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Approved Tech RGT-BH5 Erebus Particle Collider

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E R E B U S

OUT OF CHARACTER INFORMATION
  • Intent: To create a magnetic particle collider for future submissions.
  • Image Source: N/A
  • Canon Link: N/A
  • Permissions: N/A
  • Primary Source: N/A
PRODUCTION INFORMATION
SPECIAL FEATURES
  • Collides neuranium particles at a velocity fast enough to generate a maximum of 1.5e+25 gigajoules per collision.
  • Energy output can be condensed to a minimum size of 1.616255(18)e-11 meters.
  • Acceleration and density values can be manually calibrated.
STRENGTHS
  • Energy Generation: The Erebus can generate an insane amount of energy with a single particle collision that can be harnessed for power generation, making it a very clean and efficient source of energy.
WEAKNESSES
  • Black Hole Generation: If the energy-to-density manufacturer's ratio is exceeded, then a miniature black hole would be generated that would destroy the collider itself and anything in the vicinity.
  • Modular Size: To a certain extent, the size of the magnetic particle collider can be modified. However, smaller versions of the collider are not as energy-efficient, and the smallest size that the collider can be physically produced in is still conventionally large at several meters in diameter.
DESCRIPTION
The RGT-BH5 Erebus Particle Collider is Roble Manufacturing's first venture into particle physics and the technical implementation of it. The Erebus, when dumbed down, is essentially a moderately-sized particle collider designed to produce massive amounts of energy into a very condensed space.

The Erebus uses hyperspace technology to accelerate two neuranium particles at extremely fast speeds through tubing in the condenser to collide. Samariam-Colbat Magnets are placed in order to create a magnetic field that ensures the particles remain on course. The entire device itself is powered by a miniaturized RMC-114 Magnetic Energy Generator, which is only large enough to provide sufficient power for a single acceleration and collision.

There are two metrics that can be manually altered with the particle condenser -- the amount of energy generated, which is altered by calibrating the acceleration rate applied to the neuranium particles to create the velocity in which they collide, and the density at which the output of energy is condensed. Inherently, neuranium being one of the heaviest and dense materials known in the galaxy, the particles accelerated by the condenser are already extremely dense, and the speed at which they collide can create a maximum of approximately 1.5e+25 gigajoules of electrical energy in a single collision with the smallest size of particle collider (larger-sized colliders can generate higher amounts of energy).

The minimum length that this output of energy can be condensed into is 1.616255(18)e-11 meters. However, condensing an energy output of anything greater than 1.5e+22 gigajoules into that density will result in an extremely unstable "micro" black hole. This black hole that could be potentially generated would only be able to exist for a small period of time before collapsing, or 'evaporating' into a particle explosion due to Hawking radiation. A general protocol for operating the Erebus is that this ratio of energy to density it not exceeded so that an extremely dangerous black hole that would destroy the condenser itself along with anything in the general vicinity.

In practical use, the Erebus is a much more advanced, as well as potentially dangerous, form of electrical power generation than its predecessor, the RMC-114 Magnetic Energy Generator. In order to be utilized properly, it is recommended that significant battery storage or any other form of energy capture and storage method be utilized, as when compared to typical energy generators that feed limited amounts of fuel in any given moment to generate a continuous stream of energy, the Erebus instead is more optimally-used in generating an extreme amount of electrical energy in a single instance.

Altogether, the Erebus is a significant development in the implementation of particle physics in real-world technology and is sure to become a valuable asset in Roble Manufacturing's catalog.



 
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