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Temperatures decrease with altitude in the troposphere, the lowest layer of the atmosphere, from an average of about 20° C to below -50° C. In the next layer, the stratosphere, temperatures warm only slightly up to the ozone layer at the top of the stratosphere, where they increase rapidly with altitude until becoming about the same as on the earth's surface. Temperatures in the next layer, the mesosphere, cool rapidly with altitude to below -80° C. Temperatures rise rapidly with increases in altitude in the next layer, the thermosphere, but temperatures there can vary widely. Depending on the activity of ionized particles within this region, they reach a high of over 1,200° C in the daytime and become extremely cold at night. The next layer is the exosphere, which cools with altitude to where it ends about 1,000 km above the earth's surface.

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In a temperature inversion air temperature does what?

In a temperature inversion, the normal decrease in temperature with height is inverted, resulting in warmer air above cooler air. This can lead to pollutants being trapped near the surface, affecting air quality. Temperature inversions are commonly associated with calm, clear nights.


What variables can change air pressure?

Temperature, altitude, humidity, and weather systems can all influence air pressure. As temperature increases, air pressure decreases, and vice versa. Higher altitudes typically have lower air pressure due to the decreased density of air molecules. Humidity can affect air pressure as moist air is less dense than dry air. Weather systems like high and low-pressure systems also play a role in changing air pressure.


Why does the height of the cloud base change every day?

The height of the cloud base can change daily due to factors such as variations in temperature, humidity, and air pressure. These changes can influence the altitude at which clouds form and the height at which their bases are found in the atmosphere. Atmospheric conditions are dynamic and can vary from day to day, leading to fluctuations in cloud base height.


How does the temperature change with altitude in the troposphere?

it is basically nothing.


The temperature and the humidity in the air mass stay about?

The temperature and humidity in the air mass remain relatively constant. This indicates that there is no significant change in weather conditions and the air mass is stable.

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temperature,volume,height and, water vapor


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What 3 variables besides water vapor can change air pressure?

Volume,Temperature and height above earth's surface


What four things affect pressure?

Change in volume - container getting bigger or smaller with same amount of air; Change in temperature - air gets hotter or colder causing it to expand or contract; Change in density - air is pumped into or out of a fixed container.


How do you change air temperature sensor on 2003 Astra?

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How does temperature change as height increases the troposphere?

As the altitude increases in the Troposphere, The air temperature decreases. When about 1 kilometer increases in altitude, the air cools about 6.5 degrees Celsius. And at the very top of the Troposphere the air temperature stays the same at around -60 degrees Celsius.


How does temperature change as the height increases in troposphere?

As the altitude increases in the Troposphere, The air temperature decreases. When about 1 kilometer increases in altitude, the air cools about 6.5 degrees Celsius. And at the very top of the Troposphere the air temperature stays the same at around -60 degrees Celsius.


In a temperature inversion air temperature does what?

In a temperature inversion, the normal decrease in temperature with height is inverted, resulting in warmer air above cooler air. This can lead to pollutants being trapped near the surface, affecting air quality. Temperature inversions are commonly associated with calm, clear nights.


How are the changes in air temperature with height different from changes in air pressure with height?

Air temperature typically decreases with height in the troposphere due to the decreasing influence of Earth's surface heating. Conversely, air pressure decreases with height because the weight of the air above diminishes as altitude increases. While temperature changes can vary depending on weather conditions and atmospheric layers, the decline in air pressure with height is a consistent physical principle. As a result, temperature gradients can vary more widely than the relatively uniform decrease in air pressure.


How does the temperature change with the height in the stratosphere?

In the stratosphere, temperature increases with height, a phenomenon known as temperature inversion. This occurs because the ozone layer, located in this atmospheric layer, absorbs ultraviolet (UV) radiation from the sun, causing the air to warm as altitude increases. As a result, the stratosphere is characterized by a stable temperature profile, contrasting with the troposphere below it, where temperature typically decreases with height.


What variables can change air pressure?

Temperature, altitude, humidity, and weather systems can all influence air pressure. As temperature increases, air pressure decreases, and vice versa. Higher altitudes typically have lower air pressure due to the decreased density of air molecules. Humidity can affect air pressure as moist air is less dense than dry air. Weather systems like high and low-pressure systems also play a role in changing air pressure.