Match the following descriptions of air masses with an area where they might develop. Think about moisture and temperature of each area to match with the air mass.​

Answers

Answer 1

This is the matching for the descriptions of air masses and the moisture and temperature and temperature areas where they might develop:

Warm, moist air mass → CDry, cold air mass → BDry, hot air mass → DCold, moist air mass → A

What are these moistures and temperatures?

Warm, moist air masses develop over warm oceans. Central America is located near the equator, which is a warm area. The warm water in the Pacific Ocean helps to create warm, moist air masses that move over Central America.

Dry, cold air masses develop over landmasses in high latitudes. Canada is located in the northern part of North America, which is a high-latitude region. The cold landmass in Canada helps to create dry, cold air masses that move over the country.

Dry, hot air masses develop over deserts. The United States has several deserts, including the Mojave Desert, the Sonoran Desert, and the Great Basin Desert. These deserts are located in warm, dry areas, which help to create dry, hot air masses that move over the country.

Cold, moist air masses can develop over any area, but they are most common over the poles. There is no specific area in the world where cold, moist air masses develop.

Find out more on moisture and temperature here: https://brainly.com/question/31165124

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Related Questions

Which of the following describes the feeding relationships from one organism to the next in a linear path?

Food chain
Trophic level
Food web
Consumer chart

Answers

Answer:

Food chain is the correct answer

Food chain is the correct answer

The table shows the potential energy and kinetic energy of a skier at two different positions on a hill.


Position and Energy
Position (above ground) Kinetic Energy Potential Energy
100 meters 0 units 50,000 units
60 meters 20,000 units ?


What is the potential energy of the skier at a height of 60 meters above the ground?
30,000 units, because total energy decreases
70,000 units, because total energy decreases
30,000 units, because total energy remains unchanged
70,000 units, because total energy remains unchanged

Answers

15,000 units, because total energy is 50,000 units

Mark me brainliest

According to law of conservation of energy, energy remains conserved. It only transforms from one form to another.

The total energy here is the sum of kinetic and potential energy.

At 100 meters, total energy = Kinetic energy + potential energy = 0 units + 50000 units = 50000 units

At 30 meters, total energy = Kinetic energy + potential energy = 35000 units + x units = 50000 units

x units = 15000 units

Thus if the kinetic energy has increased from 0 to 35000 units, the potential energy must decrease from 50000 to 35000 units to keep the energy conserved.wer:

Explanation:

the answer is c, 30,000 untis because total
energy remains unchanged.

How do the lungs get rid of all the CO2 they've picked up from the blood?

Answers

Answer: The lungs get rid of carbon dioxide picked up from the blood through a process called pulmonary gas exchange. During this process, carbon dioxide diffuses from the blood into the alveoli of the lungs to be expelled from the body during exhalation.

Explanation:

The human body produces carbon dioxide as a waste product of cellular metabolism. Carbon dioxide is transported through the bloodstream from the cells to the lungs, where it is expelled from the body during exhalation. This process is essential to maintain a proper balance of gases in the body and prevent the accumulation of carbon dioxide, which can lead to a dangerous condition called hypercapnia.

The lungs remove carbon dioxide (CO2) from the body by a process known as respiration. During respiration, oxygen is taken into the body and exchanged for carbon dioxide, which is then expelled from the body through exhalation.

Here's how it works:

1. Oxygen is inhaled into the lungs through the mouth and nose, and passes through the windpipe (trachea) into the lungs.

2. Oxygen then diffuses across the walls of the air sacs (alveoli) in the lungs and enters the bloodstream, where it binds to hemoglobin in red blood cells.

3. At the same time, carbon dioxide from the blood diffuses across the walls of the capillaries surrounding the air sacs and into the air spaces of the lungs.

4. When we exhale, the air containing carbon dioxide is pushed out of the lungs and expelled through the nose and mouth.

The process of respiration is controlled by the respiratory center in the brainstem, which monitors the levels of oxygen and carbon dioxide in the blood and adjusts the rate and depth of breathing as needed to maintain the proper balance.

Overall, the lungs play a crucial role in removing carbon dioxide from the body and maintaining the balance of oxygen and carbon dioxide in the bloodstream.
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