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6篇 您的检索式:作者名="Panditi"
    题名 作者 年代 出处 被引量
1Ferrate(VI) oxidation of propranolol : Kinetics and products 显示文摘Anquandah G A K Sharma V K Panditi V R 2013Chemosphere2013,91,1:1
2Comparison of successrates of transvaginal aspiration and tetracycline sclerotherapyversus only aspiration in the management of non-neoplasticovarian cysts显示文摘THUMMALAKUNTA PL PANDITI S 2012J Obstet Gynaecol Res2012,38,11:1
3Photodegradation of antibiotics under simulated solar radiation: Implications for their environmental fate显示文摘Sudha Rani Batchu Venkata R. Panditi Kevin E. O’Shea Piero R. Gardinali 2014Science of the Total Environment2014,,:1
4Ferrate(VI) oxidation of propranolol: Kinetics and products显示文摘George Anquandah Virender K. Sharma Venkata R. Panditi Piero R. Gardinali Hyunook Kim Mehmet A. Oturan 2012Chemosphere2012,,:1
5Ferrate Promoted Oxidative Cleavage of Sulfonamides : Kinetics and Product Formation under Acidic Conditions显示文摘Kim C Panditi V R Gardinali P R 2015Chem Eng J2015,279,:1
6Flux emergence in the solar active region NOAA 11158: the evolution of net current显示文摘We present a detailed investigation of the evolution of observed net vertical current using a time series of vector magnetograms of the active region(AR) NOAA11158 obtained from the Helioseismic and Magnetic Imager. We also discuss the relation of net current to the observed eruptive events. The AR evolved from the βγ toβγδ configuration over a period of six days. The AR had two sub-regions of activity with opposite chirality: one dominated by sunspot rotation producing a strong CME,and the other showing large shear motions producing a strong flare. The net current in each polarity over the CME producing sub-region increased to a maximum and then decreased when the sunspots were separated. The time profile of net current in this sub-region followed the time profile of the rotation rate of the south-polarity sunspot in the same sub-region. The net current in the flaring sub-region showed a sudden increase at the time of the strong flare and remained unchanged until the end of the observation, while the sunspots maintained their close proximity. The systematic evolution of the observed net current is seen to follow the time evolution of total length of strongly sheared polarity inversion lines in both of the sub-regions. The observed photospheric net current could be explained as an inevitable product of the emergence of a twisted flux rope, from a higher pressure confinement below the photosphere into the lower pressure environment of the photosphere.Panditi Vemareddy Parameswaran Venkatakrishnan Solipuram Karthikreddy 2015Research in Astronomy and Astrophysics2015,15,9:0
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