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220822 ||| eng |
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|a 9783036526287
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|a books978-3-0365-2629-4
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|a 9783036526294
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|a Zavadskas, Edmundas Kazimieras
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|a Sustainable Construction Engineering and Management
|h Elektronische Ressource
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|a Basel, Switzerland
|b MDPI - Multidisciplinary Digital Publishing Institute
|c 2021
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300 |
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|a 1 electronic resource (680 p.)
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|a machine learning
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|a management system
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|a project governance
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|a mitigation strategy
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|a entropy measure
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|a exploratory factor analysis
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|a thermal insulation
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|a SALSA
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|a construction projects
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|a risk management
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|a maintenance
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|a correlations
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|a scheduling
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|a linguistic action perspective
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|a design
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|a triangular fuzzy number
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|a LEED
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|a sustainable roles
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|a building industry
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|a Microsoft Excel Visual Basic for Applications (MS Excel VBA)
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|a safety management
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653 |
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|a organizational learning
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|a project success
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|a real case study
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|a risk relationship
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|a third-party damage
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|a Tanzania
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|a building projects
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|a public private partnership
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|a attitude
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|a SWARA method
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|a dependency structure matrix (DSM)
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|a Renovation Wave
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|a Technology: general issues / bicssc
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|a project management
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|a bridge construction
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|a ISM
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|a worker's smartphone
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|a power construction project
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|a green building materials (GBMs)
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|a triangular intuitionistic fuzzy
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|a life cycle assessment
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|a process optimization
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|a modernization of construction industry
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|a Public-private partnership (PPP)
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|a random forest-genetic algorithm
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653 |
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|a enterprise competitiveness
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|a computer aid
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|a Weibull-distribution
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|a rework
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|a resource-dependent activity relationship
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|a load action
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|a concrete temperature monitoring
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|a behavior
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|a R)
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|a materials
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|a risk matrix
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|a China
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|a building performance assessment (BPA)
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|a time management
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|a change management
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|a organizational flexibility
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|a organizational innovation
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|a bridge
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|a natural language processing
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|a critical success factors
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|a set pair analysis
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|a residential buildings
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|a limit states
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|a decision-making methods
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|a construction industry
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|a analytic hierarchy process
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|a structural equation modeling
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|a infrastructure
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|a project participants' behaviour
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|a informatization
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|a construction site
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|a decision making
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|a facility management (FM)
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|a geopolymer
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|a sustainable
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|a COPRAS method
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|a prediction model
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|a fuzzy synthetic evaluation
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|a greenization
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|a operation and maintenance (O&
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|a contractor perspective
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|a risk identification
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|a resistance
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|a risk analysis
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|a sustainable investment
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|a insurance
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|a MCDM
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|a sustainable construction
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|a Guangzhou metro
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|a digital transformation
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|a key performance indicators (KPIs)
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|a digital technology
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|a last planner system
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|a time
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|a structural reliability
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|a high-rise building construction
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|a decision robustness
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|a roof installation projects
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|a Vietnam
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|a fly ash
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|a dynamic programming
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|a risk process
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|a MICMAC
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|a risk system implementation
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|a delay sources
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|a structural equation modeling (SEM)
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|a linguistic action indicators
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|a loss assessment model
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|a construction management
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|a failure probability
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|a construction project
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|a sustainable construction project management (SCPM)
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|a information model
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|a technology acceptance model
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|a project owner
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|a environment
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|a BIM
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|a project assessment
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|a sustainability indicators
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|a modular construction
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|a bridge deterioration
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|a sustainable highway construction
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|a data collection system
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|a IDEF0
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|a buildings
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|a multi criteria analysis
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|a M)
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|a sensitivity analysis
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|a construction
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|a risk attitudes
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|a rework causes
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|a semi-Markov process
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|a construction data management
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|a uncertainty modelling
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|a building information modeling
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|a scheduling software
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|a contractors
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|a strategy
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|a sustainable performance evaluation
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|a value management
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|a multi-criteria decision-making
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|a stochastic simulation
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|a operating room (OR)
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|a owner perspective
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|a Sustainable Development Goals (SDGs)
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|a safety behavior
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|a smart technologies
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|a decision tree
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653 |
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|a sustainability
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653 |
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|a building information modeling (BIM)
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653 |
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|a knowledge transfer
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|a condition rating
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653 |
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|a sustainability criteria
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653 |
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|a green building
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653 |
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|a maintenance, repair, and rehabilitation (MR&
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653 |
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|a inspection
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653 |
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|a optimization
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653 |
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|a integrated design process
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653 |
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|a delay management
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653 |
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|a loss distribution approach
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653 |
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|a greenhouse
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653 |
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|a defects liability period
|
700 |
1 |
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|a Antuchevičienė, Jurgita
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700 |
1 |
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|a Hosseini, M. Reza
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700 |
1 |
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|a Martek, Igor
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041 |
0 |
7 |
|a eng
|2 ISO 639-2
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989 |
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|b DOAB
|a Directory of Open Access Books
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500 |
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|a Creative Commons (cc), https://creativecommons.org/licenses/by/4.0/
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028 |
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|a 10.3390/books978-3-0365-2629-4
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856 |
4 |
0 |
|u https://www.mdpi.com/books/pdfview/book/4759
|7 0
|x Verlag
|3 Volltext
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856 |
4 |
2 |
|u https://directory.doabooks.org/handle/20.500.12854/77141
|z DOAB: description of the publication
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|a 400
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|a 363
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|a 000
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|a 410
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|a 330
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|a 333
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|a 320
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|a 700
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|a 600
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|a This Book is a Printed Edition of the Special Issue which covers sustainability as an emerging requirement in the fields of construction management, project management and engineering. We invited authors to submit their theoretical or experimental research articles that address the challenges and opportunities for sustainable construction in all its facets, including technical topics and specific operational or procedural solutions, as well as strategic approaches aimed at the project, company or industry level. Central to developments are smart technologies and sophisticated decision-making mechanisms that augment sustainable outcomes. The Special Issue was received with great interest by the research community and attracted a high number of submissions. The selection process sought to balance the inclusion of a broad representative spread of topics against research quality, with editors and reviewers settling on thirty-three articles for publication. The Editors invite all participating researchers and those interested in sustainable construction engineering and management to read the summary of the Special Issue and of course to access the full-text articles provided in the Book for deeper analyses.
|