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              <text>Effect of viscous dissipation and joule heating on three-dimensional mixed convection flow of nano fluid over a non-linear stretching sheet in presence of solar radiation</text>
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          <name>Subject</name>
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              <text>Joule heating; Mixed convection; Nanofluid; Nonlinearly stretching sheet; Thermal radiation; Three-dimensional flow</text>
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              <text>The present exploration deals the study of viscous dissipation and Joule heating effects on three-dimensional flow and heat transfer of nanofluid over a nonlinear stretching sheet. The fluid is assumed to be electrically conducting and the flow is persuaded by a stretching of an elastic sheet in two lateral directions. The governing partial differential equations are reduced to a set of nonlinear ordinary differential equations by applying the suitable similarity transformations. The so obtained similarity equations are solved by employing the fourth-fifth order Runge-Kutta-Fehlberg method. The impact of various pertinent parameters on the velocities, temperature, skin friction coefficients and Nusselt number are computed and illustrations are provided by the inclusion of figures and tables. The present results have an excellent agreement with previously published results in a limiting sense. It is found that the heat transfer rate increases when radiation parameter is increased and the effect of nanoparticle volume fraction and thermal radiation stabilizes the thermal boundary layer growth.  2017 by American Scientific Publishers All rights reserved.</text>
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              <text>Mahanthesh B.; Gireesha B.J.; Manjunatha S.; Gorla R.S.R.</text>
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              <text>Journal of Nanofluids, Vol-6, No. 4, pp. 735-742.</text>
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              <text>American Scientific Publishers</text>
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              <text>2017-01-01</text>
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              <text>&lt;a href="https://doi.org/10.1166/jon.2017.1371" target="_blank" rel="noreferrer noopener"&gt;https://doi.org/10.1166/jon.2017.1371&lt;/a&gt;
&lt;br /&gt;&lt;br /&gt;&lt;a href="https://www.scopus.com/inward/record.uri?eid=2-s2.0-85024857846&amp;amp;doi=10.1166%2Fjon.2017.1371&amp;amp;partnerID=40&amp;amp;md5=63032f443437831143175e527516ef38" target="_blank" rel="noreferrer noopener"&gt;https://www.scopus.com/inward/record.uri?eid=2-s2.0-85024857846&amp;amp;doi=10.1166%2fjon.2017.1371&amp;amp;partnerID=40&amp;amp;md5=63032f443437831143175e527516ef38&lt;/a&gt;</text>
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              <text>ISSN: 2169432X</text>
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              <text>Online</text>
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              <text>English</text>
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              <text>Mahanthesh B., Department of Mathematics, Christ University, Bangalore, 560058, India; Gireesha B.J., Department of Studies and Research in Mathematics, Kuvempu University, Shankaraghatta, Shimoga, 577451, Karnataka, India; Manjunatha S., Department of Engineering Mathematics, Faculty of Engineering, Christ University, Bengaluru, 560074, India; Gorla R.S.R., Department of Mechanical and Civil Engineering, Purdue University, North west, Westville, 46391, IN, United States</text>
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