关于计算机模拟在电气和生物医学工程专业本科课程中的应用的说明

H. Nieto-Chaupis
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引用次数: 0

摘要

计算模拟在物理等基础科学、应用科学和工程中都发挥了重要作用。尽管仿真主题可能是相关的,但大多数都没有明确提出作为一门独立的课程。例如,在物理课程中,模拟是盖普斯通项目和去年课程的一部分。进行计算模拟的基本思想是预测实验的预期结果,或者测试理论形式,从而得到预期的新结果。本文对电气工程专业三、四年级的天线类课程的仿真能力进行了分析。事实上,我们通过一个例子提供了新理论和模拟的结合可以提供应用于生物医学工程项目中的纳米医学的新技术。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A note about the usage of the computational simulation in the undergraduate courses in the programs of electrical and biomedical engineering
Computational simulation has played a relevant role in basics sciences as physics, also in applied sciences and engineering. Despite of the fact that the simulation topics might be relevant, most of them are not explicitly proposed as an independent course. For example in physics program the simulation has been part of the cap stone project and last year courses. The idea fundamental of making a computational simulation is that of anticipating the expected results of experiments, or also to test theoretical formalisms by which is expected novel results. In this paper, we analyze the capabilities of the simulation in courses like antennas which is a course of third and fourth year of the program of electrical engineering. Indeed, we provide through one example that the combination of new theories and simulation can provide novel techniques applied to nanomedicine inside the program of biomedical engineering.
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