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020 _a9783031596445
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072 7 _aTNK
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072 7 _aTEC005050
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072 7 _aTNK
_2thema
082 0 4 _a690
_223
245 1 0 _aTeaching Innovation in Architecture and Building Engineering
_h[electronic resource] :
_bChallenges of the 21st century /
_cedited by David Bienvenido-Huertas, María Luisa de la Hoz-Torres, Antonio Jesús Aguilar Aguilera.
250 _a1st ed. 2024.
264 1 _aCham :
_bSpringer Nature Switzerland :
_bImprint: Springer,
_c2024.
300 _aXI, 655 p. 253 illus., 230 illus. in color.
_bonline resource.
336 _atext
_btxt
_2rdacontent
337 _acomputer
_bc
_2rdamedia
338 _aonline resource
_bcr
_2rdacarrier
347 _atext file
_bPDF
_2rda
505 0 _aPart 1 Active learning methodologies -- Chapter 1 Gamification as a strategy for teaching construction project management systems -- Chapter 2 Gamified Architectural Design: Advancing Education with Extended Reality and AI Insights -- Chapter 3 Challenge based learning and flipped classroom: the way to train as a future prescribers of building materials to students -- Chapter 4 Initiation to Construction through student self-recording and the use of mobile applications to ensure active learning -- Chapter 5 FLIP-QTC: Enhancing quality testing and control knowledge on building materials through the Flipped Classroom methodology -- Chapter 6 Behavior pattern of building engineering students with flipped classroom: visualization and clustering evaluation analysis -- Chapter 7 Knowledge pills in Bachelor's Degree in Architecture: the Case of structural design -- Chapter 8 Successful application of active and collaborative learning methods in Geotechnics on Algarve University Civil Engineering course -- Chapter 9 A problem-based learning for the study of materials for construction -- Chapter 10 Team Based Learning as a tool for active learning of English in a STEM writing course -- Chapter 11 Introduction of b-learning and active methodologies aimed at enhancing the learning of Structural Analysis at higher education -- Chapter 12 Effectiveness of collaborative learning in engineering degrees. Improvement of professional skills -- Chapter 13 Knowledge Management Strategies and Their Impact on Advancing Biomaterials Innovation: Unique Competencies in Ibero-American Universities -- Chapter 14 Service-learning: improving both city and training of our building degree students -- Part 2 Innovative methodologies applied to learning process -- Chapter 15 Geospatial Insights: Harnessing GIS for Innovation in Architectural and Building Engineering Education -- Chapter 16 Adapting Agile Scrum Methodology for the Subject of Building Project Design in University Teaching -- Chapter 17 An environmental tool for End-of Degree Projects -- Chapter 18 Geotechnics, Heritage and Sustainability. A digitised and transversal knowledge of the underground in architecture higher education -- Chapter 19 Advancing transversal competencies in Engineering and Architecture: Integrating GIS and related tasks in multidisciplinary education -- Chapter 20 Methodological reflections on the teaching of digital tools in the field of the survey and representation of architectural heritage -- Chapter 21 Use of new technologies in university education in the field of building -- Chapter 22 Use of computer applications for data collection in technical inspections of buildings -- Chapter 23 Geographic Information Systems and Web GIS in higher education: a collaborative tool for the analysis of accessibility in the urban and built environment -- Chapter 24 Incorporating virtual simulations based on Building Information Modelling methodology as a teaching-learning tool -- Chapter 25 Building the future: Empowering young minds in the digital era through experiential architectural education -- Chapter 26 The application of flexible teaching as a response to 21st-century needs: experiences in Building Materials subjects -- Chapter 27 Maximizing Learning Potential: Embracing the Power of Digital Twins in Architectural and Construction Education of the 21st Century -- Part 3 Traditional vs. Advanced Techniques -- Chapter 28 New experimental teaching proposal to evaluate foreign students in technical subjects -- Chapter 29 Cognitive performance in virtual and physical classrooms: Are they comparable? -- Chapter 30 Innovative framework based on open-source programs in engineering education to modeled buildings' heat gains -- Chapter 31 Sustainable development applied to presentation environments for final degree projects -- Chapter 32 Tools and optimization of computer techniques applied to structural concrete -- Chapter 33 Data management model for software implementation applied to innovation and learning of construction management -- Chapter 34 Detection capacity by professors of academic architecture projects carried out with artificial intelligence -- Chapter 35 Limitations in the academic writing process of postgraduate students between 2010-2020. What tools do we have? -- Chapter 36 Academic Writing Tools for Postgraduate Students in architecture and building engineering.
520 _aThis book presents contributions on teaching innovation in university architecture and building engineering studies. The authors explain how the construction sector demands that future architects and building engineers have the knowledge and skills that allow them to meet the decarbonization objectives established by international organizations and that this causes the level of knowledge to be higher. The contributors further discuss new technologies and the internationalization of studies presenting new challenges university studies must face. This heterogeneity is represented in the chapters that make up this book developed by researchers from different countries. The book is divided into three blocks: (i) Active learning methodologies; (ii) Innovative methodologies applied to learning process; and (iii) Traditional vs. Advanced Techniques. The chapters of the book represent an advance in the current knowledge of teaching innovation techniques in university architecture and building engineering studies. Presents real teaching-learning experiences from a multidisciplinary approach in architecture and engineering degrees; Covers a wide range of topics across the domains of architecture and building engineering; Contextualizes pedagogies such as active learning, gamification, flipped classroom, e-learning, AI, and extended reality.
541 _fUABC ;
_cPerpetuidad
650 0 _aBuildings
_xDesign and construction.
650 0 _aArchitecture.
650 0 _aTeachers
_xTraining of.
650 0 _aSustainable architecture.
650 0 _aCivil engineering.
650 0 _aClimatology.
650 1 4 _aBuilding Construction and Design.
650 2 4 _aArchitecture.
650 2 4 _aTeaching and Teacher Education.
650 2 4 _aSustainable Architecture/Green Buildings.
650 2 4 _aCivil Engineering.
650 2 4 _aClimate Sciences.
700 1 _aBienvenido-Huertas, David.
_eeditor.
_0(orcid)0000-0003-0716-8589
_1https://orcid.org/0000-0003-0716-8589
_4edt
_4http://id.loc.gov/vocabulary/relators/edt
700 1 _ade la Hoz-Torres, María Luisa.
_eeditor.
_4edt
_4http://id.loc.gov/vocabulary/relators/edt
700 1 _aAguilar Aguilera, Antonio Jesús.
_eeditor.
_4edt
_4http://id.loc.gov/vocabulary/relators/edt
710 2 _aSpringerLink (Online service)
773 0 _tSpringer Nature eBook
776 0 8 _iPrinted edition:
_z9783031596438
776 0 8 _iPrinted edition:
_z9783031596452
776 0 8 _iPrinted edition:
_z9783031596469
856 4 0 _zLibro electrónico
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912 _aZDB-2-ENG
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