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Shokri, S. , Ahn, S. , Lee, S. , Haas, C. T. , & Haas, R. C. G. . (2016). Current status of interface management in construction: Drivers and effects of systematic interface management. Journal of Construction Engineering and Management, 142(2). Retrieved from https://doi.org/10.1061/(ASCE)CO.1943-7862.0001035
Shokri, S. , Haas, C. T. , Lee, R. C. G. , & .H., S. . (2016). Interface-management process for managing risks in complex capital projects. Journal of Construction Engineering and Management, 142 (2). Retrieved from https://ascelibrary.org/doi/abs/10.1061/(ASCE)CO.1943-7862.0000990
Shokri, S. , Haas, C. T. , Haas, R. C. G. , Maloney, K. , & MacGillivray, S. . (2013). How to identify the critical stakeholders in an interface management system?. ISARC. Proceedings of the International Symposium on Automation and Robotics in Construction, 30(1). Retrieved from https://www.semanticscholar.org/paper/How-to-Identify-the-Critical-Stakeholders-in-an-Shokri-Haas/aa27c07e116412f5c443eedfef19edb880f86398?p2df
Shokri, , Safa, , Haas, , Haas, , Maloney, , & MacGillivray, . (2012). Interface management model for mega capital projects. Retrieved from https://doi.org/10.1061/9780784412329.045
Shokri, S. , & Haas, C. T. . (2012). Risk management for design and construction. Construction Management and Economics, 30(8), 711-713. Retrieved from https://doi.org/10.1080/01446193.2012.690883
Shokr, S. , Ahn, S. , Czerniawski, T. , Haas, C. T. , & Lee, S. Hyun. (2014). Current state of interface management in mega-construction projects. In Construction Research Congress 2014: Construction in a Global Network. Retrieved from https://doi.org/10.1061/9780784413517.230
Shen, W. , Choi, B. , Lee, S. H. , Tang, W. , & Haas, C. T. . (2018). How to improve interface management behaviors in EPC projects: Roles of formal practices and social norms. Journal of Management in Engineering, 34(6), 04018032. Retrieved from https://doi.org/10.1061/(ASCE)ME.1943-5479.0000639 How-to-Improve-Interface-Management-Behaviors-in-EPC-Projects-Roles-of-Formal-Practices-and-Social-Norms.pdf
Sharif, M. ‐M. , Nahangi, M. , Haas, C. , & West, J. . (2017). Automated model‐based finding of 3D objects in cluttered construction point cloud models. Computer‐Aided Civil and Infrastructure Engineering, 32(11), 893-908. Retrieved from https://doi.org/10.1111/mice.12306
Sharif, M. - M. , Nahangi, M. , Haas, C. , West, J. , & Ibrahim, M. . (2016). RESILIENT INFRASTRUCTURE. Retrieved from https://scholar.google.ca/scholar?hl=en&as_sdt=0,5&cluster=12188874308135879944
Shan, Y. , Zhai, D. , Goodrum, P. M. , Haas, C. T. , & Caldas, C. H. . (2016). Statistical analysis of the effectiveness of management programs in improving construction labor productivity on large industrial projects. Journal of Management in Engineering, 32(1). Retrieved from https://doi.org/10.1061/(ASCE)ME.1943-5479.0000375
Shan, Y. , Kim, J. Yeol, Goodrum, P. M. , Caldas, C. H. , & Haas, C. . (2014). Impact of steel quick connection system on steel erection labor productivity: case studies and simulation based analyses. Canadian Journal of Civil Engineering, 41(12). Retrieved from https://doi.org/10.1139/cjce-2014-0079
Shan, Y. , Goodrum, P. , Haas, C. , & Caldas, C. . (2012). Assessing productivity improvement of quick connection systems in the steel construction industry using building information modeling (BIM). In Construction Research Congress 2012: Construction Challenges in a Flat World (pp. 1135-1144). Retrieved from https://doi.org/10.1061/9780784412329.114
Shan, Y. , Goodrum, P. M. , Zhai, D. , Haas, C. , & Caldas, C. H. . (2011). The impact of management practices on mechanical construction productivity. Construction Management and Economics, 29(3), 305-316. Retrieved from https://doi.org/10.1080/01446193.2010.538070
Shahtaheri, M. , Haas, C. Thomas, & Salimi, T. . (2017). A multi-dimensional joint confidence limit approach to mixed mode planning for round-the-clock projects. Engineering, Construction and Architectural Management. Retrieved from https://scholar.google.ca/citations?hl=en&user=lmA9rO4AAAAJ&view_op=list_works&sortby=pubdate#d=gs_md_cita-d&u=%2Fcitations%3Fview_op%3Dview_citation%26hl%3Den%26user%3DlmA9rO4AAAAJ%26cstart%3D20%26pagesize%3D80%26sortby%3Dpubdate%26citation_for_view%3Dlm
Shahtaheri, M. , Haas, C. T. , & Rashedi, R. . (2017). Applying very large scale integration reliability theory for understanding the impacts of type II risks on megaprojects. Journal of Management in Engineering, 33(4). Retrieved from https://doi.org/10.1061/(ASCE)ME.1943-5479.0000504
Shahtaheri, Y. , Rausch, C. , West, J. , Haas, C. , & Nahangi, M. . (2017). Managing risk in modular construction using dimensional and geometric tolerance strategies. Automation in Construction, volume 83, p: 303-305. Retrieved from http://www.sciencedirect.com/science/article/pii/S0926580517302340
Shahtaheri, M. , Haas, C. T. , & Salimi, T. . (2016). A stochastic simulation approach for the integration of risk and uncertainty into megaproject cost and schedule estimates. In Construction Research Congress 2016 (pp. 607-615). Retrieved from https://doi.org/10.1061/9780784479827.062
Shahtaheri, M. , Nasir, H. , & Haas, C. T. . (2015). Setting baseline rates for on-site work categories in the construction industry. Journal of Construction Engineering and Management, 141(5). Retrieved from https://doi.org/10.1061/(ASCE)CO.1943-7862.0000959
Shahtaheri, Y. , Rausch, C. , West, J. , Haas, C. , & Nahangi, M. . (2015). Risk Mitigation through Tolerance Strategies for Design in Modularization. Modular and Offsite Construction (MOC) Summit Proceedings. Retrieved from https://journalofindustrializedconstruction.com/index.php/mocs/article/view/166
Shahi, S. , Wozniczka, P. , Rausch, C. , Trudeau, I. , & Haas, C. . (2021). A computational methodology for generating modular design options for building extensions. Automation in Construction, 127, 103700.

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