Water compresses under a high gradient electric field
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Re: Water compresses under a high gradient electric field
#2Pretty interesting that the rules of the simulation were such that it took three years to explain an emergent phenomenon. I probably would have written it off as floating point shenanigans.
Re: Water compresses under a high gradient electric field
#3Re: Water compresses under a high gradient electric field
#4Re: Water compresses under a high gradient electric field
#5Re: Water compresses under a high gradient electric field
#6It's not _pushing_ the molecules together, rather _pulling_ them together. This happens because the electric field is smaller than the water molecule, and pulls from inside.
Re: Water compresses under a high gradient electric field
#7That is a really neat effect. Basically if you can put a water molecule inside a flat field it lines itself up with that field and can be compressed. I would bet this has an impact on Graphene based desalination efforts as well.
Re: Water compresses under a high gradient electric field
#8Does this also mean compressing/decompressing water can generate an electric field?
> The compression is only 3 percent, but that pressurizes the water—it's equivalent to 100 atmospheres
Although, that's not uncommon for ice giants, so it might be causing part of Ouranos (aka Uranus) magnetic field.
> The troposphere is thought to have a highly complex cloud structure; water clouds are hypothesised to lie in the pressure range of 50 to 100 bar[1]
Re: Water compresses under a high gradient electric field
#9Does this also mean compressing/decompressing water can generate an electric field?
Anyway, that's how i read the article. (Please correct me if I'm wrong)
Compressing water, however, does not force the molecules to align (as far as I know). So no field generation by compression - at least not from my understanding of this experiment.
Re: Water compresses under a high gradient electric field
#10That is a really neat effect. Basically if you can put a water molecule inside a flat field it lines itself up with that field and can be compressed. I would bet this has an impact on Graphene based desalination efforts as well.
It would additionally be interesting if the water would react to EM fields and confined spaces in a way that allowed for a 'micro' pump. Such a system might be able to operate in zero-g and thus be useful on extended space missions.