What factors are most responsible for significant changes in the climate

Answers

Answer 1

the conventional belief would be us but if you look at a graph of temp change you will find were simply at a low, the answer would be distance from sun and other things.

Answer 2

Answer:

The Factors are most responsible for significant changes in the climate are discussed below.

Explanation:

Many agents, both natural and human, can produce variations in Earth's power scale, including Changes in the sun's power approaching Earth.Variations in the thoughtful of Earth's environment and exterior.Variations in the greenhouse impact, which influences the quantity of energy preserved by the Earth's climate.The range from the equator influences the environment of a site.


Related Questions

What activities do Japanese students take part in each day?

Answers

Almost all students join one club or another; clubs usually meet after school, ... require students to gather on weekends to participate in tournaments or have ... So a few days after the entrance ceremony, a gathering is held where the activities ... school gym and listen to eighth and ninth graders explain what the club does.

There are no janitors in Japanese schools. The students clean their school everyday. ... During summer vacation Japanese students have to go to school many times for their school club or team practice. Also, Japanese students must do a lot of homework during summer vacation.

Use a calculator to find the value value of Sin 21o Round to four decimal places.

Answers

If you're asking for the Sine of 21 then that would be 0.3584

If you're asking for the Sine of 210 (can't tell because there's an "o" there) then that would be -0.5

Identify the relative location of the Mediterranean climate region in Europe. What are the three main characteristics of this climate region? Describe the plants and animals that are located in its ecosystem. Write your answer in complete sentences.

Answers

The Mediterranean climate is Europe is located along the the southern coastline of the continent, the coastline of the Mediterranean Sea. This climate manages to penetrate in certain areas like the the peninsulas that have relatively small longitudinal span.

The main characteristics of this climate are:

- change of seasons

- being mostly dry

- having seasonal rainfall

The plants and the animals in this climate region are well adapted to be able to sustain high temperatures and prolonged periods of drought. The animals tend to have short fur, are not large in size, but small and medium sized. The plants have very large root systems. They are also not growing big, but instead they are small or medium size, having thorns and needles, and being able to preserve water in them when it is drought.

Answer:

The Mediterranean climate region is located in southern Europe. Countries such as Spain, Italy, and Greece lie within this climate region. Characteristics of this climate region include annual temperatures between 50° F in the winter and 80° F in the summer. It is considered a mild climate region because it does not have extreme temperatures (too hot or too cold). It is known for its wet winters and dry summers. Because the summer months receive less precipitation, the region can suffer from frequent droughts. The Mediterranean climate rarely drops below freezing, allowing a variety of plants and animals to live within its borders. The region’s vegetation includes plants such as palm trees, cork oaks, and olive trees. Some of the animals in the Mediterranean ecosystem include lynxes, wild boars, deer, and rabbits.

Explanation: Edge 2021

After attacking the US at Pearl Harbor, Japan decided to

A - retreat to its homeland.
B - stop to regroup at its homeland.
C - continue to expand in the Pacific.
D - join the Axis powers.

Answers

I believe the answer is c

Answer:

C - continue to expand in the Pacific.

Explanation:

    On December 7, 1941, early in the morning the Japanese bombed the North American base of Pearl Harbor, Hawaii. It was a bloody and violent event, leading to the deaths of more than two thousand Americans and more than a thousand injured, and destroyed ships.

   After the December 1941 attack, the Japanese controlled for half the Pacific for months, and the following year they occupied the territories of Thailand, Hong Kong, Malaysia, Indonesia, Burma, and the Philippines.

 The attack on Pearl Harbor marked the entry of the United States and Japan, the formation of the Tripartite Pact, and territorial, political and economic disputes by nations of the world, and with it showed the violent power and ability to use intelligence for attacks and against -attacks.

How does the hydrologic cycle move water through the environment

Answers

It’s waves I’m guessing don’t use my answer but sorry I don’t know the answer have an amazing day

Final answer:

The hydrologic cycle, or water cycle, involves processes such as evaporation, condensation, precipitation, and transpiration that move water through the environment.

Explanation:

The hydrologic cycle, also known as the water cycle, moves water through the environment in a continuous process. It begins with the process of evaporation, where water changes from a liquid to a gas and enters the atmosphere. Next, the water vapor condenses to form clouds, and then precipitation occurs, which can be in the form of rain, snow, hail, or sleet.

The precipitation then falls back to Earth and flows into bodies of water such as rivers, lakes, and oceans. Some of the water infiltrates into the ground and becomes part of the groundwater. From the bodies of water and groundwater, water is transpired by plants or consumed by animals, and it eventually returns to the atmosphere through the process of transpiration and evapotranspiration. This completes the cycle and allows for the continuous movement of water in the environment.

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Why is kinetic energy a constant for a satellite in a circular orbit but not for a satellite in an elliptical orbit?

Answers

Answer:

A satellite (or any other celestial body) orbiting another massive body, can describe one of these types of orbits depending on its Orbital Total Mechanical Energy [tex]E[/tex]:

*[tex]E=0[/tex] when we talk about an open orbit in which the satellite escapes from the attraction of the planet's gravitational field. The shape of its trajectory is a parabola.

*[tex]E>0[/tex] when we talk open orbits, which are hyperbolic, being the kinetic energy [tex]K[/tex] greater than the Potential Energy [tex]P[/tex]

*[tex]E<0[/tex] when we talk about closed orbits, that is, the satellite will always be "linked" to the gravitational field of the planet and will describe an orbit that periodically repeats with a shape determined by the relationship between its kinetic and potential energy, as follows:

-Elliptical orbit: Although [tex]E[/tex] is constant, [tex]K_m[/tex] and [tex]P_m[/tex] are changing along the trajectory

-Circular orbit: When at all times both the kinetic energy [tex]K_m[/tex] and the potential [tex]P_m[/tex] remain constant, resulting in a total mechanical energy [tex]E[/tex].  

In this context, in a circular orbit, no work is done by gravity on the satellite (or orbiting body), since it always acts perpendicular to the movement. However, in an elliptical orbit this is not fulfilled, because gravity force is not always acting perpendicular to the orbiting body.

Final answer:

Kinetic energy is a constant for a satellite in a circular orbit because the speed is constant, unlike in an elliptical orbit where the speed is changing.

Explanation:

The reason why kinetic energy is a constant for a satellite in a circular orbit but not for a satellite in an elliptical orbit is because the speed is constant in a circular orbit, whereas it changes in an elliptical orbit. In a circular orbit, the satellite moves at a constant speed around the parent body, so the kinetic energy remains constant. However, in an elliptical orbit, the satellite moves at varying speeds as it gets closer to or farther away from the parent body, causing the kinetic energy to change.

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Annie designed an experiment to demonstrate a lunar eclipse. The steps of the experiment are listed below.

Place a light bulb on a stand.
Stick a pencil into a small styrofoam ball.
Switch on the light bulb and darken the room.
Stand facing the light bulb.
Hold the pencil with styrofoam ball in front at arm's length.

Annie's experiment has a flaw. Which of these statements best describes a method to correct the flaw in Annie's experiment? (2 points)

Replace the light bulb with a candle.

Place the light bulb behind the observer.

Use a big globe instead of styrofoam ball.

Clamp the styrofoam ball behind the light bulb.

Answers

Answer:

B. Place the light bulb behind the observer.

Explanation:

If you are going for a solar eclipse, then the experiment would work since it's the sun, the moon, the earth. But since you are looking to see a lunar eclipse, you must make the order be the sun, the earth, the moon. For this, her back has to be toward the light.

The correct option is d. Clamp the styrofoam ball behind the light bulb.

To understand why this is the correct option, let's first identify the flaw in Annie's experiment. In a lunar eclipse, the Earth comes between the Sun and the Moon, casting a shadow on the Moon. In Annie's experiment, the light bulb represents the Sun, the styrofoam ball represents the Moon, and the observer represents the Earth. The flaw in the experiment is that the shadow of the styrofoam ball (Moon) is not being cast onto a surface where it can be observed, as the observer is facing the light bulb (Sun). The best method to correct the flaw in Annie's experiment is to clamp the styrofoam ball behind the light bulb, allowing the observer to see the shadow that represents the lunar eclipse.

Each tile has a perimeter of 4 units. If Lucy connects 2 tiles, she makes a rectangle with a perimeter of 6 units. If she connects 6 tiles to form a rectangle, what is the perimeter of Lucy's new rectangle? (​

Answers

This problem can be solved with the equation 2x+2, where x = the number of tiles.

f(x)=2x+2, f(6)=2(6)+2

2(6)+2=14

the perimeter of the rectangle is 14 units.

Final answer:

The area of the larger square is four times greater than the area of the smaller square because the area scales in proportion to the square of the scale factor, which in this case is 2 squared.

Explanation:

When comparing the area of two similar geometric shapes, like squares, the area of the larger figure is proportional to the square of the scale factor. If we have a small square with a side length of 4 inches and a larger square whose dimensions are twice that of the first square, we can determine the area of both and their comparison. The side length of the larger square will be 4 inches x 2 = 8 inches. Accordingly, the area of the smaller square will be 4 inches × 4 inches = 16 square inches, and the area of the larger square will be 8 inches ×8 inches = 64 square inches. Hence, the area of the larger square is 64/16 = 4 times the area of the smaller square.

Organic material porvidrd nitrogen for plants. Which soil component contributes the most nitrogen to plants?

Answers

Humus or Topsoil because it is made up of organic material which makes the soil fertile

What conditions are responsible for magma formation?

Answers

The factors that mainly affect in the formation of magma can be summarized into three: Temperature, Pressure and composition. Temperature plays a role in the formation of the melts in the magma. Generally magma has a temperature range from 700-1300 degrees Celsius.

What was the name of the uprising in 1917 that forced the czar to give up his throne?

Answers

I would honestly say the answer is the “Russian Revolution”

It was called the Russian Revolution. In March 1917, the army garrison at Petrograd joined striking workers in demanding socialist reforms, and Czar Nicholas II was forced to abdicate. Nicholas and his family were first held at the Czarskoye Selo palace, then in the Yekaterinburg palace near Tobolsk.

The first pwave I have an earthquake travels 5600 km from the epic center and arrives at the systemic station at 10:05 AM what time did this earthquake occur

Answers

9:30 am is when it occured.

The Articles of Confederation set up a national Congress. List three things the national Congress could do.

Answers

According to the Articles of Confederation, the national Congress can:

1) Decides to declare a war

2) Create/Make treaties with other countries

3) Operate a post office

Why do you look for the constellation orion in the winter

Answers

Answer:

The Orion constellation is visible  in winter (northern hemisphere winter), especially from November to February. It is also visible a few hours before dawn from late August to mid-November and can be seen in the night sky until mid-April.

It should be noted that this constellation can be seen from all latitudes, which is extremely important in addition to its large size which makes it easy to recognize and identify.

One of the main reasons why it is very seeked in the northern hemisphere's winter sky, is because Orion allows to find several important constellations that are around it, that is, locating Orion we can easily find Taurus and Auriga, Gemini, Canis Minor, Unicorn, Canis Major, Hare and Eridane, which are also considered winter constellations.

What can you conclude about the population of Africa based on this information?

Answers

Answer:

Africa's population has increased dramatically since the mid-20th century. In 1950, there were approximately 230 million people living on the continent. Today, there are 1.2 billion. Africa's population is growing a lot every year. According to the United Nations (UN), the African country of Nigeria currently has the seventh largest population in the world. And it is growing the most rapidly. By the year 2050, some experts believe that it will have a population larger than the United States. It would then be the third largest country in the world. Nigeria's population is astounding based on the info that Nigeria is growing a lot per year.

Explanation:

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Do comets orbit in a circular or elliptical pattern

Answers

The correct answer is - elliptical.

The comets, just like the planets, have elliptical orbits. Their orbits though tend to be much more narrow and stretched ellipses than those of the planets. Because of the elliptical orbits, the comets are much closer to the body they are orbiting around in certain periods, but also much further away at other periods.

The comets are characterized and best known for their ''tails''. They do not have elongated shape though, but instead they have a rounded shape, but because they have amount of ice on them, as they move, particles of ice are stripped away from it. Those particles of ice are trailing behind the comet for certain time, and that is what we actually see as a tail of the comet.

The Ganges basin is the most heavily populated river basin in the world. What density (people per square kilometer) do human populations reach along the Ganges? 101 to 250 251 to 500 501 to 1000 1001 to 12,801 > 12,801

Answers

The correct answer is - 251 to 500.

The Ganges River basin is one of the most densely populated areas in the world. The average population density of this area is 390 people per square kilometer. The reason for the high density of the population in this area is that the Ganges River basin has been providing good living conditions for the people for thousands of years. The area has the Ganges River, as well as numerous other rivers, very fertile soil, nice climate, thus it has always been a very popular place for living in the Indian subcontinent. As it has been a densely populated area ever since people started living there, the trend continued over the centuries, and the population was constantly increasing. Numerous large cities have been built, and the region has been developing intensely in the past several decades, resulting in even more people being attracted to this area, thus contributing further to the high population density.

What is the main agricultural product in kansas?

Answers

Cattle and Calves.

Wheat.

Corn.

Sorghum.

Soybeans.

In terms of revenue generated, Kansas' top five agricultural products are cattle and calves, wheat, corn for grain, soybeans, and hogs.

What is the best way to get the salt from salt water to use it in the southwest Asia

Answers

Southwest Asia as farmers struggle to bring ... There has also been a lot of work done to learn how to take water from the ocean and desalinate it to use for drinking and irrigation. ... salt levels in soils, eventually making it impossible to farm in.

The Appalachian Mountains may have once been as lofty as the Himalayan-Tibetan Mountain belt is today. Why are they not this high now? The Appalachian Mountains may have once been as lofty as the Himalayan-Tibetan Mountain belt is today. Why are they not this high now? Opening of the North Atlantic Ocean converted lithosphere to asthenosphere beneath eastern North America, forcing eastern North America to sink to low elevations. They developed a dense crustal root following collision, and isostasy forced them to sink to their present elevation. They formed long ago, and erosion has beveled them to their present low elevation. The mountains cooled following the collision, which increased the density of the of the rocks by cooling, and isostasy forced the mountains to sink.

Answers

The correct answer is - They formed long ago, and erosion has beveled them to their present elevation.

The Appalachian Mountain Range is one of the oldest mountain ranges on the planet. They have formed in the Ordovician Period, around 480 million years ago. When they formed and were at their peak, the Appalachians were much larger and higher than what they are in the present. The reason for their decline in size is attributed to the erosion. The erosion is a process that removes the material from its original position. This process has been influencing, at different rates, the Appalachians for almost half a billion years. Even though the erosion is not a process that acts very quickly, when put the time that it influenced these mountains we will see that it managed to lower them significantly. That process continues in the present, and in the manner in which the continents are moving, there shouldn't be any force that will help lift up the Appalachians again, but instead they will continue to shrink until they are flattened in the distant future.

What is the coldest place in the universe

Answers

The Boomerang Nebula located 5,000 light years away from our home planet is measured -457.87*F or -272.15*C in temperature. It is believed to be a star system in the constellation Centaurus.

Final answer:

The Boomerang Nebula is the coldest known place in the universe outside a lab, with temperatures at 1 K, while the lowest temperature on Earth's surface was at Vostok, Antarctica, at 183 K (-89°C). Laboratories have reached even lower temperatures, with records at MIT and Helsinki University of Technology.

Explanation:

The coldest place known in the universe, outside a laboratory setting, is the Boomerang Nebula, where temperatures drop to around 1 K. In contrast, the coldest temperatures achieved on Earth's surface were recorded at Vostok, Antarctica with temperatures of 183 K (−89°C). However, the lowest temperatures ever recorded have been created in laboratory settings, such as at the Massachusetts Institute of Technology (4.5 × 10⁻¹⁰ K) and at Helsinki University of Technology (1.0 × 10⁻¹⁰ K).

How does the great-impact hypothesis explain the differences in density between the Earth and the moon?

Answers

Final answer:

The Giant Impact Hypothesis explains the moon's lower density compared to Earth by suggesting it was formed from less-dense mantle material ejected by a high-energy impact in Earth's early history. Post-impact conditions also caused the loss of volatile elements from the material, contributing further to the moon's low density.

Explanation:

The Giant Impact Hypothesis provides a persuasive explanation for the density differences between the Earth and the Moon. This hypothesis suggests that in the early stages of our solar system, Earth was struck by an object nearly the size of Mars. This oblique impact hurled a significant amount of the Earth's mantle into space, which eventually coalesced to form the Moon.

The Moon's low density compared to Earth can be explained by the composition of the debris ejected during this impact. This debris was primarily derived from the Earth's mantle, which is less dense than the core due to the scarcity of metals. Further, post-impact conditions, characterized by high temperatures, likely caused the loss of many volatile elements from this loose material, contributing to the Moon's low density and lack of atmosphere.

Therefore, the Giant Impact Hypothesis not only explains the origin of the Moon but also provides a plausible account for its unique properties, including its composition and density, when compared to the Earth.

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Which lake is on the border between chad and cameroon?

Answers

The correct answer is - Lake Chad.

The lake that is located on the border between the two Central African nations of Cameroon and Chad is the Lake Chad. This lakes forms very small portion of the border between these two nations, and it is located in the northernmost part of the border.

This lake is a large, shallow, endorheic lake. It is located on the edge of the Sahara desert, in the Chad Basin, and it is the largest lake in this basin. Lake Chad has experienced very big variations in its water levels, losing around 95% of its waters between the early 1960's and late 1990's.

This lake is of huge importance to the region, as it is providing water for more than thirty million people from four different countries located around it.

The Gobi Desert’s terrain is mostly comprised of __________. A. sand B. dust C. minerals D. bare rock

Answers

my answer would be Bare Rock

Answer:

D.bare rock

Explanation:

becaust the gobi besert's terrain is mostly comprised of bare rock.

How important is the ignorance of a flood plain in terms of the cause of the problem?

Answers

Flood plains are areas adjacent to rivers, ponds, lakes, and oceans that are periodically flooded at different points in time. Floodplains are hydrologically important, environmentally sensitive, and ecologically productive areas that perform many natural functions. They contain both cultural and natural resources that are of great value to society. Flooding occurs naturally along every river and coastal areas. Flood waters can carry nutrient-rich sediments which contribute to a fertile environment for vegetation. Floodplains are beneficial for wildlife by creating a variety of habitats for fish and other animals. In addition, floodplains are important because of storage and conveyance, protection of water quality, and recharge of groundwater.

I hope it is useful!!!

Analyze the map below and answer the question that follows. Identify the climate regions labeled on the map above in numerical order.

Answers

The correct answers are:

1 - Sub-tropical monsoon climate;

2 - Highland climate;

3 - Semi-arid continental climate;

4 - Cold temperate climate;

5 - Arid continental climate;

6 - Humid monsoon climate;

China is a vast country, with numerous climate types depended on their location and the geography. The eastern and southeastern part of the country belong to the monsoon climate types, getting high amounts of precipitation from the monsoons, with the southern portion having warmer winters, while the northern colder. Big portion of the western and all of the southwestern part is dominated by very high plateaus and mountains, thus the climate is predominantly highland one. The parts of the country that are deeper into the mainland are semi-arid and arid continental climates, dominated by steppes and deserts, having very low amounts of precipitation.

Answer:

1. Humid subtropical 2. Highlands 3. Arid 4. Subtropical 5. Semiarid 6. Humid continental

Explanation:

I took the assignment

What is the driest state in the united states

Answers

Nevada North Dakota. I hope that is help

PLEASE HELP!! Why do scientists study seismographs?
A. to learn about different rock samples
B. to determine the location of an epicenter
C. to analyze mineral content from Earth’s crust
D. to observe temperature changes on Earth’s surface

Answers

seismographs are used to measure the tremors in earth or earthquakes is there a none of the above ? if not its probably b the closest

The major reason why scientists study seismographs is because:

B. To determine the location of an epicenter

According to the given question, we are asked to state the major reason why scientists study seismographs and why they are important in risk analysis of natural disasters.

As a result of this, we can see that a seismograph is an equipment which are used to measure the tremors in the earth which happen in the earth, usually in the event of an earthquake to find the location of the epicenter

Therefore, the correct answer is option B

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Identify three ways boundaries are created and provide a specific example of each one.

Answers

Walls, and Fences are physical boundries

Answer:

Physical boundary are those like mountain, rivers and the desert.

Explanation:

There are numerous physical boundaries in the world like those of the terrestrial and the atmospheric and the hydrological boundaries. The physical boundaries on land are created by the mountains, plains and the plateaus, islands and the valleys all are physical forms and are distinct from each other by the erosion and deposition processes that create them and these processes are called as the agents of weathering. Whereas the boundaries that are created due to the presence of the various temperature layer and these layers represent distinct boundaries of aquatic zones like the photic, littoral and the deep abyssal zones.

In much of what is now Canada, glaciers covered the land as little as 12,000 years ago and glacial erosion scoured the land surface leaving very thin soil or bare rock over large areas. The Midwestern United States was also covered in ice at this time, yet this area contains some of the richest farm land in the world with thick soils. These soils are formed on glacial sediments and windblown dust deposits from the ice age. Why are the soil conditions between these areas so different when the soils are virtually identical in age

Answers

The reason why the Midwestern United States have a very fertile soil, but Canada doesn't, despite both of them being covered by glaciers until relatively recently, and both having the same age of soil, is the climate and vegetation.

Canada is much colder than the Midwest, its winters are longer, and the summers mild, while the Midwest has higher temperatures, prolonged period of drought, and seasonal rainfall.

Because of this, Canada has been covered by coniferous forests. They leave relatively little biomass, and also the climate is making the decomposition of the biomass very slow, thus resulting in relatively poor soil quality.

In the Midwest, the climate is perfect for the development of the grasslands. The grasses grown and die each year. They live a lot of biomass, and the higher temperatures contribute that the biomass decomposes pretty quickly, thus resulting in good quality soil.

The soil conditions between areas in Canada and the Midwestern United States are so different because, despite being virtually identical in age, the soils in Canada are thinner and less developed due to the recent glaciation and climate, whereas the Midwestern soils benefited from a history of material deposition and prairie vegetation enriching the soil after glaciation.

Soil development is a slow process taking thousands of years, especially after glaciation which scrapes existing soils away and leaves varied sediments. In Canada, glaciers covered the land until about 10,000 years ago, leaving behind thin, acidic, and infertile soils, which are still recovering. In contrast, in the Midwestern U.S., the retreat of glaciers deposited fertile glacial till and loess (windblown dust), contributing to the formation of some of the world's richest farmland. The differing conditions post-glaciation, including the type and fertility of material deposited by the glaciers, have led to this significant difference in soil quality. The Midwest's subsequent vegetation was conducive to soil development, accumulating organic carbon and leading to richer soils in comparison to the relatively young, less-developed soils in Canada.

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