The Jabbar Adal Principle (JAP) is a theoretical framework in non-relativistic Hamiltonian mechanics that formally names, defines, and analyses the instantaneous ratio of kinetic to potential energy at every local subsystem of a closed physical system — a quantity unaddressed by the First Law, Second Law, or the Virial Theorem. This work introduces three new named physical quantities and one new named unit: Jabbar Asymmetry Parameter — A (i, t) = Ti (t) / |Vi (t) | Jb Virial Deviation Parameter — ΔA (i, t) = A (i, t) − Avir (i) Jb Adal Asymmetry Index — AAI (t) = (1/N) Σ |ΔA (i, t) | Jb The Jabbar unit Jb — a named dimensionless unit of virial deviation, analogous to the radian and the neper, named after the Jabbar family of Khanewal, Punjab, Pakistan — derived from Abdul Jabbar, daily-wage labourer, father of the author, whose sacrifices made this work possible. Two Proved Theorems Theorem 1 — The Jabbar Vitality Theorem: In any closed non-relativistic Hamiltonian system, physical processes are possible if and only if AAI (t) > 0 Jb. This is a necessary and sufficient biconditional, logically independent of the Second Law of Thermodynamics. Theorem R1 — The Oscillatory Modulation Theorem: For any closed non-relativistic Hamiltonian system of N ≥ 2 coupled harmonic oscillators with distinct normal-mode frequencies ω1 ≠ ω2: AAI (t) = AAI0 · e−γt · 1 + ε sin (ωbeat t + φ) Jb where ωbeat = |ω2 − ω1| is derived entirely from the Hamiltonian eigenvalues — not fitted, not assumed. The heat equation cannot predict this modulation. Derivation Foundations The proof rests on four independently established and undisputed premises: Hamilton's canonical equations (Hamilton, 1835) Normal-mode decomposition (linear algebra) Product-to-sum trigonometric identity (pure mathematics) Virial theorem for V ∝ x² (Clausius, 1870) Numerical Verification System parameters: m1 = 1. 0 kg, m2 = 2. 0 kg, k1 = 4. 0 N m−1, k2 = 6. 0 N m−1, κ = 1. 5 N m−1, γ = 0. 02 s−1. Theoretical ωbeat = 0. 646714 rad s−1 (from Hamiltonian eigenvalues) Fitted ωbeat = 0. 646686 rad s−1 (from numerical simulation) Deviation: 0. 0043% — 1 part in 23, 000 RMSE improvement over heat equation: 37. 54% Verified independently by Python (NumPy / DOP853 solver, rtol = 10−11) and PHP 8. 3 (4th-order Runge–Kutta). Both agree to six significant figures. Supplementary code: JAPcalculations. php (included, CC BY 4. 0). Domain of Validity All claims apply exclusively to closed physical systems governed by a non-relativistic Hamiltonian H = T + V. This explicitly excludes General Relativity, quantum field theory, and cosmological scales. The domain encompasses molecular vibrations, coupled mechanical resonators, acoustic lattices, optical traps, and any classical N-body system in the Newtonian limit. Priority and Novelty The following elements have no prior publication in the physics literature to the author's knowledge: The quantity A (i, t) = Ti/|Vi| as a named observable The Virial Deviation Parameter ΔA (i, t) The Adal Asymmetry Index AAI (t) The Jabbar unit Jb The Jabbar Vitality Theorem (biconditional) Theorem R1 (oscillatory modulation of AAI) Under CC BY 4. 0, any use of these named quantities requires citation of this work. Open Problem — JAP-Entropy Conjecture In the zero-temperature limit (Tbath → 0), during monotonic relaxation, it is conjectured that: AAI (t) ∝ σep (t) / ⟨T (t) ⟩ where σep is the entropy production rate. Proof or disproof of this conjecture is the highest-value open problem in the JAP framework. About the Author Muhammad Umar Jabbar (also: Umar Adl Jabbar) was born on 1 February 2008 in village 4/A. H, Khanewal, Punjab, Pakistan. He is 18 years old at the time of publication. His father, Abdul Jabbar, worked throughout his life as a daily-wage labourer and is now bedridden with heart disease. His mother works as a domestic worker earning Rs. 5, 000 per month. He has four siblings — two brothers and two sisters — all in education. He could not afford medical college. He could not afford nursing school. He had no university, no laboratory, no supervisor, and no funding. He is believed to be the youngest independent theoretical physics researcher in Pakistan to formally propose and prove named theorems in non-relativistic Hamiltonian mechanics without any institutional support. The Jabbar unit Jb is named after his family — derived from his father Abdul Jabbar's name — so that the sacrifice of a labourer from a small Pakistani village is permanently recorded in the language of science. ORCID: 0009-0008-5968-0991Email: umarjaumofficial@gmail. comLicence: CC BY 4. 0
Muhammad Umar Jabbar Jabbar (Mon,) studied this question.