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Selecting Clinical and Laboratory Methods of Manufacture of Orthopaedic Titanium Alloy Structures Using a Biopotentiometer

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CURRENT SCIENCE, VOL. 114, NO. 4, 25 FEBRUARY 2018 891 *For correspondence. (e-mail: [email protected]) and correlation between structural instabilities and superconductivity in unstable solids. Phys. Rev. B, 1977, 15, 1340–1342.… Click to show full abstract

CURRENT SCIENCE, VOL. 114, NO. 4, 25 FEBRUARY 2018 891 *For correspondence. (e-mail: [email protected]) and correlation between structural instabilities and superconductivity in unstable solids. Phys. Rev. B, 1977, 15, 1340–1342. 14. McMillan, W. L., Transition temperatures of strong-coupled superconductors. Phys. Rev., 1968, 167, 331–344. 15. Allen, P. B. and Dynes, R. C., Transition temperature of strongcoupled superconductors reanalyzed. Phys. Rev. B, 1975, 12, 905– 922. 16. Louie, S. G. and Cohen, M. L., Superconducting transition temperatures for weak and strong electron–phonon coupling. Solid State Commun., 1977, 22, 1–4. 17. Berlinsky, A. J., One-dimensional metals and charge density wave effects in these materials. Rep. Prog. Phys., 1979, 42, 1243– 1283. 18. Ayache, C., Currat, R. and Molinie, P., Study of the mode softening in NbSe2-2H. Physica B, 1992, 180–181, 333–335. 19. Weber, F. et al., Extended phonon collapse and the origin of the charge density wave in 2H-NbSe2. Phys. Rev. Lett., 2011, 107, 107403-(1-5). 20. Schmalzl, K., Strauch, D., Hiess, A. and Berger, H., Temperature dependent phonon dispersion in 2H-NbSe2 investigated using inelastic neutron scattering. J. Phys.: Condens. Matter, 2008, 20, 104240-(1-3).

Keywords: laboratory methods; manufacture orthopaedic; methods manufacture; clinical laboratory; phys rev; selecting clinical

Journal Title: Current Science
Year Published: 2018

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