This is a strange question. Water boils usually at 100 degrees Celsius and freezes at 0 degrees Celsius. Who understands this question? I think you mean "If a substance changes from solid to liquid when the temperature exceeds 100 degrees, will it change from liquid back to solid when cooled to below 100?" Yes, it will.
In Celsius, ice will freeze below and melt above 0 degrees.
yes, it can. the reason people think it can't is because the sand at the beach is salty, and salt makes ice melt. so, with no salt involved, water can freeze
it really all depends on the temperature if the water is warmer than the ice it would melt in atleast 1 min if the water is freezing cold and colder than the ice then the ice will melt in an hour b/c the water will warm up to room temperature if it5 was boiling water it would obviosly melt in a few seconds or 2
A pot of hot water would melt more ice because it has a higher temperature than a tub of warm water. The greater temperature difference between the hot water and the ice leads to faster heat transfer, causing the ice to melt more quickly.
When you melt something frozen, all of the particles start to seperate from each other (but not too far apart) this makes a liquid.
yes
Water tend's to crack and melt the ice, depending on the temperature it's at, it could freeze almost instantly.
The opposite of freeze would be melt, thaw, or liquefy.Melting
a low temperature will freeze the substance, a high temperature will melt or turn the substance into vapor
Technically it's still cold, but not enough to freeze to be icecream.
32.5F (melt) 32.4F (freeze) something like 120F (evaporate) idfk about the condensation part though
Well I know for a fact that ice will melt faster depending on how hot the temperature is.
melting temperature is when something melt in that time what is the temperature of it.
Yes
melt is to freeze as what is to matched.
Melt means to liquify by warmth so an antonym would be freeze, to become hardened by loss of heat.
No. A person would simultaneously freeze and asphyxiate on mars.