Tony stared intently at the scanner's display. Whenever it detected stronger interference, he appropriately increased the transmission power so the scanning signal could penetrate the Energy Field's interference more forcefully. At the same time, he reduced the scanning speed, giving the device more time to receive and process the reflected signals.
It was like driving a car along a rugged mountain road.
When encountering a steep uphill stretch, the driver needed to step on the gas and increase the engine's power to get the car smoothly up the slope. But when facing a sharp turn, the driver needed to slow down and proceed carefully to ensure safe driving.
By dynamically adjusting the scanning parameters, Tony was like an experienced driver, flexibly operating the scanner amid a complex energy environment.
Besides increasing the transmission power, Tony adopted another strategy: reducing the scanning speed.
At high-speed scanning, the device could acquire data faster, but it might also miss crucial information because its processing speed could not keep up.
Especially when facing a complex and ever-changing Energy Field, reducing the speed meant giving the device more time to receive, analyze, and process the reflected signals. It was like having a detective slow down at a crime scene and carefully examine every detail to uncover hidden clues.
As the scan progressed, Tony gradually discovered some astonishing details.
Inside Professor Connors's body, the Radioactive Materials seemed to be guided by some mysterious and precise mechanism, forming an extremely complex energy circulation system.
This system was like a highly sophisticated Nuclear Reactor, constantly converting and amplifying the energy of the Radioactive Materials.
From the perspective of nuclear physics, the decay process of Radioactive Materials released tremendous amounts of energy, existing in the form of High-Energy Particles.
Inside Professor Connors's body, these High-Energy Particles did not disperse