The theremosphere is 85-500 km above the earth's surface...
The air in the thermosphere is very thin because of it's high altitude.
The thermosphere is the layer of Earth's atmosphere that lies above the mesosphere and below the exosphere. It is characterized by very high temperatures reaching up to 2500°C due to absorbed solar radiation. The thermosphere is where the International Space Station orbits and where auroras occur due to interactions with solar winds.
There is no other name for the thermosphere.
No, the moon is not in the thermosphere. The moon is located in the vacuum of space, beyond Earth's atmosphere and atmospheric layers like the thermosphere.
the layer is the thermosphere THERMOSPHERE IS THE ANSWER
no other layer is as thick is the thermosphere.
The air in the thermosphere is very thin because of it's high altitude.
The thermosphere is the layer of Earth's atmosphere that lies above the mesosphere and below the exosphere. It is characterized by very high temperatures reaching up to 2500°C due to absorbed solar radiation. The thermosphere is where the International Space Station orbits and where auroras occur due to interactions with solar winds.
There is no other name for the thermosphere.
No, the moon is not in the thermosphere. The moon is located in the vacuum of space, beyond Earth's atmosphere and atmospheric layers like the thermosphere.
the layer is the thermosphere THERMOSPHERE IS THE ANSWER
Christopher Holt discovered the thermosphere
The exosphere is the atmospheric level that is farthest from the lithosphere. It extends from the top of the thermosphere upwards and gradually transitions into outer space.
The two layers of the thermosphere are the Ionosphere and the Exosphere.
The altitude of the Thermosphere is from about 50 miles to 310 miles. The Thermosphere is the biggest of all layers of the Earth's atmosphere.
The thermosphere is divided into two layers: the lower thermosphere (at about 80-550 km altitude) and the upper thermosphere (above 550 km altitude). The upper thermosphere is where most of the auroras occur due to interactions with solar radiation.
the thermosphere gets it's name from it's extrmely high temperature, which cn be above 1,000'c.