Zobrazeno 1 - 10
of 15
pro vyhledávání: '"BALMUKUND SHUKLA"'
Autor:
Surakanti Srinivas Reddy, Balmukund Shukla, Soumee Chakraborty, V. Srihari, G. M. Bhalerao, N. V. Chandra Shekar
Publikováno v:
Carbon Letters. 32:1337-1344
Publikováno v:
Carbon Letters. 32:1119-1130
Autor:
G M Bhalerao, Surakanti Srinivas Reddy, Balmukund Shukla, Soumee Chakraborty, V Srihari, N V Chandra Shekar
Publikováno v:
Bulletin of Materials Science. 45
Publikováno v:
Bulletin of Materials Science. 45
Autor:
V Gayathri, A T Sathyanarayana, Balmukund Shukla, T Geetha Kumary, N R Sanjay Kumar, Sharat Chandra, Awadhesh Mani
Publikováno v:
Bulletin of Materials Science. 45
Autor:
Balmukund Shukla, Avinash Kumar Sinha, N.R. Sanjay Kumar, N. V. Chandra Shekar, Hrudananda Jena
Publikováno v:
Journal of Alloys and Compounds. 771:1029-1035
Sm6UO12 has been synthesized by urea-combustion method and characterized using synchrotron x-ray source. The compound is found to be in single phase crystallizing in rhombohedral lattice with lattice parameters a = 10.153 A and c = 9.625 A. High-pres
Publikováno v:
Journal of Nuclear Materials. 511:312-317
High-pressure X-ray diffraction studies on MgCu2 type phase of UOs2 have been carried out up to 36 GPa. The compound remains in its parent phase up to 12 GPa with bulk modulus 261 GPa. Beyond 12 GPa, a first order phase transformation is observed. Th
Autor:
Sharat Chandra, A.K. Sinha, N. V. Chandra Shekar, Manisha Singh, N.R. Sanjay Kumar, Anuj Upadhyay, Balmukund Shukla
Publikováno v:
Intermetallics. 83:110-114
UIr 2 was investigated using high pressure x-ray diffraction technique up to 55 GPa. The compound remains stable in its cubic structure (Space Group: Fd- 3 m ) up to 40 GPa. Above 40 GPa x-ray diffraction pattern indicates the emergence of a yet unid
Publikováno v:
Physica B: Condensed Matter. 602:412596
The compound was synthesized using arc-melting technique and high-pressure X-ray diffraction studies were carried out up to 25 GPa. It is found to remain in its parent AuCu3 type structure up to the highest pressure studied. Birch-Murnaghan equation