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Electronic Magnetic And Thermoelectric Properties Of Spinel Ferrite Systems A Monte Carlo Study Meanfield Theory Hightemperature Series Expansions And Abinitio Calculations Rachid Masrour

  • SKU: BELL-52392566
Electronic Magnetic And Thermoelectric Properties Of Spinel Ferrite Systems A Monte Carlo Study Meanfield Theory Hightemperature Series Expansions And Abinitio Calculations Rachid Masrour
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Electronic Magnetic And Thermoelectric Properties Of Spinel Ferrite Systems A Monte Carlo Study Meanfield Theory Hightemperature Series Expansions And Abinitio Calculations Rachid Masrour instant download after payment.

Publisher: Springer
File Extension: PDF
File size: 3.46 MB
Pages: 142
Author: Rachid Masrour
ISBN: 9783031406126, 3031406125
Language: English
Year: 2023

Product desciption

Electronic Magnetic And Thermoelectric Properties Of Spinel Ferrite Systems A Monte Carlo Study Meanfield Theory Hightemperature Series Expansions And Abinitio Calculations Rachid Masrour by Rachid Masrour 9783031406126, 3031406125 instant download after payment.

This book explores magnetic properties and critical temperatures in inverse ferrite Fe3+(M2+Fe3+)O4 spinels (e.g., Fe, Co, Ni). It calculates transition and Curie Weiss temperatures, providing insights into their thermodynamic behavior. Using the full potential linearized augmented plane wave (FP-LAPW) method, it investigates electrical and magnetic structures of spinel chromite, revealing magnetic moments in MnCr2S4. Seebeck coefficient and electrical conductivity are also calculated. Advanced techniques like Monte Carlo, DFT+U, and FLAPW analyze magnetic characteristics of LiMn1.5Ni0.5O4 and electronic/magnetic structures of Fe3O4. High-temperature series expansions calculate Néel temperature and critical exponents, while GFT determines thermal magnetization and susceptibility. The analysis exposes exchange interactions' effects on magnetic order and introduces asymmetric phases in ferrimagnetic spinel systems. This book serves as an invaluable resource for researchers, academics, and enthusiasts seeking a comprehensive understanding of magnetic properties and critical phenomena within diverse spinel materials.

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