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The steady boundary layer flow of nanofluid over an exponential stretching surface is investigated analytically.
Consider a two-dimensional steady boundary layer flow of an incompressible nanofluid over a stretching or shrinking sheet.
The problem of a steady boundary layer shear flow over a stretching/shrinking sheet in a nanofluid is studied numerically.
The steady boundary layer flow problems induced by a shrinking sheet can be found in [7 11] in different aspects.
Nadeem and Lee [7] investigated the steady boundary layer flow of nanofluid over an exponential stretching surface.
Consider two-dimensional steady boundary layer flow of MHD Carreau fluid slip flow over a stretching sheet embedded in a porous medium.
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Bachok et al. [18] have shown the steady boundary-layer flow of a nanofluid past a moving semi-infinite flat plate in a uniform free stream.
The present paper deals with the problem of a steady boundary-layer flow, heat transfer, and nanoparticle fraction over a stagnation point towards a stretching/shrinking sheet in a nanofluid, with water as the based fluid.
Amit and Choblet (2012) interpreted the low-latitude dynamics around the ridge locations by a combined effect of westward drift in the time-average homogeneous dynamo (Aubert 2005) and the steady boundary-driven flow that roughly goes from hot to cold regions (Gubbins 2003).
In pure water, highly soluble gases dissolve more slowly than one would expect from a quasi-steady boundary layer theory.
In this paper a theoretical description of the flow through the glottis based on a quasi-steady boundary layer theory is presented.
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