By R. Troć (auth.), H.P.J. Wijn (eds.)
The Landolt-Börnstein quantity 27 bargains with the magnetic houses of non-metallic inorganic compounds in response to transition parts, equivalent to there are pnictides, chalcogenides, oxides, halides, borates, silicates and phosphates. A survey of the contents of all subvolumes that experience already seemed or were deliberate to seem is outlined at the within front disguise. as a way to disguise the big volume of magnetic and magnetically comparable houses of the lanthanide and actinide pnictides and chalcogenides that seemed in literature lately, the subvolume 27B needed to be cut up into subvolumes B1...B8. Subvolumes 27B1, 27B2, 27B3, 27B4 and 27B5 (published among 1998 and 2003) take care of lanthanide pnictides and chalcogenides. Pnictides are outlined as compounds containing a minimum of one of many components P, As, Sb or Bi (V-th team of the Periodic System), and chalcogenides are outlined as compounds containing one of many parts S, Se or Te (VI-th staff of the periodic system). the 3 subvolumes 27B6, 27B7 and 27B8 hide the homes of actinide pnictides and chalcogenides. Subvolume 27B8 (published in 2004) bargains with ternary actinide pnictides and chalcogenides, whereas in subvolume 27B7 (published in 2005) facts on binary non-equiatomic actinide pnictides and chalcogenides are given.
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Extra resources for Actinide Monochalcogenides: Pnictides and Chalcogenides III
49b 73AI2 UY F Order parameter, η, vs. 50a where α is a phenomenological parameter of exchange interactions 90CK Ordered U magnetic moments, pU, and unit cell volume, V, vs. 50b Curie temperature, TC, DebyeWaller factor, B, and ordered magnetic moments, pU 06HFMV table UY, NpY (UX) F/AF Ne´el temperature and Curie temperature, TN, TC, vs. 52 magnetic moment, pU, and lattice parameter, a0, vs. 1007/978-3-540-47043-4_3 ß Springer 2009 7 8 3 Survey: General Properties of Actinide Monochalcogenides (AnY) Compound UY Sample State F UY (UX) UY F Electronic, crystal structure, magnetic and related properties Localized f spectral weight, Z, atomic interaction coefficient, t, and exchange integral, J = t2/U, vs.
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