Hot air balloons float because hot air displaces cool air in the atmosphere
No, a hot air balloon cannot leave Earth's atmosphere. Hot air balloons rely on the Earth's atmosphere to provide lift for their flight. They are designed to operate within the troposphere, the lowest layer of Earth's atmosphere.
No, a hot air balloon would not work on the moon because there is no atmosphere to provide the necessary buoyancy for it to float. The lack of atmosphere would also prevent the balloon from expanding and becoming buoyant.
hot air balloons
No, they can't. They can't leave the atmosphere.
Hot air balloons float because hot air displaces cool air in the atmosphere
No, a hot air balloon cannot leave Earth's atmosphere. Hot air balloons rely on the Earth's atmosphere to provide lift for their flight. They are designed to operate within the troposphere, the lowest layer of Earth's atmosphere.
Because it is lighter than cooler air.
a hot air balloon only works using thermals, which are currents of hot air rising because one area is heated more than the others. so hot air balloons depend on air to keep it airborne, specifically hot air. once it leaves the earths atmosphere, it is a vacuum. there is no air, so the hot air balloon will fall back into the earth. hence, we see that hot air balloons cannot leave the earth's atmosphere.
Yes, hot air rises, cold air falls.
stratosphere
It is when cool air sinks into the ground and hot air rises up into the atmosphere.
No, a hot air balloon would not work on the moon because there is no atmosphere to provide the necessary buoyancy for it to float. The lack of atmosphere would also prevent the balloon from expanding and becoming buoyant.
hot air balloons
because the air inside the balloon is heavier than the air outside in the other layers of the atmosphere
The sun affects the air you need to breathe directly. When the sun is hot, it warms up the air in the atmosphere which means that you will breathe in hot air.
Heat is defined by how fast molecules are moving. Fast moving molecules will have a higher temperature than slow moving molecules. The kinetic energy of the hot air is transferred to the cold air, which means the cold air becomes a little warmer, and the hot air becomes cooler.