Temperature: The thermosphere is known for its extremely high temperatures, but it's important to note that the airdensity is so low at this altitude that it would not feel hot to a human standing in the thermosphere.
Ionization: The high-energysolar radiation in the thermosphere causes the ionization of gasmolecules, leading to the formation of ions and free electrons. This ionization is responsible for the auroras that occur near the poles.
International Space Station (ISS): The ISS orbits within the thermosphere, experiencing the very low airdensity and high temperatures of this layer.
The process of ionization and its effects on the behavior of gases in the thermosphere.
The significance of the thermosphere for the International Space Station and other satellites in low Earthorbit.
The gradual transition from the thermosphere to the exosphere and the characteristics of the exosphere.
Additionally, it's helpful to explore the impact of the thermosphere on our daily lives and technological advancements in space exploration and communication.
Construct an argument from evidence to explain the likelihood of an organism’s ability to survive when compared to the resources in a certain habitat (e.g., freshwater organisms survive well, less well, or not at all in saltwater; desert organisms survive well, less well, or not at all in woodlands).
Create models that illustrate how organisms and their habitats make up a system in which the parts depend on each other.