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Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers

As of 7 August 2026, this Paper Citation Record lists 100 of 159 outbound references and 0 inbound Pith citation observations for arXiv:2608.00934.

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2608.00934 v1

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measured 100 of 159 reference resolution

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100 of 159 outbound references displayed

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Outbound references

Observation 805b3077-baf2-4bb2-b185-506ccf205874 · outbound

This paper cites [53, 142, 143] show that the remnant properties exhibit an approxi- mately sinusoidal dependence on the mean anomaly.

Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers [53, 142, 143] show that the remnant properties exhibit an approxi- mately sinusoidal dependence on the mean anomaly

Reference 1

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Observation 4d512a89-18e1-4c1b-9df4-95e4b7f2f863 · outbound

This paper cites an unresolved cited work.

Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers Unresolved cited work

Reference 2

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Observation b60e9987-3585-41bb-9c95-293f9238e16e · outbound

This paper cites The best-fit eccentric parameters are ak 1 = −1.561135× 10−1, ak 2 =1 .017796, bk 1 =6 .682131× 10−1, bk 2 =−4.005937,αk =1.000054× 101,φk 0 =−6.802120, and φk 1 =2.049863×10 1.

Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers The best-fit eccentric parameters are ak 1 = −1.561135× 10−1, ak 2 =1 .017796, bk 1 =6 .682131× 10−1, bk 2 =−4.005937,αk =1.000054× 101,φk 0 =−6.802120, and φk 1 =2.049863×10 1

Reference 3

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Observation be246353-0759-4ab7-a343-2d602f152145 · outbound

This paper cites The best-fit eccentric parameters are aL 1 = −1.397943×10−1, aL 2 =6.543722×10−1, bL 1 =4.109220×10−1, bL 2 = −2.097417, αL = −5.568125, φL 0 =5 .773265, and φL 1 =−2.966536×10 1.

Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers The best-fit eccentric parameters are aL 1 = −1.397943×10−1, aL 2 =6.543722×10−1, bL 1 =4.109220×10−1, bL 2 = −2.097417, αL = −5.568125, φL 0 =5 .773265, and φL 1 =−2.966536×10 1

Reference 4

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Observation e6cdb4a6-7813-471a-a9bd-3f7010b682b4 · outbound

This paper cites The instantaneous linear-momentum flux instead contains an n =2 harmonic, suggesting cos 2ℓref for the recoil.

Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers The instantaneous linear-momentum flux instead contains an n =2 harmonic, suggesting cos 2ℓref for the recoil

Reference 5

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Observation 1ec26965-29e0-4a84-b9c6-91d43e151f78 · outbound

This paper cites Binary black holes and recoil velocities,.

Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers Binary black holes and recoil velocities,

Reference 6

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Observation 97652f41-b8cf-4c1a-8e06-3cbdbd2f7c43 · outbound

This paper cites an unresolved cited work.

Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers Unresolved cited work

Reference 7

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Observation 6e9e2111-9125-4889-abc2-212758ef44df · outbound

This paper cites an unresolved cited work.

Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers Unresolved cited work

Reference 8

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Observation bda0adc1-4679-417e-880c-712c99072e20 · outbound

This paper cites Getting a kick out of numerical relativity.

Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers Getting a kick out of numerical relativity

Reference 9

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Observation 44e71f30-a36e-4617-bf6d-77399f2b7940 · outbound

This paper cites Modeling kicks from the merger of non-precessing black-hole binaries.

Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers Modeling kicks from the merger of non-precessing black-hole binaries

Reference 10

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Observation 83f5e6b5-d85a-4205-b893-35da57a70a04 · outbound

This paper cites Modeling kicks from the merger of generic black-hole binaries.

Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers Modeling kicks from the merger of generic black-hole binaries

Reference 11

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Observation 42788833-6e47-43d1-b25a-3304ab00ae67 · outbound

This paper cites Black-hole horizons as probes of black-hole dynamics I: post-merger recoil in head-on collisions.

Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers Black-hole horizons as probes of black-hole dynamics I: post-merger recoil in head-on collisions

Reference 12

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Observation c82ffd49-8c23-4fc6-a8e7-88d7ac91a03d · outbound

This paper cites Further insight into gravitational recoil.

Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers Further insight into gravitational recoil

Reference 13

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Observation ad5522a1-17d4-4195-84fb-f52a44360a08 · outbound

This paper cites Gravitational recoil from spinning binary black hole mergers.

Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers Gravitational recoil from spinning binary black hole mergers

Reference 14

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Observation 93b8fdd4-d584-4fcf-ad29-b3d09c3b185f · outbound

This paper cites Binary Black Holes: Spin Dynamics and Gravitational Recoil.

Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers Binary Black Holes: Spin Dynamics and Gravitational Recoil

Reference 15

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Observation eb13f0d7-08d0-4333-9558-18b984774d56 · outbound

This paper cites Unequal mass binary black hole plunges and gravita- tional recoil,.

Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers Unequal mass binary black hole plunges and gravita- tional recoil,

Reference 16

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Observation 8ba7f945-f555-4e56-a443-37166b6197d3 · outbound

This paper cites Gravitational Wave Recoil and the Retention of Intermediate Mass Black Holes.

Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers Gravitational Wave Recoil and the Retention of Intermediate Mass Black Holes

Reference 17

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Observation ca8d38a3-21da-4b5a-bb40-78a701014b90 · outbound

This paper cites Recoil velocities from equal-mass binary black-hole mergers: a systematic investigation of spin-orbit aligned configurations.

Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers Recoil velocities from equal-mass binary black-hole mergers: a systematic investigation of spin-orbit aligned configurations

Reference 18

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Observation 494742ea-c5e2-410c-ab84-74a8f415b520 · outbound

This paper cites Recoil Velocities from Equal-Mass Binary-Black- Hole Mergers,.

Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers Recoil Velocities from Equal-Mass Binary-Black- Hole Mergers,

Reference 19

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Observation f25b7154-65a0-48c4-951a-a16324f80f8a · outbound

This paper cites Modeling gravitational recoil from precessing highly-spinning unequal-mass black-hole binaries.

Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers Modeling gravitational recoil from precessing highly-spinning unequal-mass black-hole binaries

Reference 20

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Observation 32250529-ef58-4e95-9540-453ae9051934 · outbound

This paper cites Modeling maximum astrophysical gravitational recoil velocities.

Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers Modeling maximum astrophysical gravitational recoil velocities

Reference 21

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Observation 6701adb1-9789-4484-8ce7-a509244c0a46 · outbound

This paper cites Anatomy of the binary black hole recoil: A multipolar analysis.

Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers Anatomy of the binary black hole recoil: A multipolar analysis

Reference 22

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Observation bc875fd6-533b-4c6a-83d3-cdfe1abc1760 · outbound

This paper cites Grav- itational recoil velocities from eccentric binary black hole mergers,.

Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers Grav- itational recoil velocities from eccentric binary black hole mergers,

Reference 23

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Observation 3ea570fc-100a-4c8b-af64-5f582cdd8a00 · outbound

This paper cites Binary black hole mergers: large kicks for generic spin orientations.

Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers Binary black hole mergers: large kicks for generic spin orientations

Reference 24

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Observation 9348eca8-94a9-4213-b36b-483da6c9ff86 · outbound

This paper cites Understanding the "anti-kick" in the merger of binary black holes.

Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers Understanding the "anti-kick" in the merger of binary black holes

Reference 25

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Observation 721bc284-baae-425b-ac59-11f72792f050 · outbound

This paper cites Hangup Kicks: Still Larger Recoils by Partial Spin/Orbit Alignment of Black-Hole Binaries.

Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers Hangup Kicks: Still Larger Recoils by Partial Spin/Orbit Alignment of Black-Hole Binaries

Reference 26

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Observation 6483e5b0-6b27-47aa-96f1-aa0be1787f36 · outbound

This paper cites Nonlinear Gravitational Recoil from the Mergers of Precessing Black-Hole Binaries.

Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers Nonlinear Gravitational Recoil from the Mergers of Precessing Black-Hole Binaries

Reference 27

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Observation 8cbdb47f-0cf3-458c-986d-e643fb20a071 · outbound

This paper cites Gravitational Recoil From Accretion-Aligned Black-Hole Binaries.

Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers Gravitational Recoil From Accretion-Aligned Black-Hole Binaries

Reference 28

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Observation 5470240d-5220-4d11-acf7-01d3a5c54855 · outbound

This paper cites Multipole Analysis of Kicks in Collision of Binary Black Holes.

Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers Multipole Analysis of Kicks in Collision of Binary Black Holes

Reference 29

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Observation b801c02d-daba-4772-b3d3-16da5274f3dd · outbound

This paper cites Remnant black hole properties from numerical-relativity-informed perturbation theory and implications for waveform modelling.

Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers Remnant black hole properties from numerical-relativity-informed perturbation theory and implications for waveform modelling

Reference 30

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Observation 6fed509d-d243-4222-ac35-3a281a017eca · outbound

This paper cites Modeling Gravitational Recoil Using Numerical Relativity.

Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers Modeling Gravitational Recoil Using Numerical Relativity

Reference 31

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Observation 2ea3a8c4-e91a-447e-afca-7e391cff743c · outbound

This paper cites Remnant mass, spin, and recoil from spin aligned black-hole binaries.

Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers Remnant mass, spin, and recoil from spin aligned black-hole binaries

Reference 32

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Observation 7d8ab40f-dea5-440b-91a4-1a9bb8dc78dc · outbound

This paper cites Remnant Masses, Spins and Recoils from the Merger of Generic Black-Hole Binaries.

Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers Remnant Masses, Spins and Recoils from the Merger of Generic Black-Hole Binaries

Reference 33

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Observation b7efb2e2-3edd-425f-ba40-6c9ebe97f801 · outbound

This paper cites Perturbative effects of spinning black holes with applications to recoil velocities.

Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers Perturbative effects of spinning black holes with applications to recoil velocities

Reference 34

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Observation f6bd3e36-eb8b-46de-8ca2-023a77dfa7e6 · outbound

This paper cites Binary black hole merger gravitational waves and recoil in the large mass ratio limit.

Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers Binary black hole merger gravitational waves and recoil in the large mass ratio limit

Reference 35

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Observation a0ea6be3-09b0-4236-9cab-5914615b8c7b · outbound

This paper cites Effects of post-Newtonian Spin Alignment on the Distribution of Black-Hole Recoils.

Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers Effects of post-Newtonian Spin Alignment on the Distribution of Black-Hole Recoils

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Observation e46e4c38-6621-4cce-9916-c8a64c640faf · outbound

This paper cites How black holes get their kicks: Radiation recoil in binary black hole mergers.

Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers How black holes get their kicks: Radiation recoil in binary black hole mergers

Reference 37

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source=pdf_text observed=2026-08-06T00:42:32.560210Z digest=sha256:6e74e3edbf9e05b70b10127753848d0dc4307d6cd0aa45e4da1f9b50f6a2fdae

Observation ddcf1de6-2584-417f-9a90-b04ce7b0814b · outbound

This paper cites Black hole binary inspiral and trajectory dominance.

Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers Black hole binary inspiral and trajectory dominance

Reference 38

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source=pdf_text observed=2026-08-06T00:42:32.654805Z digest=sha256:9811cfe6a8c6971c86d1b023b1e67571417c4f10067e63635db7a3faa9f6a229

Observation 3933c445-5804-4cf0-91bb-f7bd280da04f · outbound

This paper cites Systematics of black hole binary inspiral kicks and the slowness approximation.

Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers Systematics of black hole binary inspiral kicks and the slowness approximation

Reference 39

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Observation d1b2c6e4-aecb-4337-968d-66dede69b290 · outbound

This paper cites Black-hole kicks from numerical-relativity surrogate models.

Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers Black-hole kicks from numerical-relativity surrogate models

Reference 40

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Observation 5218910a-5d62-4eee-b041-b069bf45af1d · outbound

This paper cites Comparing Remnant Properties from Horizon Data and Asymptotic Data in Numerical Relativity.

Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers Comparing Remnant Properties from Horizon Data and Asymptotic Data in Numerical Relativity

Reference 41

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source=pdf_text observed=2026-08-06T00:42:32.916211Z digest=sha256:c94bee7b72979de299350f7a0bfcae06a92b6f07dc5c20d85c3b2ff6b21f9624

Observation 413f7683-5f5d-49fb-94a0-5e4147542b42 · outbound

This paper cites The mass gap, the spin gap, and the origin of merging binary black holes.

Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers The mass gap, the spin gap, and the origin of merging binary black holes

Reference 42

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source=pdf_text observed=2026-08-06T00:42:33.526115Z digest=sha256:799a7cd0c4620b27dceabc929df225a94a53de731c5b4381f74bd6a38036f5aa

Observation e8fd7ce8-4b59-486c-a3d6-e736d7d867f3 · outbound

This paper cites Growth of intermediate - mass black holes in globu- lar clusters,.

Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers Growth of intermediate - mass black holes in globu- lar clusters,

Reference 43

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source=pdf_text observed=2026-08-06T00:42:33.101415Z digest=sha256:b57cca54ef53c9b1921d4e80fca1006781512f1b59f6a83084e8796cd9c6539c

Observation 32480484-6c5d-4edf-ad5a-4ac933d10d33 · outbound

This paper cites Black hole kicks as new gravitational wave observables.

Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers Black hole kicks as new gravitational wave observables

Reference 44

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source=pdf_text observed=2026-08-06T00:42:33.180503Z digest=sha256:cb6b4c329812b7d92308388ef9a57e3f74c6c2dcd0299ed296f86ec889bbeccc

Observation 91038a90-a03a-483f-871f-5f7a64b199db · outbound

This paper cites Gravitational-wave kicks impact spins of black holes from hierarchical mergers.

Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers Gravitational-wave kicks impact spins of black holes from hierarchical mergers

Reference 45

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source=pdf_text observed=2026-08-06T00:42:33.293551Z digest=sha256:26fdd82343ee0ea892e40012228edcafd040dc24df1f248eabb0b43776510c5b

Observation 86b1fd7d-3a6f-4c5c-aab9-ba6494c1dd94 · outbound

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Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers High mass but low spin: an exclusion region to rule out hierarchical black-hole mergers as a mechanism to populate the pair-instability mass gap

Reference 46

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source=pdf_text observed=2026-08-06T00:42:33.336210Z digest=sha256:fe70a06d3da2b7d489c859ce30180ec6c421baaed1969750dbd06cf84f8ec1ef

Observation 2bbdf579-dea2-46e9-b4b7-945e671e00e5 · outbound

This paper cites Are merging black holes born from stellar collapse or previous mergers?.

Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers Are merging black holes born from stellar collapse or previous mergers?

Reference 47

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source=pdf_text observed=2026-08-06T00:42:33.398866Z digest=sha256:477b9ea21b5b0f2988bfd126bc44c12917bc405f55973d4034d1fba652d76896

Observation e01be69c-213f-40be-8fb1-5f9666643729 · outbound

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Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers Building a bridge between comparable and extreme mass ratio black hole binaries: a single spin precessing model for the final state

Reference 48

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source=pdf_text observed=2026-08-06T00:42:33.943775Z digest=sha256:c2ae6a1b787069f01fe214bceb7661407aca92378d2b856b77b4c9d6c9eb1694

Observation fff17b27-84b9-4973-9dae-639dbcb0727f · outbound

This paper cites Constraining the fraction of binary black holes formed in isolation and young star clusters with gravitational-wave data.

Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers Constraining the fraction of binary black holes formed in isolation and young star clusters with gravitational-wave data

Reference 49

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source=pdf_text observed=2026-08-06T00:42:33.594845Z digest=sha256:f7c1469f773a51861bf1fa16e6923b4675c2bbaeef642822980f59607bfc9cb8

Observation 45ce3ab0-98a7-43a1-b4e1-7c34f6849c5c · outbound

This paper cites The final spin from binary black holes in quasi-circular orbits.

Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers The final spin from binary black holes in quasi-circular orbits

Reference 50

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source=pdf_text observed=2026-08-06T00:42:33.675198Z digest=sha256:67f113dbbbaebc66e25061d017ab012a3d58c9a84ac5c900479d210b6b5a19f1

Observation baf33f43-5e4b-4e62-af8d-499a39daca4c · outbound

This paper cites On the mass radiated by coalescing black-hole binaries.

Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers On the mass radiated by coalescing black-hole binaries

Reference 51

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source=pdf_text observed=2026-08-06T00:42:33.738323Z digest=sha256:eaabb2d22b25177983bb92d2e05c181de96d03b7d0c439c9cc93355d964b4440

Observation 4bb82ac2-0fb3-41e4-9cc2-4fd9eca3acc0 · outbound

This paper cites Predicting the direction of the final spin from the coalescence of two black holes.

Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers Predicting the direction of the final spin from the coalescence of two black holes

Reference 52

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source=pdf_text observed=2026-08-06T00:42:33.796978Z digest=sha256:778c61e4501f6a0398886cfc25d8db95abfbc64233387b49b38a9d32f89149b7

Observation 8ec3b89a-ed67-4d5f-9d04-fc875015d4f4 · outbound

This paper cites Supermassive recoil velocities for binary black-hole mergers with antialigned spins.

Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers Supermassive recoil velocities for binary black-hole mergers with antialigned spins

Reference 53

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source=pdf_text observed=2026-08-06T00:42:33.850107Z digest=sha256:17c1e3de348058ff48c1974bb85c8e477b20fcf88fd26deacd6300deb9bb92b0

Observation e340d8a3-e1cf-41b5-95c4-40eb29fd93f7 · outbound

This paper cites Optimizing Neural Network Surrogate Models: Application to Black Hole Merger Remnants.

Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers Optimizing Neural Network Surrogate Models: Application to Black Hole Merger Remnants

Reference 54

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source=pdf_text observed=2026-08-06T00:42:34.320155Z digest=sha256:4582b7da57e72e7d08fd3e3e5c070370e149809b9ba7479ed7be165af1b1f1ce

Observation d8d0839a-8c76-42d8-a3ed-83f5d4ca42e2 · outbound

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Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers Hierarchical data-driven approach to fitting numerical relativity data for nonprecessing binary black holes with an application to final spin and radiated energy

Reference 55

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source=pdf_text observed=2026-08-06T00:42:34.005712Z digest=sha256:28c1891fbd60d51bbffcf7b10f327c5327d62b55029896182c536d69d136598b

Observation bd9ef7df-1c3e-4460-952e-881ed69b67a2 · outbound

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Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers Surrogate models for precessing binary black hole simulations with unequal masses

Reference 56

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source=pdf_text observed=2026-08-06T00:42:34.071215Z digest=sha256:1f70aa328f4d8dada436dbd772c0520c8f95b5cdd1a3274b9a47a2f5e5f64b5c

Observation cbcfe8e9-940b-47c0-b5e1-31da83eaa543 · outbound

This paper cites High-accuracy mass, spin, and recoil predictions of generic black-hole merger remnants.

Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers High-accuracy mass, spin, and recoil predictions of generic black-hole merger remnants

Reference 57

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source=pdf_text observed=2026-08-06T00:42:34.155124Z digest=sha256:7d4acfafe86acffdf9c9974cdf3b41e38c844022fe3d233f38d8ea98a3f51331

Observation 888d7984-f4fe-40c8-913e-d9b72335ca4e · outbound

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Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers Eccentric binary black hole surrogate models for the gravitational waveform and remnant properties: comparable mass, nonspinning case

Reference 58

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source=pdf_text observed=2026-08-06T00:42:34.219780Z digest=sha256:5c964301f418ebe47ec8f78d66dd1e142dc183c5a539458293d231cb3db5a45d

Observation ca18eebe-2f9a-4a4a-ab75-0267bd97bbe0 · outbound

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Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers Merger remnant and eccentricity dynamics surrogates for eccentric nonspinning black hole binaries

Reference 59

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source=pdf_text observed=2026-08-06T00:42:34.299548Z digest=sha256:cf6775246a43f75b7233004d7d761ccdb0051d8f2d30efa93cc9c58385393928

Observation 8f80f267-21bf-41a5-b6a1-7efe49bf7be4 · outbound

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Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers The influence of gravitational wave momentum losses on the centre of mass motion of a Newtonian binary 24 system,

Reference 60

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source=pdf_text observed=2026-08-06T00:42:35.021723Z digest=sha256:ea913a2b443d31ea814677a142295af3730c73a11af8f68158de844684900518

Observation e279ef4b-be32-41bc-9ced-5b55ce07e041 · outbound

This paper cites Extending black-hole remnant surrogate models to extreme mass ratios.

Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers Extending black-hole remnant surrogate models to extreme mass ratios

Reference 61

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source=pdf_text observed=2026-08-06T00:42:34.430226Z digest=sha256:a97ef911380478971a0deb868a80639e034d274ef0ba0479dce3ccffd5586a8f

Observation 8ba56306-69ea-4cf2-923b-91afb2612ba2 · outbound

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Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers Accurate models for recoil velocity distribution in black hole mergers with comparable to extreme mass-ratios and their astrophysical implications

Reference 62

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source=pdf_text observed=2026-08-06T00:42:34.594626Z digest=sha256:7c1d0f9dfa4c6e574075a05cf4751a61c57da409b536ccdf477735231494d9e9

Observation 8bb205ce-424b-4010-9bf4-5a2a55e7e93c · outbound

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Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers Gravitational Recoil of Inspiralling Black-Hole Binaries to Second Post-Newtonian Order

Reference 63

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source=pdf_text observed=2026-08-06T00:42:34.739062Z digest=sha256:473121cb7c3869972d926a1f1ce36b42a5ca59b4fd66257cb2ddfa6c185cac42

Observation 101c71ef-f32f-40bc-8c4c-68518e250d61 · outbound

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Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers Gravitational Recoil from Binary Black Hole Mergers: the Close-Limit Approximation

Reference 64

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source=pdf_text observed=2026-08-06T00:42:34.841712Z digest=sha256:d3bc1ee96b543c3419184090f190cf0bbc0eaf1202806d90897748aa9c3a22a6

Observation c7f09885-17f7-4f0e-976f-a87b049b3dd2 · outbound

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Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers How black holes get their kicks: Gravitational radiation recoil revisited

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source=pdf_text observed=2026-08-06T00:42:34.914366Z digest=sha256:8e03d67e9bf512b4aa2c0c44e0052b8b49a1cd8971e80130367c65ab2b6f5308

Observation 4a544d1b-34cd-41f0-942a-db1d3b8abe32 · outbound

This paper cites The SXS collaboration’s third catalog of binary black hole simulations,.

Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers The SXS collaboration’s third catalog of binary black hole simulations,

Reference 66

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source=pdf_text observed=2026-08-06T00:42:35.813564Z digest=sha256:130f8d1ac580d7022d11bc1920833a7eb497d1cbb5dee78c9574396973d78eb0

Observation 8eb4ffdc-f740-4468-81aa-6836b2d44e5a · outbound

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Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers Linear momentum and gravitational-waves - circular orbits around a schwarzschild black-hole,

Reference 67

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source=pdf_text observed=2026-08-06T00:42:35.131249Z digest=sha256:ab3e4276a6814e12722b80e594e9ab87c74dfe8bad67c98441c901c2f9ffc2af

Observation 6c3ba9fd-66a0-4731-a64b-173fb2d919fe · outbound

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Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers Coalescing binary systems of compact ob- jects to (post)5/2 Newtonian order. 2. Higher order wave forms and radiation recoil,

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source=pdf_text observed=2026-08-06T00:42:35.357185Z digest=sha256:f16bda2e30cf5f990b0601c38013372969c98713d6c2bb4c0d7d5daa0bd71229

Observation 79e99c35-d7d0-4a50-84a0-dc4910b5df2d · outbound

This paper cites Coalescing binary systems of compact objects to (post)$^{5/2}-Newtonian order. V. Spin Effects.

Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers Coalescing binary systems of compact objects to (post)$^{5/2}-Newtonian order. V. Spin Effects

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source=pdf_text observed=2026-08-06T00:42:35.498587Z digest=sha256:d94f894be67210cc3edb527291f61bc86781887873ed9d53b478290cf9c613dd

Observation 3974713c-610a-4de2-9b52-7e71ebf433ec · outbound

This paper cites A catalog of 174 binary black-hole simulations for gravitational-wave astronomy.

Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers A catalog of 174 binary black-hole simulations for gravitational-wave astronomy

Reference 70

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source=pdf_text observed=2026-08-06T00:42:35.632479Z digest=sha256:b3fc70275f4fb3665dad07e5729a4a02c5b99be06bf388fcf879ff3fae41272f

Observation 0563f99e-d5f7-4230-a45f-90e536946515 · outbound

This paper cites The SXS Collaboration catalog of binary black hole simulations.

Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers The SXS Collaboration catalog of binary black hole simulations

Reference 71

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source=pdf_text observed=2026-08-06T00:42:35.738871Z digest=sha256:9448a237793c01e230fabade330cd6026db041b5b2d2be2c684a785012ad6598

Observation 03c3c1db-ae15-43bb-b279-5e016b7087ef · outbound

This paper cites A catalogue of precessing black-hole-binary numerical-relativity simulations.

Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers A catalogue of precessing black-hole-binary numerical-relativity simulations

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Observation 2394036a-f8c1-47fe-a8d0-586bc77cdf21 · outbound

This paper cites The Third RIT binary black hole simulations catalog.

Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers The Third RIT binary black hole simulations catalog

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Observation c0b680f0-9333-4b08-a4ab-96d894c30bf7 · outbound

This paper cites The Fourth RIT binary black hole simulations catalog: Extension to Eccentric Orbits.

Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers The Fourth RIT binary black hole simulations catalog: Extension to Eccentric Orbits

Reference 74

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Observation a3cf474c-385a-450c-91c3-eb5be8dbd8ad · outbound

This paper cites The Fifth RIT Catalog of Binary Black Hole Simulations: Multiple-Resolution Studies of Eccentric Orbits.

Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers The Fifth RIT Catalog of Binary Black Hole Simulations: Multiple-Resolution Studies of Eccentric Orbits

Reference 75

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Observation 752168eb-b5a7-4b98-8716-8469a992e762 · outbound

This paper cites Second MAYA Catalog of Binary Black Hole Numerical Relativity Waveforms.

Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers Second MAYA Catalog of Binary Black Hole Numerical Relativity Waveforms

Reference 76

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Observation 8f06f45f-0391-48d7-bfa8-96a568efbe6e · outbound

This paper cites Georgia Tech Catalog of Gravitational Waveforms.

Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers Georgia Tech Catalog of Gravitational Waveforms

Reference 77

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Observation 04d3e162-cc2d-43ef-9110-403ca2ae8d56 · outbound

This paper cites Intermediate mass-ratio black hole binaries: Applicability of small mass-ratio perturbation theory.

Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers Intermediate mass-ratio black hole binaries: Applicability of small mass-ratio perturbation theory

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Observation dde26250-dda6-4939-bb3b-f613061fc989 · outbound

This paper cites The High-Mass-Ratio Challenge in Gravitational Waveform Modelling,.

Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers The High-Mass-Ratio Challenge in Gravitational Waveform Modelling,

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Observation 2e5d46a9-c01a-4c39-bfd8-4516513cf1c2 · outbound

This paper cites First ICCUB Numerical Relativity Waveform Catalog of Eccentric Black Hole Binaries.

Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers First ICCUB Numerical Relativity Waveform Catalog of Eccentric Black Hole Binaries

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Observation 2f920775-2d61-4169-8c47-febc92626cb4 · outbound

This paper cites Surrogate model for gravitational wave signals from non-spinning, comparable- to large-mass-ratio black hole binaries built on black hole perturbation theory waveforms calibrated to numerical relativity.

Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers Surrogate model for gravitational wave signals from non-spinning, comparable- to large-mass-ratio black hole binaries built on black hole perturbation theory waveforms calibrated to numerical relativity

Reference 81

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Observation e2d20364-ee5e-42b3-98a2-5ab52663826f · outbound

This paper cites Consistency of spin effects between numerical relativity and perturbation theory for inspiraling comparable-mass black hole binaries.

Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers Consistency of spin effects between numerical relativity and perturbation theory for inspiraling comparable-mass black hole binaries

Reference 82

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Observation 6bb2d649-199b-4040-b712-fdbf90ddac2d · outbound

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Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers Gravitational wave surrogate model for spinning, intermediate mass ratio binaries based on perturbation theory and numerical relativity

Reference 83

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Observation 74132e59-211a-4a78-8bfc-0d45af43b44c · outbound

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Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers Recoil kicks from binary black hole mergers in GWTC catalogs: implications for retention and hierarchical mergers

Reference 84

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Observation 9da76ce7-2c33-44fd-8573-e9d27418647f · outbound

This paper cites Interplay between numerical-relativity and black hole perturbation theory in the intermediate-mass-ratio regime.

Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers Interplay between numerical-relativity and black hole perturbation theory in the intermediate-mass-ratio regime

Reference 85

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Observation cc003af8-77c5-4134-a575-09c7fd797620 · outbound

This paper cites On the approximate relation between black-hole perturbation theory and numerical relativity.

Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers On the approximate relation between black-hole perturbation theory and numerical relativity

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Observation 3cd119ab-fc92-496d-9890-61c5174b9a78 · outbound

This paper cites Gravitational waveforms for compact binaries from second-order self-force theory.

Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers Gravitational waveforms for compact binaries from second-order self-force theory

Reference 87

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Observation d6c9b909-9ce4-4aa6-81af-80a41f97da9e · outbound

This paper cites Self-Force Calculations with a Spinning Secondary.

Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers Self-Force Calculations with a Spinning Secondary

Reference 88

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Observation 2d387cdb-0815-47a9-a21c-0c05cba905f2 · outbound

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Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers Postadiabatic waveform- generation framework for asymmetric precessing binaries,

Reference 89

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Observation cf745667-8eec-43c8-a0a5-5e1e16ad7b1a · outbound

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Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers Symbolic Regression with a Learned Concept Library

Reference 90

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Observation fa286012-07a0-4289-a113-e245f5d795f9 · outbound

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Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers Kick matters: The impact of a new recoil model on the reten- tion of hierarchical black-hole remnants in globular clusters,

Reference 91

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Observation 823f8325-4f33-4c9f-87bc-f0947d8eaf92 · outbound

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Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers Progenitor of the recoiling super-massive black hole RBH-1 identified using HST/JWST imaging

Reference 92

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Observation d7fd1a03-ea85-4e0e-bc31-6f929332be88 · outbound

This paper cites Discovery of Interpretable Surrogates via Agentic AI: Application to Gravitational Waves.

Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers Discovery of Interpretable Surrogates via Agentic AI: Application to Gravitational Waves

Reference 93

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Observation df3567cb-f428-4019-85d4-3ca8dc236029 · outbound

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Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers LLM-SR: Scientific Equation Discovery via Programming with Large Language Models

Reference 94

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Observation cdd2ec94-4c5c-4098-b353-c3489d3ef68c · outbound

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Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers Think like a scientist: Physics-guided llm agent for equation discovery,

Reference 95

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Observation 1019ee85-38ec-4fc2-9354-300fffc12409 · outbound

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Reference 96

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Observation 4378be69-84aa-46c2-ba06-52649fbe1445 · outbound

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Unified remnant models for aligned-spin, precessing, and eccentric binary black hole mergers STRIDE: A Self-Reflective Agent Framework for Reliable Automatic Equation Discovery

Reference 97

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Observation bb8d057d-249b-4733-9e55-4bfedb5685a3 · outbound

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Reference 98

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Observation 49af4e62-6035-4f68-9050-e97eb0ab6ad6 · outbound

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Reference 99

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Observation 1398b9a7-8774-4ce0-8573-dd32d8228a39 · outbound

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Reference 100

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