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  2. Depleted uranium - Wikipedia

    en.wikipedia.org/wiki/Depleted_uranium

    Natural uranium contains about 0.72% 235 U. Depleted uranium has lower mass fractions—up to three times less—of 235 U and 234 U than natural uranium. Since 238 U has a much longer half-life than the lighter isotopes, DU is about 40% less radioactive than natural uranium.

  3. Hardnesses of the elements (data page) - Wikipedia

    en.wikipedia.org/wiki/Hardnesses_of_the_elements...

    uranium: 6.0: 1960–2500: 2350–3850: ... Mohs hardness of materials (data page) Vickers hardness test; Brinell scale This page was last ...

  4. Brinell scale - Wikipedia

    en.wikipedia.org/wiki/Brinell_scale

    The Brinell hardness is designated by the most commonly used test standards (ASTM E10-14 [2] and ISO 6506–1:2005) as HBW (H from hardness, B from brinell and W from the material of the indenter, tungsten (wolfram) carbide). In former standards HB or HBS were used to refer to measurements made with steel indenters.

  5. When fired, depleted uranium becomes ‘essentially an exotic metal dart fired at extraordinarily high speed’

  6. What are depleted uranium munitions being used in Ukraine and ...

    www.aol.com/depleted-uranium-munitions-being...

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  7. Stakalloy - Wikipedia

    en.wikipedia.org/wiki/Stakalloy

    PGU-14/B incendiary 30mm round penetrator made of depleted uranium Stakalloy is a ternary alloy of uranium composed of vanadium , niobium , and depleted uranium . [ 1 ] The alloy was developed in 2002 by Michael R. Staker of Loyola University Maryland under grant from the United States Army.

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