both occurs in gases (with little forces attraction between making them move in an uneven manner)
they are alike because they both deal with force
Circular motion and variable motion are alike because both of them are constant. Another way they're alike is that variable motion is used with transportation movements like cars, trucks, and buses. Circular motion can also be used with transportation like with wheels on cars, trucks, and buses.
Both feature figures with clothing that is still and without motion
Diffusion is the movement of particles from where there are lots of them, to where there are less of them. Osmosis is the same thing basically, but osmosis is only with water particles.
kamryn your dum i dont evevn knoe ? actully this person is stupid cause he doesnt know how to spell
Both feature figures with clothing that is still and without motion
MotionLotionNotionPotionDevotionCommotioncommotionSpelling isn't that much alike but if you say it, motion sorta works... Sorry its not the best answer :/
Both move down concentration gradient through a partially permeable membrane, and both do not require energy. Diffusion involves the movement of particles or solute from an area of high concentration to an area of low concentration. Osmosis is the movement of water from where it is in high concentration to where it is in low concentration.
Grains of sand are about to move about in a manner that is similar to the motion of molecules of a true liquid.
Both modern Metric and Money are decimal (10) based; rather than more older fractional (1/2, 1/12, 1/16ths) systems.
I was not aware that they were similar except that they are both elements of dynamics.
Diffusion and mitosis are both biological processes that occur in living organisms. Diffusion involves the movement of molecules from an area of higher concentration to an area of lower concentration, while mitosis is the process by which a cell divides and produces two identical daughter cells. Both processes are essential for the maintenance, growth, and reproduction of cells.