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Browsing Physics by Author "Nayak, M.T."

Browsing Physics by Author "Nayak, M.T."

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  • Nayak, M.T.; Desa, J.A.E.; Babu, P.D. (AIP Conference Proceedings. 2115(1); 2019; ArticleID_030224.)
    Sodium silicate glasses with a fixed molar percentage of iron and varying percentages of sodium alkali have been synthesized by the method of melt quenching in air. The variation of glass transition temperatures Tg in this ...
  • Nayak, M.T.; Desa, J.A.E.; Babu, P.D. (Journal of Non-Crystalline Solids. 484; 2018; 1-7.)
    A glass forming matrix consisting of SiO sub(2)-Li sub(2)O-CaO was doped with 10 percent and 15 percent molar of Fe sub(2)O sub(3) and investigated for changes in structural and bulk physical properties of the host when ...
  • Nayak, M.T.; Desa, J.A.E.; Babu, P.D. (DAE Solid State Physics Symposium. 2017; Article ID 70006-4.)
    Soda lime silica glass ceramics containing iron and neodymium have been synthesized. The XRD pattern revealed that the glass samples devitrified into multiple phases. Fe2O3 as an initial component converted into Fe3O4 in ...
  • Nayak, M.T.; Desa, J.A.E. (Journal of Raman Spectroscopy. 49(9); 2018; 1507-1513.)
    Raman spectroscopy has been used in a qualitative analysis of iron containing lithium silicate glasses. The iron was kept fixed at 8 mol percent for all the iron containing samples with varying concentrations of Li2O and ...
  • Nayak, M.T.; Desa, J.A.E.; Reddy, V.R.; Nayak, C.; Bhattacharyya, D.; Jha, S.N. (Journal of Non-Crystalline Solids. 518; 2019; 85-91.)
    Silicate glasses containing potassium oxide of molar percentages 12 percent, 16 percent and 20 percent each with 8 percent iron oxide have been prepared and examined by Raman, Extended X-ray absorption fine structure (EXAFS) ...
  • Nayak, M.T.; Desa, J.A.E.; Reddy, V.R.; Nayak, C.; Bhattacharyya, D.; Jha, S.N. (Journal of Non-Crystalline Solids. 509; 2019; 42-47.)
    Silicate glasses have been synthesised with a fixed 8 mol percent of Fe sub(3) O sub(4) and sodium oxide varying from 12 mol percent to 20 mol percent. The environment of the Fe ion was examined by Extended X-ray Absorption ...

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