The mechanics of the squash nick shot

Fuente: arXiv
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Autores principales: Ravisankar, Mithun, Federle, Madeline, Bahadori, Mina, Das, Asimanshu, Kesari, Haneesh, Zenit, Roberto
Formato: Preprint
Publicado: 2025
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author Ravisankar, Mithun
Federle, Madeline
Bahadori, Mina
Das, Asimanshu
Kesari, Haneesh
Zenit, Roberto
author_facet Ravisankar, Mithun
Federle, Madeline
Bahadori, Mina
Das, Asimanshu
Kesari, Haneesh
Zenit, Roberto
contents Squash is a widely popular racket sport, practiced by millions of people worldwide, played inside a walled court. When played well, players can last for several minutes before the ball bounces twice on the floor. There is, however, an unanswerable shot. When the ball hits the nick between a vertical wall and the floor, under certain conditions, it rolls without any vertical bounce. We study this process experimentally. We determined that the ball must hit the vertical wall first at a narrow range of heights above the floor, but most importantly, it must touch the floor before finishing its rolling time on the vertical wall. When the rolling time is shorter than the contact time, the vertical momentum is canceled due to a mechanical frustration condition. This behavior is explained considering a contact model, which agrees with the experimental observations. We argue that this concept could be relevant to the design of rolling shock dampers with many possible practical applications.
format Preprint
id arxiv_https___arxiv_org_abs_2503_03906
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle The mechanics of the squash nick shot
Ravisankar, Mithun
Federle, Madeline
Bahadori, Mina
Das, Asimanshu
Kesari, Haneesh
Zenit, Roberto
Classical Physics
Soft Condensed Matter
Popular Physics
Squash is a widely popular racket sport, practiced by millions of people worldwide, played inside a walled court. When played well, players can last for several minutes before the ball bounces twice on the floor. There is, however, an unanswerable shot. When the ball hits the nick between a vertical wall and the floor, under certain conditions, it rolls without any vertical bounce. We study this process experimentally. We determined that the ball must hit the vertical wall first at a narrow range of heights above the floor, but most importantly, it must touch the floor before finishing its rolling time on the vertical wall. When the rolling time is shorter than the contact time, the vertical momentum is canceled due to a mechanical frustration condition. This behavior is explained considering a contact model, which agrees with the experimental observations. We argue that this concept could be relevant to the design of rolling shock dampers with many possible practical applications.
title The mechanics of the squash nick shot
topic Classical Physics
Soft Condensed Matter
Popular Physics
url https://arxiv.org/abs/2503.03906