I tiakina i:
| Kaituhi matua: | SICHE, BRENDAN |
|---|---|
| Hōputu: | Recurso digital |
| Reo: | Ingarihi |
| I whakaputaina: |
Zenodo
2026
|
| Ngā marau: | |
| Urunga tuihono: | https://doi.org/10.5281/zenodo.19337705 |
| Ngā Tūtohu: |
Tāpirihia he Tūtohu
Kāore He Tūtohu, Me noho koe te mea tuatahi ki te tūtohu i tēnei pūkete!
|
Ngā tūemi rite
Phase Decoherence and Regularity of the Three-Dimensional Navier–Stokes Equations
mā: SICHE, BRENDAN
I whakaputaina: (2023)
mā: SICHE, BRENDAN
I whakaputaina: (2023)
Global Regularity of the Three-Dimensional Navier–Stokes Equations via Spectral Gap and Frequency Rigidity
mā: Rodrigues, Vinicius Ramos
I whakaputaina: (2025)
mā: Rodrigues, Vinicius Ramos
I whakaputaina: (2025)
Global regularity for 3D Navier–Stokes via a Gate / No‑Theft critical‑element rigidity spine
mā: Feher, Zoltan
I whakaputaina: (2026)
mā: Feher, Zoltan
I whakaputaina: (2026)
The Ladder of Gaps Physics B: Post-Navier-Stokes Equations– Regularity Phase Transitions and the Hierarchy of Information Conservation
mā: zhou, changzheng, me ētahi atu.
I whakaputaina: (2026)
mā: zhou, changzheng, me ētahi atu.
I whakaputaina: (2026)
Paper 151: Exact-Zero Accounting Ghost Coefficient for the High-Vorticity Navier–Stokes Bridge
mā: Sarnowski, Michael
I whakaputaina: (2026)
mā: Sarnowski, Michael
I whakaputaina: (2026)
Navier-Stokes Existence and Smoothness: Resolution via Completing Closure
mā: Keeble, Clifford
I whakaputaina: (2026)
mā: Keeble, Clifford
I whakaputaina: (2026)
A Quantile–Interface Regularity Criterion for 3D Incompressible Navier–Stokes on T³: Dyadic Closure with Explicit Locking Verification (v1.3)
mā: Sabljić, Branimir
I whakaputaina: (2026)
mā: Sabljić, Branimir
I whakaputaina: (2026)
A Quantile–Interface Regularity Criterion for 3D Incompressible Navier–Stokes on ³: Dyadic Morrey-Envelope Closure with Explicit Locking (Vol. II)
mā: Sabljić, Branimir
I whakaputaina: (2026)
mā: Sabljić, Branimir
I whakaputaina: (2026)
The Navier-Stokes Singularity Does Not Exist in Physical Spacetime: A TCC Proof, the SRNUDT Boundary Theorem, and a Critique of the Continuous Spacetime Axiom
mā: Ploof, Bradley
I whakaputaina: (2026)
mā: Ploof, Bradley
I whakaputaina: (2026)
Exact Reduction and Equivalence for an Internal Phase-Reorganization Interpretation of 3D Navier–Stokes
mā: Yoshida
I whakaputaina: (2026)
mā: Yoshida
I whakaputaina: (2026)
Global Regularity of the 3D Incompressible Navier–Stokes Equations via Energy Estimates, Bootstrap Closure, and Vorticity Control
mā: Kevin Fathi
I whakaputaina: (2025)
mā: Kevin Fathi
I whakaputaina: (2025)
Supplementary Notes to "SAPZ Singularity Principle for Navier–Stokes (v5.6r1)": Corollaries and LEI Contract
mā: Lee, Byoungwoo
I whakaputaina: (2026)
mā: Lee, Byoungwoo
I whakaputaina: (2026)
A Geometrically Weighted Sobolev Framework for Navier–Stokes Regularity: The H^s_B Space, Contact Geometry Interpretation, and a No-Go Theorem for Metric Pressure Absorption
mā: Jeffers, Nicholas
I whakaputaina: (2026)
mā: Jeffers, Nicholas
I whakaputaina: (2026)
An Effective PDE for Shell-Angular Energy and Global Regularity of 3D Navier–Stokes
mā: Higgins, Rod
I whakaputaina: (2026)
mā: Higgins, Rod
I whakaputaina: (2026)
An Effective PDE for Shell-Angular Energy and Global Regularity of 3D Navier–Stokes
mā: Higgins, Rod
I whakaputaina: (2026)
mā: Higgins, Rod
I whakaputaina: (2026)
Collision-Robust Soft Projectors for Navier–Stokes Strain Geometry: Gap-Free Variation Bounds, Orlicz Tail Leakage, and a Coherence Certificate at the Enemy-Mode Threshold
mā: Giovanni, Esposito
I whakaputaina: (2026)
mā: Giovanni, Esposito
I whakaputaina: (2026)
Paper 151L: Final Coefficient Ledger and Margin Assembly for the High-Vorticity Navier–Stokes Bridge
mā: Sarnowski, Michael
I whakaputaina: (2026)
mā: Sarnowski, Michael
I whakaputaina: (2026)
Anti–Congruence and the Eigenframe Actuator: Structural Exclusion of Finite–Time Singularities in the Three–Dimensional Navier–Stokes Equations
mā: Esposito, Giovanni
I whakaputaina: (2026)
mā: Esposito, Giovanni
I whakaputaina: (2026)
Navier-Stokes equations: Unpredictability even without butterflies?
mā: Xavier Mora
I whakaputaina: (2018)
mā: Xavier Mora
I whakaputaina: (2018)
On the consistency of dynamic wetting boundary conditions for the Navier–Stokes–Cahn–Hilliard equations
mā: Demont, Tristan, me ētahi atu.
I whakaputaina: (2026)
mā: Demont, Tristan, me ētahi atu.
I whakaputaina: (2026)
An Infinite Family of Approximate Conservation Laws for Point Vortex Dynamics
mā: Sanchez, Bryan
I whakaputaina: (2026)
mā: Sanchez, Bryan
I whakaputaina: (2026)
An Infinite Family of Approximate Conservation Laws for Point Vortex Dynamics
mā: Sanchez, Bryan
I whakaputaina: (2026)
mā: Sanchez, Bryan
I whakaputaina: (2026)
An Infinite Family of Approximate Conservation Laws for Point Vortex Dynamics
mā: Sanchez, Bryan
I whakaputaina: (2026)
mā: Sanchez, Bryan
I whakaputaina: (2026)
An Infinite Family of Approximate Conservation Laws for Point Vortex Dynamics
mā: Sanchez, Bryan
I whakaputaina: (2026)
mā: Sanchez, Bryan
I whakaputaina: (2026)
An Infinite Family of Approximate Conservation Laws for Point Vortex Dynamics
mā: Sanchez, Bryan
I whakaputaina: (2026)
mā: Sanchez, Bryan
I whakaputaina: (2026)
A δ-Functional Riccati–Barrier Interface for Finite-Horizon Regularity Certificates (v3.8)
mā: Lee, Byoungwoo
I whakaputaina: (2026)
mā: Lee, Byoungwoo
I whakaputaina: (2026)
Recursive Collapse Scaffold Resolving the Navier–Stokes Global Regularity Problem
mā: Pryately, Carney Shea
I whakaputaina: (2025)
mā: Pryately, Carney Shea
I whakaputaina: (2025)
Kū Algebra: Problem & Solution Series III — Millennium Applications — Advanced Equilibrium Exercises(空代数:問題と解答シリーズ III ミレニアム問題応用演習:高度者向け)
mā: Ejima, Hirotaka
I whakaputaina: (2025)
mā: Ejima, Hirotaka
I whakaputaina: (2025)
Kū Algebra: Problem & Solution Series III — Millennium Applications — Advanced Equilibrium Exercises(空代数:問題と解答シリーズ III ミレニアム問題応用演習:高度者向け)
mā: Ejima, Hirotaka
I whakaputaina: (2025)
mā: Ejima, Hirotaka
I whakaputaina: (2025)
Time-periodic Poiseuille-type solution with minimally regular flow rate.
mā: Kristina Kaulakyte
I whakaputaina: (2021)
mā: Kristina Kaulakyte
I whakaputaina: (2021)
The Interval of Existence: Physical Foundations of Four Millennium Problems
mā: Golbere, Brian
I whakaputaina: (2025)
mā: Golbere, Brian
I whakaputaina: (2025)
Global Regularity of the Three-Dimensional Incompressible Navier-Stokes Equations
mā: Asiryan, Valery
I whakaputaina: (2025)
mā: Asiryan, Valery
I whakaputaina: (2025)
Mathematical Modelling of Traffic Flow Dynamics Around Roundabouts Using Navier–Stokes and Advection–Diffusion Equations
mā: Momanyi Mogire Krifix, me ētahi atu.
I whakaputaina: (2025)
mā: Momanyi Mogire Krifix, me ētahi atu.
I whakaputaina: (2025)
Fractal Holographic Turbulence: Conformal Invariance of Weak Solutions to Navier-Stokes Equations, Generalization of Onsager's Conjecture, and Nonlocal Entropy Extremum Principle
mā: ZHOU, changzheng, me ētahi atu.
I whakaputaina: (2025)
mā: ZHOU, changzheng, me ētahi atu.
I whakaputaina: (2025)
Numerical study on the magnetohydrodynamics of an oscillatory flow under inductionless and core-side-layer approximations
mā: J.A. Rizzo-Sierra
I whakaputaina: (2016)
mā: J.A. Rizzo-Sierra
I whakaputaina: (2016)
3D computational fluid dynamics modeling of temperature and humidity in a humidified greenhouse
mā: Cuauhtémoc Pérez-Vega
I whakaputaina: (2021)
mā: Cuauhtémoc Pérez-Vega
I whakaputaina: (2021)
Near Continuum Flows Over a Rotating Disk
mā: Gerardo Lara-Rodriguez
I whakaputaina: (2015)
mā: Gerardo Lara-Rodriguez
I whakaputaina: (2015)
Global Regularity of the Navier–Stokes Equations under the Principle of Finitary Variation (Formalized UDE)
mā: Vilela, Italo
I whakaputaina: (2025)
mā: Vilela, Italo
I whakaputaina: (2025)
Estudio comparativo de flujo de fluido a través de una placa de orificio usando las ecuaciones de Stokes y de Navier-Stokes
mā: Miryam Lucía Guerra-Mazo
I whakaputaina: (2016)
mā: Miryam Lucía Guerra-Mazo
I whakaputaina: (2016)
La ecuación de Navier-Stokes y multifractales
mā: José Roberto Mercado Escalante
I whakaputaina: (2008)
mā: José Roberto Mercado Escalante
I whakaputaina: (2008)
Ngā tūemi rite
-
Phase Decoherence and Regularity of the Three-Dimensional Navier–Stokes Equations
mā: SICHE, BRENDAN
I whakaputaina: (2023) -
Global Regularity of the Three-Dimensional Navier–Stokes Equations via Spectral Gap and Frequency Rigidity
mā: Rodrigues, Vinicius Ramos
I whakaputaina: (2025) -
Global regularity for 3D Navier–Stokes via a Gate / No‑Theft critical‑element rigidity spine
mā: Feher, Zoltan
I whakaputaina: (2026) -
The Ladder of Gaps Physics B: Post-Navier-Stokes Equations– Regularity Phase Transitions and the Hierarchy of Information Conservation
mā: zhou, changzheng, me ētahi atu.
I whakaputaina: (2026) -
Paper 151: Exact-Zero Accounting Ghost Coefficient for the High-Vorticity Navier–Stokes Bridge
mā: Sarnowski, Michael
I whakaputaina: (2026)