The residual color force is the force that holds nucleons together in the nucleus. The color force itself holds quarks together in hadrons (protons and neutrons are both hadrons). It is mediated by the exchange of gluons.
You can think of the residual color force as being the "leftover" portion of the color force that acts to bind nucleons together. It's somewhat analogous to dipole-dipole interactions, except with color force instead of electromagnetic force.
The residual strong force. The strong force (or color force) is what holds quarks together to form protons and neutrons. The residual strong force then holds the protons and neutrons together in the nucleus.
In an atom the protons and neutrons are contained within the nucleus by the residual strong ("color") force. the 'color' force is only applicable for fundamental particles Quarks . the proton and neutron have a force similar to the gravitational force.....
The residual effect of the strong force, also known as the nuclear force, is the force that holds a nucleus together. It is constantly opposed by the electromagnetic force repelling the protons in the nucleus.
poles are partially magnetized this causes some voltage called residual voltage
That force is known as the "strong force", the "nuclear force", or the "residual strong force".
Between protons and neutrons exist the residual strong force (nuclear force).
The strong nuclear, or "color," force. (Technically, the color force holds the protons and neutrons themselves together; the force that holds the nucleons to other nucleons is the residual color force.)
That's the residual strong force.
residual magnetism
The force that holds protons and neutrons together in an atomic nucleus is called the strong nuclear force.
Color ForceA property of quarks labeled color is an essential part of the quark model. The force between quarks is called the color force. Since quarks make up the baryons, and the strong interaction takes place between baryons, you could say that the color force is the source of the strong interaction, or that the strong interaction is like a residual color force which extends beyond the proton or neutron to bind them together in a nucleus.Inside a baryon, however, the color force has some extraordinary properties not seen 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 exhange of gluons and is so strong that the quark-antiquark pair production energy is reached before quarks can be separated. Another property of the color force is that it appears to exert little force at short distances so that the quarks are like free particles within the confining boundary of the color force and only experience the strong confining force when they begin to get too far apart. The term "asymptotic freedom" is sometimes invoked to describe this behavior of the gluon interaction between quarks.
Residual powers of the president include things that are considered to be outside of the office's usual realm. This includes things like having criminal immunity while in office.