arXiv · 2007.08706
Simple Model of a Standing Vertical Jump
Abstract
In this paper we use Newton's 3rd law to deduce the simplest model of an object that can perform a standing vertical jump -- a two-segmented object with an initial constant repulsive force between the segments, followed by an abrupt attractive force. Such an object, when placed on a sturdy ground, will jump, and the motion can be calculated using only the constant acceleration equations, making the example suitable for algebra-based physics. We then proceed to solve for the motion of an n-segmented object, and determine the optimal number of segments for jumping. We then discuss a few similarities and differences of this simple model from jumping robots and jumping humans, and then conclude by arguing the model's pedagogical merits.
Explore related subjects
Keep this discovery
Chris L. Lin. 2020-07-17. Simple Model of a Standing Vertical Jump. https://doi.org/10.1088/1361-6404/abc85f
Cite the original work for its findings. Save a collection to share your selection of sources.