Thermosphere and and Exosphere are the first ones to receive the suns rays so they can reflect to the clouds and the sun could reflect into the water and points to where it is needed
Comment: I think the answer is "hot".
Yes, they're both 1000 degrees celsius. you do not feel it because the air molecules are spread out.and due to space as they are connected to space they are near to sun and sun rays are directly reach them so they are very hot about 2000 degree celsius.
If the exosphere disappeared, the Earth would lose its outermost layer of the atmosphere, which plays a crucial role in protecting the planet from solar radiation and space debris. Without the exosphere, the atmosphere would become less stable, leading to potential changes in weather patterns and increased exposure to harmful cosmic rays. Additionally, satellites and spacecraft rely on the exosphere for orbit stability; their functioning would be severely disrupted, impacting communication, navigation, and weather monitoring systems. Overall, the disappearance of the exosphere would pose significant challenges to both life on Earth and human technology.
If the thermosphere disappeared, Earth's atmosphere would lose a crucial layer that helps protect against solar radiation and cosmic rays. This could lead to increased levels of harmful radiation reaching the surface, potentially affecting both human health and the environment. Additionally, the loss of this layer would disrupt satellite orbits and communication systems, as the thermosphere plays a key role in atmospheric density and drag. Overall, the disappearance of the thermosphere would have significant implications for life on Earth and our technological infrastructure.
The land and water at the North and South poles never receive the direct rays of the sun due to the tilt of the Earth's axis. This leads to prolonged periods of darkness in winter and continuous daylight in summer.
Around noon, the sun is at its highest point in the sky, which means its rays are more direct and concentrated. This leads to more intense heating of the Earth's surface compared to mornings and evenings when the sun's angle is lower, resulting in less intense heating.
The layer of the Earth's atmosphere that contains high temperatures due to the absorption of the sun's rays is the thermosphere. This layer can reach temperatures exceeding 2000 degrees Celsius because it absorbs high-energy solar radiation. The thermosphere is located between the mesosphere and the exosphere.
The Earth's first three layers of the atmosphere, starting from the surface, are the troposphere, stratosphere, and mesosphere. The troposphere is where most weather occurs, the stratosphere contains the ozone layer that protects us from the sun's harmful rays, and the mesosphere is where meteors burn up upon entering the atmosphere.
In the thermosphere, x-rays and gamma rays are mostly absorbed by atomic oxygen and atomic nitrogen. These high-energy photons ionize these gases, creating free electrons which contribute to the electrical conductivity of the thermosphere.
the thermosphere
The Thermosphere
UV rays It is also where the southern aurora's are
the top layer ( exosphere )
Yes, they're both 1000 degrees celsius. you do not feel it because the air molecules are spread out.and due to space as they are connected to space they are near to sun and sun rays are directly reach them so they are very hot about 2000 degree celsius.
absorption of ultraviolet rays from the Sun
The layer of gas molecules in the atmosphere that is bombarded with rays from the sun is the thermosphere. It is the outermost layer of Earth's atmosphere where solar radiation impacts the molecules, leading to high temperatures and the presence of the ionosphere.
Earth's atmosphere is divided into five main layers based on temperature changes: the troposphere, stratosphere, mesosphere, thermosphere, and exosphere. Each layer has distinct characteristics and plays a unique role in Earth's atmosphere.
The ozone Layer.BECAUSE IT IS RIGHT NEXT TO THE EXOSPHERE