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11篇 您的检索式:作者名="DEEBA F"
    题名 作者 年代 出处 被引量
1Serum I,DH and CA - 125 : Markers for Diagnosis of Ovarian Malignancy 显示文摘Deeba F Khatun S Alam MM 2015MMJ2015,24,2:1
2Amhrones from Aloe barbadensis显示文摘Saleem R Faifi S Deeba F et d 1997Phytochemistry1997,45,6:1
3Immunoglobulin glycation with fructose: a comparative study显示文摘DEEBA S J SHAMILA F SALEEMUDDIN M 2007Clinica Chimica Acta2007,378,1:1
4Multiplex PCR assay for iden-tification of commonly used disarmed Agrobacterium tumefaciensstrains显示文摘Deeba F Hyder M Z Shah S H 2014Springer Plus2014,3,:1
5Serum LDH and CA-125:Markers for diagnosis of ovarian malignancy显示文摘Deeba F Khatun S Alam MM 2015Mymensingh Med J2015,24,2:1
6Phospholipid diversi- ty: correlation with membrane-membrane fusion events 显示文摘Deeba F Tahseen H N Sharad K S 2005BBA-Biomemhranes2005,1669,2:1
7Desiccation-Induced Physiological and Biochemical Changes in ResurrectonPlant,Selaginella Bryopteris显示文摘PANDEY V RANJAN S DEEBA F 2010Journal of Plant Physiology2010,167,16:1
8Antimierobial aetivity of some plant extracts having hepatoprotective effects显示文摘Hassan A Rahman S Deeba F 2009Journal of Medicinal Plants Research2009,3,1:1
9A procedure for the rapid screening of Maillard reaction hibitors 显示文摘Shamila F Deeba S Jairajpuri M 2008Journal of Biochemical and Biophysical Methods2008,4,:1
10Retrospective phylo- genetic analysis of citculaling BA genotype of human respiratory syncyfial virus wifla 60 bp duplication from New Delhi, India during 2007-2010显示文摘Raghurarn SV Khan WH Deeba F 2015V''~2015,26,4:1
11Electrical and optical measurements in the early hydrogen discharge of GLAST-Ⅲ显示文摘This work presents the first electrical and optical measurements of the initial phase of hydrogen discharge in the upgraded spherical tokamak GLAST-III, initiated with electron cyclotron heating(ECH). Diagnostic measurements provide insights into expected and unexpected physics issues related to the initial phase of discharge. A triple Langmuir probe(TLP) has been developed to measure time series of the floating potential, plasma electron temperature and number density over the entire discharge, allowing monitoring of the two phases of the discharge: the ECH pre-ionization phase following by the plasma current formation phase. A TLP has the ability to give time-resolved measurements of the floating potential(V_(float)), electron temperature(T_e) and ion saturation current(I_(sat)∝n_e√kT_e).sat e eThe evolution of the ECH-assisted pre-ionization and subsequent plasma current phases in one shot are well envisioned by the probe. Intense fluctuations in the plasma current phase advocate for efficient equilibrium and feedback control systems. Moreover, the emergence of some strong impurity lines in the emission spectrum, even after only a few shots, suggests a crucial need for improvements in the base vacuum level. A noticeable change in the shape of the temporal profiles of the floating potential, electron temperature, ion saturation current(I_(sat)) and light emission has been observed with changing hydrogen fill pressure and vertical magnetic field.S HUSSAIN A QAYYUM Z AHMAD S AHMAD R KHAN M A NAVEED R ALI F DEEBA G M VOROBYOV GLAST Team 2017Plasma Science and Technology2017,19,8:0
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