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How Under-Graduates Could Benefit from Graduate Courses in Electronic Engineering

机译:毕业生如何从电子工程中的研究生课程中受益

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Micro- and nanoelectronics are extremely rapidly evolving fields, which involve interdisciplinary knowledge in such diverse fields as physics, chemistry, electronic engineering and computation. Hence, especially in under-graduate electrical engineering courses with a broad curriculum, future engineers are only poorly prepared to enter one of the world's largest professional markets. Therefore, it is desirable to involve undergraduates in activities offered by more specialized graduate programs in electronic engineering. Here the experience with a model developed at Purdue university is reported. Instead of written exams, graduate students develop educative computational applications about emerging fields in micro- and nanoelectronics to obtain their module grade. The developed applications could be used in under-graduate classes and could be even graded by freshmen. Both would serve to involve under-graduates in early stages of their academic career and would amplify the educator's reach. Examples of tools developed during an one semester microelectronics class are given.
机译:微电子和纳米电子是极快的不断发展的领域,这涉及在这种不同领域中的跨学科知识,作为物理,化学,电子工程和计算。因此,特别是在课程中的毕业生电气工程课程中,未来的工程师只准备进入世界上最大的专业市场之一。因此,希望涉及在电子工程中更专业的研究生课程提供的活动中的本科生。在这里,据报道了在普渡大学开发的模型的经验。研究生而不是书面考试,而是为微电子和纳米电子学中的新兴领域开发教育计算应用,以获得其模块等级。开发的应用程序可用于毕业生课程,甚至可以通过新生分级。两者都将参与其学术职业生涯的早期阶段的毕业生,并会扩大教育者的范围。给出了在一个学期微电子类过程中开发的工具的示例。

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