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D. P. Middleton

Researcher at Philips

Publications -  26
Citations -  524

D. P. Middleton is an academic researcher from Philips. The author has contributed to research in topics: Neutron diffraction & Curie temperature. The author has an hindex of 12, co-authored 26 publications receiving 519 citations. Previous affiliations of D. P. Middleton include Leiden University.

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A magnetic, neutron diffraction, and Mössbauer spectral study of Nd2Fe15Ga2 and the Tb2Fe17−xGax solid solutions

TL;DR: In this paper, an x-ray diffraction study of the substitution of gallium in Tb2Fe17 to form the Tb 2Fe17−xGax solid solutions indicates that the compounds adopt the rhombohedral Th2Zn17 structure.
Journal Article

A magnetic neutron diffraction, and Moessbauer spectral study of the Nd2Fe(17-x)Al(x) solid solutions

TL;DR: The magnetic properties of a series of Nd2Fe17−xAlx solid solutions, with x equal to 2.04, 4.01, 5.97, 7.94, and 9.06, have been studied by magnetic measurements, neutron diffraction, and Mossbauer spectroscopy as discussed by the authors.
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A magnetic, neutron diffraction, and Mössbauer spectral study of the Ce2Fe17−xAlx solid solutions

TL;DR: The magnetic properties of a series of Ce2Fe17−xAlx solid solutions with x equal to 0.62 have been studied by magnetic measurements, neutron diffraction, and Mossbauer spectroscopy as discussed by the authors.
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Neutron diffraction and magnetic studies of Nd/sub 2/Fe/sub 17-x/T/sub x/ (T=Si, Mn) alloys

TL;DR: In this paper, the authors carried out neutron and magnetic studies on Nd/sub 2/Fe/sub 17-x/T/sub x/ (T=Si, Mn) alloys.
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Neutron-diffraction and Mössbauer effect study of the Tb 2 Fe 17 - x Al x solid solutions

TL;DR: The magnetic properties of a series of Tb2Fe17−xAlx solid solutions, with nominal x compositions of 0, 2, 3, 4, 5, 6, 7, and 8, have been studied by neutron diffraction and Mossbauer spectroscopy.