MHD boundary layer flow and heat transfer of micropolar fluid past a stretching sheet with second order slip
Author:
Publisher
Springer Science and Business Media LLC
Subject
Mechanical Engineering,General Engineering,Aerospace Engineering,Automotive Engineering,Industrial and Manufacturing Engineering,Applied Mathematics
Link
http://link.springer.com/content/pdf/10.1007/s40430-016-0621-8.pdf
Reference29 articles.
1. Eringen AC (1964) Simple microfluids. Int J Eng Sci 2:205–217
2. Eringen AC (1966) Therory of micropolarfluids. J Math Mech 16:1–8
3. Mahmoud M, Waheed S. Effects of slip and heat generation/absorption on MHD mixed convection flow of a micropolar fluid over a heated stretching surface, mathematical problems in engineering, vol 2010, Article ID 579162
4. Yacob NA, Ishak A (2012) Miroplar fluid flow over a shrinking sheet. Meccanica 47:293–299
5. Ishak A (2010) Thermal boundary layer flow over a stretching sheet in micropolar fluid with radiation effect. Meccanica 45:367–373
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