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Teaching non-linear dynamics through educational kits: Demo of memristor circuit kit

机译:通过教育工具包教授非线性动力学:忆阻器电路工具包演示

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Summary form only given. Education has been rated by Nobel laureate Prof. R. E. Smalley as one of the top ten challenges to be faced by humanity in the next 50 years. Many attempts have been made by several researchers and policy makers to address the issue of effective education. T. Grotzer from Harvard Graduate School of Education (HGSE) emphasized that the teachers, along with teaching scientific skills, encourage students to locate opportunities and apply those skills at appropriate situations. Similarly, Nobel laureate Prof. Carl Wieman proposed the use of scientific approach to science learning. He has argued in that understanding of the concepts as well as retention by students is much more effective if a student is involved with the class rather than being a passive listener. He also recommended the use of educational circuit kits to have a better impact on the students. After the recent discovery of memristor, many researchers including Prof. Leon Chua and Dr. Stan Williams recommended the need of introducing memristor to high school students. A similar argument was made in, where the authors recommended introducing chaos theory to high school students. The present demo aims to introduce the researchers and teachers with plug and play circuit kit of memristor. The memristor kit can greatly help students of nano-technology involved in understanding this recently discovered device. In fact, Valparaiso community schools recently started a program to introduce nano technology, including memristor, to talented elementary school children. The present memristor kit can be highly beneficial to such initiatives. At 2nd Memristor and Memristive Systems Symposium (CNNA 2010), the present demo would attempts to attract the attention of both high school science teachers to understand the use of such kits for their students as well as researcher active in the field of memristor based designs.
机译:仅提供摘要表格。诺贝尔奖获得者R. E. Smalley教授将教育评为未来50年人类面临的十大挑战之一。几位研究人员和政策制定者为解决有效教育问题进行了许多尝试。哈佛教育研究生院(HGSE)的T. Grotzer强调说,教师除了教授科学技能外,还鼓励学生寻找机会并在适当的情况下运用这些技能。同样,诺贝尔奖获得者卡尔·维曼教授提出了使用科学方法进行科学学习的建议。他认为,如果学生参与课堂学习而不是被动倾听,那么对概念的理解以及对学生的保留会更加有效。他还建议使用教育电路套件,以对学生产生更好的影响。在最近发现忆阻器之后,包括Leon Chua教授和Stan Williams博士在内的许多研究人员建议有必要向高中学生介绍忆阻器。提出了类似的论点,作者建议向高中学生介绍混沌理论。本演示旨在向研究人员和教师介绍忆阻器的即插即用电路套件。忆阻器套件可以极大地帮助涉及纳米技术的学生了解这种新近发现的器件。实际上,瓦尔帕莱索社区学校最近启动了一项计划,向有才华的小学生介绍包括忆阻器在内的纳米技术。本忆阻器套件可对此类计划非常有益。在第二届忆阻器和忆阻系统专题讨论会(CNNA 2010)上,本演示将试图吸引高中理科教师的注意力,以便他们的学生以及活跃于忆阻器设计领域的研究人员了解此类套件的使用。

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