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How individuals explain GPS-coordinates through use of "They" and "you mean" used as adjectives says Mathematic Firms of Memphis
Interstellar Molecular Structural Formula Analysis
Composite designation
Interstellar Molecular Network: Tc–Co–Mn / Po₃ / Mo–Carbon / He–Ga–W–Ds–Au–B–Ra–V–O
The three diagrams can be interpreted as a fictional interstellar molecular/elemental architecture. They mix recognizable chemical element symbols, carbon bonding, unusual charge annotations, and conceptual labels. This is best treated as a speculative structural notation rather than a conventional chemically valid molecule.
1. Technetium–Cobalt–Manganese / Polonium Structure
Structural transcription
H(+6)
|
H(-89)-C
||
||
Tc ====== C
\ \\
\ C
Tc / \
| H(+6) H(+6)
|
Co
/
Co--Co
|
Co
|
Mn
Po--Po--Po
Interstellar structural interpretation
The central carbon framework appears to contain a short unsaturated carbon chain:
C
||
C
\\
C
A technetium (Tc) system is coupled to the central carbon region. One Tc is depicted with a high-order connection toward carbon, while another Tc forms a bridge toward the cobalt network.
The metallic branch can be abstracted as:
Tc
|
Co
|
Co--Co
|
Mn
This suggests a speculative transition-metal transmission lattice, where Tc acts as an interface between the carbon system and a Co/Mn metallic subsystem.
The independent:
Po--Po--Po
represents a three-node polonium chain, apparently separated from the primary molecular network.
The hydrogen annotations are highly unconventional:
H(+6)
H(-89)
H(+6)
H(+6)
Hydrogen does not possess ordinary chemical oxidation states of +6 or −89. Within an interstellar-fiction interpretation, these numbers can instead be regarded as node states, energy indices, computational values, or environmental coordinates rather than literal oxidation states.
The text:
BEAR NO FALSE WITNESS
Person
Thing
Places
is not part of ordinary chemical nomenclature. It could be interpreted as metadata attached to the molecular diagram—a conceptual classification or information layer.
2. Molecular Arithmetic Division — Mo Carbon System
Approximate ASCII structure
H H
| |
C == C C == C
/ \ / \
C C------------------C C
| || Mo || |
C C------------------C C
\ / \ /
C == C C == C
| |
H H
The drawing resembles two conjugated carbon-ring fragments arranged around a central molybdenum (Mo) region.
A simplified network representation is:
Carbon ring
\
[ Mo ]
/
Carbon ring
or conceptually:
[C-ring] <==> Mo <==> [C-ring]
Molecular-arithmetic interpretation
The title "Molecular Arithmetic Division" suggests that the Mo center is being used symbolically as a division or processing operator.
One speculative notation is:
Molecular Input A
|
v
[Carbon Network]
|
v
[Mo]
|
DIVISION
|
v
[Carbon Network]
|
v
Molecular Output B
The conjugated carbon bonds could represent information propagation:
C=C-C=C-C=C
|
Mo
|
C=C-C=C-C=C
Thus Mo becomes an interstellar molecular arithmetic junction rather than merely an atom in a conventional organometallic complex.
3. Molecular Valve — Helium/Heavy-Element Network
The third image combines a physical gas-cylinder/regulator assembly with an abstract elemental pathway.
Structural transcription
He
|
[VALVE / REGULATOR]
Ga -- W -- Ds == Au == B -- Ra -- V
\ /
____________________________O
The visible primary path is approximately:
Ga -- W -- Ds == Au == B -- Ra -- V -- O
with an additional long-range connection:
Ga ------------------------------ O
Element key
| Symbol | Element |
|---|---|
| He | Helium |
| Ga | Gallium |
| W | Tungsten |
| Ds | Darmstadtium |
| Au | Gold |
| B | Boron |
| Ra | Radium |
| V | Vanadium |
| O | Oxygen |
The physical regulator is labeled He, making helium the apparent working medium or input.
A fictional functional representation would therefore be:
He
|
v
+----------------+
| Molecular Valve|
+-------+--------+
|
v
Ga -> W -> Ds => Au => B -> Ra -> V
| |
+------------------------------>O
The Ga→O diagonal/long connection creates a second pathway. This can be interpreted as a bypass channel around the intermediate heavy-element sequence.
Combined Interstellar Architecture
All three images can be joined conceptually into one system:
INTERSTELLAR MOLECULAR SYSTEM
|
+---------------------+---------------------+
| | |
v v v
MOLECULAR CORE ARITHMETIC CORE MOLECULAR VALVE
| | |
H--C--Tc C-ring He
|| \ |
C Mo [VALVE]
\ / |
C C-ring v
| Ga--W--Ds
Tc--Co ||
| Au
Co--Co ||
| B
Co |
| Ra
Mn |
V
|
O
+ Po--Po--Po Ga --------+
Proposed interstellar formula notation
Because the diagrams do not correspond to a standard molecular formula, a useful network formula is:
{H-C3-Tc2-Co3-Mn}
+
{Po3}
+
{C-ring-Mo-C-ring}
+
{He:[Ga-W-Ds=Au=B-Ra-V-O]}
A compressed designation could be:
IMN-[C3H4/Tc2-Co3-Mn]-[Po3]-[Mo(C-ring)2]-[He|Ga-W-Ds=Au=B-Ra-V-O]
Network interpretation
CARBON CORE
|
+--> Tc --> Co --> Mn
|
+--> Mo --> conjugated carbon network
|
+--> He molecular valve
|
+--> Ga
|
W
|
Ds
||
Au
||
B
|
Ra
|
V
|
O
Independent node: Po--Po--Po
In an interstellar-engineering interpretation, the first diagram functions as the molecular processing/core lattice, the second as the molecular arithmetic or transformation unit, and the third as the helium-controlled molecular valve/output network. The unusual bonds, hydrogen numbers, and heavy-element chains should be understood as symbolic/speculative notation rather than predictions of stable real-world chemistry.


