A 3d plot of four particles with randomly assigned mass, charge, and spin using the _particle function. The _electric_field method is called on each particle with random values for the x, y, and z coordinates and a time variable generated using np.linspace.

Here you guys dont believe me, believe the openai you worship, Particle physics and wave physics are two different fields of physics that use different mathematical and theoretical frameworks to describe and analyze physical phenomena. While both fields are rooted in the same underlying principles of quantum mechanics, they focus on different aspects of the behavior of matter and energy.
Particle physics is concerned with the study of subatomic particles, their interactions, and the fundamental forces that govern their behavior. This field uses mathematical frameworks such as quantum field theory and the standard model to describe the behavior of particles at the subatomic level.
On the other hand, wave physics is concerned with the study of waves, such as electromagnetic waves and sound waves, and their properties and behavior. This field uses mathematical frameworks such as wave equations and Fourier analysis to describe the behavior of waves.
While there are some areas where the two fields overlap, such as in the study of wave-particle duality and the behavior of particles at high energies, in general, the mathematical and theoretical tools used in particle physics are not directly applicable to wave physics, and vice versa.
Thus, to accurately model and analyze wave phenomena, it is necessary to use the appropriate mathematical and theoretical frameworks developed specifically for wave physics.

/r/ParticlePhysics Thread Link - reddit.com