Typed states for the displayed outbound observations.
Source: paper_references, paper_reference_links, observed 2026-08-15T19:33:25.769194Z
Paper Citation Record · LEDGER
As of 21 August 2026, this Paper Citation Record lists 100 of 101 outbound references and 0 inbound Pith citation observations for arXiv:2506.17325.
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 2026-08-15T19:33:25.769194Z
One-hop event checks from named stored sources.
Source: scholarly_work_events, retraction_status_cache, observed 2026-08-21T06:32:19.484+00:00
Pith citing papers itemized under the disclosed page cap.
Source: paper_references, paper_reference_links
A source-named dated measurement, never combined with another source.
Source: cited_works
100 of 101 outbound references displayed
External citation measurements
No source-named external measurement is stored.
Observation 54347654-11bb-4937-8bce-3f921875e118 · outbound
RadarSeq: A Temporal Vision Framework for User Churn Prediction via Radar Chart Sequences Journal of Computer Science and Technology Studies6(4), 92–101 (2024)
Reference 1
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Observation 3cb4eec9-4f46-4b1a-92a9-686c366fb0cd · outbound
RadarSeq: A Temporal Vision Framework for User Churn Prediction via Radar Chart Sequences Available at SSRN 3969455 (2021) Title Suppressed Due to Excessive Length 13
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Observation c151da6a-3058-4103-8874-14a64b608f50 · outbound
RadarSeq: A Temporal Vision Framework for User Churn Prediction via Radar Chart Sequences International Journal of Research in Humanities and Social Studies10(1), 31–42 (2023)
Reference 3
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Observation d189a771-6f20-4972-97b7-e6dff8491bfa · outbound
RadarSeq: A Temporal Vision Framework for User Churn Prediction via Radar Chart Sequences In: 18 International Multidisciplinary Scientific Geoconference SGEM 2018: Conference Proceedings
Reference 4
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Observation e42bd878-68f8-4f6e-97c1-8d52f3e3b778 · outbound
RadarSeq: A Temporal Vision Framework for User Churn Prediction via Radar Chart Sequences In: International Conference on Big Data and Smart Digital Environment
Reference 5
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Observation 818426c8-2057-422d-8b2f-7cbf006b39e5 · outbound
RadarSeq: A Temporal Vision Framework for User Churn Prediction via Radar Chart Sequences AMAR (An- dalas Management Review)5(2), 95–123 (2021)
Reference 6
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Observation e3f23db6-d6e3-4caf-b71a-46bf315eefbe · outbound
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Unavailable: canonical work link unavailable.
Observation c4392903-3873-4375-a09f-9cc4cb346ecf · outbound
RadarSeq: A Temporal Vision Framework for User Churn Prediction via Radar Chart Sequences Unresolved cited work
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Observation 2e108e21-c776-42d6-8293-e4f24859feb3 · outbound
RadarSeq: A Temporal Vision Framework for User Churn Prediction via Radar Chart Sequences Netherlands (2019)
Reference 9
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Observation 238f841b-508c-426e-ad8d-619e769134a7 · outbound
RadarSeq: A Temporal Vision Framework for User Churn Prediction via Radar Chart Sequences Unresolved cited work
Reference 10
Source-reported events for the cited work
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Observation 608928ae-71ce-464a-aed2-9be189d2a808 · outbound
RadarSeq: A Temporal Vision Framework for User Churn Prediction via Radar Chart Sequences Journal of Interactive Marketing 23(2), 157–168 (2009)
Reference 11
Source-reported events for the cited work
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Observation e2f3031d-48d8-496d-a3e5-98786f3f9119 · outbound
RadarSeq: A Temporal Vision Framework for User Churn Prediction via Radar Chart Sequences Mathematics11(5), 1137 (2023)
Reference 12
Source-reported events for the cited work
Unavailable: canonical work link unavailable.
Observation 990eed6b-7d54-412c-9362-6e2ddc4b2403 · outbound
RadarSeq: A Temporal Vision Framework for User Churn Prediction via Radar Chart Sequences European journal of operational research164(1), 252–268 (2005)
Reference 13
Source-reported events for the cited work
Unavailable: canonical work link unavailable.
Observation 411f0191-d904-4caa-bc3b-b8d074a23e44 · outbound
RadarSeq: A Temporal Vision Framework for User Churn Prediction via Radar Chart Sequences Expert Systems with Applications36(3), 4626–4636 (2009)
Reference 14
Source-reported events for the cited work
Unavailable: canonical work link unavailable.
Observation 8e081545-e7ba-4dd8-8e14-1c9af30b680f · outbound
RadarSeq: A Temporal Vision Framework for User Churn Prediction via Radar Chart Sequences Algorithms17(6), 231 (2024)
Reference 15
Source-reported events for the cited work
Unavailable: canonical work link unavailable.
Observation 55d7ea81-985a-4ba3-aa21-13d829cf93b9 · outbound
RadarSeq: A Temporal Vision Framework for User Churn Prediction via Radar Chart Sequences Information Systems and e- Business Management13, 475–494 (2015)
Reference 16
Source-reported events for the cited work
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Observation 0bb1bb99-f3d4-49ec-8116-fdf3a14f2be6 · outbound
RadarSeq: A Temporal Vision Framework for User Churn Prediction via Radar Chart Sequences VideoLLaMA 2: Advancing Spatial-Temporal Modeling and Audio Understanding in Video-LLMs
Reference 17
Source-reported events for the cited work
Unavailable: canonical work link unavailable.
Observation 38b25d10-3090-4603-a185-bf148435ef1e · outbound
RadarSeq: A Temporal Vision Framework for User Churn Prediction via Radar Chart Sequences In: International Conference on Information Integration and Web In- telligence
Reference 18
Source-reported events for the cited work
Unavailable: canonical work link unavailable.
Observation 4e40de6e-9ca8-45d5-8b33-594d0d1927ae · outbound
RadarSeq: A Temporal Vision Framework for User Churn Prediction via Radar Chart Sequences Information Process- ing & Management (2021)
Reference 19
Source-reported events for the cited work
Unavailable: canonical work link unavailable.
Observation 3af72fec-bf3f-40f5-a595-b148b9509e5d · outbound
RadarSeq: A Temporal Vision Framework for User Churn Prediction via Radar Chart Sequences Journal of Discrete Mathematical Sciences and Cryptography25(7), 1965–1985 (2022) 14 S
Reference 20
Source-reported events for the cited work
Unavailable: canonical work link unavailable.
Observation f46c313c-9493-459c-8970-9f0146efe805 · outbound
RadarSeq: A Temporal Vision Framework for User Churn Prediction via Radar Chart Sequences IEEE Transactions on Geoscience and Remote Sensing (2024)
Reference 21
Source-reported events for the cited work
Unavailable: canonical work link unavailable.
Observation a3772a2c-d3fc-42d4-a0f4-a7c34ded3e9d · outbound
RadarSeq: A Temporal Vision Framework for User Churn Prediction via Radar Chart Sequences In: Proceedings of the IEEE conference on computer vision and pattern recognition
Reference 22
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Unavailable: canonical work link unavailable.
Observation 2de9b66a-b539-4712-961d-5718de5a1fc6 · outbound
RadarSeq: A Temporal Vision Framework for User Churn Prediction via Radar Chart Sequences Journal of Labor Economics (2023)
Reference 23
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Observation ebfee79a-9f82-4ef1-830f-1fc9e1d8a28e · outbound
RadarSeq: A Temporal Vision Framework for User Churn Prediction via Radar Chart Sequences Manufacturing & Service Operations Management22(1), 191–202 (2020)
Reference 24
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Observation f94c1a2b-0f89-4534-9b23-77d8dbe3111c · outbound
RadarSeq: A Temporal Vision Framework for User Churn Prediction via Radar Chart Sequences an image isworth 16×16 words: transformers for im- age recognition atscale
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Observation 19d681dc-312c-46ed-99a1-9595a90d0aac · outbound
RadarSeq: A Temporal Vision Framework for User Churn Prediction via Radar Chart Sequences An Image is Worth 16x16 Words: Transformers for Image Recognition at Scale
Reference 26
Source-reported events for the cited work
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Observation 4b6afd86-8c03-4ad2-8815-38ca25c91a96 · outbound
RadarSeq: A Temporal Vision Framework for User Churn Prediction via Radar Chart Sequences Journal of Consumer Satisfaction, Dissatisfaction and Complaining Behavior 14, 46–54 (2001)
Reference 27
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Observation 3ebdde98-6052-4f82-93d5-522038f1c452 · outbound
RadarSeq: A Temporal Vision Framework for User Churn Prediction via Radar Chart Sequences Marketing Science29(6), 1086–1108 (2010)
Reference 28
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Observation bcb66297-0af8-4a94-9427-a8e784cc00b3 · outbound
RadarSeq: A Temporal Vision Framework for User Churn Prediction via Radar Chart Sequences In: Proceedings of the 29th ACM International Conference on Multimedia
Reference 29
Source-reported events for the cited work
Unavailable: canonical work link unavailable.
Observation b60b202c-cb99-47d9-8cb6-22aafe3d7385 · outbound
RadarSeq: A Temporal Vision Framework for User Churn Prediction via Radar Chart Sequences In: Practical Strategies and Case Studies for Online Marketing 6.0, pp
Reference 30
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Observation a0cea0a6-55eb-470a-afce-12b6ea0f74a9 · outbound
RadarSeq: A Temporal Vision Framework for User Churn Prediction via Radar Chart Sequences Data Mining and Knowledge Discovery (2023)
Reference 31
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Observation d83182cc-2d33-4bb1-a8b1-3f92b9e6d3fc · outbound
RadarSeq: A Temporal Vision Framework for User Churn Prediction via Radar Chart Sequences Industrial Marketing Management107, 134–147 (2022)
Reference 32
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Observation 3fe3bd35-a002-455f-9d2f-23bc82f55a0a · outbound
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Reference 33
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Observation 251d7feb-535c-40c5-9826-6ee19a02ab78 · outbound
RadarSeq: A Temporal Vision Framework for User Churn Prediction via Radar Chart Sequences IEEE Internet of Things Journal (2024)
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Observation ee6c0061-6086-4c00-938c-f6c7ecf0ed1f · outbound
RadarSeq: A Temporal Vision Framework for User Churn Prediction via Radar Chart Sequences Unresolved cited work
Reference 35
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Observation 2c53cce1-020c-4362-9a4a-ecaf07d5ffdb · outbound
RadarSeq: A Temporal Vision Framework for User Churn Prediction via Radar Chart Sequences Computers & Operations Re- search34(10), 2902–2917 (2007)
Reference 36
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Observation 240c6410-6521-4187-b185-ed1f507dae90 · outbound
RadarSeq: A Temporal Vision Framework for User Churn Prediction via Radar Chart Sequences Ilr Review71(3), 705–732 (2018)
Reference 37
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Observation 923bb54f-37cf-406a-a730-21b8d3ebb7e5 · outbound
RadarSeq: A Temporal Vision Framework for User Churn Prediction via Radar Chart Sequences Greenhaven Publishing LLC (2020) Title Suppressed Due to Excessive Length 15
Reference 38
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Observation 1f8df362-925f-4153-83ff-757135a886bb · outbound
RadarSeq: A Temporal Vision Framework for User Churn Prediction via Radar Chart Sequences Neural computation 9(8), 1735–1780 (1997)
Reference 39
Source-reported events for the cited work
Unavailable: canonical work link unavailable.
Observation fe6e1045-136f-4924-ad17-8a6c852698ae · outbound
RadarSeq: A Temporal Vision Framework for User Churn Prediction via Radar Chart Sequences Expert Systems with Applications39(1), 1414–1425 (2012)
Reference 40
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Observation fe553cdd-ba34-4dfa-9c2e-e97386b8a523 · outbound
RadarSeq: A Temporal Vision Framework for User Churn Prediction via Radar Chart Sequences Computers & Electrical Engineering38(6), 1808–1819 (2012)
Reference 41
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Observation 94f47de1-ba5c-4390-a6f7-01cadea0d301 · outbound
RadarSeq: A Temporal Vision Framework for User Churn Prediction via Radar Chart Sequences Unresolved cited work
Reference 42
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Observation c9d32201-d677-48d9-8d53-048d645883b7 · outbound
RadarSeq: A Temporal Vision Framework for User Churn Prediction via Radar Chart Sequences Statistical Analysis and Data Mining: The ASA Data Science Journal13(3), 245–260 (2020)
Reference 43
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Observation 8da015a2-0280-4da8-a001-38a83ef6e4b4 · outbound
RadarSeq: A Temporal Vision Framework for User Churn Prediction via Radar Chart Sequences International Journal of Research in All Subjects in Multi Languages13(1), 153 (2025)
Reference 44
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Observation 9f96dbda-aa41-4df6-8bfa-073377a2952f · outbound
RadarSeq: A Temporal Vision Framework for User Churn Prediction via Radar Chart Sequences Scientific Reports13(1), 17294 (2023)
Reference 45
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Observation c35c14a4-311e-4b5d-8df4-3bcc11b290b4 · outbound
RadarSeq: A Temporal Vision Framework for User Churn Prediction via Radar Chart Sequences Journal of Systems and Information Technology19(1/2), 65–93 (2017)
Reference 46
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Observation 5c9b6ab1-d5bf-4ad5-9330-e26271c34de2 · outbound
RadarSeq: A Temporal Vision Framework for User Churn Prediction via Radar Chart Sequences IEEE Transactions on Artificial Intelligence (2025)
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Observation e743ebf6-fa29-4ea7-881d-04fd07df34a5 · outbound
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Reference 48
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Observation d0d07d6a-8841-4f5d-9047-734a5cd4a695 · outbound
RadarSeq: A Temporal Vision Framework for User Churn Prediction via Radar Chart Sequences Advances in Neural Information Processing Systems36, 49187–49204 (2023)
Reference 49
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Observation e35ede3b-f87b-4916-85dc-c4e9462d68e6 · outbound
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Observation 28099b9c-ec8b-41f6-acf2-f53fc33b475e · outbound
RadarSeq: A Temporal Vision Framework for User Churn Prediction via Radar Chart Sequences Journal of Organizational and End User Computing (JOEUC)36(1), 1–23 (2024)
Reference 51
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Observation ff878f8d-e113-40a6-927e-8288362b8944 · outbound
RadarSeq: A Temporal Vision Framework for User Churn Prediction via Radar Chart Sequences IEEE transactions on information theory28(2), 129–137 (1982)
Reference 52
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Observation 2401a32b-e78a-4c11-a9a1-1726a1d9d277 · outbound
RadarSeq: A Temporal Vision Framework for User Churn Prediction via Radar Chart Sequences Production and Operations Management30(6), 1927–1943 (2021)
Reference 53
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Observation 3aa77834-9a45-4072-9971-bcc04f8e96bc · outbound
RadarSeq: A Temporal Vision Framework for User Churn Prediction via Radar Chart Sequences Advances in Neural Information Processing Systems30(2017)
Reference 54
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Observation 66518eab-809c-4ae7-93ee-e90315e0c0e0 · outbound
RadarSeq: A Temporal Vision Framework for User Churn Prediction via Radar Chart Sequences Journal of Theoretical and Applied Electronic Commerce Research17(1), 165–198 (2022)
Reference 55
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Observation 12454ac9-33fc-41a2-b5a7-95717d33ae35 · outbound
RadarSeq: A Temporal Vision Framework for User Churn Prediction via Radar Chart Sequences Annals of Operations Research339(1), 765–787 (2024)
Reference 56
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Observation d48d23e3-5887-4561-b737-607d535143f3 · outbound
RadarSeq: A Temporal Vision Framework for User Churn Prediction via Radar Chart Sequences Mixed Precision Training
Reference 57
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Observation 5816a777-ee49-4398-923a-26be2a9f695e · outbound
RadarSeq: A Temporal Vision Framework for User Churn Prediction via Radar Chart Sequences Physical review letters89(1), 015002 (2002) 16 S
Reference 58
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Observation a64b62eb-24b9-49fa-8131-11ac1a875f4d · outbound
RadarSeq: A Temporal Vision Framework for User Churn Prediction via Radar Chart Sequences International Journal of Developing and Emerging Economies8(1), 1–16 (2020)
Reference 59
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Observation 93724e2b-7bae-4fdf-b0b4-8e91bc1955e3 · outbound
RadarSeq: A Temporal Vision Framework for User Churn Prediction via Radar Chart Sequences Unresolved cited work
Reference 60
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Observation 3b16b8bd-6ae4-41e0-b0dd-8154cd818b14 · outbound
RadarSeq: A Temporal Vision Framework for User Churn Prediction via Radar Chart Sequences https://github.com/uploadcare/pillow-simd (2018)
Reference 61
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Observation 7cd485cb-9ee1-42f3-a42d-1b639bd345de · outbound
RadarSeq: A Temporal Vision Framework for User Churn Prediction via Radar Chart Sequences Journal of service research9(2), 95–112 (2006)
Reference 62
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Observation 5f497a06-ab06-4a38-a306-1762c07e09b5 · outbound
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Reference 63
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Observation ab8f6997-7667-4f05-88b0-afc7273a0d88 · outbound
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Reference 64
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Observation ac1a14c5-a7c4-43d8-8d90-9ebf4cda0cce · outbound
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Reference 65
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Observation 8de9b4ab-7e8d-42bc-b966-2fa04c7ffc32 · outbound
RadarSeq: A Temporal Vision Framework for User Churn Prediction via Radar Chart Sequences Journal of Current Science and Technology13(1), 136–161 (2023)
Reference 66
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Observation e4bb6973-0ab5-465c-bf06-b59171fe7af1 · outbound
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Reference 67
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Observation 6f0ae268-c5e3-4849-b416-ba3befad3073 · outbound
RadarSeq: A Temporal Vision Framework for User Churn Prediction via Radar Chart Sequences Harvard business review68(5), 105–111 (1990)
Reference 68
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Observation a86bc8f3-4a93-4f5b-a034-d4ca51a105ca · outbound
RadarSeq: A Temporal Vision Framework for User Churn Prediction via Radar Chart Sequences IEEE transactions on visualization and computer graphics 23(1), 241–250 (2016)
Reference 69
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Observation 3fad8af7-c367-4af1-8b65-bd8a71ecf0c9 · outbound
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Reference 70
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Observation fa1ccea2-1f0c-49ec-8ff8-41fd5b5a2377 · outbound
RadarSeq: A Temporal Vision Framework for User Churn Prediction via Radar Chart Sequences IEEE International Conference on Computer Vision pp
Reference 71
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Observation b2fcf367-33bb-4045-8995-3ac25c75f033 · outbound
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Reference 72
Source-reported events for the cited work
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Observation d322b3ee-dc96-476d-b31d-04088940142b · outbound
RadarSeq: A Temporal Vision Framework for User Churn Prediction via Radar Chart Sequences Big Data and Cognitive Computing9(4), 84 (2025)
Reference 73
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Observation 47a91635-2f19-4512-b004-909113e896d5 · outbound
RadarSeq: A Temporal Vision Framework for User Churn Prediction via Radar Chart Sequences European Advanced AI Journal11(8) (2022)
Reference 74
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Observation f11ad815-2b9f-4f04-994d-a2750711fa85 · outbound
RadarSeq: A Temporal Vision Framework for User Churn Prediction via Radar Chart Sequences Predicting purchasing intent: Automatic Feature Learning using Recurrent Neural Networks
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RadarSeq: A Temporal Vision Framework for User Churn Prediction via Radar Chart Sequences Journal of Industrial Economics (2022) Title Suppressed Due to Excessive Length 17
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RadarSeq: A Temporal Vision Framework for User Churn Prediction via Radar Chart Sequences Discrete Dynamics in Nature and Society2022(1), 5134356 (2022)
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RadarSeq: A Temporal Vision Framework for User Churn Prediction via Radar Chart Sequences Advances in Neural Information Processing Systems35, 38204–38217 (2022)
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RadarSeq: A Temporal Vision Framework for User Churn Prediction via Radar Chart Sequences University of Antwerp (2019)
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RadarSeq: A Temporal Vision Framework for User Churn Prediction via Radar Chart Sequences IEEE access 6, 1155–1166 (2017)
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RadarSeq: A Temporal Vision Framework for User Churn Prediction via Radar Chart Sequences Simulation Modelling Practice and Theory55, 1–9 (2015)
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RadarSeq: A Temporal Vision Framework for User Churn Prediction via Radar Chart Sequences IEEE transactions on knowledge and data engineering25(5), 961–973 (2012)
Reference 86
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Reference 87
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RadarSeq: A Temporal Vision Framework for User Churn Prediction via Radar Chart Sequences Imaging Time-Series to Improve Classification and Imputation
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RadarSeq: A Temporal Vision Framework for User Churn Prediction via Radar Chart Sequences ACM Transactions on Knowledge Discovery from Data (2020)
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RadarSeq: A Temporal Vision Framework for User Churn Prediction via Radar Chart Sequences Science China Information Sciences 63, 1–21 (2020)
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RadarSeq: A Temporal Vision Framework for User Churn Prediction via Radar Chart Sequences RF-LighGBM: A probabilistic ensemble way to predict customer repurchase behaviour in community e-commerce
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RadarSeq: A Temporal Vision Framework for User Churn Prediction via Radar Chart Sequences IEEE Access (2022)
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RadarSeq: A Temporal Vision Framework for User Churn Prediction via Radar Chart Sequences Master’s thesis, University of Missouri-Columbia (2023)
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RadarSeq: A Temporal Vision Framework for User Churn Prediction via Radar Chart Sequences IEEE transactions on Big Data6(1), 3–28 (2018)
Reference 97
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RadarSeq: A Temporal Vision Framework for User Churn Prediction via Radar Chart Sequences Expert Systems with Applications (2023)
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RadarSeq: A Temporal Vision Framework for User Churn Prediction via Radar Chart Sequences AI Open (2022)
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RadarSeq: A Temporal Vision Framework for User Churn Prediction via Radar Chart Sequences Unresolved cited work
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