To further analyze the microscopic world of the Dragon Balls, Ivan turned to the NMR spectrometer, a powerful analytical tool.
NMR technology revealed structural information within molecules by detecting the energy-level transitions of atomic nuclei in an external magnetic field, including the types of chemical bonds, the spatial configurations of molecules, and their dynamic behavior.
For a complex and unknown sample like the Dragon Balls, NMR was especially crucial.
After careful preparation, Ivan placed a Dragon Ball within a powerful magnetic field and meticulously adjusted the frequency of the radio waves to excite resonance among the atomic nuclei inside it.
As the data continued to accumulate, the NMR spectrum gradually emerged, revealing the astonishing complexity within the Dragon Ball's molecules.
Ivan discovered an extremely rare type of chemical bond within the Dragon Balls—metal-metal bonds. These bonds typically appeared only under extreme conditions or in specific types of compounds, and their presence indicated that the Dragon Balls might contain one or more unknown high-performance materials.
Furthermore, the NMR results suggested that highly ordered structures might exist within the molecules, structures that could be closely related to the Dragon Balls' special functions.
Ivan's excitement was beyond words. He realized that the Dragon Balls were not merely mysterious wish-granting tools, but windows into an unknown realm.
Through in-depth research into the Dragon Balls, humanity might be able to unlock the technological secrets of extraterrestrial civilizations and even discover new forms of energy beyond current understanding.
This prospect deeply shook Ivan and strengthened his resolve to continue exploring.
In terms of electromagnetic experiments, Ivan used precision electromagnetic measuring equipment to conduct a comprehensive analysis of the Dragon Balls' electromagnetic-wave emission properties.
He discovered that the Dragon Balls could emit faint electromagnetic waves with unique wavelengths. Unlike common electromagnetic waves such as radio waves, visible