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Items where Author is "Zakaria, Muhammad Nizam"

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Number of items: 7.

Suied, Anis Ayuni and Ahmad Tajudin, Saiful Azhar and Zakaria, Muhammad Nizam and Madun, Aziman (2018) Potential electrokinetic remediation technologies of laboratory scale into field application- methodology overview. In: IOP Conf. Series: Journal of Physics: Conf. Series.

Shohei, Yamada and Katsushi, Ijima and Hiroyuki, Obiya and Zakaria, Muhammad Nizam (2015) An orthotropic membrane model for the large deformation analysis and snapping phenomena of the dome inflated. In: The 3rd International Conference on Civil and Environmental Engineering for Sustainability (IConCEES 2015), 1 & 2 December 2015, Melaka.

Ahmad Tajuddin, Saiful Azhar and Yusof, Mohd Fairus and Bakar, Ismail and Marto, Aminaton and Zakaria, Muhammad Nizam and Abdullah, Mohd Ezree (2014) Numerical modeling of prefabricated vertical drain for soft clay using ABAQUS. In: International Integrated Engineering Summit (IIES 2014), 1-4 December 2014, Universiti Tun Hussein Onn Malaysia, Johor.

Zakaria, Muhammad Nizam and H., Obiya and K., Ijima and Ahmad Tajuddin, Saiful Azhar (2014) A comparison for the simulation of frictionless contact problem with large displacement. In: International Integrated Engineering Summit (IIES 2014), 1-4 December 2014, Universiti Tun Hussein Onn Malaysia, Johor.

Obiya, Hiroyuki and Zakaria, Muhammad Nizam and Ijima, Katsushi and Kawasaki, Noriaki and Matsuo, Aya (2012) A study on equilibrium shape of tensegrity structures with virtual stiffness through some numerical experiments. Journal of Japan Society of Civil Engineers, Ser. A2 (Applied Mechanics (AM)), 68 (2). pp. 45-56. ISSN 2185-4661

Zakaria, Muhammad Nizam and Obiya, Hiroyuki and Burhan, Burhaida (2008) A study on non-friction contact problem with large deformational analyses. In: Malaysian Technical Universities Conference on Engineering and Technology2'�, March 8-10, 2008, Putra Palace, Perlis, Malaysia.

Zakaria, Muhammad Nizam (2005) A study on non-friction contact problem with large deformational analyses. Masters thesis, Saga University.

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