Overview
- Standard Reference Book with selected and easily retrievable data from the fields of physics and chemistry collected by acknowledged international scientists.
- Also available online in springerlink.com
- http://www.landolt-boernstein.com
- Includes supplementary material: sn.pub/extras
Part of the book series: Landolt-Börnstein: Numerical Data and Functional Relationships in Science and Technology - New Series (LANDOLT 3, volume 27B7)
Part of the book sub series: Condensed Matter (LANDOLT 3)
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Table of contents (14 chapters)
Keywords
About this book
The magnetic and related properties of lanthanide and actinide pnictides and chalcogenides have been compiled in subvolume 27B. While subvolumes 27B1, 27B2, 27B3, 27B4 and 27B5 (already published) deal with lanthanide pnictides and lanthanide chalcogenides of different type, the properties of actinide pnictides and chalcogenides are covered in subvolumes 27B6, 27B7 and 27B8 (already published). The present subvolume 27B7 deals with binary actinide pnictides and chalcogenides.
Binary actinide pnictides and chalcogenides form a large family of phases with different crystal and magnetic structures and a variety of physical properties. The literature has been reviewed up to the beginning of 2004. An index of substances at the end of this subvolume lists all binary actinide pnictides and chalcogenides treated in this subvolume.
Editors and Affiliations
Bibliographic Information
Book Title: Pnictides and Chalcogenides III (Binary non-equiatomic actinide pnictides and chalcogenides)
Editors: H.P.J. Wijn
Series Title: Landolt-Börnstein: Numerical Data and Functional Relationships in Science and Technology - New Series
DOI: https://doi.org/10.1007/b80618
Publisher: Springer Berlin, Heidelberg
Copyright Information: Springer-Verlag Berlin Heidelberg 2005
Hardcover ISBN: 978-3-540-42996-8Published: 24 January 2005
eBook ISBN: 978-3-540-31715-9Published: 31 March 2006
Series ISSN: 1615-1844
Series E-ISSN: 1616-9522
Edition Number: 1
Number of Pages: VII, 349
Topics: Solid State Physics