Hot air balloons rely on the difference in temperature between the air inside the balloon and the surrounding air to generate lift. As they ascend, the temperature difference decreases, reducing the amount of lift they can generate. Additionally, the air at higher altitudes is less dense, making it harder for the balloon to displace enough air to stay aloft.
A hot air balloon cannot typically ascend to higher layers of the atmosphere because the air at higher altitudes is cooler and less dense, making it difficult for the balloon to generate enough lift to continue rising. Additionally, the lack of oxygen at higher altitudes would make it unsafe for passengers in the balloon.
Hot air balloons typically fly at altitudes between 500 to 3000 feet, although they are capable of reaching much higher altitudes. The maximum altitude a hot air balloon can reach is influenced by factors such as the balloon's size, the amount of gas it has, and atmospheric conditions.
The limit on how high a hot air balloon can get is primarily determined by the buoyancy of the air inside the balloon compared to the surrounding air. As the balloon ascends, the air pressure and temperature decrease, which can cause the balloon to reach a point where it can no longer rise. Additionally, factors such as the weight of the balloon and the amount of lift it generates can also impact its maximum altitude.
They fly at low altitudes because if you fly too high, the balloon may pop. A2: Above seems unlikely, as the balloon is open at its lower end. Mainly I think because they are generally used for passenger viewing flights and the general public would not have the clothing for high altitudes as well as not wanting to be very high since the purpose of the flight is to view the terrain below. The balloon works by making the air inside hotter and less dense than the surrounding air, so as it rises it needs to use more fuel to achieve this as the surrounding air gets less dense. There must be an effective max height for hot air balloons but I don't know what the record is.
Hot air balloons rely on the difference in temperature between the air inside the balloon and the surrounding air to generate lift. As they ascend, the temperature difference decreases, reducing the amount of lift they can generate. Additionally, the air at higher altitudes is less dense, making it harder for the balloon to displace enough air to stay aloft.
To enable the gases inside the balloon to expand which they do when the balloon reaches high altitudes. At this point the balloon becomes much larger.
because ok high altitudes
The density of hot air is lower than air at low altitudes, but the air at higher altitudes is very thin. A hot air balloon can only rise until its density equals the surrounding air.
A hot air balloon cannot typically ascend to higher layers of the atmosphere because the air at higher altitudes is cooler and less dense, making it difficult for the balloon to generate enough lift to continue rising. Additionally, the lack of oxygen at higher altitudes would make it unsafe for passengers in the balloon.
A balloon pops at high altitudes due to the decrease in air pressure as altitude increases. The lower pressure inside the balloon causes it to expand until it can no longer contain the internal pressure, leading to a rupture or popping.
Hot air balloons typically fly at altitudes between 500 to 3000 feet, although they are capable of reaching much higher altitudes. The maximum altitude a hot air balloon can reach is influenced by factors such as the balloon's size, the amount of gas it has, and atmospheric conditions.
The limit on how high a hot air balloon can get is primarily determined by the buoyancy of the air inside the balloon compared to the surrounding air. As the balloon ascends, the air pressure and temperature decrease, which can cause the balloon to reach a point where it can no longer rise. Additionally, factors such as the weight of the balloon and the amount of lift it generates can also impact its maximum altitude.
At very high altitudes, the air is thin and contains lower levels of oxygen. This can make it difficult to breathe and may lead to symptoms of altitude sickness such as headache, fatigue, and dizziness. It is important to acclimate gradually when ascending to high altitudes to avoid these effects.
just high altitudes
The air is thicker at lower altitudes, we know that sound travels much better when it can move through solid mass. As you climb, the air starts to get thinner. It becomes much more difficult to do anything at high altitudes, including keeping a plane aloft, keeping warm, and of course projecting sound.
Well a simple answer would be that if a plane is not pressurized, on high altitudes or just very high in the sky, the plane will expand like a balloon and if it expands to much, big problems happen and I don't really know how it is pressurized but the air inside the plane is usually very different than the air outside the plane, at high altitudes.