A MICROSCOPIC CALCULATION OF THE COLLECTIVE SPECTRA OF THE NEUTRON CONFIGURATIONS (CLOSED SHELLS)~(50) (d_(5/2)g_(7/2)s_(1/2)d_(3/2)h_(1/2))~(12) BASED ON DYSON REPRESENTATION OF THE INTERACTING BOSON MODEL
The structures of the solid state products formed by the partial combustion of Korean pine wood treated with fire-retardant FRW were analyzed by microscopic FTIR.
The reliability of the macroscopic-microscopic(MM)model for superheavy nuclei is confirmed by the good agreement between calculated results and experimental ones.
It is found that the calculated results also agree with M?ller's results and that the MM model is insensitive to the microscopic single-particle potential.
Results showed that the PI films with surface-relief-grating structures by this micro-contact printing process have good liquid crystal alignment ability.
FTIR was adopted to investigate the molecular structure of modified phenolic resins and SEM was used to observe the micro morphology of their impacted intersections.
The microcosmic structure of the defective LB film and the molecular mechanism of the effect of this film on nucleation, growth, deposited patterns and adhesion of calcium oxalate monohydrate (COM) were investigated.
A microscopic expression for the evaporation coefficient is derived; it considers the influence of several factors (presence of ions, external fields, ultraviolet irradiation, etc.) on the evaporation process.
A microscopic model that provides a satisfactory explanation of the temperature dependence of the thermal conductivity coefficient for dielectric glasses in the temperature range above the plateau is proposed for the first time.
The spectra (cosine Fourier transform) of autocorrelation functions of a microscopic current and their components in lithium tetrafluoroborate solutions in acetonitrile at concentrations of up to 0.75 M are studied by molecular dynamic modeling.