Same throughout the ballon according to the Pascal's principle
The pressure inside the balloon would be increased most at the point where you are squeezing it. Pascal's principle states that when pressure is applied to a confined fluid, that pressure is transmitted equally in all directions within the fluid. Therefore, the pressure increase would be highest at the point of application.
When you squeeze an air-filled balloon, the air inside gets compressed, causing an increase in pressure. If the pressure becomes too high, the balloon may pop.
When you squeeze a balloon to half of its original size, the pressure inside the balloon increases. This is because the same amount of air molecules have less space to occupy, causing them to collide more often with the walls of the balloon, leading to an increase in pressure.
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.
Blowing air into a balloon increases the pressure inside the balloon, causing it to expand. The balloon stretches in response to the increased air molecules inside it, causing it to inflate and become larger.
The pressure inside the balloon would be increased most at the point where you are squeezing it. Pascal's principle states that when pressure is applied to a confined fluid, that pressure is transmitted equally in all directions within the fluid. Therefore, the pressure increase would be highest at the point of application.
When you squeeze an air-filled balloon, the air inside gets compressed, causing an increase in pressure. If the pressure becomes too high, the balloon may pop.
When you squeeze a balloon to half of its original size, the pressure inside the balloon increases. This is because the same amount of air molecules have less space to occupy, causing them to collide more often with the walls of the balloon, leading to an increase in pressure.
When you squeeze a balloon, you are applying pressure to the air inside it. This increased pressure causes the air molecules to move closer together, which changes the balloon's shape. Once you release the balloon, the air molecules move back to their original positions and the balloon returns to its original shape.
The balloon will shrink or deflate as the increased pressure compresses the air inside it. This is because the volume of the balloon decreases as the pressure around it increases.
Increased pressure on the inside, or decreased pressure on the outside.
the pressure has increased
Same throughout the ballon according to the Pascal's principle
what happens if you squeeze a bottle with a balloon
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.
Blowing air into a balloon increases the pressure inside the balloon, causing it to expand. The balloon stretches in response to the increased air molecules inside it, causing it to inflate and become larger.
When you blow air into a balloon, the pressure inside the balloon increases. This increased pressure pushes the rubber material of the balloon outward, causing it to expand and inflate. The material of the balloon stretches to accommodate the higher volume of air being forced into it.