A hypothesis-driven chemistry concept combining symbolic chemistry, mathematical pH modeling, and computational investigation.
Author: Hafiz Mohammed Huzaifa Shamim (HMHS)
Classification: Theoretical / Mathematical Chemistry Concept
Proposed composition: NLiNa(H)4(O)2
Scientific status: Hypothetical; not experimentally confirmed
Interactive Lab: https://hmhselement.edgeone.dev
HMHS Element documents a personal theoretical framework that combines symbolic chemistry notation with a custom mathematical pH model. The project is intended as a computational/research concept that can be tested, criticized, and improved.
Important: HMHS Element is the project's name for a theoretical result. NLiNa(H)4(O)2 is a proposed composition containing known elements; this repository does not claim discovery of a new periodic-table element or experimentally verified compound.
O2 + H2O + N2
N + O → N–O
N–O + H2O → NO–H2O
These are symbolic transformations in the model, not experimentally validated or balanced reaction equations.
The framework introduces Na symbolically. The original concept refers to a gas state; this repository deliberately avoids operational instructions for producing or handling reactive sodium vapor.
N/O/H2O intermediate + Na → sodium-containing intermediate
Intermediate + H2 → HMHS state
Primary pH = 7.34
7.34 is an illustrative model input, not an experimental measurement.
The example model adds lithium:
NO2Na(H)4 + Li → NLiNa(H)4(O)2
This notation is a hypothesis requiring chemical validation. No procedure for producing lithium vapor is provided.
Primary pH = 7.34
Secondary pH = 4.34
Difference = 3.00
Under simplified aqueous assumptions, a 3-unit pH difference corresponds to a factor of 1000 in hydrogen-ion concentration/activity. This mathematical observation does not establish the identity or stability of the proposed composition.
The project's custom calculation is documented explicitly:
7.34 × 2 = 14.68
4.34 × 2 = 8.68
14.68 − 8.68 = 6.00
The framework therefore defines:
HMHS target value = 6
This is an HMHS-defined mathematical rule, not a standard chemistry or pH equation.
NLiNa(H)4(O)2
Composition by element:
- N — nitrogen ×1
- Li — lithium ×1
- Na — sodium ×1
- H — hydrogen ×4
- O — oxygen ×2
Total atoms in the written formula: 9.
The safest next stage is computational validation rather than assuming the symbolic pathway is chemically correct:
- Formula and charge-balance analysis
- Candidate structure generation
- Electronic-structure calculations
- Stability and decomposition analysis
- Spectral prediction
- Explicit aqueous-system pH modeling
- Deterministic implementation of the HMHS mathematical rule
Idea → Symbolic Model → Algorithm → Computational Chemistry → Predictions → Validation
This repository is a documentation and research sandbox. It does not establish that:
NLiNa(H)4(O)2is a stable compound;- the symbolic transformations are balanced reactions;
- the chosen pH values arise from the proposed composition;
- the result is a new chemical element; or
- the proposed material can be safely synthesized.
Independent review and reproducible computational tests are encouraged.
Relevant topics/search terms:
hmhs-element theoretical-chemistry mathematical-chemistry computational-chemistry pH-model chemical-hypothesis scientific-computing chemistry-simulation NLiNaH4O2 open-science research-project hmhs
If you find the project interesting, ⭐ star the repository, discuss the mathematics, open a constructive issue, or contribute computational validation. Please keep engagement genuine—artificial stars, views, or spam do not help scientific credibility.
Hafiz Mohammed Huzaifa Shamim (HMHS)
@misc{shamim2026hmhselement,
author = {Hafiz Mohammed Huzaifa Shamim},
title = {HMHS Element: Theoretical and Mathematical Framework for NLiNa(H)4(O)2},
year = {2026},
publisher = {GitHub},
howpublished = {GitHub repository}
}