Development of an Instrument to Measure Perspectives of Engineering Education Among College Students

2008 ◽  
Vol 97 (1) ◽  
pp. 47-56 ◽  
Author(s):  
Qing Li ◽  
D. Betsy McCoach ◽  
Hariharan Swaminathan ◽  
Jiong Tang
Author(s):  
Xueping Zhang ◽  
Xijuan Liu

Aiming to address the methodology to explore and broaden college teachers’ international vision and horizon for engineering education of college students or engineers, this paper proposed an exploration framework based on Johari Window model. The framework of international vision exploration for teachers includes four zones: open/active vision, called Zone A; hidden/sleeping vision, called Zone B; blind/potential vision, called Zone C; and unknown/darkness vision, called Zone D. The four zones’ characteristics and formation mechanisms were generally analyzed, the corresponding driving forces were then identified in order to help transform teacher international vision within Zones B, C and D into Zone A. To provide the effective and feasible approach, several significant factors including culture tension, original vision conflict and pure curiosity for unknown were then determined in exploring and improving teacher’s international vision in terms of curiosity, inner creativity, potential vision, career development, and worldwide adaptability on engineering education evolution.


2012 ◽  
Vol 591-593 ◽  
pp. 2199-2202 ◽  
Author(s):  
Yang Fang Wu ◽  
Shu Li Sun ◽  
Hua Liu

Advanced CDIO engineering education philosophy, emphasizing the design of integrated curriculum plans. Traditional mechanical engineering plan is hard to be increased the curriculum content and hours. A "nexus" method is proposed in this paper, through the redistribution of the available time and resources to achieve integration curriculum plans. Theory mechanics as an important course of mechanical engineering discipline is described in detail to implement the “nexus” teaching method. The professional learning interests of students is improved effectively, the bad habit of "learn a new course, forget an old one" for the college students is changed to a certain extent.


2021 ◽  
Vol 5 (9) ◽  
pp. 10-15
Author(s):  
Tao Wu ◽  
Qian Wang ◽  
Shifang Wang

As there are numerous physics formulas in addition to them being theoretical, college students generally consider the concepts of physics as abstract, in which they are not able to apply what they have learned. For 3D dynamic animation and visualization in the teaching of college physics, VPyton has many advantages, and it provides useful exploration for students to overcome obstacles in college physics learning. Taking the teaching of simple harmonic vibration, optics, molecular thermal motion, and electric field as examples, this article discusses the application of VPython in the human-computer interactive teaching mode of college physics, which provides a beneficial exploration and new way to improve students’ engineering skills and numeracy, as well as to respond to the national “new engineering education” reform in China.


1996 ◽  
Vol 33 (02) ◽  
pp. 119-121
Author(s):  
Rachel A. Lamley

College students have the impression that education stops at the door of the classroom. However, in today's technically based society it is difficult for a student to master all the skills required of their profession in the classroom. Valuable experience can be gained outside the classroom through various work study programs. These programs allow students to work on realistic projects rather than on simplified classroom problems. This paper looks at various naval architecture and marine engineering related work study programs and a case example.


2021 ◽  
Vol 7 (5) ◽  
pp. 4144-4153
Author(s):  
Zhilong Zhao ◽  
Xinyang Xing

In order to improve the unstable operation of teaching system caused by data security, this paper puts forward the design of teaching system of track and field sports training course for college students majoring in electronic engineering education. This paper analyzes the demand of track and field sports training course for teaching system, and on this basis, adopts B / S architecture designs the physical architecture of the system, and designs a two-tier network architecture. According to the application requirements of the system architecture, the hardware environment with high memory is designed. The privacy homomorphism technology is used to encrypt the system data, and the blockchain technology is used to transmit the system data, so as to improve the security of the system data. The experimental results show that the design of the system in the process of operation.


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