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7篇 您的检索式:作者名="Nisha B"
    题名 作者 年代 出处 被引量
1A study on the degradation kinetics of visual green colour in spinach (Spinacea oleracea L) and the effect of salt therein显示文摘P Nisha R S Singhal A B Pandit 2004Journal of food engineering2004,64,:1
2Natural history of established low grade cervical intraepithelial(CIN) lesions显示文摘Nisha B Jason DW Carmel J 2008Anticancer Res2008,28,25:1
3Natural history of established low grade cervical intraepithelial (CIN I ) lesions 显示文摘Nisha B Jason DW Cannel J 2008Anticancer Res2008,28,5:1
4The role of col-our Doppler ultrasonography in the diagnosis of fascialspace infections-a cross sectional study显示文摘Nisha V A Devi B K Reddy S S 2013J Clin DiagnRes2013,7,5:1
5Practice parameter for the use of autotitrating continuous positive airway pressure devices for titrating pressure and treating adult patients with obstructive sleep apnea syndrome:An update for 2007显示文摘Timothy I Nisha Aurora Terry B 0,,:1
6The path toward prognostication and prediction in stage Ⅱ colon cancer显示文摘Currently,there are several newer biomarkers that may be clinically useful in colon cancer. This paper focuses on a few of these biomarkers,namely microsatellite instability,loss of heterozygosity at chromosome 18q(LOH18q) and multi-gene assays,and discusses the clinical evidence behind their predictive or prognostic abilities. The results show that although there have been several newer prognostic factors identified,such as LOH18 q and multi-gene assays,none of these factors can predict benefit from treatment. Therefore,ongoing prospective clinical trials are still needed to further assess the role and optimal use of these tests.Mohindra Nisha 2014Engineering Sciences2014,12,4:0
7Homotopy study of magnetohydrodynamic mixed convection nanofluid multiple slip flow and heat transfer from a vertical cylinder with entropy generation显示文摘Stimulated by thermal optimization in magnetic materials process engineering,the present investigation investigates theoretically the entropy generation in mixed convection magnetohydrodynamic(MHD)flow of an electrically-conducting nanofluid from a vertical cylinder.The mathematical model includes the effects of viscous dissipation,second order velocity slip and thermal slip,has been considered.The cylindrical partial differential form of the two-component non-homogenous nanofluid model has been transformed into a system of coupled ordinary differential equations by applying similarity transformations.The effects of governing parameters with no-flux nanoparticle concentration have been examined on important quantities of interest.Furthermore,the dimensionless form of the entropy generation number has also been evaluated using homotopy analysis method(HAM).The present analytical results achieve good correlation with numerical results(shooting method).Entropy is found to be an increasing function of second order velocity slip,magnetic field and curvature parameter.Temperature is elevated with increasing curvature parameter and magnetic parameter whereas it is reduced with mixed convection parameter.The flow is accelerated with curvature parameter but decelerated with magnetic parameter.Heat transfer rate(Nusselt number)is enhanced with greater mixed convection parameter,curvature parameter and first order velocity slip parameter but reduced with increasing second order velocity slip parameter.Entropy generation is also increased with magnetic parameter,second order slip velocity parameter,curvature parameter,thermophoresis parameter,buoyancy parameter and Reynolds number whereas it is suppressed with first order velocity slip parameter,Brownian motion parameter and thermal slip parameter.Nisha Shukla Puneet Rana OAnwar Bég Bani Singh AKadir 2019Propulsion and Power Research2019,8,2:0
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