yes. It is called crushed ice.
2006-09-10 21:16:06
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answer #1
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answered by Anonymous
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NO NO NO. IF U titrate the molcule of water (H2 O) the reault will b << 2 Hydrogine + 1 Oxgine + 4 electrons >> so you can say in other way U will gain chemical reaction H + O separately & phisical reaction that is electrons means electricity means energy. NO water in case of heating, NO water in case of titration, then you don't have the solvant 2 powder it .
2006-09-11 04:32:36
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answer #2
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answered by sirawa 2
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There are only hydrated mineral forms that can be crushed into powder. But the water part is bonded and in a polyatomic bonded state. Aluminium decahydrate (Al2O3-10H20) or Copper Decahydrate (Cu2O-10H20).
2006-09-11 04:56:10
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answer #3
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answered by sandwreckoner 4
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Yes, but not as a pure compound. There are many compounds that can trap water molecules in to there struture, zeolites (sp) are one kind of compound that can absorbed water. but the problem is once it is trapped you have to heat at a high tempurture to release the water. Other possible ways are to form hydrate crystals.
2006-09-11 04:35:12
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answer #4
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answered by Mr Hex Vision 7
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water in solid form is ice
we can already get ice shavings, which is as close to powdered water as u can get
but if you're at room temperature, water will always be liquid.
2006-09-11 04:15:07
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answer #5
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answered by statistics 4
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Yes, send me £10 and I will send you a litre of powdered water, you only need to add a litre of water to activate it =)
2006-09-11 04:15:53
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answer #6
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answered by strawman 4
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yes, boil it till there is no more steam and liquid in the container, pour into a dry container and when you want to use just add water.
JUST KIDDING NO IT'S IMPOSSIBLE
2006-09-11 04:17:15
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answer #7
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answered by mickkooz 4
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no... think about hydrogen and oxygen, can they be made into powder?
2006-09-11 04:17:23
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answer #8
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answered by cyntharella 2
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Unfortunately, no. Besides, what would you use to reconstitute it with?
2006-09-11 04:18:20
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answer #9
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answered by PJ 1
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no
2006-09-11 04:14:36
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answer #10
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answered by Anonymous
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