In a low pressure system, does rising air get warmer or colder?

Answers

Answer 1

Answer:

Warmer

Explanation:

Areas where the air is warmed often have lower pressure because the warm air rises. These areas are called low pressure systems. Warm air is lighter (less dense) than cold air and consequently exerts less pressure.

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Related Questions

Most dry lands lie between ________ degrees north and south of the equator. A) 40 and 50 B) 20 and 30 C) 5 and 10 D) 0 and 5

Answers

Answer:

B) 20 and 30

Explanation:

Which religion is likely to experience growth in Europe because of current immigration trends

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Even in the event that all Muslim immigration to Europe were to abruptly and permanently come to an end - a zero migration scenario -

Which religion is expanding most quickly in Europe? The overall Muslim population of Europe would be predicted to increase by 2.5 percentage points, from the current level of 4.9% to 7.4% by 2050, even if all Muslim immigration into Europe were to stop immediately and permanently (a zero migration scenario).The fastest-growing religion in Europe is Islam, despite rising anti-Islamist sentiment as indicated by polls.France has the largest Muslim population in Europe with close to 5 million people, followed by Germany with 4 million.Christians will continue to be the largest religious group for the next 40 years, but Islam will grow more quickly than any other major faith.By 2050, if current trends continue, there will be almost as many Muslims as there are Christians worldwide.

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What happens to the other 5 G3P molecules?

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Six molecules of G3P are created per three Calvin Cycles, however, only one is utilized to make glucose. To restart the Calvin Cycle, the remaining five molecules of G3P are needed to regenerate RuBP.

One G3P molecule leaves the cycle and moves toward the production of glucose. 3 RuBP acceptor molecules are produced by recycling 5 G3P molecules.

However, each round generates two G3Ps, thus three turns result in six G3Ps. One G3P molecule is exported, while the other five stay in the cycle and are utilized to replenish RuBP, allowing the system to be ready for additional CO2 to be repaired.

A G3P molecule with three carbons exits the cycle after three cycles and joins a carbohydrate molecule. The leftover G3P molecules continue to cycle in order to be renewed into RuBP, which is then prepared to interact with more CO2. Together with the respiration mechanism within cells, photosynthesis creates an energy cycle.

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scoria cones are composed primarily of ______.

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Scoria cones are almost entirely made of tephra from ejected basaltic rocks. Although bomb-size bits and lava spatter may also be found, lapilli-sized fragments make up the majority of the tephra.

The most frequent kinds of volcanic Scoria cones are cinder cones, also known as scoria cones or pyroclastic cones. They develop as a result of lava pieces being blown into the air by ferocious eruptions, solidifying, and then falling as cinders surrounding the volcanic vent. Layers of pebble-sized or larger cinders and layers of ash make up cinder cones. bigger blocks and explosives from the volcano. The majority are composed of Scoria cones pieces that were ejected from the volcano together with gas-rich magma. Cinder cones have very little strength since they are composed almost entirely of loose particles. The majority of Scoria cones is made up of glassy pieces and might have phenocrysts. An examination of scoria discovered in Yemen revealed that it was mostly made of volcanic glass and a trace amount of zeolites (e.g. clinoptilolite). The Greek word for rust, skria, is whence the word scoria originates.

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Ozone molecules in the stratosphere absorb much of the harmful radiation from the sun. How many ozone molecules are present in of air under the stratospheric ozone conditions of temperature and pressure? round your answer to significant digits

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Under stratospheric ozone conditions, the concentration of ozone molecules in air is about 0.3 parts per million (ppm). This means that in one million molecules of air, there would be about 300 ozone molecules.

Ozone (O3) molecules are naturally present in the stratosphere, a layer of the atmosphere that lies between 10-50 km above the Earth’s surface. They are important components of the atmosphere because they absorb much of the harmful radiation from the sun. The amount of ozone present in the stratosphere depends on the temperature and pressure conditions of the air.

Under the stratospheric ozone conditions of temperature and pressure, there are approximately 5 x 10^20 ozone molecules present in every cubic meter of air. This means that for every one million molecules of air, about five million of them are ozone molecules. Ozone molecules are present in a concentration of about 2-8 parts per million (ppm) in the stratosphere.

Ozone is a highly reactive molecule that is constantly being broken down and replenished. The amount of ozone in the stratosphere can vary greatly depending on the prevailing conditions. It is estimated that concentrations of ozone in the stratosphere have decreased by about 5% since the 1970s. This is due to increased emissions of various pollutants, such as chlorofluorocarbons (CFCs), which have been proven to deplete the ozone layer.

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What would happen to Earth's temperature if the energy absorbed from the Sun solar radiation was less than the emitted thermal energy leaving the Earth quizlet?

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Answer: earth's temprature would decrease

Explanation:the Earth would cool down )until a new equilibrium was reached where absorbed solar energy equalled outgoing emitted energy

explain non biodegradable waste​

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Waste that cannot be decompose or dissolve by natural agents.

Non biodegradable wastes are the waste materials that can not be decomposed and broken down into simpler substances by the action of microorganisms. Plastics are considered as non-biodegradable waste.

What stage of photosynthesis produces G3P?

Answers

When ribulose 1,5-bisphosphate (RuBP) and carbon dioxide are combined during plant photosynthesis, the rubisco enzyme catalyzes the first phase of the light-independent processes, which results in the production of 2 equivalents of glycerate 3-phosphate.

The Calvin cycle, which occurs in the stroma, utilizes ATP and NADPH from light-dependent processes to fix carbon dioxide and create molecules of glyceraldehyde-3-phosphate, or G3P, which contain three carbons.

Reduction. The 3-PGA molecules are changed into molecules of glyceraldehyde-3-phosphate, a three-carbon sugar, in the second step by the usage of ATP and NADPH (G3P). The reason for this stage's name is that NADPH lowers or donates electrons to a three-carbon intermediate to create G3P.

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What types of clouds make rain?

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stratus, cumulus, and nimbus

How has the desert landscape of the Sahara influenced historical migration patterns in Africa?answer choicesThe Sahara Desert has facilitated the spread of disease in Africa.The Sahara Desert has served as a barrier to travel and migration.The Sahara Desert has attracted migrants to the area to herd cattle.The Sahara Desert has served as a highway for immigrants leaving Africa.

Answers

Answer:

c

Explanation:

i just took it

Part C-Differentiating between Serpentinite and Chlorite Schist The difference between serpentinite and chlorite schist is that View Available Hints) chlorite schist effervesces with application of dilute HCl, whereas serpentinite does not chlorite schist can be scratched by a fingernail, but serpentinite cannot chlorite schistis foliated, whereas serpentinite is unfoliated serpentinite effervesces with application of dilute HCI, whereas chlorite schist does not the layers of serpentinite are more flat than the layers of chlorite schist, which are noticeably wavy the layers of chlorite schist are more flat than the layers of serpentinite, which are noticeably wavy serpentinite is foliated, whereas chlorite schist is unfoliated. serpentinite can be scratched by a fingernail, but chlorite schist cannot Submit Part D . Differentiating between Slate and Phyllite The difference between slate and phyllite is that View Available Hint(s) the layers of slate are more flat than the layers of phylite, which are noticeably wavy. slate is foliated, whereas phyllite is unfoliated. phylite effervesces with application of dilute HCI, whereas slate does not the layers of phyllite are more flat than the layers of slate, which are noticeably wavy. slate can be scratched by a fingernail, but phyllite cannot slate effervesces with application of dilute HCl, whereas phylite does not phylite can be scratched by a fingernail, but state cannot phylite is foliated, whereas slate is unfolated Submit

Answers

For Part C: The difference between serpentinite and chlorite schist is that chlorite schist effervesces with the application of dilute HCl, whereas serpentinite does not.

For Part D: The difference between slate and phyllite is that the layers of slate are more flat than the layers of phyllite, which are noticeably wavy.

For Part C: The key difference between serpentinite and chlorite schist is that chlorite schist effervesces when exposed to dilute hydrochloric acid (HCl), while serpentinite does not. This characteristic reaction to HCl helps distinguish between the two rock types. Effervescence in chlorite schist indicates the presence of carbonate minerals that react with acid, whereas serpentinite lacks such carbonates, leading to no observable reaction with HCl.

For Part D: The primary difference between slate and phyllite lies in the texture and appearance of their layers. Slate exhibits flatter and smoother layers, while the layers of phyllite are noticeably wavy. This distinction in layer texture is often used to differentiate between the two rock types. The wavy layers of phyllite result from the presence of fine-grained minerals aligned in a preferred orientation, giving it a characteristic rippled appearance.

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What is the radiogenic heat?

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Radiogenic heat production is a physical parameter crucial to properly estimating lithospheric temperatures and properly understanding processes related to the thermal evolution of the Earth.

Radiogenic heating The thermal energy launched due to spontaneous nuclear disintegrations. in the Earth, the primary isotopes worried nowadays are of the factors uranium, thorium, and potassium, however numerous short-lived isotopes might also have been important all through the early formation of the Earth.

The main indoor resources of warmth inside the Earth are the heat content material of the little one Earth without delay after formation because of gravitational contraction and the decay of volatile, radioactive isotopes. Radiogenic warmth production is a bodily parameter important to properly estimating lithospheric temperatures and properly information tactics related to the thermal evolution of the Earth. This radioactive decay in Earth's crust and mantle continuously provides warmth and slows the cooling of the Earth.

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C3: Land Use/Land Cover Change
Land is used sometimes without regard for the environment. This causes the land to become unusable and can ruin the environment.

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Land Use/Land Cover Change Sometimes, land is used without consideration for the environment. As a result, the land becomes unusable and the environment may be harmed.

Land cover change denotes a change in certain continuous characteristics of the land such as vegetation type, soil properties, and so on, whereas land-use change consists of an alteration in the way certain area of land is being used or managed by humans

This article suggests a method for evaluating climate and hydrological differences caused by localized changes in land use and land cover (LULCC) in developing nations.

In order to do this, temperature and precipitation fluctuations are correlated with the LULCC, and the impacts on evapotranspiration, infiltration, and runoff—all components of the local water balance—are estimated. Due to the regulating erosion and accretion process, Land Use/Land Cover Change modification controls the sediment supply to coastal landforms.

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Which of the following cannot cause a tsunami?
a. faulting
b. a strike-slip fault on land
c. a volcanic eruption
d. an underwater landslide
e. all of these can cause a tsunami

Answers

The correct option (b)  a strike-slip fault on land.

A tsunami from pronounced  is a series of waves in a water body caused by the displacement of a large volume of water, generally in an ocean or a large lake.

Earthquakes, volcanic eruptions and other underwater explosions (including detonations, landslides, glacier calvings, meteorite impacts and other disturbances) above or below water all have the potential to generate a tsunami.

Unlike normal ocean waves, which are generated by wind, or tides, which are in turn generated by the gravitational pull of the Moon and the Sun, a tsunami is generated by the displacement of water from a large event.

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Can somebody give me an example of how to add more sentences to my essay please.

(ESSAY)
Chocolate is bad for the Ivory Coast for three main reasons the first reason is deforestation, the second reason is child labor, the third reason is poverty.
The first reason is deforestation. The chocolate farmers in the Ivory Coast often have to expand the cocoa Plantation by removing trees from the environment to make space for the coca plants, which removes habitats for animals living in the area which can lead to the extinction of different species in the area.
The second reason that cocoa is bad for the Ivory Coast is child labor the cocoa farmers will often not be paid enough to support their family which drives their children to help Farm Cocoa so they can provide for their family so instead of being in school or living their own life and being themselves they have to help their family on a farm to survive.
The third reason why chocolate is bad for the Ivory Coast is poverty the people that farm Cocoa often do not get paid enough to buy simple food items for their family which causes them to work long hours she get paid little to nothing for the work they put in hours at a time which will cause child labor.
In conclusion chocolate is bad for the Ivory Coast because of poverty deforestation the extinction of species in the areas and child labor.

Answers

An example of how to add more sentences to my essay please.

Using descriptive words, such as adverbs and adjectives, you can lengthen a phrase. Similar to this, strengthening your sentence by include adverbs or adjective clauses will help. The addition of an appositive or prepositional phrase is another approach to make your writing longer.

So you can start by telling more about what Chocolate is as well aa its link to Ivory Coast. The cause of the issue between them and the solutions to the problems.

What constitutes a sentence's components?

Any entire sentence has two fundamental structural components: a subject and a predicate. Other components that provide significance or detail can also be found in the subject or predicate. The subject complement, indirect object, and direct object are some of these components.

Therefore, we can say that when a sentence has a subject and a verb, it is complete. One can understand a complete statement on its own. Every sentence needs a topic, which often comes first in the sentence. A subject might be a pronoun or a noun (a person, place, or thing).

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How were the West African trade routs different?

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Travel between sub-Saharan Africa and North Africa requires crossing the Sahara, as does trans-Saharan trade. Although trade has existed since the beginning of time, its apex occurred between the eighth and early seventeenth centuries.

The manner in which goods were exchanged, however, was different between the trade systems. Ships were used to transport luxury goods and bulk goods along a more relay-based route along the Indian Ocean. Trading caravans made up primarily of camels were used to transport luxury goods along the Trans-Saharan route. Since there weren't many cities along the Trans-Saharan, relay-style trading was never really practiced.

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What are 3 results of the Agricultural Revolution?

Answers

Answer:

What are 3 Effects of the Neolithic agricultural revolution? Neolithic populations generally had poorer nutrition, shorter life expectancies, and a more labor-intensive lifestyle than hunter-gatherers.

Explanation:

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In India’s early history, kingdoms for form on the Indo-Gangetic Plains during____________________.A. The period of regional states, c. 200 BCE-300 CE.B. The early medieval age, after 600 CE.C. The third millennium BCE, when the Harappan Civilization was at its peakD. The later Vedic Age, c. 1000-600 BCE.

Answers

In India’s early history, kingdoms for form on the Indo-Gangetic plains during The later Vedic Age, c. 1000-600 BCE.

The Rajputs dominated much of the Indo-Gangetic Plain in the 12th century. The most notable of them included the Chauhans of Ajmer, the Gahadavals or Rathores of Varanasi, as well as other small Rajput kingdoms. Around the time of the Ghurid Invasions of India, the Rajput emerged as a distinct caste in Indian society. The sediments from the . The Indo-Gangetic plains contain flat terrain that is ideal for development and rich space for farming. As a result, these Rajputs are crowded with people. Just south of the Himalayas is the Indo-Gangetic plains, which spans the Indus and Ganges rivers. In India's northwest is the Thar Desert, while the Deccan Plateau makes up a large portion of its southern region. Himalaya and some from northern India filled the foredeep basin in front of the rising, creating the Indo-Gangetic plain.

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Ekman transport associated with the doldrums creates?

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Ekman transport associated with the doldrums creates tropical divergence.

Divergence occurs where the air is being removed or pushed out of an area. Since you can't have a void of air in the atmosphere, air rushes in to replace the air being removed. There is actually two types of divergence that occur in the atmosphere. The first is speed divergence (stretching).

Divergence occurs when a stronger wind moves away from a weaker wind or when air streams move in opposite directions. When divergence occurs in the upper levels of the atmosphere it leads to rising air.

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What causes juice to mold?

Answers

Juice can mold when it is exposed to air and moisture. Mold spores are present in the air and can land on the surface of the juice, where they can grow and reproduce. If the juice is not stored properly, it can become contaminated with bacteria, which can also cause it to mold.

While the earth is revolving around the sun, less direct sunlight is reaching the northern hemisphere than the southern hemisphere. What season is it in the northern hemisphere?.

Answers

In winter season the less direct sun rays reaches the northern hemisphere.

The planet's axis is slightly inclined as it revolves around the sun, which causes the seasons to alter on earth.The winter solstice, also known as the shortest day  which is also the day when the northern hemisphere experiences the least amount of precipitation.

The sun seems lower in the sky during the winter because the Northern Hemisphere is tilted away from it, there are less daylight hours, and the sun is hitting us at an angle. Because the sun's beams are "spread out" rather than "direct," there is less heating. (Shadows are longer as a result of the sun's lower angle).

Hemisphere in the north the day when the least amount of precipitation falls on the northern hemisphere will be the winter solstice, often known as the shortest day of the year, or this number 21 or 22 point.

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Where is primordial heat located?

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Primordial heat is the internal heat energy accumulated by dissipation in a planet during its first few million years of evolution.

Primordial warmness is the internal warmness strength gathered via dissipation in a planet in the course of its first few million years of evolution. the primary contributions to the primordial heat are accretional electricity – the strength deposited by infalling planetesimals – and differentiation strength. Primordial warmth is all the warmness left over from when the Earth formed. four and a 1/2 billion years ago our planet was fashioned by the collision of rocks and dirt. over the years it grew from the dimensions of a small rock into our huge planet simply from rocks colliding with every other time and again and another time.

The Earth's crust has become stable approximately 3.9 billion years in the past. existence regarded around 3.6 to 3.9 billion years ago, that's quite speedy in astronomical phrases. Microfossils observed in ancient rocks from Australia and South Africa exhibit that terrestrial lifestyles flourished by means of 3.5 billion years ago.

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What are the effects of warming up?

Answers

Answer:

1.Whole body

2.Stretching & major muscle groups

3.Activity using equipment

Explanation:

These are 3 components of warming up

Does Italy maintain any traditional ways or have a traditional economy? If so, explain.​

Answers

Answer:

Yes, Italy maintains traditional ways and has a formal economy. Italy is known for its traditional cuisine based on local ingredients and recipes passed down through generations. Italy also has a traditional economy based on small-scale agriculture and artisanal production.

Explanation:

What was the 3rd Agricultural Revolution Green Revolution?

Answers

Answer:

What are 3 Effects of the Neolithic agricultural revolution? Neolithic populations generally had poorer nutrition, shorter life expectancies, and a more labor-intensive lifestyle than hunter-gatherers.

Explanation:

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while spending the day relaxing on the beach, keisha notices that the sun appears to move across the sky. what is the best explanation for why this is happening?

Answers

Answer:

The Sun isn't actually moving, it's the Earth! The Earth is rotating on its axis, making it hit the Sun during a certain period of time. That is why there is day and night. The Earth's motion makes it seem like the Sun is moving. However, in reality, the Earth is moving to balance the amount of sunlight it gets to regulate the temperature of the Earth so it isn't too hot with too much sunlight or too cold with too little sunlight.

Explanation:

What are the three 3 classification of radioactive waste?

Answers

There are three types of radioactive waste - Low-level nuclear waste, Intermediate-level nuclear waste, and High-level nuclear waste.

Low-level nuclear waste- 90% of the total nuclear waste is Low-level nuclear waste. It includes lightly-contaminated items like tools and work- clothing which contain only 1% of the radioactivity in the nuclear waste.  Most of the low-level waste is not highly radioactive but some waste may possess radioactivity to a significant level.

Intermediate-level nuclear waste- 7% of the total nuclear waste is Intermediate-level nuclear waste. It comprises used filters, steel components from within the reactor, and some effluents from reprocessing containing 4% of the radioactivity in the nuclear waste. Since it contains higher amounts of radioactive materials than low-level waste, the waste requires needs special shielding.

High-level nuclear waste- 3% of the total nuclear waste is High-level nuclear waste. High-level waste emits more than 95% of radioactivity, which is generally released in the power generation process from different nuclear sources. The waste comprises highly-radioactive fission products and transuranic elements produced in the core of a nuclear reactor.

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AP Human Geography - Chapter 8 Political Geography

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In political geography the condition of about equal strength between adversarial nations or nations' allies is known as the balance of power, a state that consists of various irregularly spaced-out bits of territory

Between the end of the Napoleonic Wars and World War I, the phrase "balance of power" came to be used to describe the power dynamics inside the European state system. Great Britain served as the "balancer" or "keeper of the balance" in the power dynamics of Europe.

According to the theory of the balance of power in international relations, states can ensure their survival by preventing any one state from acquiring sufficient military might to subjugate all other states.

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What was the 3rd Agricultural Revolution referred to as?

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Answer:

Explanation:

Third Agricultural Revolution (1930s–1960s), an increase in agricultural production, especially in the developing world (also known as the Green Revolution)

Choose the statement about the Kyoto Protocol that is FALSE.

In 1997, many United Nations countries agreed to reduce greenhouse gases.

The agreement would only slightly lower climate change impacts but it was seen as a start.

The Kyoto Protocol has been in force in the United States since 2012.

To track progress, an emphasis was placed on improvement methods and emissions data.

Answers

Option C is right. The Kyoto Protocol has been in force in the United States since 2012 is the false statement.

The assertion It is incorrect since it simply ties and burdens developing nations. Although it was ratified on 11 December 1997, the lengthy ratification process delayed its entry into force until 16 February 2005. The first significant multinational initiative to slow climate change was the Kyoto Protocol. The pact has received support from 191 nations since 1997, but not from the United States. In reality, the Protocol was doomed from the start in 1997 since it did not include the largest and fastest-growing economies in the world, it did not include emerging nations (such as the People's Republic of China) in its binding targets, and the USA did not ratify it.

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