DD
Dr Anindya Sundar Das
Swami Vivekananda Institute of Science & Technology, Manipal University, Golden Valley Institute of Technology
About
Presently working as an Associate Professor and HOD of the Electronics & Communication Engineering Department at the Swami Vivekananda Institute of Science & Technology, Kolkata, West Bengal, India
Employment
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Swami Vivekananda Institute of Science & Technology Associate Professor2016 - Present
Education
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Manipal University MS2004 - 2006
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Golden Valley Institute of Technology B. E2000 - 2004
Projects & Funding
Projects & funding information is unavailable.
Publications (35)
- Structural modifications, optical response, and electrical conductivity mechanism of Bi2O3 doped in P2O5–V2O5–MoO3 nanocomposite glass systems Save
- Tunable band gap, CB and VB positions of multicomponent Se65-Te20Ge15Sn chalcogenide glassy systems: Effect of metallic additives on physical and optical parameters Save
- Mixed ionic and electronic conductivity in the quaternary V2O5–Na2O–ZnO–P2O5 glass system Save
- Influence of V2O5 concentration on structural and electrical transport properties of semiconducting ternary glass and glass-ceramics nanocomposite system Save
- Microstructure and defects of 0.1P2O5–0.65ZnO–0.25(xTeO2–(1-x)MoO3) quaternary glass nanocomposites using positron annihilation and correlated experimental methods Save
- The effect of transition metal and heavy metal incorporation on the structural, optical and electrical properties of zinc-phosphate ternary glassy system: A comparative study Save
- Compositional dependence of structural, physical, and, in particular, optical parameters of Se50–Te30Sn20Sb chalcogenide glassy systems Save
- Effect of Zn incorporation on physical properties of quaternary 0.7Se–0.2Ge–(0.1-x)Sb–xZn chalcogenide system: A theoretical prediction Save
- Investigation of optical properties and electrical conductivity mechanism of Fe2O3–Sm2O3–ZnO–P2O5 quaternary glass nanocomposite systems Save
- Structural evolution of zinc selenite nanocomposite system with molybdenum trioxide as modifier studied by positron annihilation and allied experimental methods Save