scholarly journals Enabling A Strong U.S. Engineering Workforce For Leadership Of Technology Development And Innovation In Industry: Setting A New Vision For Integrative Professional Graduate Education In Engineering Practice

2020 ◽  
Author(s):  
Donald Keating ◽  
Thomas Stanford ◽  
John Bardo ◽  
Eugene DeLoatch ◽  
Duane Dunlap ◽  
...  
2013 ◽  
Vol 671-674 ◽  
pp. 1928-1931
Author(s):  
Yong Ye ◽  
Lei Tan

Asphalt concrete is a viscoelastic multiphase porous material consisting of asphalt, aggregates and mineral filler. The composite has good flexibility, durability and impervious properties, usually as an impervious body of hydraulic structures. Technology characteristics of the asphalt concrete impervious panel is summarized and the key of the structure design is reviewed according to the specification. Combining with engineering practice, research results provide a useful reference for the technology development and application of asphalt concrete impervious panel.


1997 ◽  
Vol 74 (5) ◽  
pp. 525 ◽  
Author(s):  
Jason A. Cody ◽  
Michael E. Hageman

2011 ◽  
Vol 271-273 ◽  
pp. 1864-1867
Author(s):  
Ying Qing Wu

Research capacity of an engineering graduate student is significant guarantee and support for national science and technology development. Because of the variation of graduate recruitment policies and national requirements, a new teaching method is in urgent need. A teaching method proposed in this paper, use case-based learning as a starting point, not only helps students think independently but also trains all-round abilities like communication, collaboration, presentation etc.


2016 ◽  
Vol 5 (1) ◽  
pp. 1
Author(s):  
Tianqi Yang ◽  
Lihui Liao

All above<strong> </strong>this paper is to give the BIM scientific definition, describes the BIM six technical characteristics and points out the essence of BIM Technology, creatively put forward the mature styling BIM seven technical standards, depicting the BIM Technology Development Tools, and other technical fusion development realize the feasibility of the technical route, show the BIM building life cycle management strategies and methods based on, from the two dimensions of qualitative and quantitative, symbiosis is the example of the fused BIM Technology and energy consumption analysis tool. In the realization of green, smart and sustainable design BIM technology advantages to focus attention, the article finally, the BIM technology in China's engineering practice in the application of the prospects for the future.


2016 ◽  
Vol 5 (1) ◽  
pp. 1 ◽  
Author(s):  
Tianqi Yang ◽  
Lihui Liao

All above<strong> </strong>this paper is to give the BIM scientific definition, describes the BIM six technical characteristics and points out the essence of BIM Technology, creatively put forward the mature styling BIM seven technical standards, depicting the BIM Technology Development Tools, and other technical fusion development realize the feasibility of the technical route, show the BIM building life cycle management strategies and methods based on, from the two dimensions of qualitative and quantitative, symbiosis is the example of the fused BIM Technology and energy consumption analysis tool. In the realization of green, smart and sustainable design BIM technology advantages to focus attention, the article finally, the BIM technology in China's engineering practice in the application of the prospects for the future.


2019 ◽  
Vol 27 (2) ◽  
pp. 69-73
Author(s):  
Pavel Fobel ◽  
Tomáš Forgon ◽  
Monika Klimentová Fobelová

Abstract The issue of innovation has also been pursued in social sciences and subsequently specifically in the field of application of socio-scientific knowledge. It is not just about professional engineering ethics but we perceive it in a complex and wider social context. Doing good as well as good practice are more than the professional code of ethics or an effort for technical or managerial excellence. Innovative changes should not be parameterized solely by economic efficiency or performance. With regard to new knowledge and technology development, their ethical aspects become more important and focus more on good life. In the context of social sciences with interdisciplinary trends, applied ethics and its subdisciplines (professional ethics, business ethics, ethics of science and research) can take over and play an important practical role. Innovative processes are increasingly becoming the focus of applied ethics, especially in terms of ethical risks. Our mission is to offer an interdisciplinary view of innovation as discussed in the ethics aspect. Based on these considerations, we conclude that ethics need to be integrated into individual innovation processes and adopted as an important condition for eliminating (mitigating) social risks. In our theoretical considerations we offer a view of the scientific risks and forms of prevention related to innovative change in important areas including engineering practice or health protection.


Author(s):  
Simon Thomas

Trends in the technology development of very large scale integrated circuits (VLSI) have been in the direction of higher density of components with smaller dimensions. The scaling down of device dimensions has been not only laterally but also in depth. Such efforts in miniaturization bring with them new developments in materials and processing. Successful implementation of these efforts is, to a large extent, dependent on the proper understanding of the material properties, process technologies and reliability issues, through adequate analytical studies. The analytical instrumentation technology has, fortunately, kept pace with the basic requirements of devices with lateral dimensions in the micron/ submicron range and depths of the order of nonometers. Often, newer analytical techniques have emerged or the more conventional techniques have been adapted to meet the more stringent requirements. As such, a variety of analytical techniques are available today to aid an analyst in the efforts of VLSI process evaluation. Generally such analytical efforts are divided into the characterization of materials, evaluation of processing steps and the analysis of failures.


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