REFERENCES N. Maizatul, I. Norazowa, W. M. Z. W. Yunus, A. Khalina and K. Khalisanni Bilba, K., Arseme, M. A., & Ouensanga, A. (2007). Study of banana and coconut fibers: botanical composition, thermal degradation and textural observation. Bioresources Technol, 98(1), 58-68. Caroline, A., Rosemary, A., Carvalho, C., & Grosso, R. F. (2009). Effect of hydrophobic plasticizers on functional properties of gelatin-based films. Food Research International, 42, 1113–11<strong>21</strong>. Caroline, A., Rosemary, A., Carvalho, C., & Grosso, R. F. (2010). Gelatin-based films containing hydrophobic plasticizers and saponin from Yucca schidigera as the surfactant. Food Research International, 43, 1710–1718. Claudia, V., Jose, M.K., Analia, V., & Vivian, P. C. (2004). Effect of chemical treatment of starch-based blends reinforced with sisal fiber. <strong>Journal</strong> Composite Materials, 38, 1387-1392. Ghazanfari, A., Emami, S., Panigrahi, S., & Tabil, L. G. (2008). Thermal and mechanical properties of blends and composites from HDPE and date pits particles. <strong>Journal</strong> of Composites Materials, 42, 3452-3459. Harding, K. G., Dennis, J. S., Blottnitz, H. V., & Harrison, S. T. L. (2007). Environmental analysis of plastic production processes: Comparing petroleum-based polypropylene and polyethylene with biologically-based poly-hydroxybutyric acid using life cycle analysis. <strong>Journal</strong> of Biotechnology, 130, 57–66. Islam, M. S., Pickering, K. L., & Foreman, N. J. (2010). Influence of accelerated ageing on the physicomechanical properties of alkali-treated industrial hemp fibre reinforced poly(lactic acid) (PLA) composites. Polymer Degradation and Stability, 95, 59-65. Lima, L. -T., Auras, R., & Rubino, M. (2008). Processing technologies for poly(lactic acid). Progress in Polymer Science, 33, 820–852. Maharana, T., Mohanty, B., & Negi, Y. S. (2009). Melt–solid polycondensation of lactic acid and its biodegradability. Progress in Polymer Science, 34, 99–124. Marius, M., Amália, D. S. F., Miroslaw, P., Leila, B., Michaël, A., & Philippe, D. (2008). Polylactide (PLA)–CaSO 4 composites toughened with low molecular weight and polymeric ester-like plasticizers and related performances. European Polymer <strong>Journal</strong>, 44, 3842–3852. Martin, W., Martin, P., Hermann, H., & Stefan, B. (2007). Applying distance-to-target weighing methodology to evaluate the environmental performance of bio-based energy, fuels, and materials. Resources, Conservation and Recycling, 50, 260–281. Melissa, G. A. V., Mariana, A. D. S., Lucielen, O. D. S., & Marisa, M. B. (2011). Natural-based plasticizers and biopolymer films: A review. European Polymer <strong>Journal</strong>, 47, 254–263. Mingkang, J., Shaoyang, L., Xin, D., & Yifen, W. (2010). Physical properties and internal microstructures of films made from catfish skin gelatin and triacetin mixtures. Food Hydrocolloids, 24, 105–110. Mubarak, A. K., Idris, A. K., & Basu, S. C. (1993). IR Studies of wood plastic composites. <strong>Journal</strong> of Applied Polymer Science, 49, 1547-1551. Murariu, M., Da Silva, F. A., Degee, P. H., Alexandre, M., & Dubois, P. H. (2007). Polylactide compositions, Part I: Effect of filler content and size on mechanical properties of PLA/calcium sulphate composites. <strong>Journal</strong> Polymer, 48, 2613-2618. 158 <strong>Pertanika</strong> J. Sci. & Technol. <strong>21</strong> (1): 283 - 298 (<strong>2013</strong>)
FTIR and TGA Analysis of Biodegradable Poly(Lactic Acid)/Treated Kenaf Bast Fibre: Effect of Plasticizers Nina, G., Axel, S. H., & Jörg, M. (2009). Natural and man-made cellulose fibre-reinforced poly(lactic acid) (PLA) composites: An overview about mechanical characteristics and application areas. Composites: Part A, 40, 810–8<strong>21</strong>. Ogata, N., Jimenez, G., Kawai, H., & Ogihara, T. J. (1997). Structure and thermal/ mechanical properties of poly(l-lactide)-clay blend. <strong>Journal</strong> of Applied Polymer Science, 12, 584-590. Oksman, K., Skrifvars, M., & Selin, J. -F. (2003). Natural fibres as reinforcement in polylactic acid (PLA) composites. Composites Science and Technology, 63, 1317–1324. Rahul, M. R., Amol, V. J., & Douglas, E. H. (2010). Poly(lactic acid) modifications. Progress in Polymer Science, 35, 338–356. Yijun, L., Edgar, L., James, G., Goodwin, Jr., & Changqing, Lu. (2007). Transesterification of triacetin using solid Brønsted bases. <strong>Journal</strong> of Catalysis, 246, 428–433. <strong>Pertanika</strong> J. Sci. & Technol. <strong>21</strong> (1): 283 - 298 (<strong>2013</strong>) 159
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International Advisory Board Adarsh
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Selected Articles from UPM-Malaysia
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Application of Anthropometric Dimen
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Application of Anthropometric Dimen
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Application of Anthropometric Dimen
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Application of Anthropometric Dimen
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Application of Anthropometric Dimen
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Different Media Formulation on Bioc
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Different Media Formulation on Bioc
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Different Media Formulation on Bioc
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Heng, S. C., Ibrahim, Z. B., Suleim
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Heng, S. C., Ibrahim, Z. B., Suleim
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Heng, S. C., Ibrahim, Z. B., Suleim
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CONCLUSION Heng, S. C., Ibrahim, Z.
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Y. Yusuf, J. M. Juoi, Z. M. Rosli,
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Y. Yusuf, J. M. Juoi, Z. M. Rosli,
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Y. Yusuf, J. M. Juoi, Z. M. Rosli,
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Surface Roughness Y. Yusuf, J. M. J
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DISCUSSION Y. Yusuf, J. M. Juoi, Z.
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Y. Yusuf, J. M. Juoi, Z. M. Rosli,
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Modelling of Motion Resistance Rati
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The Empirical Method Modelling of M
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Modelling of Motion Resistance Rati
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Modelling of Motion Resistance Rati
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Modelling of Motion Resistance Rati
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Modelling of Motion Resistance Rati
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Modelling of Motion Resistance Rati
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Assessment of Heavy Metal Pollution
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TABLE 1: Size of mussels in average
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Assessment of Heavy Metal Pollution
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TABLE 5: Heavy metal concentrations
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Assessment of Heavy Metal Pollution
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Assessment of Heavy Metal Pollution
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Assessment of Heavy Metal Pollution
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Assessment of Heavy Metal Pollution
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Assessment of Heavy Metal Pollution
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Assessment of Heavy Metal Pollution
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Physico-Chemical and Electrical Pro
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Physico-Chemical and Electrical Pro
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Physico-Chemical and Electrical Pro
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TABLE 1: (continued) Physico-Chemic
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Association Rule Mining threshold t
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Association Rule Mining must be sor
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Association Rule Mining On the othe
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Association Rule Mining Quinlan, J.
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Che Mustapha Yusuf, J., Mohd Su’u
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Che Mustapha Yusuf, J., Mohd Su’u
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Che Mustapha Yusuf, J., Mohd Su’u
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Che Mustapha Yusuf, J., Mohd Su’u
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Che Mustapha Yusuf, J., Mohd Su’u
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Az Azrinudin Alidin and Fabio Crest
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Az Azrinudin Alidin and Fabio Crest
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Az Azrinudin Alidin and Fabio Crest
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Az Azrinudin Alidin and Fabio Crest
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Az Azrinudin Alidin and Fabio Crest
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Az Azrinudin Alidin and Fabio Crest
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Yogan Jaya Kumar, Naomie Salim, Ahm
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Yogan Jaya Kumar, Naomie Salim, Ahm
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Yogan Jaya Kumar, Naomie Salim, Ahm
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REFERENCES Yogan Jaya Kumar, Naomie
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Hasiah Mohamed@Omar, Azizah Jaafar
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Hasiah Mohamed@Omar, Azizah Jaafar
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Hasiah Mohamed@Omar, Azizah Jaafar
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Hasiah Mohamed@Omar, Azizah Jaafar
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Hasiah Mohamed@Omar, Azizah Jaafar
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Hasiah Mohamed@Omar, Azizah Jaafar
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The Role of Similarity Measurement
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The Role of Similarity Measurement
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The Role of Similarity Measurement
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The Role of Similarity Measurement
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TABLE 5: Winners MRS The Role of Si
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REFEREES FOR THE PERTANIKA JOURNAL
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Guidelines for Authors Publication
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table should be prepared on a separ
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The Journal’s review process What
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Usability of Educational Computer G