They will be pushed closer together.
When a balloon is squeezed, the volume of the balloon decreases. This causes the gas inside the balloon to be compressed, increasing the pressure of the gas.
The kinetic energy of the particles inside the balloon increase. This then expands the volume of the balloon.
The air pressure inside the balloon will increase when it is squeezed to half its volume at constant temperature. This is because the volume of the balloon decreases, leading to the air molecules being more confined in a smaller space, resulting in higher pressure.
When squeezing a balloon, the air particles inside become more compressed. This causes an increase in pressure, which can be felt as resistance when trying to squeeze the balloon further. If squeezed too much, the balloon may burst as the pressure becomes too high for the balloon material to contain.
When a balloon is squeezed, the forces exerted on it cause the air inside the balloon to be compressed. This compression increases the pressure inside the balloon, leading to a change in the balloon's shape and size. If the squeezing force is too strong, it can cause the balloon to burst.
The particles inside the balloon moved randomly due to the kinetic energy they possess. The temperature of the gas inside the balloon affects the speed at which the particles move. When the gas inside the balloon is heated, the particles move faster and spread out, causing the balloon to expand.
When you put a balloon in the freezer, the particles of the air inside the balloon will lose energy and slow down, causing them to contract and the balloon to shrink. This is because the cold temperature reduces the kinetic energy of the air molecules, leading to a decrease in pressure inside the balloon.
Same throughout the ballon according to the Pascal's principle
When the balloon is filled with water, it creates pressure on the water inside the straw, causing the water level in the straw to rise. When the balloon is squeezed, the pressure is increased, causing the water level in the straw to rise even further due to the increased force.
Cooling the air inside a sealed balloon will cause the air particles to slow down and lose energy, resulting in a decrease in pressure. As a result, the balloon will shrink in size due to the decrease in pressure exerted by the air particles on the balloon walls.
If a balloon is squeezed, then that means the volume is decreasing. Volume and pressure vary indirectly, which means that when one goes up, the other goes down. So when you are decreasing the volume of the balloon, the pressure inside is going up (assuming constant mass and temperature).
Air particles inside a balloon collide with the walls of the balloon, transferring momentum and exerting a force per unit area, creating pressure. The more particles colliding with the walls, the greater the pressure exerted on the inside of the balloon.