Because the Moon's gravity is so much weaker than Earth's.
The troposphere is the closest to the Earth and most dense atmospheric layer
Water on the surface of the moon will rapidly turn to water vapor as there is no atmospheric pressure on the moon. The vapor will then escape the moon's gravity which is much weaker than the gravity on Earth.
A spacecraft must achieve escape velocity (around 25,000 mph) to break free from Earth's gravitational pull. This involves overcoming gravity, air resistance, and atmospheric drag to enter into orbit and then further accelerate to break free from Earth's gravity well. Once it reaches escape velocity, the spacecraft can travel to other celestial bodies or into deep space.
Earth's atmospheric pressure is measured as 1 bar. Jupiter's atmospheric pressure is 100 million bars. Therefore, it is 100 million times greater
The exosphere is the atmospheric layer that is the furthest from Earth's surface. It extends from about 500 km to 10,000 km above sea level.
The diagram likely shows the process of solar radiation heating the Earth's surface, which in turn drives convection and other atmospheric processes. This illustrates the important role the Sun plays in heating the Earth's atmosphere and driving weather patterns.
The outer zone of Earth's atmosphere is called the exosphere. It is the highest layer of the Earth's atmosphere, blending into outer space. The exosphere is where some satellites orbit and where atmospheric particles can escape into space.
The consequence of the sun delivering thermal energy to Earth through radiation is the heating of the Earth's surface and atmosphere. This leads to various weather patterns, atmospheric circulation, and the creation of ecosystems that support life on our planet.
because the earth and the sun is not in the thermal contact with each other that is why the earth & the sun is not in thermal equilibrium.
because the earth and the sun is not in the thermal contact with each other that is why the earth & the sun is not in thermal equilibrium.
Gas particles in the Earth's atmosphere most easily escape from the exosphere, the outermost layer of the atmosphere. The exosphere is where the gases are much less dense, and particles can gain enough kinetic energy to overcome Earth's gravitational pull and escape into space. This process is known as atmospheric escape.
Escape from Earth was created in 2005.
The atmospheric pressure is greatest at sea level, which is at the Earth's surface. As altitude increases, atmospheric pressure decreases.
Escape from Earth has 432 pages.
The troposphere.
On Earth, the greatest source of thermal energy would be at the earth's core.
Warm temp create area of low atmospheric pressure on the Earth's surface while area of high pressure r generated when temp r relatively cold. Once established, the thermal gradient then develops a flow of air that goes from high 2 low pressure