Yes
As the balloon rises higher in the sky, the decrease in atmospheric pressure causes the gas inside the balloon to expand. This expansion increases the size of the balloon until it reaches a point where the material can no longer stretch, potentially leading to the balloon bursting. Additionally, the temperature drop at higher altitudes can also affect the gas behavior, further influencing the balloon's size.
Its size and temperature.
The mass that a hot air balloon can carry depends on factors like the size of the balloon, outside temperature, and altitude. As a rough estimate, a typical hot air balloon can carry anywhere from 400 to 1000 pounds (180 to 450 kg) including passengers and equipment.
I presume you mean without an airborne heater. The answer is, there is no fixed time! It could range from a few minutes to the best part of a day. It all depends on the rate the balloon loses heat, which in turn depends on the size of the balloon, the weight of the balloon, the insulation and porosity properties of the balloon fabric, and the amount of solar heating, if any, that it receives.
Yes it does. The size of the balloon determines how much volume of gas can be held in it.
When the temperature is colder the particles in the balloon travel slower, making the balloon not able to increase in size it decreases.When the temperature is hot it allows the balloon to expand because the particles in the balloon are moving rapidly. in conclusion the the cold makes the balloon decrease in size and the heat allows it to expand.
Yes, temperature can affect the maximum size you can inflate a balloon. In general, as temperature increases, the air molecules inside the balloon expand, allowing for a larger maximum size before the balloon bursts. Conversely, in colder temperatures, the air molecules contract, limiting the maximum size the balloon can reach.
When the temperature is colder the particles in the balloon travel slower, making the balloon not able to increase in size it decreases.When the temperature is hot it allows the balloon to expand because the particles in the balloon are moving rapidly. in conclusion the the cold makes the balloon decrease in size and the heat allows it to expand.
When the temperature is colder the particles in the balloon travel slower, making the balloon not able to increase in size it decreases.When the temperature is hot it allows the balloon to expand because the particles in the balloon are moving rapidly. in conclusion the the cold makes the balloon decrease in size and the heat allows it to expand.
When you place a balloon in a freezer, the air inside the balloon cools down and contracts. This causes the balloon to shrink in size. If the balloon is made of a material that can withstand the cold temperature, it will return to its original size when it warms up.
The warm temperature inside the greenhouse can cause the air molecules inside the balloon to expand, increasing the pressure inside. This can lead to the balloon either expanding in size or potentially bursting.
yes
When a balloon filled with helium or CO2 is placed in the refrigerator, the gas inside the balloon will contract and become denser due to the lower temperature. This will cause the balloon to deflate slightly or shrink in size. Once the balloon is removed from the refrigerator and returns to room temperature, the gas will expand again and the balloon will regain its original size.
It increases its size in two ways: # The interior gas pushes outward harder as it warms, and # The rubber of the balloon gets softer, easier to stretch, and its surface area (and hence its contained volume) increases a bit also.
As the air temperature increases, the air molecules inside the balloon also warm up and move faster, causing them to exert more pressure on the balloon walls. This can lead to the balloon expanding or even popping if the pressure becomes too great. Conversely, a decrease in air temperature will cause the air molecules to slow down, reducing the pressure and potentially causing the balloon to shrink.
Yes, the size of a balloon can affect the amount of static electricity it can give off. A larger balloon can hold a greater charge and potentially generate more static electricity compared to a smaller balloon. However, other factors such as the material of the balloon and environmental conditions can also impact the amount of static electricity generated.
the more water the easier it breaks