Academic literature on the topic 'Civil engineering|Transportation'

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Journal articles on the topic "Civil engineering|Transportation"

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Turochy, Rod E., Jon Fricker, H. Gene Hawkins, et al. "Assessment of Introductory Transportation Engineering Course and General Transportation Engineering Curriculum." Transportation Research Record: Journal of the Transportation Research Board 2328, no. 1 (2013): 9–15. http://dx.doi.org/10.3141/2328-02.

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Transportation engineering is a critical subdiscipline of the civil engineering profession as indicated by its inclusion on the Fundamentals of Engineering Examination and overlap with other specialty areas of civil engineering and as recognized by TRB, ITE, and ASCE. With increasing transportation workforce needs, low numbers of students entering the pipeline, and limited hours within undergraduate civil engineering programs, it is important to ensure that civil engineering students receive adequate preparation and exposure to career opportunities in the transportation engineering field. Thus
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Bai, Yao, and Renliang Shan. "Symmetry in Civil Transportation Engineering." Symmetry 17, no. 2 (2025): 300. https://doi.org/10.3390/sym17020300.

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Petrescu, Relly Victoria Virgil, Raffaella Aversa, Antonio Apicella, and Florian Ion Petrescu. "Transportation Engineering." Engevista 19, no. 5 (2017): 1284. http://dx.doi.org/10.22409/engevista.v19i5.967.

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The shipments were absolutely necessary at all times, but still have polluted and damaged the environment. The technique of transport or the engineering of transport is the application of the principles of technology and scientific findings to the planning, design check, operation and plan management for any mode of transport, in order to ensure that the conditions of safety, efficiency, quick, comfortable and convenient, economic and environmentally compatible movement of persons and goods (transport). It is a sub-discipline for civil engineering. The importance of the transport engineering i
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Wang, Junjie, Jianhe Xie, and Yongliang Liu. "Sustainable Cementitious Materials for Civil and Transportation Engineering." Materials 16, no. 18 (2023): 6290. http://dx.doi.org/10.3390/ma16186290.

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The current Special Issue entitled “Sustainable Cementitious Materials for Civil and Transportation Engineering” aims to discuss current research on the preparation, characterization, and application of sustainable cementitious materials for civil and transportation engineering, with a special focus on the development of low-carbon construction materials [...]
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S., M. Shiyekar. "Civil Engineering Explained Part I: Introduction." ENTECH 2, no. 3 (2024): 24–26. https://doi.org/10.5281/zenodo.14851266.

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Civil engineering focuses on designing, building, and maintaining structures. These include buildings, roads, bridges, and dams. It&rsquo;s a diverse field with many job opportunities. It suits people who love solving problems and being creative. Civil engineering splits into many branches. Each branch of civil engineering specializes in different types of projects, including Civil Engineering Building projects. For instance, some of the major branches of civil engineering are: <strong>Structural Engineering:</strong> This branch deals with the design and construction of structures such as bui
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Dixon, Karen K. "Transportation Engineering & Planning." Journal of Transportation Engineering 127, no. 3 (2001): 268. http://dx.doi.org/10.1061/(asce)0733-947x(2001)127:3(268).

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Yao, Fei, Kangmin Hua, Donghan Zheng, et al. "Research on the Cooperative Education Mode of Civil Aviation Transportation Specialty under the Background of Emerging Engineering Education." International Journal of Education and Humanities 6, no. 3 (2023): 52–57. http://dx.doi.org/10.54097/ijeh.v6i3.4135.

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Under the background of Emerging Engineering Education, it has become an important part of engineering education to cultivate civil aviation transportation talents with strong engineering practice ability and innovation ability. This research takes the civil aviation transportation specialty as the research object, focuses on the fundamental task of establishing morality and cultivating people, explores the multiple collaborative education platform of universities, governments, enterprises and industries, realizes the educational connotation development of civil aviation transportation special
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Sarasua, Wayne A., and William J. Davis. "Addressing Educational Needs in Spatial Data, Information Science, and Geomatics in the Civil Engineering Undergraduate Curriculum." Transportation Research Record: Journal of the Transportation Research Board 1848, no. 1 (2003): 64–69. http://dx.doi.org/10.3141/1848-09.

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The technology-driven, rapidly advancing field of spatial data and information science (SDIS) is an integral part of numerous engineering professions. Many college civil engineering programs are struggling to find ways to accommodate this subject in an already crowded undergraduate curriculum. There are several reasons that taking a course in SDIS is desirable for civil engineers entering today’s demanding job market. First, technologies related to surveying, spatial data, and information science are among the fastest developing in the industry, and there is significant demand for skills in th
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MORI, Masamitsr. "Infrastructure Planning and Transportation Engineering Section, Dept. of Civil Engineering, Osaka University." Doboku Gakkai Ronbunshu, no. 377 (1987): 19–20. http://dx.doi.org/10.2208/jscej.1987.19.

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MASTUMOTO, Shoji, Teruhiko MARUYAMA, Keiichirou NAGASE, and Bunpei NAKAIDE. "Planning and transportation engineering sections, dept. of civil engineering, Nagaoka University Technology." Doboku Gakkai Ronbunshu, no. 425 (1991): 45–46. http://dx.doi.org/10.2208/jscej.1991.45.

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Dissertations / Theses on the topic "Civil engineering|Transportation"

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West, Megan E. "Investigating the Future of Transportation Engineering Education." The Ohio State University, 2019. http://rave.ohiolink.edu/etdc/view?acc_num=osu1566163576730166.

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Alireza, Gerayeli. "LAND USE AND TRANSPORTATION MODELING." Cleveland State University / OhioLINK, 2014. http://rave.ohiolink.edu/etdc/view?acc_num=csu1416342965.

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O'Berry, Arthur Dylan. "Transportation engineering assimilated livability planning using micro-simulation models for Southeast Florida." Thesis, Florida Atlantic University, 2015. http://pqdtopen.proquest.com/#viewpdf?dispub=1602494.

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<p>Transportation engineering has taken upon a new role; to empower the alternative modes of travel: walking, biking, and bus transit. In this new era, engineers are rethinking a network designed predominately for the automobile. The ultimate goal of this research is to create a process that can make a vehicle dominant corridor a desirable, livable thoroughfare by livability design and context sensitive performance measures. Balancing travel modes requires an account of vehicular traffic and the impact of reconfiguring existing conditions. The analysis herein is conducted by field data collect
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Alruwaished, Abdullah Faleh. "Characteristics of Drivers Who Cause Run-Off-Road-Crashes on Ohio Roadways." University of Dayton / OhioLINK, 2014. http://rave.ohiolink.edu/etdc/view?acc_num=dayton1406637831.

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Al, Ayaydah Hamza. "INNOVATIVE DESIGN STRATEGY INCORPORATING TEMPERATURE EFFECT ON THE PENNSYLVANIAN PAVEMENTS." Diss., Temple University Libraries, 2019. http://cdm16002.contentdm.oclc.org/cdm/ref/collection/p245801coll10/id/587920.

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Civil Engineering<br>Ph.D.<br>The effect of problematic soils and temperature on the asphalt concrete layers suitable for Pennsylvanian conditions on the design of pavements as applied to the state of the art design procedure have not been studied. Temperature has exponential effect on the asphalt stiffness. Asphalt stiffness has also exponential effect on the layer thickness. This study focuses on these important effects for the specific range of materials and environmental conditions that prevail in the state. The objective of this research is to develop an innovative design strategy capable
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Adhikari, Bikash. "Mechanical and Durability Characteristics of Fly Ash Based Soil-Geopolymer Mixtures for Road Base and Subbase Layers." Thesis, University of Louisiana at Lafayette, 2017. http://pqdtopen.proquest.com/#viewpdf?dispub=10287480.

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<p>In this research study, high plastic and medium plastic soils were used in evaluating the physical and mechanical properties of fly ash-soil Geopolymer mixtures. Sieve analysis and Atterberg limit tests were conducted to classify the soil. Class F fly ash, an industrial byproduct, was used in the alkaline environment of a mixture of sodium silicate and various concentration of sodium hydroxide to prepare fly ash based Soil-Geopolymer mixtures. The modified proctor test was conducted to investigate the moisture-density characteristics of mixtures. Based on literature search and preliminary e
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Adhikari, Sambodh. "Mechanical Properties of Soil-RAP-Geopolymer for the Stabilization of Road Base/Subbase." Thesis, University of Louisiana at Lafayette, 2017. http://pqdtopen.proquest.com/#viewpdf?dispub=10287493.

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<p>There can be environmental problems associated with using cement to stabilize soils. Thus, a substitute for cement in the stabilization of road base/subbase is desirable. A Geopolymer can be a good alternative for cement stabilization, as geopolymer produces fewer greenhouse gasses compared to cement. Soil-RAP-Geopolymer as road base and subbase material have been investigated in this research. The standard method of soil stabilization in Louisiana is soil-cement, hence 5% and 10% soil-cement was selected for the comparison. In addition to the physical and mechanical tests, the durability t
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He, Yi. "Safety Effectiveness Analysis of Roundabouts in Louisiana." Thesis, University of Louisiana at Lafayette, 2018. http://pqdtopen.proquest.com/#viewpdf?dispub=10683149.

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<p> Louisiana currently has 30 roundabouts in operation and hundreds of roundabouts in the planning and design stage. The Louisiana Department of Transportation and Development (DOTD) is very interested in knowing the safety performance of existing roundabouts in the state. </p><p> As revealed in this paper, the safety effectiveness of a roundabout depends on its prior traffic control type, conformity to the geometric design guidelines, changes in layout of intersection, and nighttime lighting conditions. All 19 roundabouts investigated by this study demonstrated significant reduction in inj
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LeBoeuf, Charles W. "Estimating Annual Average Daily Traffic for Non-State Roads in Louisiana." Thesis, University of Louisiana at Lafayette, 2015. http://pqdtopen.proquest.com/#viewpdf?dispub=1585862.

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<p> Average annual daily traffic (AADT) is important in transportation engineering and planning, and although the State of Louisiana collects AADT on a regular basis on state-maintained highways, most parishes and smaller municipalities do not have the resources to collect AADT frequently. Because the roads under the jurisdiction of parishes and municipalities account for three-fourths of the entire state road network, a practical method to estimated AADT must be developed. Before model development, previous studies into AADT estimation and their results are to be further analyzed. Roadway
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Wang, Fan. "Analyzing the Safety Impact of Crash-Prone Drivers in Louisiana." Thesis, University of Louisiana at Lafayette, 2014. http://pqdtopen.proquest.com/#viewpdf?dispub=1553870.

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<p>Crash-prone drivers should be effectively targeted for various safety education and regulation programs because their involvement in crashes presents a big adverse effect on highway safety. To improvement highway safety from the key element of transportation system, this research investigates crash-prone driver problem in Louisiana. Through analyzing the crash data of seven years from LADOTD, this study identifies the gravity of the problem and characteristics of crash-prone drivers and crashes they committed. </p><p> The analysis results show that quite a few drivers repeatedly had crash
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Books on the topic "Civil engineering|Transportation"

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Dong, Qiao, Xueqin Chen, Yin Gao, Jianying Hu, Xianhua Chen, and Guangji Xu, eds. Civil Engineering Materials for Transportation Infrastructure. Springer Nature Singapore, 2023. http://dx.doi.org/10.1007/978-981-99-1300-8.

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W, Stokes Robert, ed. Civil engineering, transportation engineering: Review for the breadth/depth exam in civil engineering. Engineering Press, 2000.

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International Conference on Civil, Transportation and Environmental Engineering (2012 Nanjing Shi, China). Advances in civil, transportation and environmental engineering. Edited by Guo, J., editor of compilation and Liu, Q., editor of compilation. WIT Press, 2013.

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Wright, Paul H. Transportation engineering: Planning and design. 4th ed. J. Wiley, 1998.

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Wright, Paul H. Transportation engineering: Planning and design. 3rd ed. Wiley, 1989.

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Ball, James T. The McGraw-Hill civil engineering PE exam depth guide: Transportation engineering. McGraw-Hill, 2001.

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Ball, James T. The McGraw-Hill civil engineering PE exam depth guide: Transportation engineering. McGraw-Hill, 2001.

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European Conference on Soil Mechanics and Geotechnical Engineering, 12th, Amsterdam, 1999. Geotechnical engineering for transportation infrastructure = La géotechnique dans les infrastructures de transport: Theory and practice, planning and design, construction and maintenance = théorie et pratique, projet et conception, construction et entretien: proceedings of the Twelfth European Conference on Soil Mechanics [...]. Balkema, 2000.

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Decký, Martin. Earth structures of transport constructions. Pearson, 2013.

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Voigt, Norman R. Six-minute solutions for civil PE exam transportation problems. 3rd ed. Professional Publications, Inc., 2008.

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Book chapters on the topic "Civil engineering|Transportation"

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Dong, Qiao, Xueqin Chen, Yin Gao, Jianying Hu, Xianhua Chen, and Guangji Xu. "Fundamentals of Civil Engineering Materials." In Civil Engineering Materials for Transportation Infrastructure. Springer Nature Singapore, 2023. http://dx.doi.org/10.1007/978-981-99-1300-8_1.

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Yusuf, Oluwaleke, Adil Rasheed, and Frank Lindseth. "Exploring Urban Mobility Trends Using Cellular Network Data." In Lecture Notes in Civil Engineering. Springer Nature Switzerland, 2025. https://doi.org/10.1007/978-3-031-69626-8_138.

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AbstractThe growth of urban areas intensifies the need for sustainable, efficient transportation infrastructure and mobility systems, driving initiatives to enhance infrastructure and public transit while reducing traffic congestion and emissions. By utilizing real-world data, a data-driven approach can provide crucial insights for urban mobility planning and decision-making. This study explores the efficacy of leveraging telecoms data from cellular network signals for studying crowd movement patterns, focusing on Trondheim, Norway. It examines routing reports to understand the spatiotemporal
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Dong, Qiao, Xueqin Chen, Yin Gao, Jianying Hu, Xianhua Chen, and Guangji Xu. "Asphalt." In Civil Engineering Materials for Transportation Infrastructure. Springer Nature Singapore, 2023. http://dx.doi.org/10.1007/978-981-99-1300-8_6.

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Dong, Qiao, Xueqin Chen, Yin Gao, Jianying Hu, Xianhua Chen, and Guangji Xu. "Inorganic Binding Materials." In Civil Engineering Materials for Transportation Infrastructure. Springer Nature Singapore, 2023. http://dx.doi.org/10.1007/978-981-99-1300-8_3.

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Dong, Qiao, Xueqin Chen, Yin Gao, Jianying Hu, Xianhua Chen, and Guangji Xu. "Inorganic Binder Stabilized Materials." In Civil Engineering Materials for Transportation Infrastructure. Springer Nature Singapore, 2023. http://dx.doi.org/10.1007/978-981-99-1300-8_5.

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Dong, Qiao, Xueqin Chen, Yin Gao, Jianying Hu, Xianhua Chen, and Guangji Xu. "Asphalt Mixture." In Civil Engineering Materials for Transportation Infrastructure. Springer Nature Singapore, 2023. http://dx.doi.org/10.1007/978-981-99-1300-8_7.

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Dong, Qiao, Xueqin Chen, Yin Gao, Jianying Hu, Xianhua Chen, and Guangji Xu. "Cement Concrete." In Civil Engineering Materials for Transportation Infrastructure. Springer Nature Singapore, 2023. http://dx.doi.org/10.1007/978-981-99-1300-8_4.

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Dong, Qiao, Xueqin Chen, Yin Gao, Jianying Hu, Xianhua Chen, and Guangji Xu. "Steel." In Civil Engineering Materials for Transportation Infrastructure. Springer Nature Singapore, 2023. http://dx.doi.org/10.1007/978-981-99-1300-8_8.

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Dong, Qiao, Xueqin Chen, Yin Gao, Jianying Hu, Xianhua Chen, and Guangji Xu. "Aggregates." In Civil Engineering Materials for Transportation Infrastructure. Springer Nature Singapore, 2023. http://dx.doi.org/10.1007/978-981-99-1300-8_2.

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Ma, Qirui, Xing Peng, and Congpeng Zhang. "Microscopic Investigation of Granular Materials in Filter Layer Based on LBM-DEM Method." In Lecture Notes in Civil Engineering. Springer Nature Singapore, 2024. http://dx.doi.org/10.1007/978-981-97-4090-1_30.

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AbstractSoil erosion is one of the most serious problems that threaten the safety of embankments and earth-rock dams. When water flows through the base soil, fine particles subjected to hydrodynamic action will be washed away, which will lead to internal erosion of the embankment project. The inverted filter structure is one of the effective methods to eliminate or reduce the risk of infiltration and erosion, with a history of nearly a century of engineering practice. This article is based on the three-dimensional LBM-DEM fluid solid coupling simulation method. By setting different particle si
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Conference papers on the topic "Civil engineering|Transportation"

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Santos, Bertha, Ana Virtudes, Jorge Gonçalves, and Shohel Amin. "MULTICULTURAL EDUCATION IN CIVIL ENGINEERING: PLANNING AND TRANSPORTATION APPROACH." In 10th International Conference on Education and New Learning Technologies. IATED, 2018. http://dx.doi.org/10.21125/edulearn.2018.1233.

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Patten, M. L., and J. M. Mason. "The transportation and civil engineering (TRAC) program: assessing its success." In Proceedings Frontiers in Education 1997 27th Annual Conference. Teaching and Learning in an Era of Change. IEEE, 1997. http://dx.doi.org/10.1109/fie.1997.636008.

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Che, Qiang, Chun Feng, and Tianchun Huang. "Civil-Military Collaboration in Humanitarian Logistics." In Third International Conference on Transportation Engineering (ICTE). American Society of Civil Engineers, 2011. http://dx.doi.org/10.1061/41184(419)532.

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Ming, Ouyang, Cai Hualong, Zhu Chengyu, and Binghao Tang. "Civil engineering professional certification management information system." In International Conference on Smart Transportation and City Engineering, edited by Zhengliang Li, Xiaoyan Chen, Kaichen Yan, Fengjie Cen, Liyuan Peng, and Nan Lin. SPIE, 2021. http://dx.doi.org/10.1117/12.2613722.

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hualong, cai, Ouyang Ming, Wang Hao, and Ma Zhiqiang. "Civil engineering process file information management system." In International Conference on Smart Transportation and City Engineering, edited by Zhengliang Li, Xiaoyan Chen, Kaichen Yan, Fengjie Cen, Liyuan Peng, and Nan Lin. SPIE, 2021. http://dx.doi.org/10.1117/12.2613749.

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Xiao, Yan, Guozhong Ma, Jian Liang, Qiuhong Jia, and Yun Wang. "The Recycling Logistic System Design of the Civil Waste for Chongqing." In First International Conference on Transportation Engineering. American Society of Civil Engineers, 2007. http://dx.doi.org/10.1061/40932(246)353.

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Zhang, Yue, Hua Qing Hu, and Dong Yuan Yang. "Operating Efficiency of China Civil Airports Based on Malmquist TFP Index." In First International Conference on Transportation Engineering. American Society of Civil Engineers, 2007. http://dx.doi.org/10.1061/40932(246)461.

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JOKANOVIC, IGOR, and MILICA PAVIC. "SUSTAINABILITY EDUCATION IN TRANSPORTATION INFRASTRUCTURE ENGINEERING PROGRAM." In IRASA International Scientific Conference. IRASA – International Research Academy of Science and Art, 2024. https://doi.org/10.62982/seti06.igjo.20.

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Road and railway engineering are pivotal in advancing transportation infrastructure, integrating civil engineering principles with modern transportation system complexities. This field’s research and education are essential for designing, constructing, and managing sustainable transportation networks, which are vital for the efficient movement of goods and people, driving economic growth, and maintaining regional connectivity. However, current engineering curricula often lack comprehensive education on sustainable practices, leaving graduates underprepared for future roles in promoting sustain
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Xu, Ruhang, and Lei Qin. "Civil engineering quality monitor framework based on information theory." In 5th International Conference on Civil Engineering and Transportation. Atlantis Press, 2015. http://dx.doi.org/10.2991/iccet-15.2015.110.

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Yevdokimov, Yuri. "Climate Change and Transportation." In International Conference on Civil, Structural and Transportation Engineering. Avestia Publishing, 2018. http://dx.doi.org/10.11159/iccste18.1.

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Reports on the topic "Civil engineering|Transportation"

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Lindgren, Roger, Charles Riley, and David Thaemert. Graduate-Level Civil Engineering Transportation Course Development – Oregon Tech. Portland State University Library, 2016. http://dx.doi.org/10.15760/trec.127.

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Balali, Vahid. System-of-Systems Integration for Civil Infrastructures Resiliency Toward MultiHazard Events. Mineta Transportation Institute, 2023. http://dx.doi.org/10.31979/mti.2023.2245.

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Civil infrastructure systems—facilities that supply principal services, such as electricity, water, transportation, etc., to a community—are the backbone of modern society. These systems are frequently subject to multi-hazard events, such as earthquakes. The poor resiliency of these infrastructures results in many human casualties and significant economic losses every year. An outline of a holistic view that considers how different civil infrastructure systems operate independently and how they interact and communicate with each other is required to have a resilient infrastructure system. More
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Bray, Jonathan, Ross Boulanger, Misko Cubrinovski, et al. U.S.—New Zealand— Japan International Workshop, Liquefaction-Induced Ground Movement Effects, University of California, Berkeley, California, 2-4 November 2016. Pacific Earthquake Engineering Research Center, University of California, Berkeley, CA, 2017. http://dx.doi.org/10.55461/gzzx9906.

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There is much to learn from the recent New Zealand and Japan earthquakes. These earthquakes produced differing levels of liquefaction-induced ground movements that damaged buildings, bridges, and buried utilities. Along with the often spectacular observations of infrastructure damage, there were many cases where well-built facilities located in areas of liquefaction-induced ground failure were not damaged. Researchers are working on characterizing and learning from these observations of both poor and good performance. The “Liquefaction-Induced Ground Movements Effects” workshop provided an opp
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