The Asymmetric Penetration Shield wrapped tightly around Connors's body like a flowing river of stars.
Just as Atomic Breath was about to strike him, the Asymmetric Penetration Shield automatically activated its energy neutralization mechanism.
Ripples spread across the shield's surface, like a boulder dropped into a still lake.
The quantum state inside the shield interacted with the energy of Atomic Breath, converting part of that energy into harmless light and heat that dispersed outward.
At the same time, the nanomaterials rapidly adjusted their structure, forming layers upon layers of energy barriers that steadily weakened Atomic Breath's power.
By the time Atomic Breath truly reached Connors's body, its power had been reduced to an extremely low level. It only left shallow marks across the shield's surface, while Connors himself was completely unharmed.
The Asymmetric Penetration Shield's performance made Norman's eyes widen, filled with shock and disbelief.
He had originally thought his Atomic Breath could easily reduce Connors to ashes.
But in the instant Norman froze, Connors launched his counterattack.
His figure flashed as he rapidly closed in on Norman like a phantom. His specially modified High-Frequency Vibration Claws gleamed with a cold light, radiating a chilling aura.
These High-Frequency Vibration Claws could produce tens of thousands of high-frequency vibrations per second.
When the claws came into contact with an object, those high-frequency vibrations could rapidly destroy its molecular structure, making it incredibly brittle.
Connors's claws viciously tore and slashed toward Norman's body.
Although Norman's scales and muscles were incomparably tough, nearly indestructible in the eyes of ordinary people, they were utterly vulnerable compared to Connors, whose skin was reinforced by the Asymmetric Penetration Shield.
The instant the claws met Norman's scales, they produced a piercing screech of friction.
The high-frequency vibrations swiftly spread through Norman's scales and muscles, destroying their molecular