Magnetic and transport properties of mechanosynthesized 'FeCr IND.2' 'S IND.4' sulfospinel (2002)
- Autor:
- Autor USP: GOYA, GERARDO FABIAN - IF
- Unidade: IF
- Subjects: MATERIAIS; ESPECTROSCOPIA DO MOSSBAUER; MAGNETISMO
- Language: Inglês
- Imprenta:
- Publisher: Trans Tech Publications
- Publisher place: Zurich
- Date published: 2002
- Source:
- Título do periódico: Materials Science Forum
- ISSN: 0255-5476
- Volume/Número/Paginação/Ano: v. 386-389, p. 491-496, 2002
-
ABNT
GOYA, Gerardo Fabían. Magnetic and transport properties of mechanosynthesized 'FeCr IND.2' 'S IND.4' sulfospinel. Materials Science Forum. Zurich: Trans Tech Publications. . Acesso em: 20 abr. 2024. , 2002 -
APA
Goya, G. F. (2002). Magnetic and transport properties of mechanosynthesized 'FeCr IND.2' 'S IND.4' sulfospinel. Materials Science Forum. Zurich: Trans Tech Publications. -
NLM
Goya GF. Magnetic and transport properties of mechanosynthesized 'FeCr IND.2' 'S IND.4' sulfospinel. Materials Science Forum. 2002 ; 386-389 491-496.[citado 2024 abr. 20 ] -
Vancouver
Goya GF. Magnetic and transport properties of mechanosynthesized 'FeCr IND.2' 'S IND.4' sulfospinel. Materials Science Forum. 2002 ; 386-389 491-496.[citado 2024 abr. 20 ] - Magnetic interactions in ball-milled spinel ferrites
- Ferromagnetismo fraco em nano-partículas de Y'FeO ind.3' obtidas a partir de precursores hetero-bimetálicos
- Spin-glass ordering in 'Zn IND.1-X''Mn IND.X''In IND.2''Te IND.4' diluted magnetic semiconductor
- Magnetic and Mössbauer study of the novel 'Feln IND.2' 'S IND.2' 'Se IND.2' layered compound
- Spin disorder and magnetic anisotropy in 'Fe IND. 3' 'O IND. 4' nanoparticles
- Static and dynamic magnetic properties of spherical magnetite nanoparticles
- Estudo das interações magnéticas em ferrofluidos biocompativeis
- Spin-glass behavior in 'Zn IND.1-X' 'Mn IND.X' 'In IND.2' 'Te IND.4'
- Handling the particle size and distribution of 'Fe IND. 3''O IND. 4' nanoparticles through ball milling
- Influence of the interparticle interactions on the ordered state in Ball-Milled 'Fe IND.3' 'O IND.4' nanoparticles with controlled size distribution
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