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Optimised design of actively shielded NMR magnets
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Zeitschriftentitel: | COMPEL - The international journal for computation and mathematics in electrical and electronic engineering |
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Personen und Körperschaften: | , , |
In: | COMPEL - The international journal for computation and mathematics in electrical and electronic engineering, 20, 2001, 1, S. 177-187 |
Format: | E-Article |
Sprache: | Englisch |
veröffentlicht: |
Emerald
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Schlagwörter: |
author_facet |
Cavaliere, V. Formisano, A. Martone, R. Cavaliere, V. Formisano, A. Martone, R. |
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author |
Cavaliere, V. Formisano, A. Martone, R. |
spellingShingle |
Cavaliere, V. Formisano, A. Martone, R. COMPEL - The international journal for computation and mathematics in electrical and electronic engineering Optimised design of actively shielded NMR magnets Applied Mathematics Electrical and Electronic Engineering Computational Theory and Mathematics Computer Science Applications |
author_sort |
cavaliere, v. |
spelling |
Cavaliere, V. Formisano, A. Martone, R. 0332-1649 Emerald Applied Mathematics Electrical and Electronic Engineering Computational Theory and Mathematics Computer Science Applications http://dx.doi.org/10.1108/03321640110359868 <jats:p>Magnetic resonance is becoming a routine analysis for many applications. Present day devices include active shielding systems instead of passive ferromagnetic shields. This calls for sophisticated design techniques able to provide satisfactory performance in terms of central field homogeneity, reduced stray field and minimal superconductor’s volume. In the paper some of the possible techniques to deal with such a problem are presented and discussed.</jats:p> Optimised design of actively shielded NMR magnets COMPEL - The international journal for computation and mathematics in electrical and electronic engineering |
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10.1108/03321640110359868 |
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2001 |
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Emerald |
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COMPEL - The international journal for computation and mathematics in electrical and electronic engineering |
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title |
Optimised design of actively shielded NMR magnets |
title_unstemmed |
Optimised design of actively shielded NMR magnets |
title_full |
Optimised design of actively shielded NMR magnets |
title_fullStr |
Optimised design of actively shielded NMR magnets |
title_full_unstemmed |
Optimised design of actively shielded NMR magnets |
title_short |
Optimised design of actively shielded NMR magnets |
title_sort |
optimised design of actively shielded nmr magnets |
topic |
Applied Mathematics Electrical and Electronic Engineering Computational Theory and Mathematics Computer Science Applications |
url |
http://dx.doi.org/10.1108/03321640110359868 |
publishDate |
2001 |
physical |
177-187 |
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<jats:p>Magnetic resonance is becoming a routine analysis for many applications. Present day devices include active shielding systems instead of passive ferromagnetic shields. This calls for sophisticated design techniques able to provide satisfactory performance in terms of central field homogeneity, reduced stray field and minimal superconductor’s volume. In the paper some of the possible techniques to deal with such a problem are presented and discussed.</jats:p> |
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author | Cavaliere, V., Formisano, A., Martone, R. |
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container_title | COMPEL - The international journal for computation and mathematics in electrical and electronic engineering |
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description | <jats:p>Magnetic resonance is becoming a routine analysis for many applications. Present day devices include active shielding systems instead of passive ferromagnetic shields. This calls for sophisticated design techniques able to provide satisfactory performance in terms of central field homogeneity, reduced stray field and minimal superconductor’s volume. In the paper some of the possible techniques to deal with such a problem are presented and discussed.</jats:p> |
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physical | 177-187 |
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series | COMPEL - The international journal for computation and mathematics in electrical and electronic engineering |
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spelling | Cavaliere, V. Formisano, A. Martone, R. 0332-1649 Emerald Applied Mathematics Electrical and Electronic Engineering Computational Theory and Mathematics Computer Science Applications http://dx.doi.org/10.1108/03321640110359868 <jats:p>Magnetic resonance is becoming a routine analysis for many applications. Present day devices include active shielding systems instead of passive ferromagnetic shields. This calls for sophisticated design techniques able to provide satisfactory performance in terms of central field homogeneity, reduced stray field and minimal superconductor’s volume. In the paper some of the possible techniques to deal with such a problem are presented and discussed.</jats:p> Optimised design of actively shielded NMR magnets COMPEL - The international journal for computation and mathematics in electrical and electronic engineering |
spellingShingle | Cavaliere, V., Formisano, A., Martone, R., COMPEL - The international journal for computation and mathematics in electrical and electronic engineering, Optimised design of actively shielded NMR magnets, Applied Mathematics, Electrical and Electronic Engineering, Computational Theory and Mathematics, Computer Science Applications |
title | Optimised design of actively shielded NMR magnets |
title_full | Optimised design of actively shielded NMR magnets |
title_fullStr | Optimised design of actively shielded NMR magnets |
title_full_unstemmed | Optimised design of actively shielded NMR magnets |
title_short | Optimised design of actively shielded NMR magnets |
title_sort | optimised design of actively shielded nmr magnets |
title_unstemmed | Optimised design of actively shielded NMR magnets |
topic | Applied Mathematics, Electrical and Electronic Engineering, Computational Theory and Mathematics, Computer Science Applications |
url | http://dx.doi.org/10.1108/03321640110359868 |