The temperature in the atmosphere decreases as altitude increases. The reason for this is there is less warmth from the surface of the earth reaching the higher altitudes because there are fewer particles of the atmosphere to transfer the heat. The temperature begins to increase, however, around 100km in altitude because of the heat and radiation from the sun.
It changes to a next temperture
It gets colder as you travel up in the atmosphere.
Yes, the temperature generally decreases the higher you go in the Earth's atmosphere. This is due to the decreasing density of the air and its ability to retain heat. However, there are pockets within the atmosphere where temperature can increase, such as in the stratosphere due to the presence of the ozone layer.
It gets colder as you travel up in the atmosphere.
The pressure and the temperature would go on increasing .
it changes because there are laess oxegen atoms
The temperature in the atmosphere decreases as altitude increases. The reason for this is there is less warmth from the surface of the earth reaching the higher altitudes because there are fewer particles of the atmosphere to transfer the heat. The temperature begins to increase, however, around 100km in altitude because of the heat and radiation from the sun.
Phosphorus does not travel through the atmosphere.
The air molecules spreds out in space so there is not enough air to breathe for us there
The temperature in Earth's atmosphere generally decreases with altitude. This is because the atmosphere gets thinner as you move higher up, and there are fewer air molecules to absorb and retain heat. This leads to a decrease in temperature in the troposphere and stratosphere, but then it can increase in the mesosphere and thermosphere due to absorption of solar radiation.
The amount of air decreases as you travel up through Earth's atmosphere. This is because the atmosphere is less dense at higher altitudes, leading to lower air pressure and a decrease in the concentration of gases.
The bulk modulus of air is a measure of its resistance to compression. It affects the propagation of sound waves through the atmosphere by determining how quickly the waves can travel and how they are affected by changes in pressure. A higher bulk modulus means that sound waves can travel faster and with less distortion through the air.