Typed states for the displayed outbound observations.
Source: paper_references, paper_reference_links, observed 2026-08-07T14:41:36.766620Z
Paper Citation Record · LEDGER
As of 9 August 2026, this Paper Citation Record lists 37 of 37 outbound references and 3 inbound Pith citation observations for arXiv:2505.18131.
A citation records a reference. It does not transfer a finding from one paper to another.
Typed states for the displayed outbound observations.
Source: paper_references, paper_reference_links, observed 2026-08-07T14:41:36.766620Z
One-hop event checks from named stored sources.
Source: scholarly_work_events, retraction_status_cache, observed 2026-08-08T06:32:00.761636+00:00
Pith citing papers itemized under the disclosed page cap.
Source: paper_references, paper_reference_links, observed 2026-05-18T03:29:15.570760Z
A source-named dated measurement, never combined with another source.
Source: arxiv_reference, observed 2026-05-18T03:30:50.487543Z
37 of 37 outbound references displayed
External citation measurements
No source-named external measurement is stored.
Observation a43e6b0a-5670-476c-bbd4-31f1368b0ef8 · outbound
Leveraging KANs for Expedient Training of Multichannel MLPs via Preconditioning and Geometric Refinement DeepOKAN: Deep Operator Network Based on Kolmogorov Arnold Networks for Mechanics Problems
Reference 1
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Observation 5c6ed50d-785e-4479-9a16-cef03ccaa356 · outbound
Leveraging KANs for Expedient Training of Multichannel MLPs via Preconditioning and Geometric Refinement (38) We proceed now to the inductive step forr≥2
Reference 2
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Observation 3ae60d8e-80e1-4839-8c79-64d232e126ed · outbound
Leveraging KANs for Expedient Training of Multichannel MLPs via Preconditioning and Geometric Refinement Can KAN Work? Exploring the Potential of Kolmogorov-Arnold Networks in Computer Vision
Reference 6
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Observation e4f59442-71a6-4704-8e9b-d0e9f9f2a169 · outbound
Leveraging KANs for Expedient Training of Multichannel MLPs via Preconditioning and Geometric Refinement Demonstrating the Efficacy of Kolmogorov-Arnold Networks in Vision Tasks
Reference 7
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Observation 65322624-be23-4f16-b32e-2aa68f8e30f9 · outbound
Leveraging KANs for Expedient Training of Multichannel MLPs via Preconditioning and Geometric Refinement Detecting Dead Weights and Units in Neural Networks
Reference 10
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Observation 9607c1e8-a447-42b4-9bb7-2e2fcf825ba5 · outbound
Leveraging KANs for Expedient Training of Multichannel MLPs via Preconditioning and Geometric Refinement On the Convergence of (Stochastic) Gradient Descent for Kolmogorov--Arnold Networks
Reference 11
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Observation 12bd6a03-a252-45bd-8260-8ccf724c4410 · outbound
Leveraging KANs for Expedient Training of Multichannel MLPs via Preconditioning and Geometric Refinement A., Jacob, B., Murphy, S
Reference 16
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Observation d7fdf2c5-e304-495d-891a-0b35679ea990 · outbound
Leveraging KANs for Expedient Training of Multichannel MLPs via Preconditioning and Geometric Refinement GKAN: Graph Kolmogorov-Arnold Networks
Reference 18
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Observation 0f27f497-14a5-492c-99b2-ae137987e93c · outbound
Leveraging KANs for Expedient Training of Multichannel MLPs via Preconditioning and Geometric Refinement Higher-order-ReLU-KANs (HRKANs) for solving physics-informed neural networks (PINNs) more accurately, robustly and faster
Reference 23
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Observation 52114120-c127-4eae-b22d-0dd4403d96e8 · outbound
Leveraging KANs for Expedient Training of Multichannel MLPs via Preconditioning and Geometric Refinement A Survey on Kolmogorov-Arnold Network
Reference 24
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Observation c270de27-a23c-459f-a16e-4341b6b25721 · outbound
Leveraging KANs for Expedient Training of Multichannel MLPs via Preconditioning and Geometric Refinement J., Blanco, L., Pereira, R., and Caus, M
Reference 27
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Observation d51c65a4-a3fe-49de-8fc5-6471d9706f5f · outbound
Leveraging KANs for Expedient Training of Multichannel MLPs via Preconditioning and Geometric Refinement K., Li, B., and Perdikaris, P
Reference 30
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Observation 06cd3b2f-eac3-4e48-ae9a-33aca99149fc · outbound
Leveraging KANs for Expedient Training of Multichannel MLPs via Preconditioning and Geometric Refinement doi: 10.1016/j.inffus
Reference 31
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Observation 83a92786-088a-4887-8950-4a0a52ea5210 · outbound
Leveraging KANs for Expedient Training of Multichannel MLPs via Preconditioning and Geometric Refinement KAN versus MLP on Irregular or Noisy Functions
Reference 32
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Observation c62b1ffe-f005-4a84-9936-b0bcbd765341 · outbound
Leveraging KANs for Expedient Training of Multichannel MLPs via Preconditioning and Geometric Refinement We define the ReLUr−1 basis functions as ψ[r] i (x) =ReLU(x−t i)r−1.(30) Define A[r] ∈R (n+r−1)×(n+r−1) as the change-of-basis matrix between B[r] = h b[r] 1−r,
Reference 33
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Observation 542924f9-bb5f-4a63-86c1-6e625861e313 · outbound
Leveraging KANs for Expedient Training of Multichannel MLPs via Preconditioning and Geometric Refinement Unresolved cited work
Reference 35
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Observation 3ea988b3-53f1-44b8-89f4-0068c8891a97 · outbound
Leveraging KANs for Expedient Training of Multichannel MLPs via Preconditioning and Geometric Refinement Unresolved cited work
Reference 36
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Observation 4348de9f-3c96-4929-b4c9-0a231f65ed28 · outbound
Leveraging KANs for Expedient Training of Multichannel MLPs via Preconditioning and Geometric Refinement Unresolved cited work
Reference 37
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No event found in the named queried sources as of 2026-08-08T06:32:00.761636+00:00.
Observation 5213f60a-56e1-4a92-ae6c-62c654983778 · outbound
Leveraging KANs for Expedient Training of Multichannel MLPs via Preconditioning and Geometric Refinement A comprehensive and FAIR comparison between MLP and KAN representations for differential equations and operator networks
Reference 1958
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Observation 2716aa12-0820-4195-8de7-5e7f43962a5e · outbound
Leveraging KANs for Expedient Training of Multichannel MLPs via Preconditioning and Geometric Refinement Physics Informed Kolmogorov-Arnold Neural Networks for Dynamical Analysis via Efficent-KAN and WAV-KAN
Reference 1959
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Observation bbdd7a56-b7b2-4a17-9fba-0f1b8a76a556 · outbound
Leveraging KANs for Expedient Training of Multichannel MLPs via Preconditioning and Geometric Refinement Fast and Accurate Deep Network Learning by Exponential Linear Units (ELUs)
Reference 1988
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Observation 981ea586-e5b9-48b4-a24e-5e03516dee74 · outbound
Leveraging KANs for Expedient Training of Multichannel MLPs via Preconditioning and Geometric Refinement Chebyshev Polynomial-Based Kolmogorov-Arnold Networks: An Efficient Architecture for Nonlinear Function Approximation
Reference 1993
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Observation fc3cf6b5-0b7a-49c2-b1da-698838336912 · outbound
Leveraging KANs for Expedient Training of Multichannel MLPs via Preconditioning and Geometric Refinement From PINNs to PIKANs: Recent Advances in Physics-Informed Machine Learning
Reference 1998
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Observation 326ef646-7d99-4676-8eea-c9219d744a74 · outbound
Leveraging KANs for Expedient Training of Multichannel MLPs via Preconditioning and Geometric Refinement ReLU-KAN: New Kolmogorov-Arnold Networks that Only Need Matrix Addition, Dot Multiplication, and ReLU
Reference 1999
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Observation e6112ab4-4496-431c-8fc0-0b45d5fa43c4 · outbound
Leveraging KANs for Expedient Training of Multichannel MLPs via Preconditioning and Geometric Refinement On the Activation Function Dependence of the Spectral Bias of Neural Networks
Reference 2003
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Observation 25de4e36-0473-41d9-b7f9-2bf06b7b37f6 · outbound
Leveraging KANs for Expedient Training of Multichannel MLPs via Preconditioning and Geometric Refinement An Expert's Guide to Training Physics-informed Neural Networks
Reference 2004
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Observation ba797265-2eec-44f5-8d10-dc9e4b5ecda9 · outbound
Leveraging KANs for Expedient Training of Multichannel MLPs via Preconditioning and Geometric Refinement KAGNNs: Kolmogorov-Arnold Networks meet Graph Learning
Reference 2009
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Observation 4de3d28d-e4ff-4fac-96e8-ceefb02f1c36 · outbound
Leveraging KANs for Expedient Training of Multichannel MLPs via Preconditioning and Geometric Refinement KAN 2.0: Kolmogorov-Arnold Networks Meet Science
Reference 2013
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Observation 4ff515cc-ef00-41d0-a7d4-66c3f56515c0 · outbound
Leveraging KANs for Expedient Training of Multichannel MLPs via Preconditioning and Geometric Refinement SPIKANs: Separable Physics-Informed Kolmogorov-Arnold Networks
Reference 2015
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Observation 8f553753-46aa-42a7-9086-3d5193a1d80c · outbound
Leveraging KANs for Expedient Training of Multichannel MLPs via Preconditioning and Geometric Refinement Wav-KAN: Wavelet Kolmogorov-Arnold Networks
Reference 2016
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Observation 50b6f878-a269-41ee-a046-77b8f0b2d59a · outbound
Leveraging KANs for Expedient Training of Multichannel MLPs via Preconditioning and Geometric Refinement Physics-informed Kolmogorov-Arnold Network with Chebyshev Polynomials for Fluid Mechanics
Reference 2017
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Observation a0a4eb29-bcf7-403a-8792-52c714472d87 · outbound
Leveraging KANs for Expedient Training of Multichannel MLPs via Preconditioning and Geometric Refinement Layer Normalization
Reference 2018
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Observation 95dcfc66-8209-415f-9deb-f09ddf80ba2d · outbound
Leveraging KANs for Expedient Training of Multichannel MLPs via Preconditioning and Geometric Refinement MLP-KAN: Unifying Deep Representation and Function Learning
Reference 2020
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Observation abc002ce-0817-43cb-bf54-5d5797806ed5 · outbound
Leveraging KANs for Expedient Training of Multichannel MLPs via Preconditioning and Geometric Refinement Kolmogorov-Arnold Networks (KAN) for Time Series Classification and Robust Analysis
Reference 2021
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No event found in the named queried sources as of 2026-08-08T06:32:00.761636+00:00.
Observation 11af4b06-d585-48ef-a8e4-e23c1e1fccb8 · outbound
Leveraging KANs for Expedient Training of Multichannel MLPs via Preconditioning and Geometric Refinement Kolmogorov-Arnold Networks: A Critical Assessment of Claims, Performance, and Practical Viability
Reference 2022
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Observation fcaca961-0a17-484f-a79c-718691a612c0 · outbound
Leveraging KANs for Expedient Training of Multichannel MLPs via Preconditioning and Geometric Refinement PirateNets: Physics-informed Deep Learning with Residual Adaptive Networks
Reference 2023
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Observation 2a64e3b3-00bd-47b0-b52c-47fe32df0232 · outbound
Leveraging KANs for Expedient Training of Multichannel MLPs via Preconditioning and Geometric Refinement A preliminary study on continual learning in computer vision using Kolmogorov-Arnold Networks
Reference 2024
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Observation e9664c3a-ddc5-49dd-a4d3-6be5763b27c6 · inbound
A Practitioner's Guide to Kolmogorov-Arnold Networks Leveraging KANs for Expedient Training of Multichannel MLPs via Preconditioning and Geometric Refinement
Reference 49
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Observation f52d1f4b-f45a-498c-a0a2-e89c5b5e6d34 · inbound
Scale-Parameter Selection in Gaussian Kolmogorov-Arnold Networks Leveraging KANs for Expedient Training of Multichannel MLPs via Preconditioning and Geometric Refinement
Reference 20
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Observation 43d33cf9-66ac-4135-a6eb-143a16aca0d8 · inbound
Partition-of-Unity Gaussian Kolmogorov-Arnold Networks Leveraging KANs for Expedient Training of Multichannel MLPs via Preconditioning and Geometric Refinement
Reference 26
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