将复杂性融入高中学生的计算营——德州农工大学暑期计算学院项目报告

Dhruva K. Chakravorty, Marinus Pennings, Hong-gang Liu, Xien Thomas, D. M. Rodriguez, L. Pérez
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引用次数: 6

摘要

面向高中生的计算机夏令营正迅速成为全国各地高性能计算中心和计算机科学系的主要活动。在这些难民营中发展教育的复杂性仍然是一个挑战。在此,我们提出一份关于实施这一计划的报告。夏季计算学院(SCA)是一个为期一周的网络培训项目,由德克萨斯A&M大学的高性能研究计算(HPRC)为高中生提供。TAMU)。夏季计算学院有效地利用云计算范式、人工智能技术以及树莓派微控制器和传感器来展示“计算思维”。该计划沉浸在备受好评的教学法中;在不断评估的基础上改进教育方法是促成其成功的一个关键因素。课程中包含的动手练习得到了家长和学生的好评。夏令营项目在经济上自给自足,并通过包括不同群体的学生,成功地扩大了未被充分代表的群体对计算机的参与。SCA项目中的模块可以相对容易地在其他机构实施,并促进全国范围内的网络培训工作。
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Incorporating Complexity in Computing Camps for High School Students – A Report on the Summer Computing Academy Program at Texas A&M University
Summer computing camps for high school students are rapidly becoming a staple at High Performance Computing (HPC) centers and Computer Science departments around the country. Developing complexity in education in these camps remains a challenge. Here, we present a report about the implementation of such a program. The Summer Computing Academy (SCA) at is a weeklong cybertraining1 program offered to high school students by High Performance Research Computing (HPRC) at Texas A&M University (Texas A&M; TAMU). The Summer Computing Academy effectively uses cloud computing paradigms, artificial intelligence technologies coupled with Raspberry Pi micro-controllers and sensors to demonstrate “computational thinking”. The program is steeped in wellreviewed pedagogy; the refinement of the educational methods based on constant assessment is a critical factor that has contributed to its success. The hands-on exercises included in the program have received rave reviews from parents and students alike. The camp program is financially self-sufficient and has successfully broadened participation of underrepresented groups in computing by including diverse groups of students. Modules from the SCA program may be implemented at other institutions with relative ease and promote cybertraining efforts nationwide.
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