By H.P.J. Wijn, K. Kanematsu, S. Misawa, M. Shiga, H. Wada
Quantity 32 of staff III is a complement to quantity III/19 and may take care of the magnetic houses of metals, alloys and metal compounds which comprise a minimum of one transition element.The current subvolume III/32A presents finished and evaluated info on magnetic homes of 3d, 4d and 5d parts, alloys and compounds released commonly within the past decade.
Read Online or Download 3d, 4d and 5d Elements, Alloys and Compounds (Landolt-Bornstein: Numerical Data and Functional Relationships in Science and Technology - New Series Condensed Matter) PDF
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Additional resources for 3d, 4d and 5d Elements, Alloys and Compounds (Landolt-Bornstein: Numerical Data and Functional Relationships in Science and Technology - New Series Condensed Matter)
Rev. : Phys. Lett. : J. Less-CommonMet. : Phys. Rev. : Phys. Lett. : AIP Conf. Proc. : J. Phys. Sot. Jpn. , 40 50 30 I 45 3 I 8 20 20 10 30 300 350 400 450 I- 500 0 550 K 600 Fig. 45. yMn-x at% Cu. Specific heat CP vs. temperature T for various compositions x. T, is the tetragonal distortion transition temperature[89Al]. O 200 400 600 T- 800 1000 1200K 1400 Fig. 46. yMn-x at% Cu. Thermal expansion coefficient a vs. temperature T for various compositions x. The cross represents the value obtained from X-ray measurementson yMn [54Bl], the dashed curve the extrapolated behavior for yMn.
49 and Table 8. The influence of an externally applied magnetic field on the hyperfine field Hhypis given by: where Hintis the additional internal field on the muon as a result of the applied field. 6 Oe at room temperature [77C2]. Ref. p. 2 Fe, Co, Ni 47 Table 4. Fe, Co, Ni. Magnetic hyperfine field Hhypas calculated by the spin-polarised relativistic KKR method (SPRKKR) [SSEl] and the nonrelativistic KKR method [79Jl] as compared to the experimental values [90Al]. The calculated core contribution is denoted Hi,“and the contributions from the conduction electrons with indices s, p and d.
15. Fe, polycrystalline, annealed for 2 h at 1100 “C in Ar, furnace-cooled. 006 wt% S. -- b 0 12 3 H- 4 5 6kA/m temperature as a function of applied magnetic field strength H. Parameter is the stress amplitude a, applied parallel to the magnetic field [91Rl]. a tension cycle, b compressioncycle. 2 Fe, Co, Ni b a Fig. 16. Ni, polycrystalline, annealed for 2 h at 800 “C in Ar, furnace-cooled. 001 wt% S. Reversible part of the magnetic flux density change LIB, during sinusoidal stress cycling at room temperature as a 0 [Ref.
3d, 4d and 5d Elements, Alloys and Compounds (Landolt-Bornstein: Numerical Data and Functional Relationships in Science and Technology - New Series Condensed Matter) by H.P.J. Wijn, K. Kanematsu, S. Misawa, M. Shiga, H. Wada
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