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Fine-structure-constant Quote by Richard P. Feynman

“There is a most profound and beautiful question associated with the observed coupling constant, e - the amplitude for a real electron to emit or absorb a real photon. It is a simple number that has been experimentally determined to be close to 0.08542455. (My physicist friends won't recognize this…” quote by Richard P. Feynman
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““There is a most profound and beautiful question associated with the observed coupling constant, e - the amplitude for a real electron to emit or absorb a real photon. It is a simple number that has been experimentally determined to be close to 0.08542455. (My physicist friends won't recognize this number, because they like to remember it as the inverse of its square: about 137.03597 with about an uncertainty of about 2 in the last decimal place. It has been a mystery ever since it was discovered more than fifty years ago, and all good theoretical physicists put this number up on their wall and worry about it.) Immediately you would like to know where this number for a coupling comes from: is it related to pi or perhaps to the base of natural logarithms? Nobody knows. It's one of the greatest damn mysteries of physics: a magic number that comes to us with no understanding by man. You might say the "hand of God" wrote that number, and "we don't know how He pushed his pencil." We know what kind of a dance to do experimentally to measure this number very accurately, but we don't know what kind of dance to do on the computer to make this number come out, without putting it in secretly!””

Richard P. Feynman

About This Quote

Source Speech: Interview on Fundamental Constants, 1979

The fine‑structure constant is a mysterious, dimensionless number that physicists cannot yet derive from deeper theory, highlighting limits of current understanding.

In simple terms: A key number in physics remains unexplained.

Key Takeaway

Accept mystery, seek deeper theory.

Themes

physics mystery fundamental constants

Mood

curious inquisitive

Type

philosophical scientific

When to use this quote

  • theoretical research
  • educational lectures
  • science communication

Key Concepts

quantum electrodynamics dimensionless numbers

Questions to Reflect On

  • What would a successful theory predict about this constant?
  • How does mystery drive scientific progress?
A Different Perspective

The number may be an artifact of measurement conventions rather than a fundamental truth.

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