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Building Measurement Devices with Students – From Hands-on to Minds-on

机译:与学生建立测量设备 - 从动手到思维

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Although the teaching of mechanics at advanced K12 levels often starts with a brief introduction to physical quantities and units, the nature and function of measurements in physics and their inherent uncertainty are hardly ever discussed. The laboratory is mainly used to illustrate the theoretical principles taught in class. This paper presents a project-based learning approach that aims to provide high school students with a sense of the nature and role of measurements in physics (units, uncertainty, etc.) as well as help them develop laboratory, data analysis, and scientific communication skills in a fun and engaging way. Each project involves the design, building, and calibration of a measurement device for a basic physical quantity (time, length, and mass). Each measurement device is made up of recycled materials (e.g., plastic bottles) and simple pieces of equipment available in any high school physics laboratory (e.g., springs). The students build the device, calibrate it, and write a detailed documentation that explains how it works, its specifications, and instructions for use. The students also present their work to peers and visitors. We describe five basic measurement devices, the scaffolding we used to help the students make the transition from the “arts and crafts” aspect of the work to its deeper scientific meaning, and different orchestrations for various classroom settings.
机译:虽然先进的K12水平的力学教导往往从物理量和单位的简要介绍,但物理学中测量的性质和功能几乎没有讨论。实验室主要用于说明课堂上教授的理论原则。本文提出了一种基于项目的学习方法,旨在为高中生提供物理(单位,不确定性等)的性质和作用的性质和作用,以及帮助他们开发实验室,数据分析和科学沟通技能以乐趣和吸引力的方式。每个项目涉及用于基本物理量的测量设备的设计,构建和校准(时间,长度和质量)。每个测量装置由再生材料(例如,塑料瓶)和任何高中物理实验室(例如,Springs)的简单设备组成。学生构建设备,校准它,并编写一个详细的文档,说明它是如何工作的,其规格和使用说明。学生还向同龄人和访客展示他们的工作。我们描述了五种基本测量设备,我们曾经帮助学生的脚手架从“艺术和工艺品”方面转变为其更深入的科学意义,以及各种课堂设置的不同协调。

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