Thalassaemic human spleen ferritin and haemosiderin in applied magnetic fields

Pierre, T. G. St. ; Dickson, D. P. E. ; Jones, D. H.
Springer
Published 1988
ISSN:
1572-9540
Source:
Springer Online Journal Archives 1860-2000
Topics:
Physics
Notes:
Abstract Mössbauer spectra of the microcrystalline cores of thalassaemic human spleen ferritin and haemosiderin in applied magnetic fields have shown that the magnetic anisotropy dominates over the energy term arising from the net magnetic moments of the microcrystals in the applied field. The spectra have been analysed to give information on the net magnetic moments of the protein cores.
Type of Medium:
Electronic Resource
URL:
_version_ 1798297430930751490
autor Pierre, T. G. St.
Dickson, D. P. E.
Jones, D. H.
autorsonst Pierre, T. G. St.
Dickson, D. P. E.
Jones, D. H.
book_url http://dx.doi.org/10.1007/BF02395539
datenlieferant nat_lic_papers
hauptsatz hsatz_simple
identnr NLM194352633
issn 1572-9540
journal_name Hyperfine interactions
materialart 1
notes Abstract Mössbauer spectra of the microcrystalline cores of thalassaemic human spleen ferritin and haemosiderin in applied magnetic fields have shown that the magnetic anisotropy dominates over the energy term arising from the net magnetic moments of the microcrystals in the applied field. The spectra have been analysed to give information on the net magnetic moments of the protein cores.
package_name Springer
publikationsjahr_anzeige 1988
publikationsjahr_facette 1988
publikationsjahr_intervall 8014:1985-1989
publikationsjahr_sort 1988
publisher Springer
reference 42 (1988), S. 917-920
search_space articles
shingle_author_1 Pierre, T. G. St.
Dickson, D. P. E.
Jones, D. H.
shingle_author_2 Pierre, T. G. St.
Dickson, D. P. E.
Jones, D. H.
shingle_author_3 Pierre, T. G. St.
Dickson, D. P. E.
Jones, D. H.
shingle_author_4 Pierre, T. G. St.
Dickson, D. P. E.
Jones, D. H.
shingle_catch_all_1 Pierre, T. G. St.
Dickson, D. P. E.
Jones, D. H.
Thalassaemic human spleen ferritin and haemosiderin in applied magnetic fields
Abstract Mössbauer spectra of the microcrystalline cores of thalassaemic human spleen ferritin and haemosiderin in applied magnetic fields have shown that the magnetic anisotropy dominates over the energy term arising from the net magnetic moments of the microcrystals in the applied field. The spectra have been analysed to give information on the net magnetic moments of the protein cores.
1572-9540
15729540
Springer
shingle_catch_all_2 Pierre, T. G. St.
Dickson, D. P. E.
Jones, D. H.
Thalassaemic human spleen ferritin and haemosiderin in applied magnetic fields
Abstract Mössbauer spectra of the microcrystalline cores of thalassaemic human spleen ferritin and haemosiderin in applied magnetic fields have shown that the magnetic anisotropy dominates over the energy term arising from the net magnetic moments of the microcrystals in the applied field. The spectra have been analysed to give information on the net magnetic moments of the protein cores.
1572-9540
15729540
Springer
shingle_catch_all_3 Pierre, T. G. St.
Dickson, D. P. E.
Jones, D. H.
Thalassaemic human spleen ferritin and haemosiderin in applied magnetic fields
Abstract Mössbauer spectra of the microcrystalline cores of thalassaemic human spleen ferritin and haemosiderin in applied magnetic fields have shown that the magnetic anisotropy dominates over the energy term arising from the net magnetic moments of the microcrystals in the applied field. The spectra have been analysed to give information on the net magnetic moments of the protein cores.
1572-9540
15729540
Springer
shingle_catch_all_4 Pierre, T. G. St.
Dickson, D. P. E.
Jones, D. H.
Thalassaemic human spleen ferritin and haemosiderin in applied magnetic fields
Abstract Mössbauer spectra of the microcrystalline cores of thalassaemic human spleen ferritin and haemosiderin in applied magnetic fields have shown that the magnetic anisotropy dominates over the energy term arising from the net magnetic moments of the microcrystals in the applied field. The spectra have been analysed to give information on the net magnetic moments of the protein cores.
1572-9540
15729540
Springer
shingle_title_1 Thalassaemic human spleen ferritin and haemosiderin in applied magnetic fields
shingle_title_2 Thalassaemic human spleen ferritin and haemosiderin in applied magnetic fields
shingle_title_3 Thalassaemic human spleen ferritin and haemosiderin in applied magnetic fields
shingle_title_4 Thalassaemic human spleen ferritin and haemosiderin in applied magnetic fields
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source_archive Springer Online Journal Archives 1860-2000
timestamp 2024-05-06T10:07:52.249Z
titel Thalassaemic human spleen ferritin and haemosiderin in applied magnetic fields
titel_suche Thalassaemic human spleen ferritin and haemosiderin in applied magnetic fields
topic U
uid nat_lic_papers_NLM194352633