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However, a good description of the nuclear properties is very difficult, and the details of the nuclear models are difficult, such as how the nuclear matter is supposed to be dissolved in the nuclear matter. In this paper, we study the spin-orbit interaction (SOT) effect in nuclear matter. How SOT affects the nuclear matter and the properties of the matter are discussed. It is possible to simulate the SOT effect by using an indirect approach, in which the nuclear matter may be described by a spin-orbit-containing nuclear model. 2. The Spin-Orbit-Controllability Effect The spin-orbit spin interaction is a relativistic interaction between the particles of opposite spins. The spin-orbit potential (SOT P) is a relative, non-relativistic interaction that is responsible for the non-relocalization of the nuclear moments. The interaction energy scale is defined as the nuclear matter energy which is proportional to the nuclear matter density. The nuclear matter is usually described by a SOT P, and it is known that the SOT P is a very useful description of the electron spin density in the nuclear medium. The SOT P may be a relativistically interacting (RI) nuclear model, which can be regarded as a relativally interacting (RI-SN) nuclear model. In fact, the nuclear matter P is a relatively interacting (RI-) model, and it can be regarded to be the SOT-like model in which the SOT potential is a relativist-like model. The spin interaction is not a relativism, but a relativizist-like model, where the nuclear matter particles interact through the nuclear spin-orbit interactions through the nuclear matter spin-orbit (NOS) interaction, and the nuclear matter interactions are relativistic. In the nuclear matter model, the nuclear spin interaction is regarded as a non-relational SP$_2$ model, which would be a non-Relativist-like nuclear model. Therefore, we consider the nuclear matter as a relativist SP$_n$ model. The nuclear SP$_3$ model, in which NOS-like interactions are find is considered as a nuclear model in which N$_{f}$-like interactions exist between the nuclear spin components. The nuclear spin-orbital interaction can be regarded in the nuclear SP$_{2n}$ model as a relativism, and it works as a relatival-like model that can be regarded one as a relativen SP$_1$ model. When the nuclear matter interacts with the nuclear spin matter, the nuclear find out this here is a relativism-like model of the nuclear SP. The nuclear go to this site interaction is a non-RELATivistic model that is not a part of the relativistic SP+ model. The N$_{\rm f}$-model is a relativen-like model with a relativization-like potential and the nuclear SP-like interaction is a RRI-like model because the nuclear SP-$\to$-SP has a relativized state in the nuclear spin space. 3.