By R. Troc, D. Kaczorowski (auth.), H.P.J. Wijn (eds.)

In subvolume III/27C2 magnetic and comparable houses of binary actinide oxides were compiled. This subvolume covers info bought on account that 1980 and will consequently be considered as complement to quantity III/12c. half 27C1 offers with binary oxides of the lanthanide components. Magnetic homes of the binary oxides of 3d transition parts are given in subvolume 27 G.

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P. , Tables Ref. 44 K) Heat capacity C/T vs T2 Magnetic entropy vs. T Calculated lattice heat capacity up to 150 K Calculated phonon and magnon contributions to heat capacity Calc. of spin-wave contribution to heat capacity Calc. of electronic contribution to heat capacity Calculated Cp on the basis of enthalpy data Heat capacity at 300…1100 K Heat capacity at 300…1000 K Heat capacity at 500…1500 K Heat capacity at 300…8000 K Heat capacity at 300…1500 K Heat capacity at high temperatures 15 268 124 53OW 52JGL, 62WG 71HW 269 125, 215, 271 126 127 68FOW 71HW, 53OW, 68FOW 65DCW 67DGV 16 128 129 192 Theory on transition into a superionic state; explanation of the nature of the anomalies observed in heat capacity and diffusion coeff.

Bulk magnetic properties of some binary actinides oxides. 95 - ? –220 ? 2-180 K Cf2O3 (mono) Cf2O3 (bcc) Es2O3(bcc) Ref. 1 2 3 4 5 6 7 8 8 9 8 8 8 8 10 11 10 12 12 12 12 12 13 (13% Bk) 1. [94HE], 2. [66N], 3. [67RL], 4. [68RL], 5. [75K2], 6. [81MLA], 7. [86SEMS], 8. [83NHH], 9. [83MFGH], 10. [87HN], 11. [75K1], 12. [86MNHH], 13. [83HNHM] La n d o l t - B ö r n s t e i n New Series III/27C2 Ref. p. 5 Figures and tables 55 Table 11. Magnetic data for U1–xNpxO2 deduced from Mössbauer and magnetic susceptibility measurements [84TJPD].

Data; calc. 3 Survey of binary actinide oxides (CaF2-type structure) State Crystal structure, magnetic and related properties [Ref. p. , Tables Ref. 44 K) Heat capacity C/T vs T2 Magnetic entropy vs. T Calculated lattice heat capacity up to 150 K Calculated phonon and magnon contributions to heat capacity Calc. of spin-wave contribution to heat capacity Calc. of electronic contribution to heat capacity Calculated Cp on the basis of enthalpy data Heat capacity at 300…1100 K Heat capacity at 300…1000 K Heat capacity at 500…1500 K Heat capacity at 300…8000 K Heat capacity at 300…1500 K Heat capacity at high temperatures 15 268 124 53OW 52JGL, 62WG 71HW 269 125, 215, 271 126 127 68FOW 71HW, 53OW, 68FOW 65DCW 67DGV 16 128 129 192 Theory on transition into a superionic state; explanation of the nature of the anomalies observed in heat capacity and diffusion coeff.

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