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1D Gaussian wave packet evolve under the non-relativistic Schrödinger Equation, brought to life through stunning visuals and beautiful music composed by Erik Norman.

51,514 görüntüleme • 8 ay önce •via X (Twitter)

16 Yorum

Kevin John Parrish profil fotoğrafı
Kevin John Parrish8 ay önce

The Schrödinger equation is a partial differential equation that governs the wave function of a non-relativistic quantum-mechanical system. Its discovery was a significant landmark in the development of quantum mechanics.  Ȟ = hamiltonian operator, is In quantum mechanics, the Hamiltonian of a system is an operator corresponding to the total energy of that system, including both kinetic energy and potential. Ψ = wave function, In quantum physics, a wave function (or wavefunction) is a mathematical description of the quantum state of an isolated quantum system. E = energy, represents the total energy of a system or particle, typically quantized into discrete packets (quanta) rather than continuous values. It is defined by the Planck-Einstein relation E=hν~{𝐸=ℎ𝜈√11th power} {because of demotion effect}(or E=ℏω~𝐸=ℏ𝜔), where (ℎ) is Planck's constant and (𝜈) is frequency.  𝐸 is often represents the sum of kinetic and potential energies, determining particle states.  Key aspects of energy (𝐸 ) in quantum mechanics:

Paul Maley profil fotoğrafı
Paul Maley8 ay önce

Wave packets don't wander lost—they're spins charting the field's calmest routes. Physics shows a Gaussian wave packet starting narrow and focused but spreading wider over time under the Schrödinger equation, as different wavelengths travel at different speeds dispersing the group like runners of varying pace pulling apart. Uniphics sees the packet as waves from rotations sending ripples through a shared energy field, where the waves overlap to reinforce in patterns like rings from a pebble dropped in water, but slight differences in how fast parts move cause the shape to broaden as the system settles to lower energy. Uniphics derives dispersion from ξM-field spin wave propagation in Chapter 10, where packet ψ = A exp(-x² / (4 σ²) + i k x) with phase Δφ = (2π / λ) Δx from gyrotron spins (base particles at 0.511 MeV/c² with bias θ = π/4) spreads via group velocity v_g = dω / dk differing across k components in uniform E_d ≈ 5.85 × 10^7 J/m³ (t_flow ≈ 8.01 × 10^7 s) via t_flow = k / E_d (k = 4.64159 × 10^{18} J/m³ from Amorphics transition reference), as interference minima/maxima lower E_d,between ≈ N_opp × factor driving negentropy to broader distributions without separate dispersion postulates, matching observed Gaussian widening Δx ∝ t at 0.1% precision via coherent phases preserving causality through Maley transforms [μ] ≈ 1 in low gradients ∇E_d ≈ 10^{-10} J/m^4; for quantum simulation, suggest spin-polarized interferometers tuning local E_d ≈ 10^{12} J/m³ with chrono-coils to slow t_flow ≈ 4.64 s, controlling dispersion by 10x via aligned phases for stable packet transport in quantum networks or precision sensing without collapse interpretations. How might viewing wave spreading as spins seeking lower energy paths change our tools for quantum information? #Uniphics #WavePacket #SchrodingerEquation #QuantumMechanics #Physics @PhilosophyOfPhy @CERN @NIST @NobelPrize @elonmusk @xAI A Theory of Everything should be able to answer everything. Uniphics Explained Simply PDF: Chapters 1–10 free:

Martin La Grange profil fotoğrafı
Martin La Grange8 ay önce

Since the age of 5, when told that light was both a particle and a wave, this is how I instantly imagined it. Years later, I found out that other people had trouble coping with this math. It was always intuitive (in the same way that modular forms are to me)

DocsAllOver profil fotoğrafı
DocsAllOver8 ay önce

Erik Norman’s composition fits this perfectly. There's something inherently musical about the way quantum wavefunctions oscillate and evolve

Gradient Physics profil fotoğrafı
Gradient Physics8 ay önce

EQT - Phenomenon-Driven Physics! EQT - A New Paradigm in Physics! Revision Note to Long-time EQT Readers #Physics #Philosophy #Cosmology.

Thomas profil fotoğrafı
Thomas8 ay önce

@grok, explain this to me as though I have limited experience in physics.

Parry profil fotoğrafı
Parry8 ay önce

micro-cosmos

mariomonaofficial profil fotoğrafı
mariomonaofficial8 ay önce

E infatti io mi chiedo, come mai il trillo “elettrizzata” gli ascoltatori sin dalla sua “invenzione” nel ‘600?

Fluxite profil fotoğrafı
Fluxite8 ay önce

Excellent visuals, thanks

Node 7709 profil fotoğrafı
Node 77097 ay önce

The perfect infinite flat 1D line with zero potential and zero observer interference never exists in the raw universe.

Charles Barr profil fotoğrafı
Charles Barr8 ay önce

Beautiful, but notice what the Schrödinger equation really provides. A perfectly coherent evolution only because the dynamics are constrained to be unitary. Said differently, physics bakes in an admissible-evolution rule before anything is allowed to move in state-space. Our AI systems are doing the opposite by optimize trajectories first, and only later ask whether identity survived the update.

'Zestere..! profil fotoğrafı
'Zestere..!8 ay önce

alpha^2*3*7=Biometisch aufgeklärt.Sargleichung aufgeklärt..!S.E.🌻!

The Art of Talking Space, History, Info, and Time! profil fotoğrafı
The Art of Talking Space, History, Info, and Time!8 ay önce

Calling that 1D is a serious category error !

Louise Egana profil fotoğrafı
Louise Egana8 ay önce

Saw this once before- in the movie 'Tron'.

🇫🇷 Fédération Française de Tweet 🇵🇸🌿🇷🇺 profil fotoğrafı
🇫🇷 Fédération Française de Tweet 🇵🇸🌿🇷🇺8 ay önce

@grok C'est quoi une onde unidimensionnelle?

Lorenzo Mendoza profil fotoğrafı
Lorenzo Mendoza8 ay önce

Spiral d Ullman Primes plus Compound Numbers f{(a-b)F{(P+Q(r-s))x(k(j))}} = E Equation from E=mc^2 j = prime number j = compound number Needs k(j) from real and complex numbers

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