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Angelic Metal: Difference between revisions

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|other_names = Archangelic Iron, 4D Metal
|other_names = Archangelic Iron, 4D Metal
|type = Resonating D Metal
|type = Resonating D Metal
|density = <math>10 g/cm</math>
|density = <quantity>10 g/cm</quantity>
|melting_point = 9500 Celsius
|melting_point = <quantity>9500 C^\degree</quantity>
|atomic_mass = xxx
|atomic_mass = xxx
|group = D (Dimensional)
|group = <chem>D</chem> (Dimensional)
|period = D
|period = <chem>D</chem>
|heat_conductivity = High thermal conductivity
|heat_conductivity = High thermal conductivity
|resistance = 8.6 nΩ⋅m
|resistance = 8.6 nΩ⋅m
Line 33: Line 33:
|unique_hazards = Dimensional Cracks, Gravitational anomalies
|unique_hazards = Dimensional Cracks, Gravitational anomalies
|half_life = x
|half_life = x
|emitted_radiation = γ Radiation (High Charge), α (Natural, Unfiltered metal), γ͂ (Reaction)
|emitted_radiation = <chem>\gamma</chem> Radiation (High Charge), <chem>\alpha</chem> (Natural, Unfiltered metal), <chem> \gamma^ \triangledown </chem> (Reaction)
|synthesis_chain = example.jpg
|synthesis_chain = example.jpg
|caption-synthesis_chain = example
|caption-synthesis_chain = example
Line 64: Line 64:
|sound_reflectivity = Low
|sound_reflectivity = Low
|geometric_properties = Naturally forms in hexagonal shapes
|geometric_properties = Naturally forms in hexagonal shapes
|radiation = γ Radiation (High Charge), α (Natural, Unfiltered metal), γ͂ (Reaction)
|radiation = <chem>\gamma</chem> Radiation (High Charge), <chem>\alpha</chem> (Natural, Unfiltered metal), <chem> \gamma^ \triangledown </chem> (Reaction)
|derived_materials = SuperSymmetric Matter
|derived_materials = SuperSymmetric Matter
|anomalous_properties = Natural Gravitational Attraction
|anomalous_properties = Natural Gravitational Attraction
Line 70: Line 70:


===OVERVIEW===
===OVERVIEW===
Angelic Metal appears in "The Archangels Rise", "The Forgotten Planet"


No description rn just the ideas
No description rn just the ideas


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'''SuperSymemtric Reactor Reaction Process'''
'''SuperSymemtric Reactor Reaction Process'''


Bombardment of the radioactive isotope by photinos <chem> \tilde{\gamma}\ </chem>
Bombardment of the radioactive isotope by photinos <chem> \gamma^ \triangledown </chem>


<chem mode="display" fleqn>^{{318}}_{{126}}\text{Am} + \tilde{\gamma} -> \text{Am}^* + \phi_b + E_{\text{burst}} + \tilde{\gamma}_{\text{secondary}}</chem>
<chem mode="display" fleqn>^{{318}}_{{126}}\text{Am} + \gamma^ \triangledown -> \text{Am}^* + \phi_b + E_{\text{burst}} + \gamma^ \triangledown_{\text{secondary}}</chem>


Excited Angelic Metal atom decays, releasing energy (Selectron) and a photino for sustaining the reaction:
Excited Angelic Metal atom decays, releasing energy (Selectron) and a photino for sustaining the reaction:


<chem mode="display" fleqn>\text{Am}^* \rightarrow \text{Am} + \phi_b + E_{\text{burst}} + \tilde{\gamma}_{\text{secondary}} + \tilde{e}^-</chem>
<chem mode="display" fleqn>\text{Am}^* \rightarrow \text{Am} + \phi_b + E_{\text{burst}} + \gamma^ \triangledown_{\text{secondary}} + e^\triangledown</chem>


Selectrons are the energy carriers which get absorbed by the system and harness it into usable state:
Selectrons are the energy carriers which get absorbed by the system and harness it into usable state:


<chem mode="display" fleqn> \tilde{e}^- \xrightarrow{\text{Absorption}} E_{\text{usable}} </chem>
<chem mode="display" fleqn> e^\triangledown \xrightarrow{\text{Absorption}} E_{\text{usable}} </chem>


Total Energy released in one reaction:
Total Energy released in one reaction:
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<chem mode="display" fleqn>E_{\text{SSR}} = 500 \, \text{MeV/reaction}</chem>
<chem mode="display" fleqn>E_{\text{SSR}} = 500 \, \text{MeV/reaction}</chem>


Repeat chain reaction sustained by <chem>\tilde{\gamma}_{\text{secondary}}</chem>
Repeat chain reaction sustained by <chem>\gamma^ \triangledown_{\text{secondary}}</chem>


Electromagnetic chambers within the SSR hold the cores of the metal stable and prevent it flying out and causing uncontroled reaction
Electromagnetic chambers within the SSR hold the cores of the metal stable and prevent it flying out and causing uncontroled reaction
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Final configuration of most outer Selectron shell, giving it its 4D Properties, using the Photino Electrons are induced to flip into Selectrons from the much massiver Photinos
Final configuration of most outer Selectron shell, giving it its 4D Properties, using the Photino Electrons are induced to flip into Selectrons from the much massiver Photinos


<chem mode="display" fleqn> ^{322}_{128}\text{Intermediate} + \tilde{\gamma} \rightarrow ^{314}_{126}\text{Am} + \alpha + \tilde{e}^- </chem>
<chem mode="display" fleqn> ^{322}_{128}\text{Intermediate} + \gamma^ \triangledown \rightarrow ^{314}_{126}\text{Am} + \alpha + e^\triangledown </chem>

Latest revision as of 17:09, June 7, 2025

"ACROSS SPACE & TIME TOWARDS DISTANT WORLDS"
TIMELINE

This article takes place in the 24 & 26 centuries of Distant Worlds.

Angelic Metal
Angelic Metal ingrowth in natural form
Angelic Metal in refined and configured form
Meta Information
Article Creator

mMONTAGEe

Scope

Distant Worlds

Setting

24 to 26th Centuries

General Properties
Other Names

Archangelic Iron, 4D Metal

Type

Resonating D Metal

Physical Properties
Density

\pu{10 g/cm}

Melting Point

\pu{9500 C^\degree}

Elemental Properties
Atomic Mass

xxx

Group

\ce{D} (Dimensional)

Period

\ce{D}

Thermal Properties
Heat Conductivity

High thermal conductivity

Electrical Properties
Resistance

8.6 nΩ⋅m

Other Electrical Properties

Electron and Selectron Conductivity

Magnetic Properties
Ferromagnetism

Natural, Permament (Configurble)

Other Magnetic Properties

Photon and Photino Conductivity, Gravinium violent annihilation

Solid Properties
Hardness

12

Durability

Extreme

Hazardous Properties
Toxicity

Biochemically inert

Reactivity

Configured Isotope

Transport Risks

Gravinium Annihilation

Storage Risks

Gravinium Annihilation, Electrostatic charges

Production Hazards

Immense Pollution

Unique Hazards

Dimensional Cracks, Gravitational anomalies

Nuclear Properties
Half Life

x

Emitted Radiation

\ce{\gamma} Radiation (High Charge), \ce{\alpha} (Natural, Unfiltered metal), \ce{ \gamma^ \triangledown } (Reaction)

Isotopes

318, 325

Economic Properties
Price per Gram

1.3 million EXO$

Rarity

Rare (24th), Uncommon (26th)

Major Producers

Archangels, Humanity, Athezians

Major Consumers

Humanity

Natural Occurrence

Gravinium Lagrange Clouds (325 isotope)

Recyclability

Highly Recycable

Trade Restrictions

Unregulated Markets of non United Sol Command allies

Legality

Legal

Trade Names

ANGL-METAL D1

Biological Properties
Taste

Ionised rust

Smell

Ionised air

Cultural Significance
Related Materials

x

Applications
Industrial

Ship Manufacturing, Space Station

Use Cases

Vehicle Manufactury, Electronics, Tools,

Military Applications

Hull Reinforcment,

Consumer Applications

Bridge Travel Stability, Durable Tools, Devices and Electronics, Ship Hull Reinforcment, Reactor amplification

History
Creator

Archangels

Inventor

Archangels

Date of Creation

Billions of years ago

Date of Discovery

24th Century, Lotus Facility on Planet Nova

Optical Properties
Color

Obsidian Dark with notable flashes of Cyan, Purple and Yellow

Reflective Index

0.2

Opacity

0

Sonic Properties
Resonant Frequency

4 Dimensions

Sound Absorption

Medium

Sound Reflectivity

Low

Ontological Properties
Geometric Properties

Naturally forms in hexagonal shapes

Magical Properties
Radiation

\ce{\gamma} Radiation (High Charge), \ce{\alpha} (Natural, Unfiltered metal), \ce{ \gamma^ \triangledown } (Reaction)

Other Properties
Derived Materials

SuperSymmetric Matter

Anomalous Properties

Natural Gravitational Attraction

OVERVIEW

Angelic Metal appears in "The Archangels Rise", "The Forgotten Planet"


No description rn just the ideas

Angelic Metal and Reaction Process


Stable Angelic Metal \ce{^{{314}}_{{126}}{Am}\ }

Isotopes and Ions

  • Radioactive Isotope:

\ce{^{{318}}_{{126}}\text{Am}\ }

  • Ionized Isotope:

\ce{^{{325}}_{{140}}\text{Am}^{+}\ }

Ions of Angelic Metal

  • Positive Ion:

\ce{^{{314}}_{{126}}\text{Am}^{+}\ }

  • Negative Ion

\ce{^{{314}}_{{126}}\text{Am}^{-}\ }


SuperSymemtric Reactor Reaction Process

Bombardment of the radioactive isotope by photinos \ce{ \gamma^ \triangledown }

\ce{^{{318}}_{{126}}\text{Am} + \gamma^ \triangledown -> \text{Am}^* + \phi_b + E_{\text{burst}} + \gamma^ \triangledown_{\text{secondary}}}

Excited Angelic Metal atom decays, releasing energy (Selectron) and a photino for sustaining the reaction:

\ce{\text{Am}^* \rightarrow \text{Am} + \phi_b + E_{\text{burst}} + \gamma^ \triangledown_{\text{secondary}} + e^\triangledown}

Selectrons are the energy carriers which get absorbed by the system and harness it into usable state:

\ce{ e^\triangledown \xrightarrow{\text{Absorption}} E_{\text{usable}} }

Total Energy released in one reaction:

\ce{E_{\text{reaction}} = \phi_b + E_{\text{burst}}}

\ce{E_{\text{SSR}} = 500 \, \text{MeV/reaction}}

Repeat chain reaction sustained by \ce{\gamma^ \triangledown_{\text{secondary}}}

Electromagnetic chambers within the SSR hold the cores of the metal stable and prevent it flying out and causing uncontroled reaction

Syntesation chain example 1

Aborium-120 + Lead Fusion, to get Controllable decayable thing

\ce{^{304}_{120}\text{Ab} + ^{208}_{82}\text{Pb} \rightarrow ^{512}_{202}\text{Intermediate} + \gamma }

Intermediate element is stabilised with 8 additional neutron injection, using Photons the electron cloud is configured, mimicing Archangels tech.

\ce{^{512}_{202}\text{Intermediate} + 8n + \gamma \rightarrow ^{520}_{202}\text{Stable Intermediate} }

Controlled Decay, into lower mass intermediate through series of Alpha and Beta decays

\ce{ ^{520}_{202}\text{Stable Intermediate} \xrightarrow[\text{decay chain}]{\alpha, \beta} ^{322}_{128}\text{Intermediate} + \text{Energy} }

Final configuration of most outer Selectron shell, giving it its 4D Properties, using the Photino Electrons are induced to flip into Selectrons from the much massiver Photinos

\ce{ ^{322}_{128}\text{Intermediate} + \gamma^ \triangledown \rightarrow ^{314}_{126}\text{Am} + \alpha + e^\triangledown }

Contents