báo cáo hóa học:" Boundary layer flow of nanofluid over an exponentially stretching surface"

Tuyển tập báo cáo các nghiên cứu khoa học quốc tế ngành hóa học dành cho các bạn yêu hóa học tham khảo đề tài: Boundary layer flow of nanofluid over an exponentially stretching surface | Nanoscale Research Letters SpringerOpen0 This Provisional PDF corresponds to the article as it appeared upon acceptance. Fully formatted PDF and full text HTML versions will be made available soon. Boundary layer flow of nanofluid over an exponentially stretching surface Nanoscale Research Letters 2012 7 94 doi 1556-276X-7-94 Sohail Nadeem snqau@ Changhoon Lee clee@ ISSN 1556-276X Article type Nano Idea Submission date 26 July 2011 Acceptance date 30 January 2012 Publication date 30 January 2012 Article URL http content 7 1 94 This peer-reviewed article was published immediately upon acceptance. It can be downloaded printed and distributed freely for any purposes see copyright notice below . Articles in Nanoscale Research Letters are listed in PubMed and archived at PubMed Central. For information about publishing your research in Nanoscale Research Letters go to http authors instructions For information about other SpringerOpen publications go to http 2012 Nadeem and Lee licensee Springer. This is an open access article distributed under the terms of the Creative Commons Attribution License http licenses by which permits unrestricted use distribution and reproduction in any medium provided the original work is properly cited. Boundary layer flow of nanofluid over an exponentially stretching surface Sohail Nadeem 1 and Changhoon Lee2 department of Mathematics Quaid-i-Azam University 45320 Islamabad 44000 Pakistan department of Computational Science and Engineering Yonsei University Seoul Korea Corresponding author snqau@ Email address CL clee@ Abstract The steady boundary layer flow of nanofluid over an exponential stretching surface is investigated analytically. The transport equations include the effects of Brownian motion parameter and thermophoresis parameter. The highly nonlinear coupled partial differential .

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