Particle.news

Download on the App Store

Mathematical Model Revolutionizes Bowling with Precision Trajectory Predictions

Researchers from top universities unveil a physics-based approach using Euler's formula to optimize bowling strategies, published today in AIP Advances.

The new modeling relies on a ubiquitous equation known as Euler's formula.
Jesus Quintana (John Turturro) licks a red bowling ball before throwing in a scene from The Big Lebowski
Image

Overview

  • A novel mathematical model leverages Euler's formula and differential equations to predict optimal bowling ball trajectories.
  • Developed collaboratively by researchers from Princeton, MIT, and other institutions, the model accounts for lane oil variability and ball surface asymmetries.
  • The model introduces a 'miss-room' calculation to accommodate human error, helping bowlers determine personalized targeting strategies.
  • Traditional experience-based and statistical methods are challenged by this physics-based approach, offering more precise insights into bowling dynamics.
  • The research, published in AIP Advances, is expected to impact training, equipment design, and competitive tournament planning significantly.