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12篇 您的检索式:作者名="Ranjan K D"
    题名 作者 年代 出处 被引量
1Characterization of Mg2+ inhibition of mitochondrial Ca2+ uptake by a mechanistic model of mitochondrial Ca2+ uniporter显示文摘Ranjan K Pradhan Qi Feng Beard D A 0,,09:1
2Tailoring of nanoscale porosity in carbide-derived carbons for hydrogen storage显示文摘Yury G Ranjan K D Gleb Y 2005American Chemical Society2005,127,16:1
3Carbide-derived carbons:A comparative study of porosity based on small-angle scattering and adsorption isotherms显示文摘GIOVANNA L RANJAN K D JONATHAN P S 2006Langmuir2006,22,21:1
4Fa- tigue in Ti-6AI-4V-B alloys显示文摘INDRANI S GOPINATH K RANJAN D 2010Acta Materialia2010,58,:1
5Tillage and Irrigation Effects on Soil Aggregation and Carbon Pools in the Indian Sub-Himalayas显示文摘Bhattacharyya Ranjan Pandey S C Bisht J K Bhatt J C Gupta H S Tuti M D Mahanta D Mina B L Singh R D Chandra S Srivastva A K Kundu S 2013Agronomy Journal2013,,1:1
6Analysis of assembly operations:difficulty using enhanced expert high-level colored fuzzy Petri net model 显示文摘D Ben-Arieh Rajeev Ranjan Kumar M K Tiwari 2004Robotics and Computer-Integrated Manufacturing (S0736-5845)2004,20,:1
7Biocompatible hyperbranched polyurethane/multi-walled carbon nanotube composites as shape memory materials 显示文摘HAREKRISHNA D NIRANJAN K RANJAN D K 2010Carbon2010,48,7:1
8Biochemistry and biosynthesis of insect pigments显示文摘SHAMIM G RANJAN S K PANDEY D M 2014Eur J Entomol2014,111,2:1
9GIS- based weights--of--evidence modelling of rainfall-induced landslides in small catchments for landslide susceptibility mapping显示文摘Ranjan K D Shuichi H Atsiko N M Y 2008Environ Geol2008,54,2:1
10Tailoring of nanoscale porosity in carbide-derived carbons for hydrogen storage显示文摘Yury G Ranjan K D Gleb Y 2005American Chemical Society2005,,46:1
11Biocompatible hyper-branched polyurethane/multi-walled carbon nanotube composites as shape memory materials显示文摘Harekrishna D Niranjan K Ranjan d k 2010Carbon2010,48,7:1
12Plasma production and preliminary results From the ADITYA Upgrade tokamak显示文摘The Ohmically heated circular limiter tokamak ADITYA(R_0?=?75 cm, a?=?25 cm) has been upgraded to a tokamak named the ADITYA Upgrade(ADITYA-U) with an open divertor configuration with divertor plates. The main goal of ADITYA-U is to carry out dedicated experiments relevant for bigger fusion machines including ITER, such as the generation and control of runaway electrons, disruption prediction, and mitigation studies, along with an improvement in confinement with shaped plasma. The ADITYA tokamak was dismantled and the assembly of ADITYA-U was completed in March 2016. Integration of subsystems like data acquisition and remote operation along with plasma production and preliminary plasma characterization of ADITYA-U plasmas are presented in this paper.r l tanna j ghosh harshita raj rohit kumar suman aich vaibhav ranjan k a jadeja k m patel s b bhatt k sathyanarayana p k chattopadhyay m n makwana k s shah c n gupta v k panchal praveenlal edappala bharat arambhadiya minsha shah vismay raulji m b chowdhuri s banerjee r manchanda d raju p k atrey umesh nagora j raval y s joisa k tahiliani s k jha m v gopalkrishana 2018Plasma Science and Technology2018,20,7:0
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