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Your search keyword '"FERRIMAGNETIC materials"' showing total 20 results
20 results on '"FERRIMAGNETIC materials"'

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1. Monte Carlo simulation of magnetic properties of mixed spin (3/2, 1) ferromagnetic and ferrimagnetic disordered binary alloys with amorphous structure.

2. An effective-field theory study of trilayer Ising nanostructure: Thermodynamic and magnetic properties.

3. Monte Carlo simulations of an Ising bilayer with non-equivalent planes.

4. Phase diagrams and magnetic properties of ferrimagnetic mixed spin-[formula omitted] and spin-[formula omitted] Ising nanowire.

5. Computational study of magnetic properties of L10 ordered FeNi and FePt binary alloys.

6. Monte Carlo study of magnetic properties and critical behavior of Sr2CrMoO6.

7. Mixed spin-5/2 and spin-2 Ising ferrimagnetic system on the Bethe lattice.

8. Phase diagrams and compensation behaviors of a mixed Spin-(3/2, 1) Ising-Type Ferrimagnet: Monte Carlo investigation.

9. Monte Carlo simulation of magnetic properties of a mixed spin-1 and spin-3/2 ferrimagnetic Ising system.

10. Critical and compensation temperature in a ferrimagnetic mixed spin Ising trilayer nano-graphene superlattice.

11. The phase diagrams and the magnetic properties of a ferrimagnetic mixed spin 1/2 and spin 1 Ising nanowire.

12. Phase diagrams and magnetic properties of a ferrimagnetic cylindrical core/shell spin-1 Ising nanowire.

13. Magnetic properties of the ferrimagnetic triangular nanotube with core–shell structure: A Monte Carlo study.

14. The magnetic properties and hysteresis loops of mixed spin-(3/2,2) hexagonal Ising nanowire system with alternate layers.

15. Susceptibility and magnetic properties of a trilayer Ising nanostructure: An effective-field theory.

16. Magnetodielectric coupling in Ca3Co2O6 triangular Ising lattice

17. Cluster size effects in the magnetic properties of [formula omitted]-[formula omitted] alloys.

18. Study on magnetic and thermodynamic characteristics of core-shell graphene nanoribbon.

19. Magnetic properties of an Ising ladder-like graphene nanoribbon by using Monte Carlo method.

20. Unique magnetic and thermodynamic properties of a zigzag graphene nanoribbon.

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