Items where Author is "Muhammad, I.D."

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Number of items: 14.

Article

Awang, M. and Mohammadpour, E. and Muhammad, I.D. (2016) Effect of Geometrical Parameters on Tensile Properties of Nanotubes. Engineering Materials. pp. 133-155. ISSN 16121317

Awang, M. and Mohammadpour, E. and Muhammad, I.D. (2016) Finite Element Analysis of Multi-walled Nanotubes. Engineering Materials. pp. 157-163. ISSN 16121317

Awang, M. and Mohammadpour, E. and Muhammad, I.D. (2016) Finite Element Modeling of Nanotubes. Engineering Materials. pp. 27-46. ISSN 16121317

Awang, M. and Mohammadpour, E. and Muhammad, I.D. (2016) Influence of Defects on the Strength of Graphene and Carbon Nanotube. Engineering Materials. pp. 165-173. ISSN 16121317

Awang, M. and Mohammadpour, E. and Muhammad, I.D. (2016) Interatomic Bonding. Engineering Materials. pp. 15-25. ISSN 16121317

Awang, M. and Mohammadpour, E. and Muhammad, I.D. (2016) Linear Finite Element Analysis of Nanotubes. Engineering Materials. pp. 63-106. ISSN 16121317

Awang, M. and Mohammadpour, E. and Muhammad, I.D. (2016) Mechanical Behavior of Carbon Nanotube-Reinforced Polymer Composites. Engineering Materials. pp. 175-212. ISSN 16121317

Muhammad, I.D. and Awang, M. (2016) Modeling the bending behavior of single-walled cubic zirconia nanotubes. Journal of Nano Research, 38. pp. 88-95. ISSN 16625250

Awang, M. and Mohammadpour, E. and Muhammad, I.D. (2016) Nanotube Modeling Using Beam Element. Engineering Materials. pp. 47-61. ISSN 16121317

Awang, M. and Mohammadpour, E. and Muhammad, I.D. (2016) Nanotubes. Engineering Materials. pp. 1-13. ISSN 16121317

Awang, M. and Mohammadpour, E. and Muhammad, I.D. (2016) Non-linear Finite Element Analysis of Nanotubes. Engineering Materials. pp. 107-131. ISSN 16121317

Muhammad, I.D. and Awang, M. and Mamat, O. and Shaari, K.Z.K. (2015) Estimating young's modulus of single-walled zirconia nanotubes using nonlinear finite element modeling. Journal of Nanomaterials, 2015. ISSN 16874110

Muhammad, I.D. and Awang, M. and Seng, L.K. (2015) Numerical modelling of Young�s modulus of single-layered cubic zirconia nanosheets. Advanced Structured Materials, 70. pp. 373-380. ISSN 18698433

Muhammad, I.D. and Awang, M. and Mamat, O. (2014) Modelling the elastic constants of cubic zirconia using molecular dynamics simulations. Advanced Materials Research, 845. pp. 387-391. ISSN 10226680

This list was generated on Thu Dec 19 09:22:07 2024 +08.