When a balloon is exposed to heat, the air molecules inside the balloon start to move faster and spread out, causing the balloon to expand. If the heat is too intense, the balloon may burst due to the increased pressure inside.
When a balloon is exposed to heat, the air inside the balloon expands and the molecules move faster, causing the balloon to inflate. If the heat is excessive, the balloon may burst due to the increased pressure inside.
Heat causes more activity in the atoms inside the balloon. This causes expansion as they are bouncing around inside more than when they were cold. They need more room. The expansion causes failure in the balloon.
When you heat up a balloon in the oven, the air inside the balloon expands because the molecules have more energy, causing the balloon to inflate. If the temperature gets too high, the balloon may burst due to the increased pressure from the expanding air inside. It is not recommended to heat up a balloon in the oven as it can be dangerous.
When you heat up a balloon, the air molecules inside the balloon gain energy and move faster, causing the air pressure to increase. This increased pressure stretches the walls of the balloon, making it expand. If the balloon is heated too much, it can burst due to the increased pressure.
When heat is added to air inside a balloon, the air molecules move faster and spread out, causing the balloon to expand or inflate. This is due to the increase in pressure inside the balloon as the air molecules gain kinetic energy from the heat.
When a balloon is exposed to heat, the air inside the balloon expands and the molecules move faster, causing the balloon to inflate. If the heat is excessive, the balloon may burst due to the increased pressure inside.
The balloon expands.
the Balloon starts to get starts to heat up and then it pops
The air will expand, increasing the volume
Heat causes more activity in the atoms inside the balloon. This causes expansion as they are bouncing around inside more than when they were cold. They need more room. The expansion causes failure in the balloon.
When a balloon is exposed to direct sunlight, the heat causes the air inside it to expand. This increased pressure can lead to the balloon becoming stretched and potentially popping if it exceeds its elastic limit. Additionally, prolonged exposure to UV rays can degrade the balloon material, making it more susceptible to tears and weakening its structure.
When a balloon is exposed to heat, the air inside it expands due to increased temperature. As a result, the pressure inside the balloon increases, causing it to expand and potentially burst. If a balloon decreases in size after being in heat, it may be due to the balloon losing some of its original air through small pores or leaks in the material.
When you heat up a balloon in the oven, the air inside the balloon expands because the molecules have more energy, causing the balloon to inflate. If the temperature gets too high, the balloon may burst due to the increased pressure from the expanding air inside. It is not recommended to heat up a balloon in the oven as it can be dangerous.
A balloon pops near candles due to the heat produced by the flame. When the balloon's material is exposed to high temperatures, it becomes weakened and can no longer withstand the internal air pressure. This sudden failure causes the balloon to burst. The combination of heat and pressure is what leads to the popping sound and the balloon's destruction.
In heat, the helium inside a balloon will expand, causing the balloon to inflate further and possibly burst if the heat is excessive. Heat causes the helium molecules to move more quickly and spread out, increasing the pressure inside the balloon.
It falls out of the sky and you die
If you gradually heat a balloon, then the gas inside the balloon will expand, causing the balloon to become bigger in volume.If you put a balloon above a flame, then the balloon will pop because the heat will weaken bonds in the polymer that makes up the balloon, thus the polymer will not be able to hold the pressure of the gas inside the balloon.