Assessing Construction Constraint Factors on Project Performance in the Construction Industry
Abstract
:1. Introduction
2. Literature Review
2.1. Findings from Extant Literature on Factors Causing Construction Constraints
2.2. Theoretical Background
3. Methodology
4. Results and Discussion of Findings
4.1. Demographic Information of the Respondents
4.2. Results from the Exploratory Factor Analysis
4.2.1. KMO and Bartlett’s Test
4.2.2. Scree Plot
4.2.3. Communalities
4.2.4. Total Variance Explained
4.2.5. Pattern Matrix(a)
- Component one: stakeholders’ inappropriate project scheduling and coordination.
- Component two: Organisation and government policies.
- Component three: Ownership financial and contractual delays.
- Component four: External factors.
- Component five: Project peculiarity factors.
- Component six: Managerial factors.
4.2.6. Component Correlation Matrix and Reliability of the Factors
5. Conclusions and Recommendations
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Acknowledgments
Conflicts of Interest
References
- Olanrewaju, A.L.; Abdul-Aziz, A.R. An Overview of the Construction Industry. In Building Maintenance Processes and Practices; Springer: Singapore, 2015. [Google Scholar]
- Ogunbayo, S.B.; Mhlanga, N. Effects of Training on Teachers’ Job Performance in Nigeria’s Public Secondary Schools. Asian J. Assess. Teach. Learn. 2022, 12, 44–51. [Google Scholar]
- Olander, S. Stakeholder impact analysis in construction project management. Constr. Manag. Econ. 2007, 25, 277–287. [Google Scholar] [CrossRef]
- Isa, R.B.; Jimoh, R.A.; Achuenu, E. An Overview of the Contribution of Construction Sector to Sustainable Development in Nigeria. Net. J. Bus. Manag. 2013, 1, 1–6. [Google Scholar]
- Mwangi, M. Factors Influencing Performance of Contractors in the Road Construction Sector: Case of Selected Contractors in Kenya. Ph.D. Thesis, University of Nairobi, Nairobi, Kenya, 2016. [Google Scholar]
- Murat, G.; Mustafa, O.; Yasemin, N. Quantification of Delay Factors Using the Relative Importance Index Method for Construction Projects in Turkey. J. Manag. Eng. 2013, 29, 133–139. [Google Scholar]
- Abera, L.Y.; Fekadu, T.Y. Factors affecting the performance of construction project under Oromia Industry and Urban Development Bureau, Ethiopia. ABC Res. Alert J. 2016, 4, 1–76. [Google Scholar]
- Durdyev, S.; Omarov, M.; Ismail, S. Causes of delay in residential construction projects in Cambodia. Cogent Eng. 2017, 4, 1–8. [Google Scholar] [CrossRef]
- Mohamed, S.; Omar, M.; Ahmed, M.A.A. Identification and assessment of risk factors affecting construction projects. Hou. Bldg. Nat. Res. Cen. J. 2017, 13, 202–216. [Google Scholar]
- Davis, K. A method to measure success dimensions relating to individual stakeholder groups. Int. J. Proj. Manag. 2016, 34, 480–493. [Google Scholar] [CrossRef]
- Ogunbayo, B.F.; Aigbavboa, C.O.; Thwala, W.D.; Akinradewo, O.I.; Edwards, D. Validating elements of organisational maintenance policy for maintenance management of public buildings in Nigeria. J. Qual. Maint. Eng. 2022. ahead-of-print. [Google Scholar] [CrossRef]
- Ogunbayo, B.F.; Aigbavboa, C.O.; Thwala, W.; Akinradewo, O.; Ikuabe, M.; Adekunle, S.A. Review of Culture in Maintenance Management of Public Buildings in Developing Countries. Bldgs 2022, 12, 677. [Google Scholar] [CrossRef]
- Ogunbayo, B.F.; Ohis Aigbavboa, C.; Thwala, W.D.; Akinradewo, O.I. Assessing maintenance budget elements for building maintenance management in Nigerian built environment: A Delphi study. Built Environ. Proj. Asset Manag. 2022, 12, 649–666. [Google Scholar] [CrossRef]
- Whelton, M.; Pennanen, A.; Ballard, G. Knowledge emergence and adaptive management: An exploration on the co-production of project needs and requirements by client-specialist groups. In Knowledge Management in the Construction Industry: A Socio-Technical Perspective; IGI Global: Hershey, PA, USA, 2005; pp. 251–275. [Google Scholar]
- Javed, A.A.; Pan, W.; Chen, L.; Zhan, W. A systemic exploration of drivers for and constraints on construction productivity enhancement. Built Environ. Proj. Asset Manag. 2018, 8, 239–252. [Google Scholar] [CrossRef] [Green Version]
- Bhavsar, U.M.; Solanki, J.V. Identification of Constraints In Construction Projects. Int. Res. J. Eng. Technol. 2020, 7, 6302–6307. [Google Scholar]
- Mishra, A.K.; Mallik, K. Factors and impact of risk management practice on success of construction projects of housing developers, Kathmandu, Nepal. Int. J. Sci. Basic Appl. Res. 2017, 36, 206–232. [Google Scholar]
- Ogundipe, K.E.; Olaniran, H.F.; Ajao, A.M.; Ogunbayo, B.F. Assessing the Impact of Quality Supervision on Construction Operatives ‘Project Delivery in Nigeria. Int. J. Civ. Eng. Technol. 2018, 9, 426–439. [Google Scholar]
- Tam, C.M.; Tong, T.K.; Chiu, G.W. Comparing non-structural fuzzy decision support system and analytical hierarchy process in decision-making for construction problems. Eur. J. Oper. Res. 2006, 174, 1317–1324. [Google Scholar] [CrossRef]
- Fashina, A.A.; Omar, M.A.; Sheikh, A.A.; Fakunle, F.F. Exploring the significant factors that influence delays in construction projects in Hargeisa. Heliyon 2021, 7, e06826. [Google Scholar] [CrossRef] [PubMed]
- Amusan, L.; Aigbavboa, C.; Olubiyi, T.; Babatunde, O. Informatics Approach to Innovative Site Management Practices for Improving Construction Works. Int. Rev. Civ. Eng. 2021, 12, 108–122. [Google Scholar] [CrossRef]
- Tanko, B.L.; Abdullah, F.; Ramly, Z.M. Stakeholders’ assessment of constraints to project delivery in the Nigerian construction industry. J. Built Environ. Sustain. 2017, 4, 56–62. [Google Scholar] [CrossRef]
- Irfan, M.; Thaheem, M.J.; Gabriel, H.F.; Malik, M.S.A.; Nasir, A.R. Effect of stakeholder’s conflicts on project constraints: A tale of the construction industry. Int. J. Confl. Manag. 2019, 30, 538–565. [Google Scholar] [CrossRef]
- Khahro, S.H.; Memon, N.A.; Ali, T.H.; Memon, Z.A. Improving material waste management performance: An attribute study for provential projects. Int. J. Civ. Eng. Technol. 2016, 7, 498–506. [Google Scholar]
- Ahlemann, F.; El Arbi, F.; Kaiser, M.G.; Heck, A. A process framework for theoretically grounded prescriptive research in the project management field. Int. J. Proj. Manag. 2013, 31, 43–56. [Google Scholar] [CrossRef]
- Narh, O.C.; Owusu, E.E.; Oduro-Apeatu, K.; Tettey-Wayo, N. An exploratory study of professional conflicts and disputes within the construction industry. Int. J. Manag. Stud. Res. 2015, 3, 44–65. [Google Scholar]
- Siegelaub, J.M. Six (yes six!) constraints: An enhanced model for project control. In PMI® Global Congress; Project Management Institute: Newtown Square, PA, USA; Atlanta, GA, USA, 2007. [Google Scholar]
- Blismas, N.G.; Pendlebury, M.; Gibb, A.; Pasquire, C. Constraints to the use of off-site production on construction projects. Archit. Eng. Des. Manag. 2005, 1, 153–162. [Google Scholar] [CrossRef] [Green Version]
- Deep, S.; Banerjee, S.; Dixit, S.; Vatin, N.I. Critical Factors Influencing the Performance of Highway Projects: Empirical Evaluation of Indian Projects. Buildings 2022, 12, 849. [Google Scholar] [CrossRef]
- Edum-Fotwe, F.T.; McCaffer, R. Developing project management competency: Perspectives from the construction industry. Int. J. Proj. Manag. 2000, 18, 111–124. [Google Scholar] [CrossRef]
- Project Management Institute. A Guide to the Project Management Body of Knowledge; Project Management Institute, Inc.: Newtown Square, PA, USA, 2013. [Google Scholar]
- Haseeb, M.; Bibi, A.; Rabbani, W. Problems of projects and effects of delays in the construction industry of Pakistan. Aust. J. Bus. Manag. Res. 2011, 1, 41–50. [Google Scholar] [CrossRef]
- Ogunlana, S.O.; Promkuntong, K.; Jearkjirm, V. Construction delays in a fast-growing economy: Comparing Thailand with other economies. Int. J. Proj. Manag. 1996, 14, 37–45. [Google Scholar] [CrossRef]
- Zakeri, M.; Olomolaiye, P.O.; Holt, G.D.; Harris, F.C. A survey of constraints on Iranian construction operatives’ productivity. Constr. Manag. Econ. 1996, 14, 417–426. [Google Scholar] [CrossRef]
- Durdyev, S.; Hosseini, M.R. Causes of delays on construction projects: A comprehensive list. Int. J. Manag. Proj. Bus. 2020, 13, 20–46. [Google Scholar] [CrossRef]
- Ajayi, O.M.; Ogunsanmi, O.E.; Ajayi, K.A.; Ofili, C.M. The Construction, Building and Real Estate Research Conference of the Royal Institution of Chartered Surveyors. In Proceedings of the Royal Institution of Chartered Surveyors (RICS), Salford, UK, 2–3 September 2010. [Google Scholar]
- Akanni, P.O.; Oke, A.E.; Akpomiemie, O.A. Impact of environmental factors on building project performance in Delta State, Nigeria. Hous. Build. Natl. Res. Cent. J. 2015, 11, 91–97. [Google Scholar] [CrossRef] [Green Version]
- Ogunde, A.O.; Dafe, O.E.; Akinola, G.A.; Ogundipe, K.E.; Oloke, O.C.; Ademola, S.A.; Olaniran, H.F. Factors Militating Against Prompt Delivery of Construction Projects in Lagos Megacity, Nigeria Contractors’ Perspective. Med. J. Soc. Sci. 2017, 8, 1–10. [Google Scholar] [CrossRef] [Green Version]
- Ugulu, R.A.; Arewa, A.; Allen, S. Project-specific constraints influencing productivity of tradespeople in the Nigerian construction industry. Built Environ. Proj. Asset Manag. 2010, 10, 94–109. [Google Scholar] [CrossRef]
- Bitamba, B.F.; An, S.H. Study on factors affecting the performance of construction projects in the Democratic Republic of the Congo. S. Afr. J. Ind. Eng. 2020, 31, 12–25. [Google Scholar] [CrossRef]
- Muhwezi, L.; Acai, J.; Otim, G. An assessment of the factors causing delays on building construction projects in Uganda. Int. J. Constr. Eng. Manag. 2014, 3, 13–23. [Google Scholar]
- Akinyede, I.J. Framework for Effective Management of Cost Constraint on Building Project Delivery in South Africa. Ph.D. Thesis, Cape Peninsula University of Technology, Cape Town, South Africa, 2014. [Google Scholar]
- Khabisi, J.; Aigbavboa, C.; Thwala, W. Causes of cost overruns in public sector construction projects in South Africa. In Proceedings of the International Conference on Construction and Real Estate Management, Edmonton, AB, Canada, 29 September–1 October 2017. [Google Scholar]
- Goldratt, E.M. Theory of Constraints. Croton-On-Hudson; North River Press: New York, NY, USA, 1990. [Google Scholar]
- Watson, K.J.; Blackstone, J.H.; Gardiner, S.C. The evolution of a management philosophy: The theory of constraints. J. Oper. Manag. 2007, 25, 387–402. [Google Scholar] [CrossRef]
- Balderstone, S.J.; Mabin, V.J. A Review of Goldratt’s Theory of Constraints (TOC)–lessons from the international literature. In Proceedings of the Operations Research Society of New Zealand 33rd Annual Conference, Auckland, New Zealand, 30 August–1 September 1998. [Google Scholar]
- Rahman, S.U. Theory of constraints: A review of the philosophy and its applications. Int. J. Oper. Prod. Manag. 1998, 18, 336–355. [Google Scholar] [CrossRef]
- Şimşit, Z.T.; Günay, N.S.; Vayvay, Ö. Theory of constraints: A literature review. Procedia-Soc. Behav. Sci. 2014, 150, 930–936. [Google Scholar] [CrossRef] [Green Version]
- Stein, R.E. The Theory of Constraints: Applications in Quality and Manufacturing, 2nd ed.; CRC Press: Rochester, NY, USA, 1997. [Google Scholar]
- Newbold, R.C. Project Management in the Fast Lane: Applying the Theory of Constraints; CRC Press: Boca Raton, FL, USA, 1998. [Google Scholar]
- Lau, E.; Kong, J. Identification of constraints in construction projects to improve performance. In Proceedings of the Joint Conference on Construction Culture, Innovation and Management, Dubai, United Arab Emirates, 26–29 November 2006; pp. 26–29. [Google Scholar]
- Mofokeng, T.G. Assessment of the Causes of Failure among Small and Medium Sized Construction Companies in the Free State Province; University of Johannesburg: Johannesburg, South Africa, 2013. [Google Scholar]
- Mofokeng, Godfrey. Mentorship programmes within the small and medium sized contractor development programme: A case study of the Free State province, South Africa. J. Econ. Behav. Stud. 2012, 4, 712–722. [Google Scholar] [CrossRef] [Green Version]
- Yamane, T. Statistics, An Introductory Analysis, 2nd ed.; Harper and Row: Manhattan, NY, USA, 1967. [Google Scholar]
- Bell, E.; Bryman, A. The ethics of management research: An exploratory content analysis. Br. J. Manag. 2007, 18, 63–77. [Google Scholar] [CrossRef]
- Kothari, C.R. Research Methodology: Methods and Techniques; New Age International: Delhi, India, 2004. [Google Scholar]
- Pallant, J. SPSS Survival Manual: A Step-by-Step Guide to Data Analysis Using SPSS, 4th ed.; Routledge: London, UK, 2011. [Google Scholar]
- Pallant, J. SPSS Survival Manual; McGraw-Hill Education: London, UK, 2013. [Google Scholar]
- Tavokol, M.; Dennick, R. Making sense of Cronbach’s alpha. Int. J. Med. Educ. 2011, 2, 53–55. [Google Scholar] [CrossRef] [PubMed]
- Eiselen, R.; Uys, T.; Potgieter, T. Analysing Survey Data Using SPSS13; University of Johannesburg: Johannesburg, South Africa, 2007. [Google Scholar]
Codes | Factors Causing Constraints (FCA) | Authors |
---|---|---|
FCA 1 | Climate change resilience | Refs. [21,23,28,31,34] |
FCA 2 | Inappropriate project cost estimation | Refs. [16,20,26,33] |
FCA3 | Traditional beliefs of people | Refs. [27,30,33,36] |
FCA4 | Lack of supervision onsite | Refs. [16,20,28,39] |
FCA5 | Delay in materials supply | Refs. [28,31,32,34,40] |
FCA6 | Poor coordination stakeholders | Refs. [16,28,34,37] |
FCA7 | Construction workers strikes | Refs. [21,27,33,38] |
FCA8 | Poor communication | Refs. [28,31,34,36,41] |
FCA9 | Ownership financial problems | Refs. [3,27,32,37] |
FCA10 | Poor provision of equipment | Refs. [20,31,32,34] |
FCA11 | Not completing the project as planned | Refs. [26,28,37] |
FCA12 | Building regulations | Refs. [16,29,37,40] |
FCA13 | Safety regulations | Refs. [21,28,33,38] |
FCA14 | Changes in drawings/design | Refs. [20,23,28,30] |
FCA15 | Design for deconstruction and disposal | Refs. [20,26,28,39] |
FCA16 | Waste, water management, dust, vibration, and noise | Refs. [23,26,31,38] |
FCA17 | Poor planning and scheduling | Refs. [24,31,33,34] |
FCA18 | Difficulties in obtaining work permits | Refs. [22,28,31,42] |
FCA19 | Land acquisition | Refs. [27,35,38,39] |
FCA20 | Availability of local workforce | Refs. [8,16,20,26] |
FCA21 | Work laws (of the current government) | Refs. [15,25,35,39] |
FCA22 | Dispute related to contractual documents | Refs. [12,18,26,28,33] |
FCA23 | Use of inexperienced workers | Refs. [8,23,31,34,38] |
FCA24 | Delay in solving design problems | Refs. [20,28,31,34] |
FCA 25 | Difficulties in obtaining loans from financiers | Refs. [8,26,31,38] |
FCA 26 | Air, water, or ground pollution | Refs. [16,28,31,34] |
FCA 27 | Usage of sustainable materials | Refs. [21,28,31,32,34] |
FCA 28 | Preservation of ecology and transportation | Refs. [23,32,37,40] |
FCA 29 | Improper allocation of money to contractors | Refs. [20,31,34,38,39] |
KMO and Bartlett’s Test | ||
---|---|---|
Kaiser–Meyer–Olkin Measure of Sampling Adequacy | 0.826 | |
Bartlett’s Test of Sphericity | Approx. Chi-Square | 2713.031 |
Df | 406 | |
Sig. | 0.000 |
FCA Variables | Initial | Extraction |
---|---|---|
Delay in solving design problems | 1.000 | 0.630 |
Inappropriate project cost estimation | 1.000 | 0.658 |
Poor communication | 1.000 | 0.537 |
Poor planning and scheduling | 1.000 | 0.514 |
Poor coordination between different agencies | 1.000 | 0.633 |
Not completing the project in a given duration | 1.000 | 0.732 |
Difficulties in obtaining loans from financiers | 1.000 | 0.709 |
Improper allocation of money to related parties | 1.000 | 0.713 |
Availability of local workforce | 1.000 | 0.627 |
Land acquisition | 1.000 | 0.823 |
Safety regulations | 1.000 | 0.790 |
Building regulations | 1.000 | 0.836 |
Difficulties in obtaining work permits | 1.000 | 0.796 |
Dispute related to contractual documents | 1.000 | 0.611 |
Changes in drawings/design | 1.000 | 0.597 |
Work laws (of the current government) | 1.000 | 0.621 |
Air, water, or ground pollution | 1.000 | 0.744 |
Usage of hazardous or sustainable materials | 1.000 | 0.810 |
Use of inexperienced workers | 1.000 | 0.646 |
Waste and water management, dust, vibration, and noise | 1.000 | 0.649 |
Preservation of ecology, traffic, and transportation | 1.000 | 0.629 |
Climate change resilience | 1.000 | 0.626 |
Design for deconstruction and disposal | 1.000 | 0.581 |
Traditional beliefs of people | 1.000 | 0.598 |
Ownership financial problems | 1.000 | 0.698 |
Construction workers strikes | 1.000 | 0.668 |
Delay in materials supply | 1.000 | 0.766 |
Poor provision of equipment | 1.000 | 0.721 |
Lack of supervision on site | 1.000 | 0.666 |
Component | Initial Eigenvalues | Extraction Sums of Squared Loadings | Rotation Sums of Squared Loadings a | ||||
---|---|---|---|---|---|---|---|
Total | % of Variance | Cumulative % | Total | % of Variance | Cumulative % | Total | |
FCA 1 | 8.561 | 29.521 | 29.521 | 8.561 | 29.521 | 29.521 | 6.927 |
FCA 2 | 3.800 | 13.105 | 42.625 | 3.800 | 13.105 | 42.625 | 4.848 |
FCA 3 | 2.536 | 8.746 | 51.371 | 2.536 | 8.746 | 51.371 | 3.325 |
FCA 4 | 1.896 | 6.538 | 57.909 | 1.896 | 6.538 | 57.909 | 4.632 |
FCA 5 | 1.656 | 5.712 | 63.621 | 1.656 | 5.712 | 63.621 | 3.457 |
FCA 6 | 1.180 | 4.070 | 67.691 | 1.180 | 4.070 | 67.691 | 1.625 |
FCA 7 | 0.960 | 3.312 | 71.003 | ||||
FCA 8 | 0.864 | 2.979 | 73.982 | ||||
FCA 9 | 0.766 | 2.641 | 76.623 | ||||
FCA 10 | 0.650 | 2.242 | 78.866 | ||||
FCA 11 | 0.637 | 2.197 | 81.063 | ||||
FCA 12 | 0.587 | 2.025 | 83.088 | ||||
FCA 13 | 0.537 | 1.851 | 84.939 | ||||
FCA 14 | 0.519 | 1.790 | 86.730 | ||||
FCA 15 | 0.452 | 1.559 | 88.289 | ||||
FCA 16 | 0.431 | 1.487 | 89.776 | ||||
FCA 17 | 0.402 | 1.388 | 91.164 | ||||
FCA 18 | 0.384 | 1.323 | 92.487 | ||||
FCA 19 | 0.325 | 1.121 | 93.608 | ||||
FCA 20 | 0.312 | 1.077 | 94.685 | ||||
FCA 21 | 0.259 | 0.892 | 95.577 | ||||
FCA 22 | 0.250 | 0.863 | 96.440 | ||||
FCA 23 | 0.221 | 0.763 | 97.203 | ||||
FCA 24 | 0.174 | 0.602 | 97.804 | ||||
FCA 25 | 0.159 | 0.549 | 98.353 | ||||
FCA 26 | 0.146 | 0.504 | 98.857 | ||||
FCA 27 | 0.124 | 0.428 | 99.285 | ||||
FCA 28 | 0.111 | 0.382 | 99.667 | ||||
FCA 29 | 0.096 | 0.333 | 100.000 |
Variables | Pattern Matrix(a) Component | |||||
---|---|---|---|---|---|---|
1 | 2 | 3 | 4 | 5 | 6 | |
Not completing the project in each duration | 0.903 | |||||
Difficulties in obtaining loans from financiers | 0.812 | |||||
Availability of local workforce | 0.802 | |||||
Improper allocation of money to related parties | 0.771 | |||||
Poor communication | 0.732 | |||||
Inappropriate project cost estimation | 0.704 | |||||
Delay in solving design problems | 0.682 | |||||
Poor coordination between different agencies | 0.593 | |||||
Poor planning and scheduling | 0.453 | |||||
Safety regulations | 0.912 | |||||
Building regulations | 0.913 | |||||
Land acquisition | 0.892 | |||||
Difficulties in obtaining work permits | 0.873 | |||||
Dispute related to contractual documents | 0.774 | |||||
Traditional beliefs of people | 0.754 | |||||
Changes in drawings/design | 0.672 | |||||
Ownership financial problems | 0.663 | |||||
Construction workers strikes | 0.654 | |||||
Poor provision of equipment | 0.543 | |||||
Delay in materials supply | 0.534 | |||||
Climate change resilience | 0.711 | |||||
Use of inexperienced workers | 0.684 | |||||
Design for deconstruction and disposal | 0.662 | |||||
Preservation of ecology, traffic, and transportation | 0.606 | |||||
Work laws (of the current government) | 0.554 | |||||
Usage of hazardous or sustainable materials | 0.873 | |||||
Air, water, or ground pollution permit | 0.782 | |||||
Waste and water management, dust, vibration, and noise permit | 0.732 | |||||
Lack of supervision on site | 0.823 |
Factor | 1 | 2 | 3 | 4 | 5 | 6 | Cronbach’s Alpha Coefficient |
---|---|---|---|---|---|---|---|
Component 1 | 1 | −0.29 | 0.182 | 0.374 | 0.2 | 0.141 | 0.913 |
Component 2 | −0.29 | 1 | −0.06 | −0.24 | 0.03 | −0.11 | 0.917 |
Component 3 | 0.182 | −0.06 | 1 | 0.122 | 0.22 | 0.08 | 0.789 |
Component 4 | 0.374 | −0.24 | 0.122 | 1 | 0.06 | −0.03 | 0.802 |
Component 5 | 0.202 | 0.028 | 0.22 | 0.06 | 1 | 0.092 | 0.711 |
Component 6 | 0.141 | −0.11 | 0.08 | −0.03 | 0.09 | 1 | 0.854 |
Publisher’s Note: MDPI stays neutral with regard to jurisdictional claims in published maps and institutional affiliations. |
© 2022 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
Share and Cite
Masoetsa, T.G.; Ogunbayo, B.F.; Aigbavboa, C.O.; Awuzie, B.O. Assessing Construction Constraint Factors on Project Performance in the Construction Industry. Buildings 2022, 12, 1183. https://doi.org/10.3390/buildings12081183
Masoetsa TG, Ogunbayo BF, Aigbavboa CO, Awuzie BO. Assessing Construction Constraint Factors on Project Performance in the Construction Industry. Buildings. 2022; 12(8):1183. https://doi.org/10.3390/buildings12081183
Chicago/Turabian StyleMasoetsa, Tshweu Given, Babatunde Fatai Ogunbayo, Clinton Ohis Aigbavboa, and Bankole Osita Awuzie. 2022. "Assessing Construction Constraint Factors on Project Performance in the Construction Industry" Buildings 12, no. 8: 1183. https://doi.org/10.3390/buildings12081183
APA StyleMasoetsa, T. G., Ogunbayo, B. F., Aigbavboa, C. O., & Awuzie, B. O. (2022). Assessing Construction Constraint Factors on Project Performance in the Construction Industry. Buildings, 12(8), 1183. https://doi.org/10.3390/buildings12081183