首页> 外文会议>International Technology, Education and Development Conference >(2092) 3D PRINTING IN SCIENCE AND ENGINEERING EDUCATION. A BEST-PRACTICE: STUDYING, DESIGNING AND 3D PRINTING AN OPERATIONAL MODEL OF A 2100 YEAR-OLD COMPUTER, THE ANTIKYTHERA MECHANISM
【24h】

(2092) 3D PRINTING IN SCIENCE AND ENGINEERING EDUCATION. A BEST-PRACTICE: STUDYING, DESIGNING AND 3D PRINTING AN OPERATIONAL MODEL OF A 2100 YEAR-OLD COMPUTER, THE ANTIKYTHERA MECHANISM

机译:(2092)科学与工程教育的3D印刷。最好的实践:学习,设计和3D印刷2100岁计算机的运营模型,抗视网膜机制

获取原文

摘要

3D printing technology is an established industrial practice for rapid prototyping and manufacturing across a range of products, components and commercial sectors and at the same time possesses great potential for every-day life applications to be invented, explored and developed by the coming generations of scientists and engineers. A 3D printer installed in a school setting and complemented by well-designed educational activities can: stimulate the interest and curiosity of students; engage and motivate them into studying science, technology, engineering and mathematics (STEM) subjects, that they may choose or consider as career options; give the opportunity to teachers to achieve content and concept learning in an innovative way. In this paper we present an interdisciplinary science course that was developed for high school students and was implemented in an actual science classroom. The objectives of the course were both to spark the interest and creativity of students and teach them certain curriculum units the content knowledge of which is reached or utilized in an unconventional way. Students are gradually introduced into the 3D printing technology, its application and potential and are assigned a challenging collaborative project in which they have to study, analyse, design and build, using the 3D printer of their school, an operational model of a renown ancient artefact, the so-called Antikythera Mechanism. The mechanism is a 2100 year-old computer and is internationally known as an artefact of unprecedented human ingenuity and scientific, historic and symbolic value. The course involves the teaching of STEM curriculum domains of physics, astronomy, mathematics/geometry, informatics and technology related content and also non-STEM subjects like history and Greek language, both ancient and modern. We give an overview of the course, discuss its various phases and highlight its outcomes.
机译:3D打印技术是快速原型制造在一系列的产品,零部件和商业部门,并在同一时间成立的工业实践的每一天的生活中的应用被发明,探索和开发的科学家的子孙后代拥有巨大潜力和工程师。安装在学校设置一个3D打印机,并通过精心设计的教育活动,可以补充:激发学生的学习兴趣和求知欲;吸引和激励他们到学习科学,技术,工程和数学(STEM)学科,他们可能会选择或考虑作为职业选择;给机会给老师,以实现以创新的方法内容和概念学习。在本文中,我们提出这是为高中学生开发并在实际的科学教室开始实施一个跨学科的科学课程。本课程的目的是既要激发学生的学习兴趣和创造力,并教给他们一定的课程单位达到或以一种非常规的方式使用其内容的知识。学生们逐渐导入3D打印技术,它的应用和潜力和分配中,他们必须研究一个具有挑战性的合作项目,分析,设计和建设,利用他们学校的3D打印机,著名古代人工制品的运作模式,所谓的安提凯希拉机制。该机制是2100年的旧电脑,并在国际上被称为史无前例的人类智慧和科学,历史和象征价值的假象。课程涉及物理学,天文学,数学/几何,信息和技术的相关内容,也非STEM科目,如历史,希腊语,既古老又现代的STEM课程领域的教学。我们给课程的概述,讨论它的各个阶段,并强调其成果。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号