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Paper Citation Record · LEDGER

Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces

As of 19 August 2026, this Paper Citation Record lists 100 of 103 outbound references and 0 inbound Pith citation observations for arXiv:2501.16867.

A citation records a reference. It does not transfer a finding from one paper to another.

pith.paper-citation-record.v1
2501.16867 v1

Coverage vector

measured 100 of 103 reference resolution

Typed states for the displayed outbound observations.

Source: paper_references, paper_reference_links, observed 2026-08-10T10:08:11.655016Z

measured 100 of 100 standing notices

One-hop event checks from named stored sources.

Source: scholarly_work_events, retraction_status_cache, observed 2026-08-19T06:32:44.657259+00:00

measured 0 of 0 inbound itemization

Pith citing papers itemized under the disclosed page cap.

Source: paper_references, paper_reference_links

measured 0 of 1 external citation measurements

A source-named dated measurement, never combined with another source.

Source: cited_works

Reference resolution

100 of 103 outbound references displayed

  • verified exact47
  • verified fuzzy4
  • unresolved33
  • parse uncertain0
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External citation measurements

No source-named external measurement is stored.

Outbound references

Observation b45596db-a63c-4047-9c17-a897c6b23287 · outbound

This paper cites an unresolved cited work.

Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Unresolved cited work

Reference 1

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Observation 4e1d400a-1e77-4eef-a359-0e799043c0a9 · outbound

This paper cites Mahmoud, T.

Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Mahmoud, T

Reference 4

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Observation a190c166-40f6-4935-af73-d5b596ccc652 · outbound

This paper cites Jaswal, A.

Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Jaswal, A

Reference 5

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Observation cedc9690-c5ed-4063-a5d4-c700712607ca · outbound

This paper cites an unresolved cited work.

Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Unresolved cited work

Reference 6

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Observation 289cf67e-bdb8-4549-bdb5-c101306692f1 · outbound

This paper cites an unresolved cited work.

Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Unresolved cited work

Reference 7

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Observation 0450f4c4-e80a-444d-843f-f98503df2cc4 · outbound

This paper cites Walunj, A.

Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Walunj, A

Reference 8

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Observation 9a00c47b-7a5d-4ace-be80-ef967abea1e0 · outbound

This paper cites Kaniowski, R.

Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Kaniowski, R

Reference 9

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Observation 07fd2c24-c112-49a0-aca8-aa5e45627b61 · outbound

This paper cites Ranjan, A.

Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Ranjan, A

Reference 10

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Observation 516cf884-d9cf-4a7c-8033-f72d7d39e7c0 · outbound

This paper cites an unresolved cited work.

Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Unresolved cited work

Reference 11

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Observation 407656d0-b0f6-4e8c-aeba-1ab3d1b853f8 · outbound

This paper cites an unresolved cited work.

Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Unresolved cited work

Reference 12

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Observation 975ca011-df80-4ab1-92ed-3512ce54368f · outbound

This paper cites Kumar, B.

Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Kumar, B

Reference 13

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This paper cites an unresolved cited work.

Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Unresolved cited work

Reference 14

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Observation 130c26a8-81e2-4a1d-b576-ef10a935acaa · outbound

This paper cites an unresolved cited work.

Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Unresolved cited work

Reference 15

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Observation 14e43532-88f9-4419-861f-83b67fb87ef6 · outbound

This paper cites an unresolved cited work.

Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Unresolved cited work

Reference 17

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Observation a59cd7f7-5847-42a4-9aae-c7813a0ceaf2 · outbound

This paper cites an unresolved cited work.

Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Unresolved cited work

Reference 18

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Observation 7f918f06-3e70-4e42-a912-fa5de8970e7c · outbound

This paper cites an unresolved cited work.

Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Unresolved cited work

Reference 19

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Observation 32c3d827-6c39-4fbd-999a-4318aacc6f90 · outbound

This paper cites Jiang, X.

Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Jiang, X

Reference 20

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Observation dfa4f5e6-2777-421b-83d7-74592d98fa76 · outbound

This paper cites an unresolved cited work.

Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Unresolved cited work

Reference 21

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Observation da6afc7e-f1d5-46d0-b8c8-c3f42dd4bd1c · outbound

This paper cites an unresolved cited work.

Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Unresolved cited work

Reference 22

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Observation f6360f95-e945-4ebf-95c5-153dff733a02 · outbound

This paper cites an unresolved cited work.

Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Unresolved cited work

Reference 23

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Observation 07d27ee6-3687-4460-9c60-64c00c6e1a25 · outbound

This paper cites an unresolved cited work.

Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Unresolved cited work

Reference 24

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Observation 6bf57680-be71-4baf-b959-71b23bb4a525 · outbound

This paper cites an unresolved cited work.

Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Unresolved cited work

Reference 25

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Observation a2f736f2-2794-4784-a20b-93b170a959d7 · outbound

This paper cites Cooke, S.

Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Cooke, S

Reference 26

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Observation 091d128d-b320-409f-a7ec-184c9a80f4bf · outbound

This paper cites Kalani, S.

Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Kalani, S

Reference 27

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Observation 6650921c-85bb-4d1e-a8c5-1ca8bdb19a13 · outbound

This paper cites Kalani, S.

Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Kalani, S

Reference 28

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Observation bad3d193-46ec-4109-b73c-add9c327b7c0 · outbound

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Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Unresolved cited work

Reference 29

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Observation f666768f-06e5-4b4d-9fdf-5da37360eef7 · outbound

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Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Unresolved cited work

Reference 30

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Observation af024184-aea9-436a-8b52-df74a8d4f396 · outbound

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Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Unresolved cited work

Reference 31

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Observation 9add0d73-be94-4b25-a38a-38504d9fa30b · outbound

This paper cites Pioro, Experimental evaluation of constants for the rohsenow pool boiling correlation, International Journal of Heat and Mass Transfer 42 (1999) 2003–2013.

Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Pioro, Experimental evaluation of constants for the rohsenow pool boiling correlation, International Journal of Heat and Mass Transfer 42 (1999) 2003–2013

Reference 32

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Observation d6f47b15-d775-4faa-badd-d5be5e41bfd2 · outbound

This paper cites Stephan, M.

Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Stephan, M

Reference 33

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Observation 4a2f63f8-a458-4121-931d-0b371d1f3040 · outbound

This paper cites an unresolved cited work.

Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Unresolved cited work

Reference 34

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Observation c086ae7f-92d9-4635-97fa-d86770ce2f76 · outbound

This paper cites an unresolved cited work.

Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Unresolved cited work

Reference 35

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Observation 56925524-bd8f-4b0f-81be-a54b230356d1 · outbound

This paper cites Labuntsov, Heat transfer problems with nucleate boiling of liquids, Therm.

Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Labuntsov, Heat transfer problems with nucleate boiling of liquids, Therm

Reference 36

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Observation 53530c88-fcf2-4fed-8aa3-2142163fadbf · outbound

This paper cites Gorenflo, D.

Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Gorenflo, D

Reference 37

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Observation 7cfa0c3f-7376-4ff4-8a6a-60a5c16a9db3 · outbound

This paper cites Kruzhilin, Free-convection transfer of heat from a horizontal plate and boiling liquid, Doklady AN SSSR (reports of the USSR Academy of Sciences) 58 (1947) 1657–1660.

Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Kruzhilin, Free-convection transfer of heat from a horizontal plate and boiling liquid, Doklady AN SSSR (reports of the USSR Academy of Sciences) 58 (1947) 1657–1660

Reference 38

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Observation 6bcf914f-1fef-41d8-9fbd-4d965305ac3c · outbound

This paper cites HussainTarrad, D.

Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces HussainTarrad, D

Reference 39

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Observation f4580cbe-6306-454d-a8b2-b83d44b03059 · outbound

This paper cites Cornwell, S.

Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Cornwell, S

Reference 40

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Observation 86cfb7b6-75c2-42b6-beb1-8e84e0f95bbb · outbound

This paper cites Cooper, Heat flow rates in saturated nucleate pool boiling-a wide-ranging examination using reduced properties, in: J.

Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Cooper, Heat flow rates in saturated nucleate pool boiling-a wide-ranging examination using reduced properties, in: J

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Observation 7cd92041-7f07-4f8c-9837-198c31c8c167 · outbound

This paper cites Stephan, P.

Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Stephan, P

Reference 42

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Observation a9d1a44d-0e70-4769-abb9-dbf525975424 · outbound

This paper cites Ribatski, J.

Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Ribatski, J

Reference 43

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This paper cites Kichigin, N.

Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Kichigin, N

Reference 44

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Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Unresolved cited work

Reference 45

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Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Unresolved cited work

Reference 46

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Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Unresolved cited work

Reference 47

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Observation fc775cb5-5fde-437e-a0e3-54798ae37a48 · outbound

This paper cites Shanmugam, L.

Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Shanmugam, L

Reference 48

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Observation fff9cce2-9fa5-40a5-97f7-fa6689789fe6 · outbound

This paper cites Shanmugam, L.

Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Shanmugam, L

Reference 49

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Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Unresolved cited work

Reference 50

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Observation fea2c793-b2bd-4679-b0ee-94fab8aa1ae1 · outbound

This paper cites Traverso, F.

Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Traverso, F

Reference 51

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Observation bfe0b465-72e3-42d1-8e03-5bbd0ac901e7 · outbound

This paper cites Loyola-Fuentes, S.

Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Loyola-Fuentes, S

Reference 52

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Observation ad807062-411d-4d09-a933-6c8a14a56fa4 · outbound

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Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Unresolved cited work

Reference 53

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Observation 965c7c77-9493-478f-a141-d133f8ff330b · outbound

This paper cites Huang, J.

Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Huang, J

Reference 54

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Observation ac44a7b5-7016-4c34-9c2e-191db7f32b5b · outbound

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Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Unresolved cited work

Reference 55

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Observation 3fdf528c-0745-4f98-9c03-546c93a16e99 · outbound

This paper cites Khosravi, J.

Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Khosravi, J

Reference 56

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Observation e614428f-6ed6-4250-b205-b53b20104ea8 · outbound

This paper cites Alizadehdakhel, M.

Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Alizadehdakhel, M

Reference 57

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Observation 425d9733-d9e9-4662-ad78-886e938e08f1 · outbound

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Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Unresolved cited work

Reference 58

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Observation 663031d1-adda-4bd7-9866-4a38bf77a0a8 · outbound

This paper cites Azizi, E.

Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Azizi, E

Reference 59

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Observation 24bd9810-6636-40eb-9d0a-b5edf34ed55b · outbound

This paper cites Vijay, S.

Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Vijay, S

Reference 60

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Observation 225224b9-31b6-41a8-a0b9-1f5f6e84b902 · outbound

This paper cites Modelling of nucleate pool boiling on coated substrates using machine learning and empirical approaches.

Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Modelling of nucleate pool boiling on coated substrates using machine learning and empirical approaches

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Observation 5485848b-ff72-482d-b477-502a9bac9be3 · outbound

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Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Unresolved cited work

Reference 62

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Observation cbabf673-4e71-4753-94aa-644fa46e4866 · outbound

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Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Unresolved cited work

Reference 63

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Observation 460dc715-cb12-41e7-856f-f7605e9cfc00 · outbound

This paper cites Jalili, Y.

Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Jalili, Y

Reference 64

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Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Unresolved cited work

Reference 65

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Observation 7e004791-632e-4df3-822d-fcc8ad99acf9 · outbound

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Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Unresolved cited work

Reference 66

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Observation a7d6c68e-0b92-49ac-a6d7-acc58edc7f7f · outbound

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Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Unresolved cited work

Reference 67

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Observation 8fecb123-d70c-404c-a7dc-60637e7336b2 · outbound

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Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Unresolved cited work

Reference 68

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Observation 382c988b-5639-44eb-8ffe-bee8406b4d7f · outbound

This paper cites Fritz, Berechnung des maximalvolumes von dampfblasen, Physik.

Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Fritz, Berechnung des maximalvolumes von dampfblasen, Physik

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source=pdf_text observed=2026-08-10T10:08:11.462223Z digest=sha256:f476587b3e9617fe24cee54a33e9f89279a87259ac387bad6f8eaa785d9ecaa4

Observation ce949563-c95a-4a6a-9b9d-aeff62cd467e · outbound

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Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Unresolved cited work

Reference 70

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source=pdf_text observed=2026-08-10T10:08:11.466382Z digest=sha256:62d850380ed972ebb618d0bd9a312ae00bd0910ba93387b6946b5e39215cde1b

Observation 9eb0e07e-d7a2-4f58-9af7-ed0b6c6011db · outbound

This paper cites Ahsan, M.

Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Ahsan, M

Reference 71

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source=pdf_text observed=2026-08-10T10:08:11.470542Z digest=sha256:1a37b843ee74e3f7ebcd8edeaf2c2246c0d5cf18aff6fb55ff44cd2bdc2efb1c

Observation b55c52f5-7d20-45da-8a10-d0a3684d41c5 · outbound

This paper cites Schmidhuber, Deep learning in neural networks: An overview, Neural Networks 61 (2015) 85–117.

Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Schmidhuber, Deep learning in neural networks: An overview, Neural Networks 61 (2015) 85–117

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source=pdf_text observed=2026-08-10T10:08:11.475038Z digest=sha256:62ea74d8560c50cda636f3b634b6fd3c312fa3271db11dfcea57c74eb9518d4b

Observation 84810666-e62d-46e5-8ed9-150408db6ab0 · outbound

This paper cites Bishop, Pattern Recognition and Machine Learning, Springer, 2006.

Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Bishop, Pattern Recognition and Machine Learning, Springer, 2006

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source=pdf_text observed=2026-08-10T10:08:11.481350Z digest=sha256:ca36bfc018c2cf155db6bf118087c23d4dbeb90249ba37964881e4642649bd55

Observation be62bb7f-98c2-493b-83f7-c8610241b425 · outbound

This paper cites Cybenko, Continuous valued neural networks with two hidden layers are sufficient, department of computer science, Trfts.

Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Cybenko, Continuous valued neural networks with two hidden layers are sufficient, department of computer science, Trfts

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source=pdf_text observed=2026-08-10T10:08:11.489167Z digest=sha256:c974c2f22be1835dad187e0df046290c9366b2f086fad14716acd98f786103ca

Observation aaf2db68-4e60-455f-93a5-49ef3c3a3495 · outbound

This paper cites Chen, Back-propagation neural networks for nonlinear self-tuning adaptive control, IEEE Control Systems Magazine 10 (1990) 44–48.

Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Chen, Back-propagation neural networks for nonlinear self-tuning adaptive control, IEEE Control Systems Magazine 10 (1990) 44–48

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Observation 7e1aadfd-04ae-4a5a-aed4-0c7b4bf72efb · outbound

This paper cites Deep Learning using Rectified Linear Units (ReLU).

Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Deep Learning using Rectified Linear Units (ReLU)

Reference 76

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source=pdf_text observed=2026-08-10T10:08:11.511398Z digest=sha256:d84ed3d57d91ba7686288c18856607831786e90f2f65fdb87dcffaadf7317cf3

Observation ece7da21-3647-48f6-99ab-f7fa51a248c8 · outbound

This paper cites Maniatopoulos, N.

Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Maniatopoulos, N

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Observation fa1b7685-047b-440d-b584-80c2079f61e2 · outbound

This paper cites Fast and Accurate Deep Network Learning by Exponential Linear Units (ELUs).

Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Fast and Accurate Deep Network Learning by Exponential Linear Units (ELUs)

Reference 78

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source=pdf_text observed=2026-08-10T10:08:11.526029Z digest=sha256:2144620a7e624862cdcfddbe5ecdec22e2b94926674c74ea378d1c7fedda5078

Observation 47c3d01b-ac5b-41f6-ae35-de83a5713d09 · outbound

This paper cites An overview of gradient descent optimization algorithms.

Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces An overview of gradient descent optimization algorithms

Reference 79

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Observation 47413b93-e779-4a3a-af77-4842d182f405 · outbound

This paper cites Duchi, E.

Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Duchi, E

Reference 80

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Observation 18ea9231-e317-4593-a489-75db3d15c64d · outbound

This paper cites ADADELTA: An Adaptive Learning Rate Method.

Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces ADADELTA: An Adaptive Learning Rate Method

Reference 81

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source=pdf_text observed=2026-08-10T10:08:11.538859Z digest=sha256:0ff0e5d9a694238c9aa8b5cf9bba23921a004e7ce709d3e02d1f6f70fbd746e3

Observation f1c5fb41-b480-4410-af1e-9f93b8407ef6 · outbound

This paper cites Adam: A Method for Stochastic Optimization.

Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Adam: A Method for Stochastic Optimization

Reference 82

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source=pdf_text observed=2026-08-10T10:08:11.543728Z digest=sha256:1be65add50ec56e460f7f56ac2dc87b19fd29bf13efc4e96daadc8bb0563926e

Observation 0424f8f1-f19f-4aab-8ba7-fbd122192336 · outbound

This paper cites Tibshirani, Regression shrinkage and selection via the lasso, Journal of the Royal Statistical Society: Series B (Methodological) 58 (2018) 267–288.

Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Tibshirani, Regression shrinkage and selection via the lasso, Journal of the Royal Statistical Society: Series B (Methodological) 58 (2018) 267–288

Reference 83

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source=pdf_text observed=2026-08-10T10:08:11.548741Z digest=sha256:e92e72a87713cf968dc7843230a6314220826a733e7d3033f4c76b6a7c40cb1b

Observation 58d071da-489d-4dd8-93dd-adcd7773872b · outbound

This paper cites an unresolved cited work.

Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Unresolved cited work

Reference 84

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Observation 62db2ec4-bc74-443a-beb8-17295e36c148 · outbound

This paper cites an unresolved cited work.

Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Unresolved cited work

Reference 86

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Observation e0775913-5224-4b9c-8213-fb063637c9aa · outbound

This paper cites an unresolved cited work.

Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Unresolved cited work

Reference 87

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source=pdf_text observed=2026-08-10T10:08:11.568994Z digest=sha256:629bff4f075c0e4762d04b752a5d6dda58033c1e40f94853df9b9d1066ccafc1

Observation 81ac7eaf-c9c1-4641-9acf-60201f878df3 · outbound

This paper cites Acu˜ na, F.

Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Acu˜ na, F

Reference 88

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source=pdf_text observed=2026-08-10T10:08:11.573173Z digest=sha256:c2b763650b880702eecd24b80116c3758b6e51d3e8480d98bb8efa60a78c38fe

Observation 962b40a4-f6a7-4353-86a8-8a69007335dc · outbound

This paper cites Fix, Discriminatory analysis: nonparametric discrimination, consistency properties, volume 1, USAF school of Aviation Medicine, 1985.

Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Fix, Discriminatory analysis: nonparametric discrimination, consistency properties, volume 1, USAF school of Aviation Medicine, 1985

Reference 89

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source=pdf_text observed=2026-08-10T10:08:11.577234Z digest=sha256:7fa667d98ab8a8c156682a79a984d8296b3c0caebfeebef842766d1e5de88afd

Observation 0ecc06ba-2868-4f34-a117-19b054b12453 · outbound

This paper cites Cover, P.

Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Cover, P

Reference 90

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source=pdf_text observed=2026-08-10T10:08:11.582205Z digest=sha256:25e63748e45fbb46b43d18b44721039ecd153870c4e38875dff650b6fea1281f

Observation f5e8dd03-1d93-48e7-89d3-109032295a24 · outbound

This paper cites Breiman, Random forests, Machine Learning 45 (2001) 5–32.

Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Breiman, Random forests, Machine Learning 45 (2001) 5–32

Reference 91

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source=pdf_text observed=2026-08-10T10:08:11.587160Z digest=sha256:247003f4ba85247401a72d18db9039b2396d4986a580c1bee0a0db7ab7583f6e

Observation 11d2a360-6f6a-4004-b4ac-c2f0260a2238 · outbound

This paper cites Geurts, D.

Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Geurts, D

Reference 92

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source=pdf_text observed=2026-08-10T10:08:11.591577Z digest=sha256:f567440be736cca854f2ed43c15c071099fa73985ac183f310a9048da0788cb2

Observation f0293f0b-f15f-45d8-b70d-43c8d40696f3 · outbound

This paper cites an unresolved cited work.

Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Unresolved cited work

Reference 93

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source=pdf_text observed=2026-08-10T10:08:11.596215Z digest=sha256:ca57b4928589cff10bd4d528752ea6653571848bf95a57d155fa1312ad965987

Observation 0b4c3847-28ff-4bf1-ac50-f97fc68e2eb5 · outbound

This paper cites Bergstra, Y.

Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Bergstra, Y

Reference 94

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source=pdf_text observed=2026-08-10T10:08:11.600555Z digest=sha256:b175e9eb77ee19c8de7bb129e18515403d35d5e47bfe7866c2976272895aba30

Observation fa4f4f25-d2b5-4819-9163-61589115786d · outbound

This paper cites an unresolved cited work.

Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Unresolved cited work

Reference 95

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Observation 8e6659db-79c8-4fd0-9be3-208d61a044e0 · outbound

This paper cites Pedregosa, G.

Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Pedregosa, G

Reference 96

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source=pdf_text observed=2026-08-10T10:08:11.610690Z digest=sha256:094be5cbb0edd616f0c166e1573ca9eb4b3f72e1a0e86a835dbb54e41c835ca8

Observation bc06efbc-bf59-4097-a710-1649b98f5a66 · outbound

This paper cites PyTorch: An Imperative Style, High-Performance Deep Learning Library.

Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces PyTorch: An Imperative Style, High-Performance Deep Learning Library

Reference 97

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Observation de4a18ac-ad7d-4772-a346-9821a6d2e56d · outbound

This paper cites an unresolved cited work.

Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Unresolved cited work

Reference 98

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source=pdf_text observed=2026-08-10T10:08:11.621890Z digest=sha256:1e4a1a2951929492893fd1e5404c4ab6ef63293f102a8c5106480a97fad9b964

Observation 21517f75-0fe4-4508-b140-82fbf7e19ab3 · outbound

This paper cites an unresolved cited work.

Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Unresolved cited work

Reference 99

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source=pdf_text observed=2026-08-10T10:08:11.627493Z digest=sha256:4dc1b0dd891e979e44efe7876cf7a96739e3a9472fe04270bfa66634b7fabe1a

Observation 15aec023-eb6e-4fcf-8c7d-84b1a76332c7 · outbound

This paper cites an unresolved cited work.

Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Unresolved cited work

Reference 100

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source=pdf_text observed=2026-08-10T10:08:11.632410Z digest=sha256:6dfa9672f1b2cde019fd3e16097bfcb9612b4d4003efe70ab479564225ed2e1b

Observation eb2a1cbd-a962-4418-b1cf-9a6861ce2f86 · outbound

This paper cites an unresolved cited work.

Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Unresolved cited work

Reference 101

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source=pdf_text observed=2026-08-10T10:08:11.636650Z digest=sha256:9db550d072c8f1f622340e2c2e71bff4517cd2dde7f49e2c9ba0b7488046e583

Observation cbcf058d-2ed9-4d45-a50a-82698dee1e7c · outbound

This paper cites Moˇ ze, M.

Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Moˇ ze, M

Reference 102

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source=pdf_text observed=2026-08-10T10:08:11.642836Z digest=sha256:d5e830b12009c6471cf3a327f9da0f5702517ddf22e8dd77d4e623c00df9c1bf

Observation bca8caf5-f25e-4732-989a-42a8176d5af0 · outbound

This paper cites Jaikumar, S.

Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Jaikumar, S

Reference 103

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source=pdf_text observed=2026-08-10T10:08:11.648746Z digest=sha256:8d2469ed7bc5edad6c4ad516d364df4620d3d6a1b3fbc7e94a651859fb26acef

Observation f2e0ed50-99a5-4a31-ad4f-266202bd8f31 · outbound

This paper cites Yao, Y.-W.

Empirical modeling and hybrid machine learning framework for nucleate pool boiling on microchannel structured surfaces Yao, Y.-W

Reference 104

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source=pdf_text observed=2026-08-10T10:08:11.655016Z digest=sha256:a92a9f8d0c3897af97d4355ad6421aa50fdac8434ada4dec7c70f4fffa905b56

Pith citing papers

No inbound Pith citation observations are available.