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| 1 | Performance of Ad hoc Routing Using Directional Antennas显示文摘 | ROMIT R C NITIN H V | 2004 | Journal of Ad Hoc Networks2004,3,02: | 1 |
| 2 | On designing MAC protocols for wireless networks using directional antennas显示文摘 | Romit Roy Choudhury | 2006 | In IEEE Transactions on Mobile Computing MAY2006,5,5: | 1 |
| 3 | Myrosinases from root and leaves of Arabidopsis thaliana have different catalytic properties显示文摘 | Derek Andersson Romit Chakrabarty Sarosh Bejai Jiaming Zhang Lars Rask Johan Meijer | 2009 | Phytochemistry2009,,11: | 1 |
| 4 | On Designing MAC Protocols for Wireless Networks Using Directional Antennas 显示文摘 | Romit R C Xue Yang | 2006 | IEEE Transactions on mobile computing2006,5,5: | 1 |
| 5 | Myrosinases from root and leaves of Arabidopsis thaliana have different catalytic properties显示文摘 | Derek A Romit C Sarosh B | 2009 | Phytochmeistry2009,,70: | 1 |
| 6 | Genital discoid lupus: a rare manifestation of cutaneous lupus erythematosus显示文摘 | ROMIT! R ANZAI A NICO M M et 81 | 2014 | Lupus2014,23,7: | 1 |
| 7 | MAC-Layer Anycasting in Wireless Ad HOc Networks显示文摘 | Romit Roy Choudhury and Nitin Vaidya | 2003 | The 2nd workshop on hot Topics in Networks(Hot NetsⅡ) MIT Nov2003,2003,: | 1 |
| 8 | Shrinkage reducing admixtures显示文摘 | NMAI C K ROMIT A R HONDO F | 1998 | Cencr Int1998,20,4: | 1 |
| 9 | Scavenging of reactive oxygen species in NaCl-stressed rice ( Oryza sativa L.)—differential response in salt-tolerant and sensitive varieties显示文摘 | Hema Vaidyanathan Pattathil Sivakumar Romit Chakrabarty George Thomas | 2003 | Plant Science2003,,6: | 1 |
| 10 | Underpinning the molecular programming attributing heat stress associated thermotoleranee in tea (Camellia sinensis (L.) O. Kuntze)显示文摘The most daunting issue of global climate change is the deleterious impact of extreme temperatures on tea productivity and quality,which has resulted in a quest among researchers and growers.The current study aims to unravel molecular programming underpinning thermotolerance by characterizing heat tolerance and sensitivity response in 20 tea cultivars.The signi fi cantly higher negative in fl uence of heat stress was recorded in a sensitive cultivar with reduced water retention(47%),chlorophyll content(33.79%),oxidation potential(32.48%),and increase in membrane damage(76.4%).Transcriptional pro fi ling of most tolerant and sensitive cultivars identi fi ed 78 differentially expressed unigenes with chaperon domains,including low and high molecular weight heat shock protein(HSP)and heat shock transcription factors(HSFs)involved in heat shock response(HSR).Further,predicted transcriptional interactome network revealed their key role in thermotolerance via well-co-ordinated transcriptional regulation of aquaporins,starch metabolism,chlorophyll biosynthesis,calcium,and ethylene mediated plant signaling system.The study identi fi ed the key role of HSPs(CsHSP90)in regulating HSR in tea,wherein,structure-based molecular docking revealed the inhibitory role of geldanamycin(GDA)on CsHSP90 by blocking ATP binding site at N-terminal domain of predicted structure.Subsequently,GDA mediated leaf disc inhibitor assay further af fi rmed enhanced HSR with higher expression of CsHSP17.6,CsHSP70,HSP101,and CsHSFA2 genes in tea.Through the current study,efforts were made to extrapolate a deeper understanding of chaperons mediated regulation of HSR attributing thermotolerance in tea. | Romit Seth Tony Kipkoech Maritim Rajni Parmar Ram Kumar Sharma | 2021 | Horticulture Research2021,8,1: | 0 |
| 11 | Dynamic modeling of the horizontal eddy viscosity coefficient for quasigeostrophic ocean circulation problems显示文摘This paper puts forth a simplified dynamic modeling strategy for the eddy viscosity coefficient parameterized in space and time.The eddy viscosity coefficient is dynamically adjusted to the local structure of the flow using two different nonlinear eddy viscosity functional forms to capture anisotropic dissipation mechanism,namely,(i)the Smagorinsky model using the local strain rate field,and(ii)the Leith model using the gradient of the vorticity field.The proposed models are applied to the one-layer and two-layer wind-driven quasigeostrophic ocean circulation problems,which are standard prototypes of more realistic ocean dynamics.Results show that both models capture the quasi-stationary ocean dynamics and provide the physical level of eddy viscosity distribution without using any a priori estimation.However,it is found that slightly less dissipative results can be obtained by using the dynamic Leith model.Two-layer numerical experiments also reveal that the proposed dynamic models automatically parameterize the subgrid-scale stress terms in each active layer.Furthermore,the proposed scale-aware models dynamically provide higher values of the eddy viscosity for smaller resolutions taking into account the local resolved flow information,and addressing the intimate relationship between the eddy viscosity coefficients and the numerical resolution employed by the quasigeostrophic models. | Romit Maulik Omer San | 2016 | Journal of Ocean Engineering and Science2016,1,4: | 0 |