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data/clustering_battle-b6937cbe-13fb-42d2-9ff1-500c63e96fa8.jsonl ADDED
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data/clustering_individual-b6937cbe-13fb-42d2-9ff1-500c63e96fa8.jsonl ADDED
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data/retrieval_individual-b6937cbe-13fb-42d2-9ff1-500c63e96fa8.jsonl CHANGED
@@ -4,3 +4,5 @@
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  {"tstamp": 1735182185.6175, "task_type": "retrieval", "type": "chat", "model": "voyage-multilingual-2", "gen_params": {}, "start": 1735182173.7188, "finish": 1735182185.6175, "ip": "", "conv_id": "9150361aa20140c8871bdb88eb8b0442", "model_name": "voyage-multilingual-2", "prompt": "Who broke the Nazi encryption code during World War 2?", "output": [["Who broke the Nazi encryption code during World War 2?", "List of cryptographers\n\nAlan Mathison Turing UK, GC&CS, Bletchley Park where he was chief cryptographer, inventor of the Bombe that was used in decrypting Enigma, mathematician, logician, and renowned pioneer of Computer Science.\nWilliam Thomas Tutte UK, GC&CS, Bletchley Park, with John Tiltman, broke Lorenz SZ 40/42 encryption machine (codenamed Tunny) leading to the development of the Colossus computer.\nBetty Webb (code breaker), British codebreaker during World War II\nWilliam Stone Weedon, US,\nGordon Welchman UK, GC&CS, Bletchley Park where he was head of Hut Six (German Army and Air Force Enigma cipher. decryption), made an important contribution to the design of the Bombe.\nHerbert Yardley US, MI8 (US), author \"The American Black Chamber\", worked in China as a cryptographer and briefly in Canada.\nHenryk Zygalski, Poland, Biuro Szyfrów, inventor of Zygalski sheets, broke German Enigma ciphers pre-1939.\nKarl Stein German, Head of the Division IVa (security of own processes) at Cipher Department of the High Command of the Wehrmacht. Discoverer of Stein manifold.\nGisbert Hasenjaeger German, Tester of the Enigma. Discovered new proof of the completeness theorem of Kurt Gödel for predicate logic.\nHeinrich Scholz German, Worked in Division IVa at OKW. Logician and pen friend of Alan Turning.\nGottfried Köthe German, Cryptanalyst at OKW. Mathematician created theory of topological vector spaces.\nErnst Witt German, Mathematician at OKW. Mathematical Discoveries Named After Ernst Witt."]], "corpus": "wikipedia"}
5
  {"tstamp": 1735182249.0068, "task_type": "retrieval", "type": "chat", "model": "mixedbread-ai/mxbai-embed-large-v1", "gen_params": {}, "start": 1735182248.6625, "finish": 1735182249.0068, "ip": "", "conv_id": "770f5b97fd874d6392d835619d9de114", "model_name": "mixedbread-ai/mxbai-embed-large-v1", "prompt": "Which test was devised to determine whether robots can think?", "output": [["Which test was devised to determine whether robots can think?", "Progress in artificial intelligence\n\nSub-human Optical character recognition for printed text (nearing par-human for Latin-script typewritten text)\nObject recognition\nVarious robotics tasks that may require advances in robot hardware as well as AI, including:\nStable bipedal locomotion: Bipedal robots can walk, but are less stable than human walkers (as of 2017)\nHumanoid soccer\nSpeech recognition: \"nearly equal to human performance\" (2017)\nExplainability. Current medical systems can diagnose certain medical conditions well, but cannot explain to users why they made the diagnosis.\nMany tests of fluid intelligence (2020)\nBongard visual cognition problems, such as the Bongard-LOGO benchmark (2020)\nVisual Commonsense Reasoning (VCR) benchmark (as of 2020)\nStock market prediction: Financial data collection and processing using Machine Learning algorithms\nAngry Birds video game, as of 2020\nVarious tasks that are difficult to solve without contextual knowledge, including:\nTranslation\nWord-sense disambiguation\nProposed tests of artificial intelligence\nIn his famous Turing test, Alan Turing picked language, the defining feature of human beings, for its basis. The Turing test is now considered too exploitable to be a meaningful benchmark.\nThe Feigenbaum test, proposed by the inventor of expert systems, tests a machine's knowledge and expertise about a specific subject. A paper by Jim Gray of Microsoft in 2003 suggested extending the Turing test to speech understanding, speaking and recognizing objects and behavior."]], "corpus": "wikipedia"}
6
  {"tstamp": 1735182249.0068, "task_type": "retrieval", "type": "chat", "model": "nomic-ai/nomic-embed-text-v1.5", "gen_params": {}, "start": 1735182248.6625, "finish": 1735182249.0068, "ip": "", "conv_id": "e1c5dadabefc45a7a483750a3107b531", "model_name": "nomic-ai/nomic-embed-text-v1.5", "prompt": "Which test was devised to determine whether robots can think?", "output": [["Which test was devised to determine whether robots can think?", "Turing test\n\nThe Turing test, originally called the imitation game by Alan Turing in 1950, is a test of a machine's ability to exhibit intelligent behaviour equivalent to, or indistinguishable from, that of a human. Turing proposed that a human evaluator would judge natural language conversations between a human and a machine designed to generate human-like responses. The evaluator would be aware that one of the two partners in conversation was a machine, and all participants would be separated from one another. The conversation would be limited to a text-only channel, such as a computer keyboard and screen, so the result would not depend on the machine's ability to render words as speech. If the evaluator could not reliably tell the machine from the human, the machine would be said to have passed the test. The test results would not depend on the machine's ability to give correct answers to questions, only on how closely its answers resembled those a human would give. Since the Turing test is a test of indistinguishability in performance capacity, the verbal version generalizes naturally to all of human performance capacity, verbal as well as nonverbal (robotic)."]], "corpus": "wikipedia"}
 
 
 
4
  {"tstamp": 1735182185.6175, "task_type": "retrieval", "type": "chat", "model": "voyage-multilingual-2", "gen_params": {}, "start": 1735182173.7188, "finish": 1735182185.6175, "ip": "", "conv_id": "9150361aa20140c8871bdb88eb8b0442", "model_name": "voyage-multilingual-2", "prompt": "Who broke the Nazi encryption code during World War 2?", "output": [["Who broke the Nazi encryption code during World War 2?", "List of cryptographers\n\nAlan Mathison Turing UK, GC&CS, Bletchley Park where he was chief cryptographer, inventor of the Bombe that was used in decrypting Enigma, mathematician, logician, and renowned pioneer of Computer Science.\nWilliam Thomas Tutte UK, GC&CS, Bletchley Park, with John Tiltman, broke Lorenz SZ 40/42 encryption machine (codenamed Tunny) leading to the development of the Colossus computer.\nBetty Webb (code breaker), British codebreaker during World War II\nWilliam Stone Weedon, US,\nGordon Welchman UK, GC&CS, Bletchley Park where he was head of Hut Six (German Army and Air Force Enigma cipher. decryption), made an important contribution to the design of the Bombe.\nHerbert Yardley US, MI8 (US), author \"The American Black Chamber\", worked in China as a cryptographer and briefly in Canada.\nHenryk Zygalski, Poland, Biuro Szyfrów, inventor of Zygalski sheets, broke German Enigma ciphers pre-1939.\nKarl Stein German, Head of the Division IVa (security of own processes) at Cipher Department of the High Command of the Wehrmacht. Discoverer of Stein manifold.\nGisbert Hasenjaeger German, Tester of the Enigma. Discovered new proof of the completeness theorem of Kurt Gödel for predicate logic.\nHeinrich Scholz German, Worked in Division IVa at OKW. Logician and pen friend of Alan Turning.\nGottfried Köthe German, Cryptanalyst at OKW. Mathematician created theory of topological vector spaces.\nErnst Witt German, Mathematician at OKW. Mathematical Discoveries Named After Ernst Witt."]], "corpus": "wikipedia"}
5
  {"tstamp": 1735182249.0068, "task_type": "retrieval", "type": "chat", "model": "mixedbread-ai/mxbai-embed-large-v1", "gen_params": {}, "start": 1735182248.6625, "finish": 1735182249.0068, "ip": "", "conv_id": "770f5b97fd874d6392d835619d9de114", "model_name": "mixedbread-ai/mxbai-embed-large-v1", "prompt": "Which test was devised to determine whether robots can think?", "output": [["Which test was devised to determine whether robots can think?", "Progress in artificial intelligence\n\nSub-human Optical character recognition for printed text (nearing par-human for Latin-script typewritten text)\nObject recognition\nVarious robotics tasks that may require advances in robot hardware as well as AI, including:\nStable bipedal locomotion: Bipedal robots can walk, but are less stable than human walkers (as of 2017)\nHumanoid soccer\nSpeech recognition: \"nearly equal to human performance\" (2017)\nExplainability. Current medical systems can diagnose certain medical conditions well, but cannot explain to users why they made the diagnosis.\nMany tests of fluid intelligence (2020)\nBongard visual cognition problems, such as the Bongard-LOGO benchmark (2020)\nVisual Commonsense Reasoning (VCR) benchmark (as of 2020)\nStock market prediction: Financial data collection and processing using Machine Learning algorithms\nAngry Birds video game, as of 2020\nVarious tasks that are difficult to solve without contextual knowledge, including:\nTranslation\nWord-sense disambiguation\nProposed tests of artificial intelligence\nIn his famous Turing test, Alan Turing picked language, the defining feature of human beings, for its basis. The Turing test is now considered too exploitable to be a meaningful benchmark.\nThe Feigenbaum test, proposed by the inventor of expert systems, tests a machine's knowledge and expertise about a specific subject. A paper by Jim Gray of Microsoft in 2003 suggested extending the Turing test to speech understanding, speaking and recognizing objects and behavior."]], "corpus": "wikipedia"}
6
  {"tstamp": 1735182249.0068, "task_type": "retrieval", "type": "chat", "model": "nomic-ai/nomic-embed-text-v1.5", "gen_params": {}, "start": 1735182248.6625, "finish": 1735182249.0068, "ip": "", "conv_id": "e1c5dadabefc45a7a483750a3107b531", "model_name": "nomic-ai/nomic-embed-text-v1.5", "prompt": "Which test was devised to determine whether robots can think?", "output": [["Which test was devised to determine whether robots can think?", "Turing test\n\nThe Turing test, originally called the imitation game by Alan Turing in 1950, is a test of a machine's ability to exhibit intelligent behaviour equivalent to, or indistinguishable from, that of a human. Turing proposed that a human evaluator would judge natural language conversations between a human and a machine designed to generate human-like responses. The evaluator would be aware that one of the two partners in conversation was a machine, and all participants would be separated from one another. The conversation would be limited to a text-only channel, such as a computer keyboard and screen, so the result would not depend on the machine's ability to render words as speech. If the evaluator could not reliably tell the machine from the human, the machine would be said to have passed the test. The test results would not depend on the machine's ability to give correct answers to questions, only on how closely its answers resembled those a human would give. Since the Turing test is a test of indistinguishability in performance capacity, the verbal version generalizes naturally to all of human performance capacity, verbal as well as nonverbal (robotic)."]], "corpus": "wikipedia"}
7
+ {"tstamp": 1735182423.9413, "task_type": "retrieval", "type": "chat", "model": "embed-english-v3.0", "gen_params": {}, "start": 1735182423.703, "finish": 1735182423.9413, "ip": "", "conv_id": "89737b57dc7e437c994619b69aff91dd", "model_name": "embed-english-v3.0", "prompt": "Car", "output": [["Car", "Car (disambiguation)\n\nA car is a wheeled motor vehicle used for transporting passengers.\nCar(s), CAR(s), or The Car(s) may also refer to:\nComputing\nC.a.R. (Z.u.L.), geometry software\nCAR and CDR, commands in LISP computer programming\nClock with Adaptive Replacement, a page replacement algorithm\nComputer-assisted reporting\nComputer-assisted reviewing\nEconomics\nCapital adequacy ratio, a ratio of a bank's capital to its risk\nCost accrual ratio, an accounting formula\nCumulative abnormal return\nCumulative average return, a financial concept related to the time value of money\nFilm and television\nCars (franchise), a Disney/Pixar film series\nCars (film), a 2006 animated film from Disney and Pixar\nThe Car (1977 film), an American horror film\nCar, a BBC Two television ident first aired in 1993 (see BBC Two '1991–2001' idents)\nThe Car (1997 film), a Malayalam film\n\"The Car\" (The Amazing World of Gumball episode)\n\"The Car\" (The Assistants episode)\nLiterature\nCar (magazine), a British auto-enthusiast publication\nThe Car (novel), a novel by Gary Paulsen\nMilitary\nCanadian Airborne Regiment, a Canadian Forces formation\nColt Automatic Rifle, a 5.56mm NATO firearm\nCombat Action Ribbon, a United States military decoration\nU.S. Army Combat Arms Regimental System, a 1950s reorganisation of the regiments of the US Army"]], "corpus": "wikipedia"}
8
+ {"tstamp": 1735182423.9413, "task_type": "retrieval", "type": "chat", "model": "intfloat/multilingual-e5-large-instruct", "gen_params": {}, "start": 1735182423.703, "finish": 1735182423.9413, "ip": "", "conv_id": "e47fc4d51da143589cbf7f74a79b1007", "model_name": "intfloat/multilingual-e5-large-instruct", "prompt": "Car", "output": [["Car", "Car (disambiguation)\n\nA car is a wheeled motor vehicle used for transporting passengers.\nCar(s), CAR(s), or The Car(s) may also refer to:\nComputing\nC.a.R. (Z.u.L.), geometry software\nCAR and CDR, commands in LISP computer programming\nClock with Adaptive Replacement, a page replacement algorithm\nComputer-assisted reporting\nComputer-assisted reviewing\nEconomics\nCapital adequacy ratio, a ratio of a bank's capital to its risk\nCost accrual ratio, an accounting formula\nCumulative abnormal return\nCumulative average return, a financial concept related to the time value of money\nFilm and television\nCars (franchise), a Disney/Pixar film series\nCars (film), a 2006 animated film from Disney and Pixar\nThe Car (1977 film), an American horror film\nCar, a BBC Two television ident first aired in 1993 (see BBC Two '1991–2001' idents)\nThe Car (1997 film), a Malayalam film\n\"The Car\" (The Amazing World of Gumball episode)\n\"The Car\" (The Assistants episode)\nLiterature\nCar (magazine), a British auto-enthusiast publication\nThe Car (novel), a novel by Gary Paulsen\nMilitary\nCanadian Airborne Regiment, a Canadian Forces formation\nColt Automatic Rifle, a 5.56mm NATO firearm\nCombat Action Ribbon, a United States military decoration\nU.S. Army Combat Arms Regimental System, a 1950s reorganisation of the regiments of the US Army"]], "corpus": "wikipedia"}