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9篇 您的检索式:作者名="Abbasi S Y"
    题名 作者 年代 出处 被引量
1Advanced gastric cancer in jordan from 2004 to 2008 : a study of epidemiology and outcomes 显示文摘Abbasi S Y Taani H E Saad A 2011Gastrointest Cancer Res2011,4,4:1
2The Fracture and Plastic Deformation of Aluminum Alloyed Hadfield Steels 显示文摘Abbasi M Kheirandish S Kharrazi Y 2009Materials Science and Engineering2009,5135,14:1
3On the Comparison of the Abrasive Wear Behavior of Aluminum Alloyed and Standard Hadfield Steels显示文摘Abbasi M Kheirandish S Kharrazi Y 2010Wear2010,268,12:1
4The fracture and plastic deformation of aluminum alloyed Hadfield steels显示文摘ABBASI M KHEIRANDISH S KHARRAZI Y 2009Materials Science and Engineering A2009,,:1
5Developing variant feature model for design by feature显示文摘KETAN H S ADEL M B ABBASI G Y 2002Journal of Engineering Design2002,13,2:1
6mTOR:a placental growth signaling sensor显示文摘Wen HY Abbasi S Kellems RE Xia Y 0,,:1
7A positive aminuelear antibody test predicts for a poor response to initial steroid therapy in adults with idiopathic thrombocytopenic purpura 显示文摘ABBASI S Y MILHEM M ZAM L 2008Ann Hematol2008,87,3:1
8Nasopharyngcal carcinoma - an update of treement and acute radiation induced reactions from atertiary- care hospital in Pakistan 显示文摘Abbasi AV Zahid S Bhurgri Y 2011Asian Pac J Cancer Prey2011,12,3:1
9Effectiveness of heat and mass transfer on mixed convective peristaltic motion of nanofluid with irreversibility rate显示文摘Entropy generation is one of the key features in analysis as it exhibits irreversibility of the system. Therefore, the present study investigates the entropy generation rate in a mixed convective peristaltic motion of a reactive nanofluid through an asymmetrical divergent channel with heat and mass transfer characteristics. The endorsed nanofluid model holds thermophoresis and Brownian diffusions. Mathematical modeling is configured under the effects of mixed convection, heat generation/absorption and viscous dissipation. A chemical reaction is also introduced for the description of mass transportation. The resulting system of differential equations is numerically tackled by employing the Shooting method. The findings reveal that entropy generation rises by improving the Brownian motion and thermophoresis parameters. The temperature of the nanofluid decreases due to rising buoyancy forces caused by the concentration gradient. The concentration profile increases by increasing the chemical reaction parameter. The velocity increases by enhancing the Brownian motion parameter.Y Akbar F M Abbasi U M Zahid S A Shehzad 2021Communications in Theoretical Physics2021,73,10:0
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