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Publications(Authors. (Year). Title of article.  Journal, Vol., No., page numbers.)

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2011

  1. Kandasamy, R., Puvi Arasu, P., Loganathan, P. and Muhaimin, I. (2011). Lie group analysis for thermal diffusion and diffusion-thermo effects on free convective flow over a porous stretching surface with variable stream conditions in the presence of thermophresis particle deposition. Nonlinear Analysis: Hybrid Systems, Vol. 5, No. 1, 20-31.
  2. Kandasamy, R., Loganathan, P. and Puvi Arasu, P. (2011). Scaling group transformation for MHD boundary layer flow of a nanofluid past a vertical stretching surface in the presence of suction/injection. Nuclear Engineering and Design, Vol. 241, 2053-2059.
  3. Kandasamy, R., Gunasekaran, K. and Sulaiman, H. (2011). Scaling group transformation on fluid flow with variable stream conditions. International Journal of Nonlinear Mechanics, Vol. 46, 976-985.
  4. Kandasamy, R., Hayat, T. and Obaidat, S. (2011). Group theory transformation for soret and dufour effects on free convective heat and mass transfer with thermophoresis and chemical reaction over a porous stretching surface in the presence of heat source/sink. Nuclear Engineering and Design, Vol. 241, 2155-2161.
  5. Rosmila, A.K., Kandasamy, R. and Muhaimin, I. (2011). Scaling group transformation for boundary layer flow of a nanofluid past a porous vertical stretching surface in the presence of chemical reaction with heat radiation. Computers and Fluid, Vol. 52, 15-21.
  6. Kandasamy, R., Muhaimin, I., Puvi Arasu, P. and Loganathan, P. (2011). Homotopy analysis method for chemical reaction and thermophoresis effects on heat and mass transfer for MHD Hiemenz flow over a porous wedge in the presence of heat radiation. Journal of Engineering Physics and Thermo-Physics, Vol. 84, 495-508.
  7. Kandasamy, R., Muhaimin, I. and Kamachi, G. (2011). Scaling group transformation for the effect of temperature-dependent nanofluid viscosity on an MHD boundary-layer past a porous stretching surface. Journal of Applied Mechanics and Technical Physics, Vol. 52, No. 6, 931-940.
  8. Ioan, P., Anuar, I. and Fazlina, A. (2011). Radiation effects on the MHD flow near the stagnation point of a stretching sheet: revisited. ZAMP, Vol. 62, No. 5, 953-956.
  9. Noor’ani, A., Mustafa, M, Kavikumar, J. and Nor Shamsidah, A.H. (2011). Solving dual fuzzy polynomials equations by ranking method. Far East Journal of Mathematics and Science, Vol. 51, No. 2, 151-163.
  10. Ismail, Z. and A. Khamis (2011). Neural network in modeling Malaysian oil palm yield. Am. J. Applied Sci., Vol. 8, 796-803.
  11. R. Roslan*, H. Saleh and I. Hashim. (2011). Buoyancy-driven heat transfer in nanofluid-filled trapezoidal enclosure with variable thermal conductivity and viscosity. Numerical Heat Transfer Part A: Applications. 60(10), 867-882.
  12. Lai Zhe Phooi, Zainodin Haji Jubok, Rozaini Roslan* and Ishak Hashim. (2011). Steady flow about a sphere in a porous medium subject to an oscillating temperature. Journal of Science and Technology, 3 No. 1, 123-141
  13. R. Roslan*, M. N. Mahmud and I. Hashim. (2011). Effect of feedback control on chaotic convection in fluid saturated porous media. Int. Journal of Heat and Mass Transfer, 54, 404-412. 
  14. H. Saleh, R. Roslan*, I. Hashim. (2011). Natural Convection in a porous trapezoidal enclosure with an inclined magnetic field. Int. Journal of Computers & Fluids, 47(1), 155-164.
  15. H. Saleh, R. Roslan*, I. Hashim. (2011). Natural convection heat transfer in a nanofluid-filled trapezoidal enclosure. Int. Journal of Heat and Mass Transfer, 54, 194-201. (TOP 25 Hottest Articles, Energy, International Journal of Heat and Mass Transfer, October-December 2010)

2012

  1. Anbucezhian, N., Srinivasan, K. and Kandasamy, R. (2012). Magnetohydrodynamic laminar boundary layer flow over a porous wedge with thermophoresis particle deposition in the presence of variable stream conditions. Meccanica, Vol. 47, No. 2, 515-528.  
  2. Anbucezhian, N., Srinivasan, K., Chandrasekaran, K. and Kandasamy, R. (2012). Thermophoresis and Brownian motion effects on boundary-layer flow of a nanofluid in the presence of thermal stratification due to solar energy. Applied Mathematics and Mechanics, Vol. 33, No. 6, 765-780.
  3. Muhaimin, I., Kandasamy, R., Loganathan, P. and Puvi Arasu, P. (2012). Local nonsimilarity solution for the impact of Buoyancy force on heat and mass transfer in a flow over a porous wedge with heat source. Journal of Applied Mechanics and Technical Physics, Vol. 53, No. 2, 231-241. 
  4. Kandasamy, R., Muhaimin, I., Siva Nam, N. and Sivagnana Prabhu, K.K. (2012). Thermal stratification effects on Hiemenz flow of nanofluid over a porous wedge sheet in the presence of suction/injection due to solar energy: lie group transformation. Transport in Porous Media, Vol. 94, No. 4, 399-416.
  5. Rosmila, A.K., Kandasamy, R. and Muhaimin, I. (2012). Lie symmetry group transformation for MHD natural convection flow of a nanofluid over a linearly porous stretching sheet in the presence of thermal stratification. Applied Mathematics and Mechanics, Vol. 33, No. 5, 593-604. 
  6. Salleh, H., Arbin, N., Roslan, R. and Hashim, I. (2012). Visualization and analysis of surface tension and cooling effects on differentially heated cavity using heatline concept. International Journal of Heat and Mass Transfer, Vol. 55, No. 21-22, 6000-6009.
  7. Selamat, M.S., Roslan, R and Hashim, I. (2012). Natural convection in an inclined porous cavity with spatial sidewall temperature variations. Journal of Applied Mathematics, Vol. 2012, Article ID 939620.
  8. Choy, Y.Y., Ong, C.T. and Tay, K.G. (2012). NLS equation with variable coefficient in a stenosed elastic tube filled with an averaged inviscid fluid. MATEMATIKA, Vol. 28, No. 1, 1-13.
  9. Tay, K.G., Kek, S.L. and Rosmila, A.K. (2012). A spreadsheet solution of a system of ordinary differential equations using the fourth-order runge-kutta method. Spreadsheets in Education (eJSiE), Vol. 5, Iss. 2, 1-12.
  10. N. Ahmad, M. Mamat, J. Kavikumar, and N. Sh. A. Hamzah. (2012). Solving fuzzy Duffing's equation by the Laplace transform decomposition. Applied Mathematical Sciences, Vol. 6, No. 57-60, 2935-2944.
  11. Suliadi, F. S. and Asmala, A. (2012) A Comparison between Normal and Non-Normal Data in Bootstrap. Applied Mathematical Sciences, Vol. 6, No. 92, 4547 -4560. ISSN 1312-885X
  12. R. Roslan*, H. Saleh and I. Hashim. (2012). Effect of rotating cylinder on heat transfer in a square enclosure filled with nanofluids. Int. Journal of Heat and Mass Transfer, 55, 7247-7256.
  13. H. Saleh, Z. Mustafa, I. Hashim and R. Roslan*. (2012). Feedback control of flows in a porous square enclosure having non-uniform internal heating. Journal of Porous Media, 15(8), 785-792.
  14. Mohd Saifullah Rusiman, Robiah Adnan, Efendi Nasibov & Kavikumar Jacob (2012). Adjustment of an Intensive Care Unit (ICU) Data in Fuzzy C-Regression Models. Journal of Science and Technology. Vol 4 (2), pp. 99-108. (ISSN : 2229-8460).
  15. Mohd Saifullah Rusiman, Robiah Adnan, Efendi Nasibov, Kavikumar Jacob (2012). Transformation of ICU Data in FCRM Models Using Analytical Hierarchy Process and Fuzzy C-Mean Model. Journal of Mathematics and System Science. Vol. 2 (7), pp. 399-403 (ISSN: 2159-5291).
  16. Fazlina Aman and Anuar Ishak. (2012). Mixed convection boundary layer flow towards a vertical plate with a convective surface boundary condition. Mathematical Problems in Engineering 2012: 453457.

    2013

    1. R. Kandasamy, I. Muhaimin, A. Khamis, and R. Roslan(2013). Unsteady Hiemenz flow of Cu-nanofluid over a porous wedge in the presence of thermal stratification due to solar energy radiation: Lie group transformation. International Journal of Thermal Sciences, Vol. 65, 196–205.
    2. Chang Phang, Yong Hong Wu and Benchawan Wiwatanapataphee. (2013). Computation of Domain of Attraction for the Suboptimal Immunity Epidemic Models using the Maximal Lyapunov Function. Abstract and Applied Analysis. Volume 2013, Article ID 508794, 7 pages.