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The Spiderwheel - a new apparatus to demonstrate energy conservation and moment of inertia.

机译:蜘蛛侠 - 一种展示节能和转动惯量的新设备。

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摘要

Rotational and rolling motion often proves to be a difficult topic for undergraduate students in their mechanics courses. A number of demonstrations have been developed but often these rely on switching the rolling object with another in order to vary the mass or radius, and so the students see the entire rolling system change rather than the specific property in question. In this work a new apparatus, known as the spiderwheel, is described which allows large changes in mass distribution (and hence moment of inertia) without anything being added to or removed from the rolling body. A quantitative analysis of the rolling spiderwheel allows students to determine the moment of inertia of the body and compare it with model systems, namely a point-mass (that is, a particle with non-zero mass rotating about a fixed axis), a solid cylinder and a thin rigid hoop. Despite the spiderwheel being a non-ideal system in that it has a complex geometry with less symmetry and multiple components compared to the aforementioned model systems, it is found that the simple point-mass model provides an excellent approximation. Furthermore students in an undergraduate course were asked to predict the effect of moving the masses further from the axis of rotation, and the majority incorrectly predicted a faster roll down the ramp (in line with more comprehensive studies on these misconceptions1. The spiderwheel is a simple yet versatile model for visualising difficult concepts in rotational motion. Students can consolidate their understanding of these concepts by altering the parameters of the spiderwheel and directly observing the effects on rotational and translational velocity.
机译:旋转和滚动运动通常被证明是力学课程中大学生难上的话题。已经开发了许多演示,但通常这些演示依靠切换滚动对象来改变质量或半径,因此学生可以看到整个滚动系统的变化,而不是所讨论的特定属性。在这项工作中,描述了一种新的装置,称为“飞轮”,该装置可以使质量分布(以及因此而产生的惯性矩)发生较大变化,而无需在滚动体上添加或移除任何东西。滚动的飞轮的定量分析使学生可以确定身体的惯性矩,并将其与模型系统(即点质量(即,质量为零且绕固定轴旋转的粒子))进行比较。圆柱体和细的刚性箍。尽管蜘蛛轮是非理想的系统,因为与上述模型系统相比,它具有复杂的几何形状,较少的对称性和多个分量,但发现简单的点质量模型提供了极好的近似。此外,要求本科生的学生预测将质量从旋转轴移得更远的效果,而大多数人错误地预测了更快地滑下坡道(与对这些误解的更全面研究一致)1。可视化旋转运动中困难概念的通用模型,学生可以通过更改砂轮的参数并直接观察对旋转和平移速度的影响,巩固对这些概念的理解。

著录项

  • 作者

    Mears M.;

  • 作者单位
  • 年度 2015
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
  • 中图分类
  • 入库时间 2022-08-31 16:18:32

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