Study on the Safeguard Measures of Civil Engineering "Outstanding Engineers" Training for New Colleges and Universities

2013 ◽  
Vol 671-674 ◽  
pp. 3253-3256
Author(s):  
Bao Yun Zhao ◽  
Lin Qing Huang

Establish a reasonable safeguard measures is one of the key factors for the successful training of the "outstanding engineers" in new colleges and universities. Aimed to solve the protection safeguard measures of "outstanding engineers" training for the new colleges and universities, in this paper a safeguards measures case of civil engineering "outstanding engineers" training program declare in Chongqing University of Science and Technology Chongqing was introduced systematically, and the organizational guarantee, teaching platform measure, teachers and funds etc safeguard measures of the "outstanding engineers" training were also discussed. we hope that this study can provide a advice or the references for the "outstanding engineers" training of new colleges and universities.

2013 ◽  
Vol 380-384 ◽  
pp. 2042-2045
Author(s):  
Ming Wei Qin ◽  
Bao Lin Hou ◽  
Ya Jun Liang ◽  
Yuan Cheng Yao

Laboratories of IoT Engineering are occupied an important position in education industry. This paper, with the goal of grasping developing tendency and improving the application ability and combined with the characteristics of the Internet of Things Engineering of Southwest University of Science and Technology (SWUST) which focused on the training of application-oriented talent, proposed the experimental teaching programs of the Internet of Things Engineering and completed the development of experimental teaching platform. Its significance lies: to improve the level of teaching and research, improve the application ability of students, promote students employment, and enhance the competitiveness of the school.


2018 ◽  
Vol 7 (2.12) ◽  
pp. 425
Author(s):  
M Balasubramanian ◽  
Senthil Selvan.S ◽  
V R.Prasath Kumar ◽  
Mahadevan S

In this study, the development of professionalism of undergraduate students of civil engineering is essential to face the challenges in the modern world and this study describes professional internship program for each semester in the civil engineering department at SRM Institute of Science and Technology. Based upon literature reviews of the professional internship program for each semester questionnaires are prepared and given to faculties, undergraduates of SRM Institute of Science and Technology and also get from the construction contractors, to predict issues in the traditional professional internship program. For undergraduates questionnaires consider weighted percentage of before and after professional internship program are Wb and Wa. The expert groups were utilized to planning, implementation, evaluation, and execution of the professional internship program at the SRM Institute of Science and Technology. An implementation of the professional internship program for each semester of undergraduate students of the civil engineering department at SRM Institute of Science and Technology. The outcomes obtained for civil engineering undergraduates are getting from valuable resources, that professional internship program for each semester is needed undergraduates to develop the carrier and gain knowledge and should create best civil engineers.   


2019 ◽  
Vol 224 ◽  
pp. 06002
Author(s):  
Andey Oleynik ◽  
Andrey Gribkov ◽  
Leonid. Chervyakov ◽  
Lubomir Dimitrov

This article is dedicated to the development of a conceptual model for diagnosing priority areas of science and technology of the Russian Federation. The basic principles of the formation of the model and an enlarged list of controlled indicators allow to conduct a comprehensive assessment of the status and development of priority areas of science and technology. . The description of instrumental forecasting methods and a generalized algorithm for identifying the key factors/parameters, which impede the development of the object of analysis and cause critical bottlenecks, has been presented.


2014 ◽  
Vol 1020 ◽  
pp. 15-20 ◽  
Author(s):  
Janina Adamus ◽  
Monika Gierzyńska-Dolna ◽  
Wilhelm Gorecki ◽  
Piotr Lacki

Civil engineering uses steel as one of the basic structural materials. Sheets play an important role among the steel products. Although steel sheets are relatively cheap and have good mechanical and technological properties, low resistance against corrosion poses a fundamental weakness. A solution to this problem is the use of galvanised or organic-coated steel sheets. Galvanising can be carried out by hot dipping (single structural parts) or continuous galvanising: electrolytic and hot-dip galvanising (sheets and strips or long products, such as: wires or pipes).In the paper steel sheets used in the civil engineering as structural parts or wall and roof cladding are discussed. A special attention is paid to corrosion resistance of the steel sheets. Some results of corrosion tests is presented. The tests were aimed at determination the corrosion resistance of hot-dip and electrolytic galvanised sheets. The influence of the galvanising technology and the relationship between the degree of material deformation and susceptibility to corrosion are given. Coating thickness and kind of the applied galvanising technology is pointed as the key factors affecting the corrosion resistance of galvanised sheets. It is highlighted that during the forming process of galvanised sheets (bending, sheet-metal forming) the zinc coating deforms more than the steel base, so its thickness decreases, and therefore the corrosion resistance of the final product decreases, too.


1999 ◽  
Vol 45 ◽  
pp. 417-435 ◽  
Author(s):  
Lord Chilver of Cranfield

Alfred Pugsley was one of the leading structural engineering scientists of his generation. Hebrought new concepts of scientific understanding to important areas of structural engineering. His perceptive observation and thought enabled him to make a lasting contribution to the understanding of key factors in designing safe structures. His early work was of great importance to aeronautics; in his later career he contributed significantly to modern civil engineering structures. During his long and fruitful life he made a unique contribution to our understanding of engineering structures, enabling engineers to approach the design of safe structures–both in aeronautics and civil engineering–in more rational and effective ways.


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