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- W2102671462 abstract "Abstract . The internal microscopic phase transition in atom H described with a Hund-type Mexican hat potential is analytically congruent with the macroscopic phase transitions between states of aggregation, described with classical Van der waals-Maxwell binodals and spinodals. This means the UEOS (universal equation of state) exists and is valid for any phase transition in any system. A universal chiral symmetry breaking mechanism applies to BEC, where the de Broglie length is important. We show quantitatively that his standing wave equation leads to the equivalence of macro- and microscopic phase transitions, due to natural chiral symmetry breaking. The experimentally detected phase transition in the so-called simple Coulomb electron-proton bond between the 2 enantiomers H and antiH is the generic prototype. Pacs: 36.64, 05.70.Ce, 03.65.Ud, 36.10.-k 1. Introduction In line with recent results on phase transitions in small (microscopic) neutral systems due to charge-inversion [1a], we can now report on a striking similarity these microscopic (quantum) phase transitions and those known for centuries in natural stable macroscopic systems. As stated in [1a], the UEOS (universal equation of state) will have to apply for all details (phase transitions, critical points) of macro- [1b] and micro-systems, even BEC [1c], as discussed in [1a]. Already in the 19" @default.
- W2102671462 created "2016-06-24" @default.
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- W2102671462 date "2005-02-17" @default.
- W2102671462 modified "2023-09-27" @default.
- W2102671462 title "Equivalence of macro- (Van der waals) and micro- (quantum) phase- transitions: consequences for BEC, antihydrogen and generic chiral symmetry breaking" @default.
- W2102671462 hasPublicationYear "2005" @default.
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