tropshere
The ozone layer that separates the mesosphere from the layer below it is called the stratopause. It serves as a boundary between the stratosphere and the mesosphere, and is characterized by a temperature inversion where temperatures increase with altitude.
The thermosphere is the deepest layer in the atmosphere, extending from about 80 km to 550 km above Earth's surface. It is where temperatures increase with altitude due to the absorption of solar radiation.
troposphere
In the stratosphere, the temperature increases with height. This is due to the presence of the ozone layer near the top of the stratosphere. The ozone layer absorbs incoming UV radiation, and thus the temperatures are warmer at the top of the stratosphere than at the bottom.
A temperature of 95°C would most likely occur in the stratosphere, particularly in the upper regions where temperatures can rise due to the absorption of ultraviolet radiation by the ozone layer. The stratosphere extends from about 10 to 50 kilometers above the Earth's surface, and temperatures typically increase with altitude in this layer.
B. Stratosphere. In the stratosphere, temperatures generally increase with altitude due to the presence of the ozone layer, which absorbs ultraviolet radiation from the sun and heats the surrounding air.
The stratosphere is the layer of the atmosphere that is relatively calm and has stable temperatures. This layer is above the troposphere and contains the ozone layer, which helps trap heat in the atmosphere. Temperatures in the stratosphere increase with altitude due to the absorption of ultraviolet radiation by the ozone layer.
In the atmosphere, temperatures increase with altitude in the stratosphere. This layer, which lies above the troposphere, contains the ozone layer that absorbs and scatters ultraviolet solar radiation, leading to a warming effect as altitude increases. Consequently, the stratosphere experiences a temperature inversion, contrasting with the troposphere, where temperatures typically decrease with altitude.
I think it is the Troposphere not the tropoophone or what ever the other guy said.
After the troposphere, the next layer of the atmosphere with the highest temperatures is the stratosphere. In the stratosphere, temperatures increase with altitude due to the absorption of ultraviolet radiation by the ozone layer. This heating effect causes the stratosphere to be warmer at higher altitudes compared to the lower part of the layer.
In general, temperatures decline as we increase our altitude. The higher we go, the colder it is. The answer to the question about whether temperatures get warmer as we move from the lower stratosphere on up is, "No."
The stratosphere is a layer of the Earth's atmosphere where temperatures increase with altitude. Weather phenomena like clouds, precipitation, and storms are not commonly found in the stratosphere, as it is a stable and relatively dry layer.
The layer above the photosphere is called the chromosphere. It is a region of the Sun's atmosphere where temperatures increase with altitude. Above the chromosphere lies the corona, which is the outermost layer of the Sun's atmosphere.
The hottest layer in the atmosphere is the thermosphere, which can reach temperatures of up to 2,500 degrees Celsius (4,500 degrees Fahrenheit). Temperatures in the thermosphere increase with altitude due to the absorption of high-energy solar radiation.
The ozone layer that separates the mesosphere from the layer below it is called the stratopause. It serves as a boundary between the stratosphere and the mesosphere, and is characterized by a temperature inversion where temperatures increase with altitude.
No. The temperature usually increasesgreatlytowards the interiors ofthe gas giants.
The layer of the atmosphere that can reach temperatures up to 1800 degrees Celsius is the thermosphere. In this layer, temperatures increase significantly with altitude due to the absorption of high-energy solar radiation. Although the thermosphere can reach such extreme temperatures, it would not feel hot to a human because the air is so thin that there are not enough air molecules to transfer heat effectively.