I tiakina i:
| Kaituhi matua: | Olgac, Enis |
|---|---|
| Hōputu: | Recurso digital |
| Reo: | Ingarihi |
| I whakaputaina: |
Zenodo
2025
|
| Ngā marau: | |
| Urunga tuihono: | https://doi.org/10.5281/zenodo.17060799 |
| Ngā Tūtohu: |
Tāpirihia he Tūtohu
Kāore He Tūtohu, Me noho koe te mea tuatahi ki te tūtohu i tēnei pūkete!
|
Ngā tūemi rite
Methodological Generalization of the Collatz Sequences to (1 + 2^k )n + S_k(n) with Computational Verification for k = 1 up to k = 42
mā: Ammar, HAMDOUS
I whakaputaina: (2025)
mā: Ammar, HAMDOUS
I whakaputaina: (2025)
Fake Cycles, Spectral Gap, and the BIP Property in Collatz Dynamics
mā: okabe, arata
I whakaputaina: (2026)
mā: okabe, arata
I whakaputaina: (2026)
Collatz‑12: Python Implementation and Sanctuary Dynamics Exploration Tools
mā: Harada, HIroshi
I whakaputaina: (2026)
mā: Harada, HIroshi
I whakaputaina: (2026)
Collatz Topology and Modular Backwash: A Structural Framework for Residue Recurrence and Folding
mā: Moon, KyungUp
I whakaputaina: (2025)
mā: Moon, KyungUp
I whakaputaina: (2025)
Sequence of Syracuse : Extensions of types 3n+b and 5n+1
mā: BALLASI, Jacques
I whakaputaina: (2025)
mā: BALLASI, Jacques
I whakaputaina: (2025)
Sequence of Syracuse : Extensions of types 3n+b and 5n+1
mā: BALLASI, Jacques
I whakaputaina: (2025)
mā: BALLASI, Jacques
I whakaputaina: (2025)
A Proof of the Collatz Conjecture
mā: Uchikawa, Kkiyoshi
I whakaputaina: (2025)
mā: Uchikawa, Kkiyoshi
I whakaputaina: (2025)
On the non-existence of non-trivial Collatz cycles: a conditional formal proof in Lean 4 with documented structural obstructions
mā: Merle, Eric
I whakaputaina: (2026)
mā: Merle, Eric
I whakaputaina: (2026)
Carry Mixing and Spectral Gap Analysis of the Collatz Conjecture: 202 Lean4 Theorems and the Fibonacci Firewall
mā: Fujimoto, Nobuki, me ētahi atu.
I whakaputaina: (2026)
mā: Fujimoto, Nobuki, me ētahi atu.
I whakaputaina: (2026)
UCT: Number Theory in E₈ Geometric Space
mā: Novgorodtsev, Aleksei
I whakaputaina: (2026)
mā: Novgorodtsev, Aleksei
I whakaputaina: (2026)
Considerations on the Collatz Conjecture
mā: Loris, Audemir
I whakaputaina: (2024)
mā: Loris, Audemir
I whakaputaina: (2024)
A Delta-State Finite Automaton Framework for High-Energy Collatz Corridors: Exhaustive Symbolic Enumeration and Profinite State Compression
mā: Moon, Kyung-Up
I whakaputaina: (2026)
mā: Moon, Kyung-Up
I whakaputaina: (2026)
The Matsuura Structural Hierarchy: A Unified Depth Framework for Odd Integers and Collatz-Type Dynamics
mā: Matsuura, Yoshihito
I whakaputaina: (2025)
mā: Matsuura, Yoshihito
I whakaputaina: (2025)
Collatz Dynamics I: Skeleton Bound and the Elimination of Non-Trivial Cycles
mā: Moon, KyungUp
I whakaputaina: (2025)
mā: Moon, KyungUp
I whakaputaina: (2025)
The Shadow Collatz Conjecture: The Journey of All Integers Toward −1
mā: Miyazawa, Ryosuke
I whakaputaina: (2025)
mā: Miyazawa, Ryosuke
I whakaputaina: (2025)
A Universal Drift Invariant and the Resolution of the Collatz Conjecture
mā: Thaler, Mario Heinrich
I whakaputaina: (2025)
mā: Thaler, Mario Heinrich
I whakaputaina: (2025)
Collatz Normal Form: Time as Degree-of-Freedom Elimination and the Trace-Compressed Engine
mā: Moon, KyungUp
I whakaputaina: (2026)
mā: Moon, KyungUp
I whakaputaina: (2026)
The Unified Field Must Be Surjective Holism
mā: Zhu, Jianbing
I whakaputaina: (2026)
mā: Zhu, Jianbing
I whakaputaina: (2026)
11. El mapa crítico, doble expansión y cierre 2-ádico del gap orbital
mā: Miguel Cerdá Bennassar
I whakaputaina: (2026)
mā: Miguel Cerdá Bennassar
I whakaputaina: (2026)
V. The function φ and the extension of the 2-adic budget argument to arbitrary k_0 in the Collatz dynamics
mā: Miguel Cerdá Bennassar
I whakaputaina: (2026)
mā: Miguel Cerdá Bennassar
I whakaputaina: (2026)
Collatz Conjecture: A Reverse Construction Bijective Proof via Layered Directed Acyclic Graphs
mā: Aaron Brolin Fish
I whakaputaina: (2025)
mā: Aaron Brolin Fish
I whakaputaina: (2025)
WEIGHTED TIME SERIES ANALYSIS FOR ELECTROENCEPHALOGRAPHIC SOURCE LOCALIZATION
mā: EDUARDO GIRALDO
I whakaputaina: (2012)
mā: EDUARDO GIRALDO
I whakaputaina: (2012)
Collatz Conjecture: Universal Cycle Descent (27n+19)/32 < n ? Lean4 Verified for All n>=4
mā: Fujimoto, Nobuki, me ētahi atu.
I whakaputaina: (2026)
mā: Fujimoto, Nobuki, me ētahi atu.
I whakaputaina: (2026)
Foundations of the Meikyo–Shisui Theory
mā: Ueoka, Yoshiki
I whakaputaina: (2026)
mā: Ueoka, Yoshiki
I whakaputaina: (2026)
Strukturelle Wahrheit – Wie Drift, Spiralzeit und Geometrie die moderne Physik überholen
mā: Andres, Benjamin
I whakaputaina: (2025)
mā: Andres, Benjamin
I whakaputaina: (2025)
Stalker's Resolution of the Collatz Conjecture
mā: Stalker, Eric
I whakaputaina: (2025)
mā: Stalker, Eric
I whakaputaina: (2025)
Stalker's Resolution of the Collatz Conjecture
mā: Stalker, Eric
I whakaputaina: (2025)
mā: Stalker, Eric
I whakaputaina: (2025)
Layered Recursive Compression as a Structural Proof of the Collatz Conjecture (Version 92)
mā: Kawanishi, Yoshihito
I whakaputaina: (2025)
mā: Kawanishi, Yoshihito
I whakaputaina: (2025)
Proofing Collatz with AI: A Retrospective on an Experimental Publication Process
mā: Thaler, Mario Heinrich
I whakaputaina: (2025)
mā: Thaler, Mario Heinrich
I whakaputaina: (2025)
The Infinium (△₁ₓ₁): The Geometric Quantum that Generates Mathematics A Unified Review Article: From Measure and Smoothness to a Universal Categorical Scheme, Motivic Foundation, and Formal Logic (2)
mā: Petrov, Alexey (KAMAZ)
I whakaputaina: (2026)
mā: Petrov, Alexey (KAMAZ)
I whakaputaina: (2026)
Pseudo Students' Thinking Process in Solving Function Composition Inverse Problems Based on Piaget's Theory
mā: Dinda Nurma, Hilawati, me ētahi atu.
I whakaputaina: (2026)
mā: Dinda Nurma, Hilawati, me ētahi atu.
I whakaputaina: (2026)
One-Dimensional Inverse Scattering Problem in Acoustics
mā: Demetrios Gerogiannis
I whakaputaina: (2011)
mā: Demetrios Gerogiannis
I whakaputaina: (2011)
INVERSE KINEMATICS FOR SYNCHRONIZATION OF THREE DEGREES OF FREEDOM ROBOTS: TECHNIQUES AND APPLICATIONS
mā: Griselle Salazar
I whakaputaina: (2024)
mā: Griselle Salazar
I whakaputaina: (2024)
Collatz Conjecture: 100% Universal Coverage ? All 10 Mod Cases Proven forall-n, Zero Sorry, Lean4 Verified
mā: Fujimoto, Nobuki, me ētahi atu.
I whakaputaina: (2026)
mā: Fujimoto, Nobuki, me ētahi atu.
I whakaputaina: (2026)
A Regularized Hybrid-Optimization Framework for High-Resolution Modeling of the Lithospheric Stress Field: Application to the Makran-Zagros Collision Zone
mā: Dashtbazi, Arash, me ētahi atu.
I whakaputaina: (2025)
mā: Dashtbazi, Arash, me ētahi atu.
I whakaputaina: (2025)
Inverse Photoemission Spectroscopy of Multiwall Carbon Nanotubes
mā: Samuel Hevia
I whakaputaina: (2006)
mā: Samuel Hevia
I whakaputaina: (2006)
A GPU IMPLEMENTATION OF THE SECOND ORDER ADJOINT STATE THEORY TO QUANTIFY THE UNCERTAINTY ON FWI RESULTS
mā: Sergio Alberto Abreo
I whakaputaina: (2018)
mā: Sergio Alberto Abreo
I whakaputaina: (2018)
Data interpolation in the definition of management zones
mā: Kelyn Schenatto
I whakaputaina: (2016)
mā: Kelyn Schenatto
I whakaputaina: (2016)
Modelling and Inverse Kinematics of Tendon Driven Continuum Robots using Cascade Correlation
mā: Ashok Madan, me ētahi atu.
I whakaputaina: (2022)
mā: Ashok Madan, me ētahi atu.
I whakaputaina: (2022)
Dynamic Inverse Problem Solution Using a Kalman Filter Smoother for Neuron al Activity Estimation
mā: Eduardo Giraldo-Suárez
I whakaputaina: (2011)
mā: Eduardo Giraldo-Suárez
I whakaputaina: (2011)
Ngā tūemi rite
-
Methodological Generalization of the Collatz Sequences to (1 + 2^k )n + S_k(n) with Computational Verification for k = 1 up to k = 42
mā: Ammar, HAMDOUS
I whakaputaina: (2025) -
Fake Cycles, Spectral Gap, and the BIP Property in Collatz Dynamics
mā: okabe, arata
I whakaputaina: (2026) -
Collatz‑12: Python Implementation and Sanctuary Dynamics Exploration Tools
mā: Harada, HIroshi
I whakaputaina: (2026) -
Collatz Topology and Modular Backwash: A Structural Framework for Residue Recurrence and Folding
mā: Moon, KyungUp
I whakaputaina: (2025) -
Sequence of Syracuse : Extensions of types 3n+b and 5n+1
mā: BALLASI, Jacques
I whakaputaina: (2025)