Saippo
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Since when you freeze liquid water, there's an expansion, wouldn't that mean there's work?
The discussion revolves around whether ice does work when it melts or freezes, exploring the implications of volume changes during these phase transitions. Participants examine the definitions of work in a thermodynamic context, particularly focusing on the expansion of ice and the volume changes associated with melting and freezing.
Participants express differing views on whether ice does work when melting or freezing, with no consensus reached. Some agree that work is related to volume changes, while others dispute the conditions under which work is done.
Participants reference the definitions of work and energy in thermodynamics, but there are unresolved aspects regarding the specific conditions under which work is considered in the context of melting and freezing ice.
.Right. In this way, work is dependent on volume. So ice does work when it's expanding. Work is simply the energy required to do something--and the ice is obviously using energy to melt. Actually, it's increasing in energy as it melts.Saippo said:delta W = pAs = pV so a change of volume would indicate a change of work wouldn't it?
Water has a lesser volume than ice.Saippo said:I guess what sort of made me wonder about it is when ice melts, the volume doesn't actually change..right? So no work. But if you freeze liquid water, ice expands. So work done?
Not only did he beat you to it, but his answer is correct, and yours isn't. Most of the energy involved in melting has nothing to do with the work done by atmospheric pressure. Also, ice receives work from the atmosphere in contracting; it doesn't expand when it melts.ProfuselyQuarky said:Right. In this way, work is dependent on volume. So ice does work when it's expanding. Work is simply the energy required to do something--and the ice is obviously using energy to melt. Actually, it's increasing in energy as it melts.
EDIT: Oh, Tazerfish beat me to it.
I wasn't talking about pressure. I was talking about volume. And I never said ice expands when it melts.Chestermiller said:Not only did he beat you to it, but his answer is correct, and yours isn't. Most of the energy involved in melting has nothing to do with the work done by atmospheric pressure. Also, ice receives work from the atmosphere in contracting; it doesn't expand when it melts.
Work is equal to ##\int{P_{ext}}dV##, where, in this case, ##P_{ext}## is atmospheric pressure. So a change in volume in melting ice is accompanied by work being done. This is a small part of the heat of melting.ProfuselyQuarky said:I wasn't talking about pressure. I was talking about volume. And I never said ice expands when it melts.
Tazerfish said:A little disclaimer: The energies in this(only for ice not other enthalpy stuff) are absolutely pathetic.