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Interdisciplinary engineering education: a problem-oriented approach

机译:跨学科工程教育:面向问题的方法

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It seems that there is the paradox in the title. Interdisciplinarity and only one problem being solved are the neighbors. The answer is contained in the complexity of modern technological and engineering problems: it is impossible to teach completely all the scientific disciplines concerning such a problem, but it is very useful to learn that in a concrete binding example. The authors have applied such an approach to the problem of computer-aided optical interferometry in the educational course "Computer information and Control Systems" and obtained promising results. In the comparably short course the basic principles of physical and quantum optics, noise theory, analog signal processing, A/D conversion, and digital signal processing based on modern applied mathematical methods are taught with special attention being paid to human-machine interfaces. Methodically they have used lectures, seminars and specially problem-oriented lab works. The main results are: more effective learning of the basic disciplines in the solution process of the realized main problem and simultaneously good skills of experience.
机译:似乎标题中有悖论。跨学科和只解决一个问题是邻居。答案包含在现代技术和工程问题的复杂性中:不可能完全教导关于此类问题的所有科学学科,但在具体的绑定例子中学习是非常有用的。作者对教育课程“计算机信息和控制系统”中的计算机辅助光学干涉学问题应用了这种方法,并获得了有前途的结果。在相对的短暂过程中,基于现代应用数学方法的物理和量子光学,噪声理论,模拟信号处理,A / D转换和数字信号处理的基本原则,具有特别注意的人机接口。有条不紊地,他们使用了讲座,研讨会和特殊问题的实验室工作。主要结果是:在解决主要问题的解决过程中更有效地学习基本学科,同时良好的经验技能。

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