When the bottle is placed in hot water, the air inside the bottle will heat up and expand, creating an increase in pressure. This increased pressure will cause the balloon to inflate as the air molecules inside the bottle push against the stretched balloon. The energy transfers involve the transfer of heat energy from the hot water to the air inside the bottle, which then increases the kinetic energy of the air molecules, resulting in the inflation of the balloon.
The balloon will inflate as the air inside the bottle warms up and expands, creating higher pressure in the bottle. This pressure pushes against the balloon, causing it to stretch and inflate. The energy transfers involved include the heat energy transferred from the hot water to the air in the bottle, then to the balloon, and finally to the elastic potential energy stored in the stretched balloon.
when you but the bottle in hot water the balloon particles push apart and cause expansion
The air in the balloon will have a difficult time expanding to fill the bottle because the bottle is already filled with air at atmospheric pressure, which creates resistance. The pressure inside the balloon needs to overcome the pressure inside the bottle in order for the balloon to expand and fill the bottle.
When you place a balloon in a bottle and then try to blow it up, the air you exhale can't fully inflate the balloon because the bottle's volume restricts the airflow. The pressure inside the bottle increases as you try to blow up the balloon, making it difficult to inflate the balloon fully.
If you filled the bottle with water and then poked the balloon with a pin, I believe it would pierce but not pop it. With the balloon pierced, all you would then have to do is drain the water from the bottle, maneuver the balloon toward its mouth and drain it, and then finish removing the balloon either by fishing or dropping it out of the bottle's mouth.
The balloon will inflate as the air inside the bottle warms up and expands, creating higher pressure in the bottle. This pressure pushes against the balloon, causing it to stretch and inflate. The energy transfers involved include the heat energy transferred from the hot water to the air in the bottle, then to the balloon, and finally to the elastic potential energy stored in the stretched balloon.
when you but the bottle in hot water the balloon particles push apart and cause expansion
When a bottle of hot water is placed near a balloon stretched over the top, the air inside the balloon will expand due to the heat, causing the balloon to inflate. Conversely, if the hot water cools down, the air will contract and the balloon will deflate.
The air in the balloon will have a difficult time expanding to fill the bottle because the bottle is already filled with air at atmospheric pressure, which creates resistance. The pressure inside the balloon needs to overcome the pressure inside the bottle in order for the balloon to expand and fill the bottle.
Put the balloon in the bottle with the blowing up part out and blow it up in the bottle.
No, but you can build a snowman. Yes, you can inflate a balloon in a bottle, although it is more difficult than inflating a balloon that is not in a bottle. The only problem that this presents is that it is possible for the balloon to block the opening of the bottle so that air will be trapped between the balloon and the bottle, which would prevent the inflation of the balloon. However, if you use a drinking straw you can create an avenue for air to escape.
When you place a balloon in a bottle and then try to blow it up, the air you exhale can't fully inflate the balloon because the bottle's volume restricts the airflow. The pressure inside the bottle increases as you try to blow up the balloon, making it difficult to inflate the balloon fully.
If you filled the bottle with water and then poked the balloon with a pin, I believe it would pierce but not pop it. With the balloon pierced, all you would then have to do is drain the water from the bottle, maneuver the balloon toward its mouth and drain it, and then finish removing the balloon either by fishing or dropping it out of the bottle's mouth.
Yes, if the air pressure in the bottle is higher than the pressure you are exerting to blow up the balloon, it can make it difficult or impossible to blow up the balloon inside the bottle. The higher air pressure in the bottle will resist the expansion of the balloon.
the decomposing banana releases methane gas. can you explain how to do the experiment?
Air inside the bottle expands when the bottle is heated. Some of it leaves the bottle until the pressure of the heated air remaining in the bottle equals the pressure of the air in the room. The balloon is then placed over the neck of the bottle and prevents any more air from entering or leaving the bottle. The air inside the bottle cools to the temperature of the ice water. The cooler air inside the bottle takes less space (volume) than it did when hot, so it sucks the balloon inside the neck of the bottle. Air pressure inside the bottle causes the balloon to stretch and enlarge until the air pressure inside the bottle, including the air in the balloon, has the same pressure as the air in the room.
because heat expands things... and the heat expands the air in the bottle and the air in the balloon... the only place for the air to go, since it cannot expand the bottle... is out into the balloon, increasing the pressure there and inflating the balloon. :-)