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Purodha (Klaaf · Beijdrähsch)
M En de Houpsaach freij övvosaz uß de änglesche Wikkipeedija - en:Phase (matter) - ens zwescheschpeijschere.
 
Purodha (Klaaf · Beijdrähsch)
Reih 48:
An interesting thing to note is that the solid-liquid phase boundary in the phase diagram of most substances, such as the one shown above, has a positive slope. This is due to the solid phase having a higher density than the liquid, so that increasing the pressure increases the melting temperature. However, in the phase diagram for [[water]] the solid-liquid phase boundary has a negative slope. This reflects the fact that ice has a lower density than water, which is an unusual property for a material.
 
== Faase'optrënnong ==
==Phase separation==<!-- This section is linked from [[Concentration]] -->
En '''[[Faasetrënnong|Faasedrënnong]]''' määt mer, wam_mer e Süßteem wat aanfangs_enß ëijnhëijtlesch un ëijnförrmėsch woohr, en zwëij, oddo och mieh, Faase brengk.
'''Phase separation''' is transformation of a homogenous system into two (or more) phases and commonly encountered in many branches of science and technology. One example is the [[crystallization]] of a solid from a solution. A universal mathematical model of phase separation is provided by the [[Cahn-Hilliard Equation]].
Di Faase'opdrënnong fengk mer an fille Shtëlle un en rëijschlesch Zwëije fon de [[Natuurwweßßeschavv]]_un [[Tëëschnėk]].
 
E Bëijspell eß et Uß[[krëßtallisėere]], woh enne haade [[Krėßtall]] uß enne [[flößßesch|flößßeje]] [[Löösong (Schėmieh)|Löösong]] wäähß.
En annder Aanwëndong eß dä [[Öhlaffschëije]]r, wo Waßer un Öhl jedrënnt wääde.
 
De [[Cahn un Hilliard ier Jlëishong|Jlëishong fon Cahn un Hilliard]] jitt uns_e [[Mattematick|mattemaatėsch]] [[Modell (Natturweßßeschaff)]] för de Faasetrännong, wat janß alljemeijn un univësëll eß.
 
==Phase equilibrium==