Dr. Edmund Lim Hua Hang

Programme Coordinator for Mechatronics Engineering (Diploma) – School of Engineering

Qualifications:

  • PhD in Mechanical Engineering, Monash University Malaysia
  • Master of Science (Materials Science), UPM
  • Bachelor of Mechanical Engineering (Hons.), UNITEN

Experience

  • Mechanical Engineering, Materials Science

Research Interests

  • Heat transfer
  • Superconductor

Teaching Interestes

  • Statics
  • Strength of Material
  • Fluid Mechanics
Selected Publications
  • Lim, E., Ng, B. T., Hung, Y. M. and Tan, M. K. (2022). Graphene-mediated suppression Leidenfrost effect for droplets on an inclined surface. International Journal of Thermal Sciences, 174: 107426.
  • Lim, E., Hong, X. Y., Tan, M. K., Yu, H., Wu, H. A., Hung, Y. M. (2022). Distinctive evaporation characteristics of water and ethanol on graphene nanostructured surfaces. International Journal of Heat and Mass Transfer 183:122174.
  • Lim, E., Lee, Lillian, Yeo, Leslie Y., Hung, Y.M. and Tan M. K. (2019). Acoustically Driven Micromixing: Effect of Transducer Geometry. IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control, 66(8):1387-1393.
  • Lim, E. H. H., Liew, J. Y.C., Awang Kechik, M. M., Halim, S. A., Chen, S. K., Tan, K. B. and Qi, X. (2017). Preparation of polycrystalline FeTe1-xSx (x = 0.00–0.30) via solid-state reaction method at ambient pressure. Applied Physics A, 123:395.
  • Abd-Shukor, R., Chen, S. K., Lim, E. H. H. (2017). Calculated sound velocity and elastic moduli changes of FeTe5Se0.5 at the superconducting transition. Solid State Communications, 259:7-9.
  • Lim, E. H. H., Liew, J. Y.C., Awang Kechik, M. M., Halim, S. A., Tan, K. B. Lee, O. J. and Chen, S. K., (2017). Room Temperature Dielectric Properties of Polycrystalline FeTe1−xSex (x = 0.0–0.5). Journal of Superconductivity and Novel Magnetism, 30: 2915-2920.
  • Lim, E. H. H., Tan, K. Y., Liew, J. Y.C., Awang Kechik, M. M., Halim, S. A., Chen, S. K., Tan, K. B. and Qi, X. (2015). Synthesis of Bulk FeTe1-xSex (x = 0.1- 0.5) at Ambient Pressure. Journal of Superconductivity and Novel Magnetism, 28(9): 2839-2845.

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