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Our overarching research priorities in Collaborative Construction encompass advancing innovative technologies and methodologies to enhance real-time collaboration among project stakeholders. This includes a dedicated emphasis on promoting safety and health measures, optimizing procurement processes, and boosting overall productivity within collaborative construction endeavors.

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Our research delves into the intricate web of sustainability, recognizing its multidimensional nature. We are committed to developing frameworks that seamlessly integrate environmental, economic, social, and governance considerations. This holistic approach ensures that sustainability is not pursued in isolation but is ingrained in every facet of corporate practices.

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Our research focuses on the development and utilization of environmentally friendly, economically feasible, and socially responsible construction materials for roads and pavements, aiming to enhance the sustainability of road construction without compromising on quality, safety, and feasibility.

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Our research in concrete materials and technologies strives to improve durability, sustainability, and performance under a variety of conditions. This includes actively developing concrete mixes that are more resistant to environmental factors, including enhanced admixtures and supplementary cementitious materials.

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Our research integrates geotechnical forensic investigation of failure, principles and application of rock engineering, based on fundamental and applied geomechanics to develop and enhance geotechnical solution with resilient and alternative selection of various geotechnological advancement for practical adaptability.

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Our research focuses on the pivotal integration of Traffic Engineering, Safety, Mobility, Psychology, and Behaviour to achieve a comprehensive understanding, enhance safety measures, prevent and mitigate traffic crashes, and optimize the overall efficiency of transportation systems, with the ultimate aim of improving mobility and seamlessly advancing the efficiency of traffic flow.

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Our research priorities cover wider sustainable materials, including steel, timber, glass, and bamboo, that explore material optimization, multifunctional composites, and advanced manufacturing and hence contribute to advancements, address challenges, and promote innovation in engineering practices.

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Our research focuses on providing the journey to sustainably manage water resources, promote environmental health, and foster a harmonious balance between human activities and the natural world

Contact Us

School of Civil Engineering,
College of Engineering,
Engineering Complex,
Tuanku Abdul Halim Muadzam Shah,
Universiti Teknologi MARA,
40450 Shah Alam,
Selangor Darul Ehsan 
 
 
pkashahalam@uitm.edu.my
 
+603-5543 5248