Isospin Conservation! Atomic Nucleus Liquid Drop Model! The Core Theory of Uranium Fission! Stuns the Entire Audience!
Pauli's Neutrino Hypothesis immediately demonstrated the supreme stature of the Bruce Conference!
This was yet another discovery capable of shaking the physics world!
Yet the great minds wore faintly bitter smiles.
Because the complexity of the Weak Force far exceeded everyone's imagination.
The Strong Force involved only two kinds of particles, the Proton and the Neutron, while the Weak Force involved four.
So everyone instinctively believed that the Weak Force had to be far more difficult than the Strong Force.
After all, The Three-Body Problem was countless times more complex than a two-body problem.
Yet in truth, the Strong Force was stranger than the Weak Force.
After a round of discussion, Pauli happily returned to his seat.
The questions from the great minds had just given him fresh insights. Once he returned, he could further refine his Neutrino Hypothesis.
At that moment, Langevin said:
"Next, let us welcome Professor Heisenberg from Leipzig University in Germany."
Heisenberg rose to his feet and walked onto the stage. He first nodded to the crowd, then said:
"Today, my report concerns the Strong Force."
"Since Professor Bruce predicted the existence of the Strong Force and the Weak Force, many experiments have now been able to indirectly show that these two forces truly exist."
"But as for their mechanisms of action, we still know nothing."
"My research, however, focuses on one small issue within the Strong Force."
"We know that the Strong Force is what binds Protons and Neutrons together."
"But Protons carry positive charge, while Neutrons are uncharged. Why can two particles with utterly different properties be affected by the same force?"
"The Electromagnetic Force can only act on charged particles and cannot act on neutral particles."
"Yet the Strong Force breaks this rule."
"Therefore, I boldly speculate that Protons and Neutrons must possess