are the ones who provide energy to the next trophic level of the secondary consumers .

The food chain is as follows:

Producer (plant) ---> primary consumer (herbivore)---> secondary consumer (carnivore)- --> tertiary consumer

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