when there are fewer of one kind of particle this a low concentration
This can be explained using particle theory. The hotter the water is, the more energy the water has. The more energy the water has, the more its particles will move. Therefore, the the hotter water is, the more its particles move. Because the particles move more and faster, they 'bump into' more tea particles, which causes the tea particles to move more. The more the tea particles move, the quicker they will spread through the water and the quicker they can diffuse.
As the energy wave moves through the water, the still water particles start to oscillate or move in a circular motion. The particles transfer energy to neighboring particles causing them to also move in a wave-like pattern. This movement is what we perceive as the wave passing through the water.
As the wave passes through, water particles move in an orbital motion. The particles move in a circular pattern, with the energy of the wave being transferred horizontally as the wave travels. This orbital motion causes the water to rise and fall as the wave passes through.
In a wave, the energy is transferred through the water rather than the actual water particles moving along with the wave. The water particles move in a circular motion as the wave passes through them, but they do not travel in the direction of the wave.
Water resistance occurs when particles in the water disrupt the flow of objects moving through it. These particles can create drag and friction, making it harder for objects to move smoothly through the water. The more particles present in the water, the greater the resistance an object will experience.
as diatoms move through water they filter particles through their two silica shells
Potassium permanganate moved through the water due to diffusion, a process where particles move from an area of high concentration to an area of low concentration. This movement maintains equilibrium by spreading the particles evenly throughout the water.
Potassium permanganate particles move through water by a process called diffusion, where they spread out from areas of high concentration to areas of low concentration until they are evenly distributed. This movement is driven by random thermal motion of the particles.
In an ocean wave, water particles move in a circular motion. As the wave passes through, water particles move in an elliptical path, with the motion decreasing in size as it gets deeper. The circular motion of water particles is what helps transport energy across the ocean surface.
Smaller particles have less mass, so they experience less resistance from the water molecules. This allows them to move faster through the water compared to larger particles which have more mass and therefore experience more resistance.
Water particles move in circles
Dye particles move through water by a process called diffusion, where they spread out from an area of high concentration to an area of low concentration. This movement occurs due to random molecular motion of the dye particles within the water.