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  1. 1
    دورية أكاديمية

    المصدر: Informes de la Construcción; Vol. 71 No. 555 (2019); e307 ; Informes de la Construcción; Vol. 71 Núm. 555 (2019); e307 ; 1988-3234 ; 0020-0883 ; 10.3989/ic.2019.v71.i555

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    العلاقة: https://informesdelaconstruccion.revistas.csic.es/index.php/informesdelaconstruccion/article/view/5971/7188Test; https://informesdelaconstruccion.revistas.csic.es/index.php/informesdelaconstruccion/article/view/5971/7189Test; https://informesdelaconstruccion.revistas.csic.es/index.php/informesdelaconstruccion/article/view/5971/7190Test; Rodríguez Catalejo, R.D., Prieto Sánchez A.L., Cubero Atienza, A.J., Vázquez Serrano F.J. (2016). Smart Campus, un entorno inteligente para la comunidad universitaria. En II Congreso Ciudades Inteligentes, Madrid.; AENOR-CEN (2016). UNE 178201:2016 Ciudades inteligentes. Definición, atributos y requisitos. Asociación Española de Normalización (AENOR).; H. Makkonen, V.T. (2013). Green Campus, Energy management system. Electricity Distribution. En 22nd International Conference and Exhibition. Estocolmo. https://doi.org/10.1049/cp.2013.1088Test; Hipwell, S. (2014). Developing smart Campuses -A working model. En International Conference Intelligent Green Building and Smart Grid (pp. 1-6). Taipei. https://doi.org/10.1109/IGBSG.2014.6835169Test; Universidad de Alicante (2016). Libro blanco para Smart cities: Smart University, Hacia una universidad más abierta @UASmart. Alicante: Smart University.; Bordonau, B., Gargallo, M., Avariento, D., Sanhis, J., Gould, A., Huerta, M. (2013). UJI Smart Campus. Un ejemplo de integración de recursos en la Universitat Jaume I de Castello. En IV Jornadas Ibéricas de Infraestructuras de Datos Espaciales. Toledo.; Requena Valiente, R., Arcos Garrido, M. (2016). El proyecto de Smart Mobility en un campus universitario. El caso de la Universidad Autónoma de Barcelona. En II Congreso Ciudades Inteligentes. Madrid.; Huo, C., Song, J., Wagner, K., Harold, G., Cotilla-Sanchez, E. (2014). Integrating synchrophasor technology with the Oregon State University Campus smart grid project. En 2014 IEEE Conference on Technologies for Sustainability (Sus-Tech). (pp. 125-129). Portland: IEEE.; Álvarez, M., Arquero, A., Martínez, E. (2006). Empleo del AHP incorporado en SIG para definir el emplazamiento óptimo de equipamientos universitarios. Aplicación a una biblioteca. El acceso a la información espacial y las nuevas tecnologías geográficas. (Vol. 1). En XII Congreso de las TIG. Granada.; Álvarez, M., Arquero, A., Martínez, E., Río, O. (2010). DOMOGIS: prototipo de un interfaz del sistema de control de un edificio integrado en un SIG. Informes de la Construcción, 62(518): 15-24. https://doi.org/10.3989/ic.08.034Test; Hjelmager, J., [et al.] (2008). "An initial formal model for Spatial Data Infrastructures". International Journal of Geographical Information Science, 22(11-12): 1295-1309. https://doi.org/10.1080/13658810801909623Test; OGC (1994). Especificación Web Map Service Implementation Specification. Open Geospatial Consortium. https://www.opengeospatial.orgTest/; ISO 19128:2005, Geographic information Web Map Server Interface. Organización Internacional de Normalización.; Alonso, D. (2016). Qué son los códigos EPGS/SRID y su vinculación con PostGIS. Mapping GIS. https://mappinggis.com/2016/04/los-codigos-epsg-srid-vinculacion-postgisTest/; https://informesdelaconstruccion.revistas.csic.es/index.php/informesdelaconstruccion/article/view/5971Test

  2. 2
    دورية أكاديمية

    المصدر: Grasas y Aceites; Vol. 70 No. 3 (2019); e315 ; Grasas y Aceites; Vol. 70 Núm. 3 (2019); e315 ; 1988-4214 ; 0017-3495 ; 10.3989/gya.2019.v70.i3

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    العلاقة: https://grasasyaceites.revistas.csic.es/index.php/grasasyaceites/article/view/1779/2452Test; https://grasasyaceites.revistas.csic.es/index.php/grasasyaceites/article/view/1779/2453Test; https://grasasyaceites.revistas.csic.es/index.php/grasasyaceites/article/view/1779/2454Test; Abdelouauhhab Z, Arias-Jimenez EJ. 2002. Date palm cultivation, 1st edn. FAO, Rome.; Akbari M, Razavizadeh R, Mohebbi GH, Barmak A. 2012. Oil characteristics and fatty acid profile of seeds from three varieties of date palm (Phoenix dactylifera) cultivars in Bushehr-Iran. Afr. J. Biotechnol. 11, 12088-12093. https://doi.org/10.5897/AJB12.1084Test; Aljuhaimi F, Ghafoor K, Özcan MM. 2012. Physical and chemical properties, antioxidant activity, total phenol and mineral profile of seeds of seven different date fruit (Phoenix dactylifera L.) varieties. Int. J. Food Sci. Nutr. 63, 84-89. https://doi.org/10.3109/09637486.2011.598851Test PMid:21762027; Aljuhaimi F, Özcan MM, Adiamo OQ, Alsawmahi ON, Ghafoor K, Babiker EE. 2018. Effect of date varieties on physico-chemical properties, fatty acid composition, tocopherol contents and phenolic compounds of some date seed and oils. J. Food Process Pres. 42, 13584-13590. https://doi.org/10.1111/jfpp.13584Test; AOAC 963.15. 2005. Official Methods of Analysis of Association of Official Agriculture Chemist. Association of Analytical Chemist, Washington, D.C. Fat in Cacao Products.; AOCS Ce 2-66. 1997. Official methods and recommended practices of the American oil chemists' society Method Ce 2-66. GLC ranges of Fatty acid composition. Champaign, IL: AOCS Press.; Barreveld WH. 1993. By-products of date packing and processing. [Online] FAO. Available at: http://www.fao.org/docrepTest/ t0681e/t0681e09.htm [Accessed 31 Mar. 2018]; Bouhlali ET, Alem C, Ennassir J, Benlyas M, Mbark AN, Zegzouti YF. 2017. Phytochemical compositions and antioxidant capacity of three date (Phoenix dactylifera L.) seeds varieties grown in the South East Morocco. J. Saudi Soc. Agric. Sci. 16, 350-357. https://doi.org/10.1016/j.jssas.2015.11.002Test; Cert A, Moreda W, Pérez-Camino MC. 2000. Methods of preparation of fatty acid methyl esters (FAME). Statistical assessment of the precision characteristics from a collaborative trial. Grasas Aceites 51, 447-456. https://doi.org/10.3989/gya.2000.v51.i6.464Test; Georgi L. 1982. Pollination Ecology of the Date Palm and Fig Tree: Herodotus. Classical Philol. 77, 224-228. https://doi.org/10.1086/366712Test; Golshan-Tafti A, Solaimani-Dahdivan N, Yasini-Ardakani SA. 2017. Physicochemical properties and applications of date seed and its oil. Int. Food Res. J. 24, 1399-1406.; Hussein F, Moustafa S, Mahmud L. 1979. The direct effect of pollen (metaxenia) on fruit characteristics of dates grown in Saudi Arabia. Proceedings of the 3rd Conference on the Biological Aspects of Saudi Arabia, 69-78.; Kabacoff RI. 2011. R in action. Data analysis and graphics with R. 2nd edition. Manning Publications, New York.; R Core Team. 2015. R: A language and environment for statistical computing. Vienna, Austria: R Foundation for Statistical Computing. Available from https://www.r-project.orgTest/.; Rahnama AA, Rahkhodaei E. 2014. The effects of date pollinizer variety and pollination time on fruit set and yield of Medjhol date palm. J. Adv. Agric. 2, 67-71. https://doi.org/10.24297/jaa.v2i2.4246Test; Saafi EB, Trigui M, Thabet R, Hammami M, Achour L. 2008. Common date palm in Tunisia: chemical composition of pulp and pits. Int. J. Food Sci. Technol. 43, 2033-2037. https://doi.org/10.1111/j.1365-2621.2008.01817.xTest; Salomón-Torres R, Ortiz-Uribe N, Villa-Angulo R, Villa- Angulo C, Norzagaray-Plasencia S, Garcia-Verdugo C. 2017. Effect of pollenizers on production and fruit characteristics of date palm (Phoenix dactylifera L.) cultivar Medjool in Mexico. Turk. J. Agric. For. 41, 338-347. https://doi.org/10.3906/tar-1704-14Test; SIAP, 2017. Anuario estadístico de la producción agrícola. Available at: http://infosiap.siap.gob.mx/aagricola_siap_Test gb/icultivo/index.jsp (accessed 9 February 2018).; Steel RGD, Torrie JH. 1980. Principles and procedures of statistics. 1st edition. McGraw Hill, New York.; Swingle WT. 1928. Metaxenia in the date palm possibly a hormone action by the embryo or endosperm. J. Hered. 19, 257-268. https://doi.org/10.1093/oxfordjournals.jhered.a102996Test; Zaid A, Wet PF. 2002. Chapter I: botanical and systematic description of the date palm. [Online] FAO Available at: http://www.fao.org/docrep/006/Y4360E/y4360e05.htmTest [Accessed 31 Mar. 2018].; https://grasasyaceites.revistas.csic.es/index.php/grasasyaceites/article/view/1779Test

  3. 3
    دورية أكاديمية

    المصدر: Informes de la Construcción; Vol. 70 No. 549 (2018); e237 ; Informes de la Construcción; Vol. 70 Núm. 549 (2018); e237 ; 1988-3234 ; 0020-0883 ; 10.3989/ic.2018.v70.i549

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    العلاقة: https://informesdelaconstruccion.revistas.csic.es/index.php/informesdelaconstruccion/article/view/5895/6961Test; https://informesdelaconstruccion.revistas.csic.es/index.php/informesdelaconstruccion/article/view/5895/6962Test; https://informesdelaconstruccion.revistas.csic.es/index.php/informesdelaconstruccion/article/view/5895/6963Test; Krüger, A., Kolbe., T.H. (2012_08_25). Building analysis for urban energy planning using key indicators on virtual 3D city Models- The energy atlas of Berlin. En Proceedings of the ISPRS International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences (30). Melbourne.; Khodeir, L., Dalia, A., Shaimaa, T. (2016). Integrating HBIM (Heritage Building Information Modeling) Tools in the Application of Sustainable Retrofitting of Heritage Buildings in Egypt. Procedia Environmental Sciences, 34. https://doi.org/10.1016/j.proenv.2016.04.024Test; Ying, S., Guo, R., Li, L. (2015). Construcction of 3D Volumetric objects for a 3D cadastral system. Trans. GIS, 19.; Suarez, J., Fuentes, C., Alonso, A. (2011_02_17).Modelización Tridimensional Semiautomática de Entornos Urbanos a partir de datos LIDAR combinados con Información Catastral. En Congrés de la Setmana Geomàtica Internacional, 15. Barcelona.; Björk, B.C. (1992). A Conceptual Model of Spaces, Spaces Boundaries and Enclosing Structures. Automation in Construction, 1. https://doi.org/10.1016/0926-5805Test(92)90013-A; Guney, C. (2016_10_16). Rethinking GIS towards The Vision Of Smart Cities Through CityGML. En The International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences, (XLII-2/W1), 2016 3rd International GeoAdvances Workshop. Estambul.; Rodríguez, R., Álvarez, M., Miranda, M., Díez, A., Papí, F., Rodríguez, P. (2013). Obtención de modelos urbanos tridimensionales. Informes de la Construcción, 65(530).; Kolbe, T. H. (2012-05-01). BIM, CityGML and realted standardization. En Proceedings of the 2012 Digital Landscape Architecture Conference. Dessau.; Amelibia, I. (2013-11-13). CityGML: modelado urbano 3D. En IV Jornadas Ibéricas de Infraestructuras de Datos Espaciales. Toledo.; Mao, B., Harrie, L. (2016). Methodology for the efficient progressive distribution and visualization of 3D building objects. IPRS int. J. Geo-Inf., 5 (185). https://doi.org/10.3390/ijgi5100185Test; Prieto. I., Izkara, J.L., Egusquiza, A. (2016). Web-Based Tool for the Sustainable Refurbishment in Historic Districts Based on 3D City. En Advances in 3D Geoinformation. Part of the series Lecture Notes in Geoinformation and Cartography (pp 159-169). Heildelberg: Springer Professional.; Tobias, P. (2015). An investigation into the possibilities of BIM and GIS cooperation and utilization of GIS in the BIM process. Geoinformatics, FCE, CTU 1(14).; Malambo, L. M., Hahn, M. (2010_11_01). LiDAR Assisted CityGML Creation. En The Applied Geoinformatics for Society and Environment Conference (AGSE . L.M). (13). Stuttgart.; https://informesdelaconstruccion.revistas.csic.es/index.php/informesdelaconstruccion/article/view/5895Test

  4. 4
    دورية أكاديمية

    المصدر: Informes de la Construcción; Vol. 66 No. 536 (2014); e039 ; Informes de la Construcción; Vol. 66 Núm. 536 (2014); e039 ; 1988-3234 ; 0020-0883 ; 10.3989/ic.2014.v66.i536

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    العلاقة: https://informesdelaconstruccion.revistas.csic.es/index.php/informesdelaconstruccion/article/view/3632/4095Test; https://informesdelaconstruccion.revistas.csic.es/index.php/informesdelaconstruccion/article/view/3632/4096Test; https://informesdelaconstruccion.revistas.csic.es/index.php/informesdelaconstruccion/article/view/3632/4097Test; Lerma, J. L., Van Genechten, B., Heine, E., Santana, M. (2008). Teoría y práctica del Escaneado Láser Terrestre. Material de aprendizaje basado en aplicaciones prácticas. Proyecto Leonardo da Vinci 3D Risk Mapping. http://jllerma.webs.upv.es/pdfs/Leonardo_Tutorial_Final_vers5_SPANISH.pdfTest; Blais, F. (2004). Review of 20 years of range sensor development. Journal of Electronic Imaging, 13(1): 231-243. http://dx.doi.org/10.1117/1.1631921Test; Böhler, W. (2006). Comparison of 3D laser scanning and other 3D measurement techniques. En Baltsavias, M., Gruen, A., Van-Gool, L., Pateraki, M. (Eds.) Recording, Modeling and Visualization of Cultural Heritage, (pp. 89-99). Londres: Taylor & Francis Group.; Biosca, J. M., Navarro, S., Lerma, J. L. (2007). Modelado tridimensional de una bóveda barroca mediante la combinación de láser escáner y fotogrametría terrestre. En 7ª Setmana Geomàtica Barcelona. http://jllerma.webs.upv.es/pap021.pdfTest; Lerma, J. L., Navarro, S., Cabrelles, M., Villaverde, V. (2010). Terrestrial laser scanning and close range photogrammetry for 3D archaeological documentation: the Upper Palaeolithic Cave of Parpalló as a case study. Journal of Archaeological Science, 37(3): 499-507. http://dx.doi.org/10.1016/j.jas.2009.10.011Test; Navarro, S., Seguí, A. E., Portalés, C., Lerma, J. L. (2009). Integration of TLS data and non-metric imagery to improve photo models and recording. A case study on Djin Block No. 9, Petra (Jordan). En Proceedings of the 15th International Conference on Virtual Systems and Multimedia, (pp. 58-63). Viena: IEEEComputer Society.; Santana-Quintero, M., Blake, B., Eppich, R. (2007). Conservation of Architectural Heritage: The Role of Digital Documentation Tools: The Need for appropriate teaching material. International Journal of Architectural Computing, 2(5): 240-253. http://dx.doi.org/10.1260/1478-0771.5.2.240Test; Wolf, P. R., Dewitt, B. A. (2000). Elements of photogrammetry with applications in GIS. Boston: McGraw-Hill; Lerma-García, J. L. (2002). Fotogrametría moderna: analítica y Digital. Valencia: Universidad Politécnica de Valencia.; Albertz, J. (2001). Albrecht Meydenbauer - Pioneer of photogrammetric documentation of the cultural heritage. En Proceedings 18th International Symposium CIPA, (pp. 21-25). Potsdam, Germany.; Schouteden, J., Pollefeys, M., Vergauwen, M., Van-Gool, L. (2001). Imagebased 3D acquisition tool for architectural conservation. The International Archive of Photogrammetry, Remote Sensing and Spatial Information Sciences, 34, Part 5/C7: 301-305.; Cabrelles, M., Seguí, A. E., Navarro, S., Galcerá, S. Portalés, C., Lerma, J.L. (2010). 3D Photorealistic Modelling of Stone Monuments by Dense Image Matching. The International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences, 38, Part 5: 121-124.; Azorín, V., Cassinello, P., Monjo. J. (Eds.) (2012). Archivo Eduardo Torroja, de la investigación en ciencias de la construcción y de su innovador hábitat (IETCC). Madrid: IETcc-CSIC.; Álvarez, M., Rodríguez, R., Díez, A., Aguirre. J., Miranda, M. (2012). Generación de modelos estereoscópicos sintéticos. En Congreso Topcart 2012.; Leica TruView & Cyclone PUBLISHER. http://hds.leica-geosystems.com/en/Leica-TruView-Cyclone-PUBLISHER_64524.htmTest; https://informesdelaconstruccion.revistas.csic.es/index.php/informesdelaconstruccion/article/view/3632Test

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    دورية أكاديمية

    المصدر: Informes de la Construcción; Vol. 65 No. 530 (2013); 229-240 ; Informes de la Construcción; Vol. 65 Núm. 530 (2013); 229-240 ; 1988-3234 ; 0020-0883 ; 10.3989/ic.2013.v65.i530

    وصف الملف: application/pdf

    العلاقة: https://informesdelaconstruccion.revistas.csic.es/index.php/informesdelaconstruccion/article/view/2813/3124Test; Martínez, E., Álvarez, M., Arquero, A., Romero, M. (2010). Apoyo a la selección de emplazamientos óptimos de edificios. Localización de un edificio universitario mediante el Proceso Analítico Jerárquico (AHP) Informes de la Construcción, 519(62): 35-45.; Kada, M. (2009). The 3D Berlin Proyect. Fritsch, D. (ed.): Photogrammetric Week '09, Wichmann Verlag, Heidelberg.; Brenner, C. (2001). City Models-Automation in research and practice. Fritsch/Spiller (eds.): Photogrammetric Week '01, Herbert Wichmann Verlag, Heidelberg.; Brenner, C. (2000). Towards Fully Automatic Generation of City Models. IAPRS Vol. XXXIII, Part B3/1, Comm. III, ISPRS Congress, Amsterdam.; Groot, R., McLaughlin, JD. (2000). Geospatial Data Infrastructure-Concepts, Cases, and Good Practice. Oxford University Press.; Foley, J., van Dam, A., Feiner, S., Hughes, J. (1990). Computer Graphics: Principles and Practice, Second Edition, Addison-Wesley, Reading, Massachusetts.; Finat, J., et al. (2010). Una aproximación semántica a sistemas de información 3D para la resolución de problemas de accesibilidad en patrimonio construido, ACE: Architecture, City and Environment, 13.; Antoniou, G., Van Harmelen, F. (2004). A Semantic Web Primer. Massachusetts Institute of Technology, Londres.; Hundler, J. (2001). Agents and semantic Web. IEEE Intelligent Systems, 16(2), Mar. /Apr. http://dx.doi.org/10.1109/5254.920597Test; Booch, G., Rumbaugh, J., Jacobson, I. (1997). Unified Modeling Language User Guide. Addison-Wesley.; Kolbe, TH., Grogër, G. (2003). Towards unified 3D city models, Schiewe, J., Hahn, M, Madden, M, Sester, M (eds): Challenges in Geospatial Analysis, Integration and Visualization, II. Proc. of Joint ISPRS Workshop, Stuttgart.; Kolbe, TH., Gröger, G. (2004). Unified Representation of 3D City Models. Geoinformation Science Journal, 4 (1).; Ambercore LIDAR (2008). A White Paper of Lidar Mapping [En línea] Disponible en: http://www.ambercore.com/files/TerrapointWhitePaper.pdfTest.; Díez, A., Arozarena, A., Orme-o, S., Aguirre, J., Rodríguez, R., Saenz, A. (2008). Integración y optimización de tecnologías y metodologías Lidar y fotogramétricas para la producción cartográfica. Proceedings of The international archives of the photogrammetry, remote sensing and spatial information sciences, ISPRS congress Beijing.; Mather, P.M. (1985). A computationally-efficient maximum-likelihood classifier employing prior probabilities for remotely-sensed data. International Journal of Remote Sensing, 6. http://dx.doi.org/10.1080/01431168508948456Test; Tso, B., Mather, P.M. (2001). Classification Methods for Remotely Sensed Data, Taylor &.Francis, Londres. http://dx.doi.org/10.4324/9780203303566Test; Rodríguez, R., Álvarez, M., Miranda, M., Díaz, A., Papí, F. (2011). Automatic Generation of 3D Virtual Cities from Lidar Data and High Resolution Images. Proceedings of Ist Panel Symposium Emerged/Emerging "disruptive" Technologies, Madrid.; Swain, P.H., Davis, S.M. (1978). Remote Sensing: The Quantitative Approach, McGraw-Hill, New York.; Strahler, A.H. (1980). The use of prior probabilities in maximum likelihood classification of remotely sensed data. Remote Sensing of Environment, 10: 135-163. http://dx.doi.org/10.1016/0034-4257Test(80)90011-5; Hutchinson, C.F. (1982). Techniques for combining Landsat and ancillary data for digital classification improvement. Photogrammetric Engineering and Remote Sensing, 48.; Lee, D. T., Schachter, B. J. (1980). Two Algorithms for Constructing a Delaunay Triangulation. Int. J. Computer Information Sci, 9.; Kada, M. (2007). 3D Building Generalisation by Roof Simplification and Typification. Proceedings of the 23th International Cartographic Conference, Moscu.; https://informesdelaconstruccion.revistas.csic.es/index.php/informesdelaconstruccion/article/view/2813Test

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    دورية أكاديمية

    المصدر: Informes de la Construcción; Vol. 63 No. 524 (2011); 83-99 ; Informes de la Construcción; Vol. 63 Núm. 524 (2011); 83-99 ; 1988-3234 ; 0020-0883 ; 10.3989/ic.2011.v63.i524

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    المصدر: Disparidades. Revista de Antropología; Vol. 60 No. 1 (2005); 5 ; Disparidades. Revista de Antropología; Vol. 60 Núm. 1 (2005); 5 ; 2659-6881 ; 10.3989/rdtp.2005.v60.i1

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