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Unsteady MHD natural convective boundary layer flow and heat transfer over a truncated cone in the presence of pressure work
C.K. Ajay
,A.H. Srinivasa
Journal of Applied Mathematics and Computational Mechanics |
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@article{Ajay_2020, doi = {10.17512/jamcm.2020.1.01}, url = {https://doi.org/10.17512/jamcm.2020.1.01}, year = 2020, publisher = {The Publishing Office of Czestochowa University of Technology}, volume = {19}, number = {1}, pages = {5--16}, author = {C.K. Ajay and A.H. Srinivasa}, title = {Unsteady MHD natural convective boundary layer flow and heat transfer over a truncated cone in the presence of pressure work}, journal = {Journal of Applied Mathematics and Computational Mechanics} }
TY - JOUR DO - 10.17512/jamcm.2020.1.01 UR - https://doi.org/10.17512/jamcm.2020.1.01 TI - Unsteady MHD natural convective boundary layer flow and heat transfer over a truncated cone in the presence of pressure work T2 - Journal of Applied Mathematics and Computational Mechanics JA - J Appl Math Comput Mech AU - Ajay, C.K. AU - Srinivasa, A.H. PY - 2020 PB - The Publishing Office of Czestochowa University of Technology SP - 5 EP - 16 IS - 1 VL - 19 SN - 2299-9965 SN - 2353-0588 ER -
Ajay, C., & Srinivasa, A. (2020). Unsteady MHD natural convective boundary layer flow and heat transfer over a truncated cone in the presence of pressure work. Journal of Applied Mathematics and Computational Mechanics, 19(1), 5-16. doi:10.17512/jamcm.2020.1.01
Ajay, C. & Srinivasa, A., 2020. Unsteady MHD natural convective boundary layer flow and heat transfer over a truncated cone in the presence of pressure work. Journal of Applied Mathematics and Computational Mechanics, 19(1), pp.5-16. Available at: https://doi.org/10.17512/jamcm.2020.1.01
[1]C. Ajay and A. Srinivasa, "Unsteady MHD natural convective boundary layer flow and heat transfer over a truncated cone in the presence of pressure work," Journal of Applied Mathematics and Computational Mechanics, vol. 19, no. 1, pp. 5-16, 2020.
Ajay, C.K., and A.H. Srinivasa. "Unsteady MHD natural convective boundary layer flow and heat transfer over a truncated cone in the presence of pressure work." Journal of Applied Mathematics and Computational Mechanics 19.1 (2020): 5-16. CrossRef. Web.
1. Ajay C, Srinivasa A. Unsteady MHD natural convective boundary layer flow and heat transfer over a truncated cone in the presence of pressure work. Journal of Applied Mathematics and Computational Mechanics. The Publishing Office of Czestochowa University of Technology; 2020;19(1):5-16. Available from: https://doi.org/10.17512/jamcm.2020.1.01
Ajay, C.K., and A.H. Srinivasa. "Unsteady MHD natural convective boundary layer flow and heat transfer over a truncated cone in the presence of pressure work." Journal of Applied Mathematics and Computational Mechanics 19, no. 1 (2020): 5-16. doi:10.17512/jamcm.2020.1.01
