Results for 'Iridium'

9 found
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  1.  19
    The occurrence of glissile Shockley loops in field-ion specimens of iridium.M. A. Fortes & B. Ralph - 1968 - Philosophical Magazine 18 (154):787-805.
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  2.  19
    Dissociated dislocations in field-ion microscope images of iridium and iridium-based alloys.T. F. Page & B. Ralph - 1972 - Philosophical Magazine 26 (3):601-616.
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  3.  27
    A field-ion microscope study of neutron irradiated iridium.M. A. Fortes & B. Ralph - 1966 - Philosophical Magazine 14 (127):189-194.
  4.  13
    A field-ion microscope study of ion-implantation in iridium I. philosophy and preliminary considerations.G. P. O'Connor & B. Ralph - 1972 - Philosophical Magazine 26 (1):113-128.
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  5.  12
    A field-ion microscope study of ion-implantation in iridium II. results and discussion.G. P. O'Connor & B. Ralph - 1972 - Philosophical Magazine 26 (1):129-142.
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  6.  12
    Field ion microscope examination of heavy ion radiation damage in iridium.J. A. Hudson, R. S. Nelson & B. Ralph - 1968 - Philosophical Magazine 18 (154):839-845.
  7.  17
    Field ion microscope examination of heavy ion radiation damage in iridium II. analysis of vacancy distributions.J. A. Hudson, B. L. Dury & B. Ralph - 1970 - Philosophical Magazine 21 (172):779-785.
  8.  11
    Field ion microscope examination of heavy ion radiation damage in iridium III. Results.J. A. Hudson & B. Ralph - 1972 - Philosophical Magazine 25 (2):265-280.
  9.  57
    The group VIII platinum-group metals and the periodic table.W. P. Griffith - 2009 - Foundations of Chemistry 12 (1):17-25.
    The six platinum group metals (pgms: ruthenium, rhodium, palladium, osmium, iridium and platinum) posed a number of problems for 19th-century chemists, including Mendeleev, for their Periodic classification. This account discusses the discovery of the pgms, the determination of their atomic weights and their classification.
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