Balloons can be twisted into shapes because of particles of gas can be compressed.
When you squeeze an ointment tube, the pressure exerted by your hand forces the ointment to flow out of the tube. This causes the tube to collapse on itself as the volume of ointment decreases, resulting in a change in shape. The flexibility of the tube material allows it to deform under pressure, facilitating the dispensing of the ointment.
Yes, the pressure in the ocean can potentially change the shape of a glass bottle. The external water pressure increases the deeper you go in the ocean, which can lead to the bottle being compressed or deformed due to the difference in pressure inside and outside the bottle.
Change of shape can not be used to indicate a chemical reaction has happened. Examples of evidence of a chemical reaction are changes in odor or color.
Balloons can be shaped differently because of the way they are manufactured. The shape of a balloon is determined by the mold or template used during the manufacturing process. Even though they are filled with the same air, the shape of the balloon is determined by its design and not by the air inside.
physical change
No, the volume remains the same if you change the shape but not the amount of material. This is because the volume is determined by the quantity of material present, not how it is arranged.
no, bursting of balloons is a physical change as the only change that occurs that that the shape of the balloon changes . Coming out of air is not a chemical change.
leukocyte
Balloons are not round; they are more pear-shaped. You can also get sausage-shaped balloons, but the shape is ultimately determined by the shape of the un-inflated rubber and its elasticity.
When you squeeze an ointment tube, the pressure exerted by your hand forces the ointment to flow out of the tube. This causes the tube to collapse on itself as the volume of ointment decreases, resulting in a change in shape. The flexibility of the tube material allows it to deform under pressure, facilitating the dispensing of the ointment.
There are several types of hot air balloons, including traditional spherical shape balloons, special shape balloons (such as animals or objects), and solar balloons that use solar power for heating. Each type serves different purposes and offers unique designs.
When you blow air into a balloon, the air molecules push against the rubber walls of the balloon, causing them to stretch and expand. The pressure of the air inside the balloon is higher than the pressure outside, which causes the balloon to inflate and change its shape.
Yes, the shape and size of a toy balloon depend on the type of gas inside. Helium makes balloons float, while air or carbon dioxide results in balloons sinking. The gas affects the overall buoyancy and volume of the balloon.
The force that causes rock to change shape is typically pressure due to tectonic forces, which push, pull, or squeeze the rock. This force can deform the rock, leading to changes in its shape over time. Additionally, factors like temperature variations and erosion can also contribute to the changing shape of rocks.
Square balloons can be made by using special molds that create the square shape when inflated. These molds are usually made of plastic or metal and can be filled with air or helium to create the square balloon shape. Square balloons are not as commonly available as traditional round balloons, but can be found at specialty balloon stores or online.
White blood cells (WBC) can change their shape in order to move efficiently through the bloodstream and tissues to reach sites of infection or inflammation. This ability to change shape, also known as amoeboid movement, lets WBC squeeze through narrow spaces and interact with other cells and pathogens in the body.
balloons with water and powder/flower in it a soft pice of fruit that has gone bad squeeze your calf muscle with out flexing it