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Revisiting the Velocity Selector Problem with VPython

机译:用VPython重新探讨速度选择器问题

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摘要

The velocity selector is a classic first-year physics problem that demonstrates the influence of perpendicular electric and magnetic fields on a charged particle. Traditionally, textbooks introduce this problem in the context of balanced forces, often asking for field strengths that would allow a charged particle, with a specific target velocity, to pass through the field region with constant velocity. While this analysis is quite useful from a pedagogical perspective, especially for checking to see if students remember their Newtonian mechanics from first semester, it is just one meaningful application of the velocity selector. In fact, a recent conversation with the author's physics class yielded an important question: What is the shape of a particle's path whose initial velocity does not match the target velocity? While the class was in agreement that the path would be "curved," they were at a loss for more detail. Solving this problem analytically can be difficult, especially for introductory physics students, given that the direction and magnitude of the magnetic force (and by extension, the particle's acceleration) change in time.
机译:速度选择器是经典的一年级物理问题,它证明了垂直电场和磁场对带电粒子的影响。传统上,教科书在平衡力的情况下引入了此问题,通常会要求提供具有特定目标速度的带电粒子以恒定速度通过场区域的场强。尽管从教学的角度来看,这种分析非常有用,特别是对于检查学生是否从第一学期起就记住了牛顿力学的情况而言,但这只是速度选择器的一个有意义的应用。实际上,最近一次与作者的物理课的对话产生了一个重要的问题:其初始速度与目标速度不匹配的粒子路径的形状是什么?当班上的学生同意将路径“弯曲”时,他们不知所措。鉴于磁力的方向和大小(进而扩展为粒子的加速度)会随时间变化,因此解析地解决该问题可能非常困难,尤其是对于入门物理学的学生。

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