A high pressure system is a whirling mass of cool, dry air that generally brings fair weather and light winds. When viewed from above, winds spiral out of a high-pressure center in a clockwise rotation in the Northern Hemisphere. These can bring sunny skies.
A high-pressure area is typically associated with clear and stable weather conditions.
In high-pressure areas, the air column above the surface is characterized by descending air motion. As air descends, it becomes compressed and warms due to the increase in atmospheric pressure.
This warming leads to a decrease in relative humidity and inhibits the formation of clouds and precipitation.
The descending air also creates a subsidence inversion, which acts as a cap, preventing vertical air movement and further cloud formation.
Consequently, high-pressure systems generally exhibit clear skies, minimal cloud cover, and stable weather conditions with light winds.
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What is the difference between chemical and physical weathering?
Answer: Physical Weathering physically breaks the rock, while Chemical Weathering chemically changes the rock causing it to break.
Explanation: Physical Weathering happens naturally causing the rock to break. An example is roots growing into the concrete causing it to crack. Chemical Weathering on the other hand chemically changes the rock by a chemical reaction. An example is acid rain. Gas or other pollution mixing in with water causing acid rain.
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Which of the following must be balanced for a portion of the lithosphere to reach isostatic equilibrium?
A. The buoyant force from the asthenosphere and gravity
B. The densities of the lithosphere and the asthenosphere
C. The isostatic uplift and the crustal rebound
D. The compressive forces of two converging plates
Answer: B
Explanation: The isostatic equilibrium occurs when enormous tectonic plates composed of crustal and upper mantle material are able to float on top of the astenosphere, which in turn is composed of denser rock material. In order for such a thing to be achieved the lithosphere and the astenosphere have to have balanced densities between each other. In other words, the density of the material on top, has to be in balance with the density of the material below it, thus to not have any uplift or sinking occurring between them.
Answer:
The buoyant force from the asthenosphere and gravity
Explanation:
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Increasing Carbon Dioxide in the atmosphere, increases surface temperatures. True or False
Answer:
I am pretty sure it is True
Explanation:
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What is Mount Everest called in nepali
Answer:
Sagarmatha
Explanation:
Answer:
sagarmatha is called in nepali
Meteorolagy is the study of
radar.
A. Radar
B. Meteors.
C. Earth's satelites.
D. Earth's atmosphere.
Answer:
D. Earth's Atmosphere
Explanation:
Meteorology has to do with the science behind the weather and climate on Earth.
Weather and Climate are located/produced in Earth's atmosphere, and thus Meteorology and Meteorologists study the atmosphere to give us weather updates and climate changes.
Answer:
D
Explanation:
i just know
What is known as something to witch a person migrates to certain place because they are attracted by a benefit
Answer: hope it helps
Human migration is the movement of people from one place to another with the intention of settling in the new location. When large numbers of people relocate, historians ask questions about why these people moved and what impacts their movements had.
Broadly speaking, there are two categories of factors that influence people’s decisions to migrate. Push factors occur where someone is currently living and make continuing to live there less attractive. A push factor could be political unrest, a lack of job opportunities, or overcrowding. Pull factors occur in a potential destination and make it an attractive place to migrate to. A pull factor could be better job opportunities or having relatives or friends who have already moved to this location.Explanation:
1. Why do we exist
2. Explain your answer
Pleases explain I need to know the reason 4 existence
10. Which tool should be used to measure the amount of water vapor in the air?
A Hygrometer
B) Anemometer
Barometer
D
Thermometer
Answer:
hygrometer
Explanation:
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Answer: The correct answer is Hygrometer
4. At what depth is the salinity level the lowest? *
Answer:
This salinity versus depth profile is typical of the South Atlantic ocean. ... In this profile, salinity at the surface is high (evaporation at this latitude is high) and then salinity decreases until a depth of about 1,000 meters. Salinity then increases again slightly with increasing depth. The ocean around Antarctica has a low salinity of just below 34ppt, and around the Arctic it is down to 30ppt in places.
Hope this helps, have a great day/night, and stay safe!
Answer:
This salinity versus depth profile is typical of the South Atlantic ocean. ... In this profile, salinity at the surface is high (evaporation at this latitude is high) and then salinity decreases until a depth of about 1,000 meters. Salinity then increases again slightly with increasing depth. The ocean around Antarctica has a low salinity of just below 34ppt, and around the Arctic it is down to 30ppt in places.
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