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<dc:title xml:lang="pl"><![CDATA[Magneto-hydro dynamic flow and heat transfer of non-newtonian power-law fluid over a non-linear stretching surface with viscous dissipation]]></dc:title>
<dc:creator><![CDATA[Kishan, Naikoti]]></dc:creator>
<dc:creator><![CDATA[Kavitha, P.]]></dc:creator>
<dc:subject xml:lang="pl"><![CDATA[magneto-hydrodynamic flow]]></dc:subject>
<dc:subject xml:lang="pl"><![CDATA[power-law fluids]]></dc:subject>
<dc:subject xml:lang="pl"><![CDATA[stretching sheet]]></dc:subject>
<dc:subject xml:lang="pl"><![CDATA[heat source/sink]]></dc:subject>
<dc:subject xml:lang="pl"><![CDATA[viscous dissipation]]></dc:subject>
<dc:description xml:lang="pl"><![CDATA[A fluid flow and heat transfer analysis of an electrically conducting non-Newtonian power law fluid flowing over a non-linear stretching surface in the presence of a transverse magnetic field taking into consideration viscous dissipation effects is investigated. The stretching velocity, the temperature and the transverse magnetic field are assumed to vary in a power-law with the distance from the origin.]]></dc:description>
<dc:description xml:lang="pl"><![CDATA[The flow is induced due to an infinite elastic sheet which is stretched in its own plane. The governing equations are reduced to non-linear ordinary differential equations by means of similarity transformations. By using quasi-linearization techniques first linearize the non linear momentum equation is linearized and then the coupled ordinary differential equations are solved numerically by an implicit finite difference scheme.]]></dc:description>
<dc:description xml:lang="pl"><![CDATA[The numerical solution is found to be dependent on several governing parameters, including the magnetic field parameter, power-law index, Eckert number, velocity exponent parameter, temperature exponent parameter, modified Prandtl number and heat source/sink parameter. A systematic study is carried out to illustrate the effects of these parameters on the fluid velocity and the temperature distribution in the boundary layer. The results for the local skin-friction coefficient and the local Nusselt number are tabulated and discussed.]]></dc:description>
<dc:publisher><![CDATA[Zielona Góra: Uniwersytet Zielonogórski]]></dc:publisher>
<dc:contributor><![CDATA[Jurczak, Paweł - red.]]></dc:contributor>
<dc:date><![CDATA[2014]]></dc:date>
<dc:type xml:lang="pl"><![CDATA[artykuł]]></dc:type>
<dc:format xml:lang="pl"><![CDATA[application/pdf]]></dc:format>
<dc:identifier><![CDATA[http://www.zbc.uz.zgora.pl/repozytorium/Content/73979/10.2478_ijame-2014-0017.pdf]]></dc:identifier>
<dc:identifier><![CDATA[https://zbc.uz.zgora.pl/repozytorium/dlibra/publication/81027/edition/73979/content]]></dc:identifier>
<dc:identifier><![CDATA[oai:zbc.uz.zgora.pl:73979]]></dc:identifier>
<dc:source xml:lang="pl"><![CDATA[IJAME, volume 19, number 2 (2014)]]></dc:source>
<dc:language><![CDATA[eng]]></dc:language>
<dc:relation><![CDATA[oai:zbc.uz.zgora.pl:publication:81027]]></dc:relation>
<dc:rights xml:lang="pl"><![CDATA[Biblioteka Uniwersytetu Zielonogórskiego]]></dc:rights>
<dc:rights xml:lang="pl"><![CDATA[CC 4.0]]></dc:rights>
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