artistic ones theory
Diffusion is the movement of molecules from areas of higher concentration to areas of lower concentration. This process occurs until equilibrium is reached, where the concentration is the same throughout the system.
active transportation is the movement of molecules from a less crowded area to a more crowded area. passive transportation is the movement of molecules from a more crowded area to a less crowned area.
Molecules tend to move into areas where there are less molecules. This is called diffusion and can happen with or without energy.
Molecules tend to move into areas where there are less molecules. This is called diffusion and can happen with or without energy.
less of them that's the only thing i can think of that makes sense it took me a while to figure out what you meant but common sense says less
Yes.
Ice molecules vibrate in fixed positions with very limited movement. As the temperature increases, the vibrations become more intense, causing the molecules to move slightly within their fixed positions. Overall, the movement of individual ice molecules is much less compared to liquid water molecules.
Diffusion is the process that explains the movement of molecules from areas of higher concentration to areas of lower concentration over time. After five hours, molecules will have moved and spread out more evenly in the system due to diffusion.
Low pressure is less dense than high pressure. In areas of low pressure, air molecules are more spread out, leading to lower density compared to areas of high pressure where air molecules are more closely packed together.
Energy is required for molecules to move. At higher temperatures, molecules have more kinetic energy, causing them to move faster and more freely. Conversely, at lower temperatures, molecules have less kinetic energy and move slower.
Simple diffusion is the type of passive transport where molecules move from an area of higher concentration to an area of lower concentration without the need for energy input. It is driven by the concentration gradient of the molecules.
Yes, but the movement is more of a vibration of the molecules. They don't have enough energy for any greater movement.