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EDUCATING THE ENGINEER OF 2020: ADAPTING ENGINEERING EDUCATION TO THE NEW CENTURY

机译:教育2020年的工程师:将工程教育适应新世纪

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This work is the result of an initiative of the of some teachers of Engineering that attempts to prepare for the future of engineering by asking the question, “What will or should engineering education be like today, or in the near future, to prepare the next generation of students for effective engagement in the engineering profession in 2020?” It accepts as a given that, first and foremost, engineering education must produce technically excellent and innovative graduates, but it does not attempt to define a “core” curriculum, recognizing that individual institutions need to design their own. It asks, rather, how to enrich and broaden engineering education so that those technically grounded graduates will be better prepared to work in a constantly changing global economy. It notes the importance of improving the recruitment and retention of students, and making the learning experience more meaningful to them. It discusses the value of considering changes in engineering education in the broader context of enhancing the status of the engineering profession and improving the public understanding of engineering. Although the paper comments on education beyond the baccalaureate, its primary focus is undergraduate education, not the academic engineering research enterprise. The success of academic engineering research is undeniable. It helped shape this nation's industrial capabilities and it continues to do so in an increasing degree as more complex products and systems based on advanced technologies are emerging in the marketplace and in the social and economic infrastructure. Many of the most hi-tech companies have been spun off from university research. The end of the Cold War and the shift from defense work has put pressure on university research to accept funding from industry for shorter term product- or process-oriented research. Meanwhile, industry has decreased its own in-house fundamental engineering research, making it even more important that universities conduct advanced basic research. Thus, this is a part of the engineering education infrastructure that must be preserved, but, at the same time, it must not lead to the neglect of the undergraduate engineering education experience. Indeed, if domestic engineering students are energized by their undergraduate education experience, it will enhance the possibility that they will be retained and graduate as engineers and aspire to advanced degrees through the academic engineering research enterprise. This report is intended to begin a dialog about reinventing engineering education, but it makes recommendations that are broader than the curricular challenges. In the spirit of considering engineering education as a system and as part of a system of systems, consideration is given herein to important factors such as improving the public's understanding of engineering, its technological literacy, and education, which can have an important but indirect effect on engineering in terms of encouraging students to consider an engineering education and preparing them intellectually so that an engineering education is accessible to them.
机译:这项工作是一项倡议通过提出问题,试图为工程的未来做准备,“今天将或者应该在不久的将来,或者在不久的将来,或者在不久的将来,以便在不久的将来,或者在不久的将来,以便在不久的将来进行准备,这项工作是一项试图为工程的未来做好准备。在2020年的工程专业中生成学生的生成?“它作为鉴于这一点,首先和最重要的,工程教育必须生产技术上优秀和创新的毕业生,但它并没有试图确定“核心”课程,认识到个人机构需要设计自己。它要求,相反,如何丰富和拓宽工程教育,以便在经济不断变化的全球经济中更好地准备工作,以便更好地准备好的毕业生。它指出了改善学生招聘和保留的重要性,并使学习经历对他们更有意义。它讨论了考虑更广泛背景下的工程教育变化的价值,加强工程专业地位,提高公众对工程的理解。虽然论文评论了Baccalaureate超越的教育,但其主要重点是本科教育,而不是学术工程研究企业。学术工程研究的成功是不可否认的。它帮助塑造了这个国家的工业能力,并且在越来越多的程度上继续这样做,随着基于先进技术的更复杂的产品和系统在市场和社会和经济基础设施中出现。许多最高科技公司都脱离了大学研究。冷战结束和国防工作的转变对大学研究施加压力,以接受行业的资金,以获得更短的产品或以过程为导向的研究。与此同时,行业已降低其自身内部基础工程研究,使大学进行先进的基础研究。因此,这是必须保存的工程教育基础设施的一部分,但同时,它不能导致忽视本科工程教育经验。事实上,如果国内工程学生通过本科教育经验充满活力,它将提高他们将保留和毕业的可能性,作为工程师,并通过学术工程研究企业渴望高级程度。本报告旨在开始对重新监视工程教育的对话框,但它提出了比课程挑战更广泛的建议。本着将工程教育视为一个系统的精神,作为系统系统的一部分,在此考虑到提高公众对工程的理解,技术识字和教育等重要因素,这可能具有重要但间接效应在鼓励学生考虑工程教育并在智力编制方面的工程方面,使工程教育能够对其进行准备。

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