動脈搏動的物理學:單線蛇鞭的咬合力與痛點壓縮
T-2 MIN

Arterial Pulse Physics: The Bite Force and Pain Point Compression of the Single-Line Serpent Whip

“我的游蛇已經鎖定了你最誠實的脈搏。 這一鞭下去,你的心跳會暫停一秒,然後……瘋狂地為我跳動。 看著這條紅線,它是你餘生唯一需要遵循的軌跡。」”

If multi-tailed whips are designed to shatter the will, the single-line heavy whip is designed to seize the lifeblood.

Forensic Report B-02 notes: The physical core of [Crimson Wandering Snake] lies in the "absolute closed loop of its kinetic energy transmission path." According to the kinetic energy formula

$$E_k = \frac{1}{2}mv^2$$

, when the three-meter snake whip is swung, the kinetic energy generated by the entire mass $m$ of the whip body is concentrated at the tip. Unlike traditional whips, the "belly" of the Wandering Snake is embedded with micro-metallic heavy cores of variable density, ensuring the center of gravity moves dynamically forward along the trajectory.

When the tip bites the target, the contact area $A$ in the pressure formula

$$P = \frac{F}{A}$$

is compressed to its extreme. This is no longer a strike; it is a "dynamic incision" perpendicular to the veins. When it hits your arterial pulse, the instantaneous high pressure triggers a passive resonance in the vessel walls, sending pain coursing through your circulation directly to the heart. We don’t need to cover your whole body; we only need this one red line to completely take over the frequency of your heartbeat.

[ AURALIA'S NOTE ]

"Why run?

My Wandering Snake has already locked onto your most honest pulse.

With this lash, your heart will stop for a second, and then... beat frantically for me.

Watch this red line; it is the only trajectory you need to follow for the rest of your life."