Gladiators Are Fiction: Colosseums Are Enormous Power Plants (Part 2)

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For centuries, we’ve been told that colosseums were built for entertainment—grand spectacles of gladiatorial combat, wild animal hunts, and even staged naval battles. This version of history has been repeated so often that few question it. But what if this narrative is a fabrication? What if these massive structures were not arenas of bloodshed but something far more advanced?

The Colosseum, rather than being a brutal stage for combat, may have been an enormous power plant harnessing atmospheric energy. Its structural anomalies, engineering precision, and material composition all point to a function that has nothing to do with gladiators. Let’s unravel the clues hidden in its architecture.

The Electromagnetic Properties of the Colosseum

Vaulted arches possess the ability to act as electromagnets. This shape induces polarity, initiating vibrations and movements of electric charge carriers from the aether. Consequently, a constant electromagnetic field circulates through the rings of the Colosseum.

This concept is not unique to the Colosseum—triumphal arches were originally constructed as powerful electricity generators and served the same purpose.

Colosseum

The Colosseum, contrary to popular belief, was not built solely from stone blocks. Instead, its builders utilized a unique mixture known as Roman concrete. To understand the Colosseum’s potential as an energy generator, we must first examine its construction materials. This remarkable blend possessed exceptional properties, including electrical conductivity and the presence of non-oxides, which contributed to the characteristic reddish hue of the Colosseum.

Waveguides and Energy Flow

Beyond its material composition, the Colosseum’s very structure suggests an advanced function—one that aligns more with energy manipulation than with spectator events.

Upon closer examination, one can observe that the walls—supposedly designed as compartments for grand staircases—all converge toward the center of the Colosseum. Each row of walls is positioned on its own circular foundation, adorned with arches.

These circular openings, resembling waveguides, serve a specific purpose: to capture signals and effectively direct electromagnetic waves and energy toward the heart of the Colosseum.

The walls within the Colosseum act as waveguides, conducting electromagnetic waves. The corrugations and ribs visible on both the front and back of these walls are not merely decorative elements; rather, they play a crucial role. Their purpose is to prevent energy losses, contain the current within the intended path, and enhance vibrations. Today, similar corrugations and ribs are commonly employed in waveguides and energy power systems, highlighting their significance.

A waveguide functions like an electrical highway, directing energy along specific paths with minimal loss. The Colosseum’s structure, with its series of interconnected arches and openings, resembles the layout of modern electromagnetic waveguides.

Resonators and Frequency Control

The empty niches scattered throughout the Colosseum serve as resonators, allowing for control over specific frequencies. Additionally, niches with holes positioned at the center of the structure, along with small boxes containing empty niches surrounding the central area, also functioned as resonators.

Even the pieces on the floor resemble resonators. These closed chambers with openings at the top align with the definition of a resonator—hollow containers designed to produce electromagnetic waves of particular frequencies from a given signal.

Colosseum

The walls in the central section of the Colosseum exhibit openings at the top, bottom, and sides. It is evident that these openings were not intended for the passage of humans or animals, debunking the notion that they were used for lions to enter the arena. Instead, these walls function as waveguides containing resonators.

Filtering and Wireless Technology

The openings within the walls feature pillars with slits at the top, indicating their purpose as filters within the waveguide. Filters are devices that allow signals of specific frequencies (the passband) to pass through while rejecting others (the stopband).

In modern technology, waveguide filters typically consist of two rows of parallel poles or columns, resembling the design seen in the Colosseum.

It is also worth noting that no wires can be found, suggesting that the technology employed was wireless.

A Structure Too Precise to Be Decorative

Colosseum

Some may argue that these structural features are merely decorative or coincidental, but this perspective does not explain the deliberate precision embedded in the Colosseum’s design. If these elements were simply aesthetic, why do we see similar patterns in modern energy transmission systems?

The presence of waveguide-like formations, strategically placed resonators, and a structure optimized for energy flow suggests intent, not accident. Even the material composition of Roman concrete aligns with properties seen in conductive materials. If this was just another amphitheater, why do its architectural features match those used in wireless energy technology today?

The idea that the Colosseum functioned as an advanced energy structure may seem radical, but only because we have been conditioned to see it as nothing more than an arena. Once we move beyond that assumption, the evidence speaks for itself.

Reevaluating the Purpose of the Colosseum

Colosseum

The prevalent notion that a portion of the Colosseum is missing—purportedly lost due to earthquakes, fires, or the hands of “barbarians”—fails to account for the deliberate design of the structure.

It becomes evident that the Colosseum was intentionally constructed with sloping walls. This design choice likely aimed to create greater resistance at the end of the waveguide, allowing waves to return to the circuit and minimize energy losses.

If the Colosseum was not an arena of violence but a sophisticated energy hub, its existence forces us to reevaluate everything we think we know about ancient Rome. The engineering precision, the electromagnetic properties, and the deliberate structuring of energy pathways all point to a lost understanding of atmospheric power generation.

We are left with a choice: continue believing the well-worn tales of gladiators and spectacle, or recognize the possibility that history has been rewritten, concealing the true purpose of one of the most significant structures of the ancient world.

Leave your thoughts in the comment below!

Angie Dragoness
Angie Dragonesshttps://instagram.com/fire_cannot_kill_a_dragonn
Angie Dragoness is a hidden history researcher with a passion for digging through archives and piecing together the past. She’s always uncovering the untold stories—because, after all, fire cannot kill a dragon.

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