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  1. en.wikipedia.org › wiki › Color_ForceColor Force - Wikipedia

    Color Force is an American independent film and television production company founded in 2007 by producer and film executive Nina Jacobson after her 2006 termination as president of Disney's Buena Vista Motion Pictures Group.

  2. Color is the strong interaction analog to charge in the electromagnetic force. The term "color" was introduced to label a property of the quarks which allowed apparently identical quarks to reside in the same particle, for example, two "up" quarks in the proton.

  3. The force between quarks is known as the colour force (or color force) or strong interaction, and is responsible for the nuclear force. Since the theory of electric charge is dubbed "electrodynamics", the Greek word χρῶμα (chrōma, "color") is applied to the theory of color charge, "chromodynamics". History

  4. How does the color (strong) force work? Colored quarks attract one another by exchanging gluons, of which there are eight types. Gluons are massless, have spin 1, travel at the speed of light, and carry both a color and a different anticolor.

  5. Nov 9, 2015 · When two particles with a colour charge interact, the lines of the colour force don't spread out evenly. Because the lines of the colour force interact with each other as well as with the particles at long distances they form into a flux tube (also known as a QCD string ) between the particles.

  6. www.cyberphysics.co.uk › topics › particleColor Force

    The force between quarks is the color force. Inside a baryon the color force displays properties not observed in the strong interaction between nucleons. The color force does not drop off with distance and is responsible for the confinement of quarks. The color force involves the exchange of gluons.

  7. Color Force. The force between quarks is the color force. Inside a baryon the color force displays properties not observed in the strong interaction between nucleons. The color force does not drop off with distance and is responsible for the confinement of quarks.