Finally, the kinetic energy of the products of each of the reaction channels can be determined according to the same algorithm that was originally used and presented in (9—10) and (12), exactly as for all nuclei, according to the algorithm already presented. Thus, finally, it can be said that the nuclear reaction (1), brought to a state of resonance with the energies of the incoming particles, close to the value of the Coulomb incoming barrier, has been fully analyzed.
RESULTS
The results of the analysis are presented as follows:
1. The condition of the task: a nuclear reaction of the form (1) was investigated with initially set parameters in the form of the kinetic energy of the directed beam and the mass of all participating particles in the nuclear reaction in a. u. m.;
2. Directed beams expend a certain amount of energy to overcome the Coulomb barrier, having residual energy – its found value is indicated;
3. The enumeration of the outgoing particles from the main channel of the nuclear reaction, including various groups of gamma quanta, if any, indicating the kinetic energy (where, if necessary, their classification by energy is also compiled), charge and current of each of them;
4. If the formed particles can probabilistically interact (like the annihilation of positrons and electrons), then this is indicated and an additional list with all relevant records is provided;
5. In accordance with each of the reactions, a list is given with all the work performed in J and power in Watts for each type of radiation with all components. At the same time, indicating general conclusions on the objectives of this study – general study / generation of electric energy / establishment of conclusions on some exact aspect, etc., as well as conclusions in the appropriate direction: the amount of energy generated, conclusions on the necessary aspect, general scientific data, conclusions, etc.
CONCLUSION
Based on theoretical analysis, the energies of the formed particles and their nature of origin are calculated. Nuclear reactions with bombarding charged particles with high and low kinetic energies of target nuclei have been studied, as well as the newly introduced resonant state of these nuclear reactions. Thus, the latest model for the study and analysis of a nuclear reaction was presented with the possibility of bringing it to a state of resonance.