The decrease in the number of particles in a balloon over time is primarily due to the process of diffusion. The gas particles inside the balloon are in constant motion and tend to move from areas of higher concentration to areas of lower concentration until equilibrium is reached. This means that over time, some of the gas particles will escape through the balloon material, causing a gradual decrease in the number of particles inside the balloon.
A) The air particles inside the balloon lose kinetic energy when exposed to low temperatures in the deep freezer. This causes the particles to move slower and come closer together, resulting in a decrease in volume and shrinkage of the balloon.
A helium balloon deflates over time because the helium gas inside the balloon slowly escapes through tiny pores in the balloon material. This causes the balloon to shrink and lose its buoyancy.
As time passes, a balloon will gradually deflate due to the air molecules inside the balloon escaping through the balloon material. This will result in a reduction in the size of the balloon over time.
this is bcos,they get constantly subjected to friction,pressure,temperature which has drastic effect on their size and shape and after a long period of time their properties get changed.
One measure of the motion of particles is velocity, which is the speed and direction of the particles. Another measure is acceleration, which describes how the velocity of the particles changes over time.
A) The air particles inside the balloon lose kinetic energy when exposed to low temperatures in the deep freezer. This causes the particles to move slower and come closer together, resulting in a decrease in volume and shrinkage of the balloon.
Balloons deflate over time due to the slow diffusion of air molecules through the balloon material. The air molecules inside the balloon move from an area of high pressure to low pressure, leading to a decrease in volume and the balloon shrinking.
Lowering the temperature will cause the helium gas particles inside the balloon to slow down and come closer together, resulting in a decrease in pressure. This can cause the balloon to deflate or shrink in size as the gas contracts.
A helium balloon deflates over time because the helium gas inside the balloon slowly escapes through tiny pores in the balloon material. This causes the balloon to shrink and lose its buoyancy.
As time passes, a balloon will gradually deflate due to the air molecules inside the balloon escaping through the balloon material. This will result in a reduction in the size of the balloon over time.
The balloon will contain a mixture of the 10% and 5% glucose solutions. Since water can pass through but not glucose, the glucose concentration inside the balloon will decrease over time as water moves from the lower concentration in the beaker to the higher concentration in the balloon through osmosis.
The size of kidneys don't usually decrease in size over time.
Interest can decrease over time depending on various factors such as changing priorities, lack of engagement, or shifting circumstances.
A decrease in the birth rate will cause a decrease in population over time.
In a balloon filled with helium gas, the helium atoms are evenly distributed throughout the available space. They move freely and randomly due to their kinetic energy, colliding with each other and the balloon's inner walls. This distribution results in a uniform pressure inside the balloon, as the helium atoms exert force equally in all directions. Over time, if the balloon is not tightly sealed, some helium atoms may escape, leading to a decrease in pressure and volume.
Resting hart does not rest over time.
Deposition. This is when eroded particles are transported and then come to rest, typically due to a decrease in energy of the transporting medium (such as water or wind). This process creates landforms and contributes to the buildup of sedimentary layers over time.