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| Subject | Re: Why do you think you are not ? |
|---|---|
| Newsgroups | sci.physics |
| References | <9e6ca0cc1212fa9cd0e5c7c97357bd10@msgid.frell.theremailer.net> <ncmlh1$jqu$1@dont-email.me> <8800b537-fa6a-4d07-821c-c5728d186aa1@googlegroups.com> |
| From | Sam Wormley <swormley1@gmail.com> |
| Date | 2016-03-20 14:51 -0500 |
| Message-ID | <FaSdnbOrLeKiYnPLnZ2dnUU7-RcAAAAA@giganews.com> (permalink) |
On 3/20/16 12:17 PM, James McGinn wrote: > I can't figure out what you point is. Sublimation, evaporation and boiling all create water vapor, the gaseous phase of water. The physics and thermodynamics of steam – the long version > http://geosci.uchicago.edu/~moyer/GEOS24705/Notes/SteamNotes.pdf > Second, what is steam? The English language is a little fuzzy here. > Some definitions say that any water vapor (H2O in gaseous form > instead of liquid) is steam. By that definition, the atmosphere > itself is a very low-temperature steam engine. Other definitions say > that steam is water vapor if the water vapor happens to be boiling. > (Which brings up another question: what does "boiling" mean?) > Finally, a third definition says that steam is "pressurized water > vapor", i.e. water vapor at a pressure higher than 1 atmosphere. > Those are incompatible definitions, which makes clear thinking > difficult. > Let's start with the question of what boiling is, and even before > that, how vapors and liquids interact. > We all know from our experience that the atmosphere contains some > water vapor at all times, even at temperatures well below what we > might think of as the "boiling point". We talk about the humidity, > and know what a humid day feels like. > In a very qualitative explanation: whenever/wherever there is liquid > water, some of the water molecules "want" to be in gas phase. If you > bring a pot of water into very dry air and wait, you'll find that > some water from the pot evaporates (i.e. some of the molecules move > into the gas phase), until eventually the liquid and vapor reach > "equilibrium". At that point the liquid water and vapor are somehow > in the state they "want" to be in and their proportions stay > constant. > If you heat up that pot of water, however, more water "wants" to move > into the gas phase. You have some intuitive sense that hot air holds > more water vapor: a hot summer Chicago day feels damp to you, while > cold winter air feels dry. > The amount of water that evaporates as you warm the water is > described by a very simple and beautiful relationship, named after > its two independent discoverers, Clausius and Clapeyron. The > Clausius-Clapeyron equations states that the equilibrium "partial > pressure" over liquid water -- the pressure that you'd measure if you > had only water vapor and no extraneous air molecules -- is a function > only of temperature. There is much more, James. -- sci.physics is an unmoderated newsgroup dedicated to the discussion of physics, news from the physics community, and physics-related social issues.
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you guys are asholes "James McGinn" <iwetmyself@yourhouse.com> - 2016-03-20 15:27 +0000
Re: Why do you think you are not ? Poutnik <poutnik4nntp@gmail.com> - 2016-03-20 18:13 +0100
Re: Why do you think you are not ? James McGinn <jimmcginn9@gmail.com> - 2016-03-20 10:17 -0700
Re: Why do you think you are not ? Sam Wormley <swormley1@gmail.com> - 2016-03-20 14:51 -0500
Re: you guys are asholes Sam Wormley <swormley1@gmail.com> - 2016-03-20 14:37 -0500
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