Dr. K. Chandramani Singh
Dr. K. Chandramani Singh
Associate Professor of Physics, Sri Venkateswara College
Verified email at svc.ac.in
Cited by
Cited by
Influence of ball milling parameters on the particle size of barium titanate nanocrystalline powders
AK Nath, C Jiten, KC Singh
Physica B: Condensed Matter 405 (1), 430-434, 2010
Structure and electrical properties of Li-and Ta-substituted K0. 5Na0. 5NbO3 lead-free piezoelectric ceramics prepared from nanopowders
KC Singh, C Jiten, R Laishram, OP Thakur, DK Bhattacharya
Journal of alloys and compounds 496 (1-2), 717-722, 2010
Barium titanate nanoparticles produced by planetary ball milling and piezoelectric properties of corresponding ceramics
KC Singh, AK Nath
Materials Letters 65 (6), 970-973, 2011
Structural, electrical and piezoelectric properties of nanocrystalline tin-substituted barium titanate ceramics
KC Singh, AK Nath, R Laishram, OP Thakur
Journal of Alloys and compounds 509 (5), 2597-2601, 2011
Lead-free piezoelectric ceramics manufactured from tantalum-substituted potassium sodium niobate nanopowders
KC Singh, C Jiten
Materials Letters 65 (1), 85-88, 2011
Phase transformations in some homologues of 4-n-alkyl-4'-cyanobiphenyls investigated by positron annihilation spectroscopy
M Sharma, C Kaur, J Kumar, KC Singh, PC Jain
Journal of Physics: Condensed Matter 13 (33), 7249, 2001
Enhanced dielectric loss of Mg doped Ba0. 7Sr0. 3TiO3 ceramics
R Laishram, KC Singh, C Prakash
Ceramics International 42 (13), 14970-14975, 2016
Structural and piezoelectric properties of barium-modified lead-free (K 0.455 Li 0.045 Na 0.5)(Nb 0.9 Ta 0.1) O 3 ceramics
R Gaur, KC Singh, R Laishram
Journal of Materials Science 48 (16), 5607-5613, 2013
Lead-free vanadium-substituted (K 0.485 Na 0.5 Li 0.015)(Nb 0.9 Ta 0.1) O 3 piezoceramics synthesized from nanopowders
R Gaur, M Sangal, A Dwivedi, KC Singh
Journal of Materials Science: Materials in Electronics 25 (7), 3195-3202, 2014
Ferroelectric, piezoelectric and electrostrictive properties of Ba (Ti1− xSnx) O3 ceramics obtained from nanocrystalline powder
AK Nath, KC Singh, R Laishram, OP Thakur
Materials Science and Engineering: B 172 (2), 151-155, 2010
Basic Physics
KC Singh
PHI Learning Pvt. Ltd., 2009
Effect of sintering temperature on the microstructural, dielectric, ferroelectric and piezoelectric properties of (Na0. 5K0. 5) NbO3 ceramics prepared from nanoscale powders
C Jiten, R Gaur, R Laishram, KC Singh
Ceramics International 42 (12), 14135-14140, 2016
Compositional optimization of lead-free (Ba1-xCax)(Ti1-ySny) O3 ceramics: a structural and electrical perspective
KC Singh
Journal of Alloys and Compounds 765, 869-877, 2018
(Na0. 5K0. 5) NbO3 nanocrystalline powders produced by high energy ball milling and corresponding ceramics
C Jiten, M Rawat, A Bhattacharya, KC Singh
Materials Research Bulletin 90, 162-169, 2017
Control of coring effect in BaTi4O9 microwave dielectric ceramics by doping with Mn4+
R Laishram, R Gaur, KC Singh, C Prakash
Ceramics International 42 (4), 5286-5290, 2016
Temperature-dependent studies in some homologues of alkyloxy cyanobiphenyl employing positron lifetime spectroscopy
M Sharma, C Kaur, K Chandramani Singh, PC Jain
International Journal of Modern Physics B 14 (18), 1927-1938, 2000
Enhanced piezoelectric properties in vanadium-modified lead-free (K0. 485Na0. 5Li0. 015)(Nb0. 88Ta0. 1V0. 02) O3 ceramics prepared from nanopowders
R Gaur, A Dhingra, S Pal, KC Singh
Journal of Alloys and Compounds 625, 284-290, 2015
Loose housing versus conventional tie barns for lactating crossbred and buffalo cows during winter under two levels of feeding
CK Thomas, VN Tripathi, NSR Sastry, RS Yadav, LR Gupta, K Singh, ...
Indian journal of dairy science, 1978
Piezoelectric properties of (K0. 5Na0. 5) 1− xLix (Nb0. 96Sb0. 04) O3 ceramics prepared from nanocrystalline powders
R Gaur, KC Singh, R Laishram
Ceramics International 41 (1), 1413-1420, 2015
Dysprosium doping on structural and electrical properties of lead free (Ba 0.7 Ca 0.3)(Ti 0.92 Sn 0.08) O 3 ceramic system
KC Singh
Journal of Materials Science: Materials in Electronics 29 (20), 17630-17637, 2018
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