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chromodynamics

n. (context physics English) The study of the relationship between those quarks that possess the quantum property of color, and exchange gluons; more fully quantum chromodynamics

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Usage examples of "chromodynamics".

Taken together, the quarks provide the basis for a theory known as quantum chromodynamics, which is able to describe very accurately the forces that hold the atomic nucleus together.

Between them, quantum electrodynamics and quantum chromodynamics provide a full description of the subatomic world down to the scale at which we are able to measure.

Mainly, because superstring theory includes gravity in a natural way, which quantum electrodynamics and quantum chromodynamics do not.

In analogy with quantum electrodynamics, physicists were able to construct quantum field theories for the strong and the weak forces, called quantum chromodynamics and quantum electroweak theory.

At the same time, the point-particle quantum field theory of quantum chromodynamics was being developed, and its overwhelming success in describing the strong force led to the dismissal of string theory.

Effectively the union of quantum chromodynamics and the electroweak theory.

Too wrapped up in relativistic quantum chromodynamics and multidimensional function spaces to know anything about where it came from or what it means.

Although there is an adequate theory of the strong force, embodied in what is known as quantum chromodynamics, there is not the slightest hint in that theory of a method to make such a force either stronger or weaker than it is.

In fact, gluon emission of the type they describe isn't even explainable with our current understanding of quantum chromodynamics.