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30 x 62
1860
longmult_2dig
longmult
[ { "content": "Answer the following problem. Explain your reasoning step by step. When you are finished, give your answer in this format: <answer>(your answer)</answer>.\n\n# Problem\nWhat is the solution to the multiplication equation below?\n30 x 62\n\nGive your answer in the following format:\n<answer>\n(your...
[]
[]
{"metadata": "{\"arg1\": 30, \"arg2\": 62, \"solution\": 1860}", "task_source": "longmult"}
test
{"arg1": 30, "arg2": 62, "solution": 1860}
[ "<think>\n<sample>\nTo solve the multiplication equation \\( 30 \\times 62 \\), we can use the standard long multiplication method:\n\n1. Multiply 30 by 2 (the ones place of 62): \n \\[ 30 \\times 2 = 60 \\]\n\n2. Multiply 30 by 60 (the tens place of 62):\n \\[ 30 \\times 60 = 1800 \\]\n\n3. Add the results fro...
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[ "", "", "", "" ]
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{ "backend": "litellm", "model_name": "hosted_vllm/TAUR-dev/M-0918__random_3args_grpo-rl", "n_responses": 4 }
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2025-11-09
test
main
TAUR-dev/M-0918__random_3args_grpo-rl
0
eval_rl
1
2025-11-09T11:23:23.404316
TAUR-dev/D-EVAL__standard_eval_v3__FinEval_16k_fulleval_3args_Random-RL-longmult_2dig-eval_rl
33 x 67
2211
longmult_2dig
longmult
[ { "content": "Answer the following problem. Explain your reasoning step by step. When you are finished, give your answer in this format: <answer>(your answer)</answer>.\n\n# Problem\nWhat is the solution to the multiplication equation below?\n33 x 67\n\nGive your answer in the following format:\n<answer>\n(your...
[]
[]
{"metadata": "{\"arg1\": 33, \"arg2\": 67, \"solution\": 2211}", "task_source": "longmult"}
test
{"arg1": 33, "arg2": 67, "solution": 2211}
[ "<think>\n<sample>\nTo solve the multiplication equation \\( 33 \\times 67 \\), we can use the standard long multiplication method:\n\n1. Multiply 33 by 7 (the ones digit of 67):\n \\[ 33 \\times 7 = 231 \\]\n\n2. Multiply 33 by 60 (the tens digit of 67, which is just shifting one place value to the left):\n \\...
[ false, false, false, false ]
[ "", "", "", "" ]
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{ "backend": "litellm", "model_name": "hosted_vllm/TAUR-dev/M-0918__random_3args_grpo-rl", "n_responses": 4 }
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2025-11-09
test
main
TAUR-dev/M-0918__random_3args_grpo-rl
0
eval_rl
1
2025-11-09T11:23:23.404324
TAUR-dev/D-EVAL__standard_eval_v3__FinEval_16k_fulleval_3args_Random-RL-longmult_2dig-eval_rl
74 x 60
4440
longmult_2dig
longmult
[ { "content": "Answer the following problem. Explain your reasoning step by step. When you are finished, give your answer in this format: <answer>(your answer)</answer>.\n\n# Problem\nWhat is the solution to the multiplication equation below?\n74 x 60\n\nGive your answer in the following format:\n<answer>\n(your...
[]
[]
{"metadata": "{\"arg1\": 74, \"arg2\": 60, \"solution\": 4440}", "task_source": "longmult"}
test
{"arg1": 74, "arg2": 60, "solution": 4440}
[ "<think>\n<sample>\nTo solve the multiplication equation \\( 74 \\times 60 \\), we can use the standard long multiplication method:\n\n1. Multiply 74 by 0 (the ones place of 60):\n - \\( 74 \\times 0 = 0 \\)\n\n2. Multiply 74 by 6 (the tens place of 60):\n - \\( 74 \\times 6 = 444 \\)\n\n3. Add the results from...
[ false, false, false, false ]
[ "", "", "", "" ]
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{ "backend": "litellm", "model_name": "hosted_vllm/TAUR-dev/M-0918__random_3args_grpo-rl", "n_responses": 4 }
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{ "flips_by": [ 0, 0, 1, 0 ], "flips_total": 1, "num_correct": 4, "pass_at_n": 1, "percent_correct": 1, "skill_count": { "answer_revision": [ 0, 0, 0, 0 ], "best_of_n": [ 0, 0, 0, 0 ], "reflect_close": [ 2, 2, 4, 2 ], "reflect_open": [ 2, 2, 4, 2 ], "reflection_sbon": [ 0, 0, 0, 0 ], "sample_close": [ 2, 2, 4, 2 ], "sample_open": [ 2, 2, 4, 2 ], "vote_close": [ 0, 0, 0, 0 ], "vote_open": [ 0, 0, 0, 0 ], "voting": [ 0, 0, 0, 0 ] }, "total_responses": 4 }
2025-11-09
test
main
TAUR-dev/M-0918__random_3args_grpo-rl
0
eval_rl
1
2025-11-09T11:23:23.404326
TAUR-dev/D-EVAL__standard_eval_v3__FinEval_16k_fulleval_3args_Random-RL-longmult_2dig-eval_rl
69 x 45
3105
longmult_2dig
longmult
[ { "content": "Answer the following problem. Explain your reasoning step by step. When you are finished, give your answer in this format: <answer>(your answer)</answer>.\n\n# Problem\nWhat is the solution to the multiplication equation below?\n69 x 45\n\nGive your answer in the following format:\n<answer>\n(your...
[]
[]
{"metadata": "{\"arg1\": 69, \"arg2\": 45, \"solution\": 3105}", "task_source": "longmult"}
test
{"arg1": 69, "arg2": 45, "solution": 3105}
[ "<think>\n<sample>\nTo solve the multiplication equation \\( 69 \\times 45 \\), we can use the standard long multiplication method:\n\n1. Multiply 69 by 5 (the ones place of 45):\n \\[ 69 \\times 5 = 345 \\]\n\n2. Multiply 69 by 40 (the tens place of 45, which is just adding a zero at the end):\n \\[ 69 \\times...
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[ "", "", "", "" ]
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2025-11-09
test
main
TAUR-dev/M-0918__random_3args_grpo-rl
0
eval_rl
1
2025-11-09T11:23:23.404327
TAUR-dev/D-EVAL__standard_eval_v3__FinEval_16k_fulleval_3args_Random-RL-longmult_2dig-eval_rl
73 x 71
5183
longmult_2dig
longmult
[ { "content": "Answer the following problem. Explain your reasoning step by step. When you are finished, give your answer in this format: <answer>(your answer)</answer>.\n\n# Problem\nWhat is the solution to the multiplication equation below?\n73 x 71\n\nGive your answer in the following format:\n<answer>\n(your...
[]
[]
{"metadata": "{\"arg1\": 73, \"arg2\": 71, \"solution\": 5183}", "task_source": "longmult"}
test
{"arg1": 73, "arg2": 71, "solution": 5183}
[ "<think>\n<sample>\nTo solve the multiplication equation \\( 73 \\times 71 \\), we can use the distributive property of multiplication over addition.\n\nFirst, break down 71 into two parts:\n\\[ 71 = 70 + 1 \\]\n\nNow, apply the distributive property:\n\\[ 73 \\times 71 = 73 \\times (70 + 1) \\]\n\\[ = 73 \\times 7...
[ false, false, false, false ]
[ "", "", "", "" ]
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[ false, false, false, true ]
[ "(584)", "(512)", "(584)", "(5183)" ]
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2025-11-09
test
main
TAUR-dev/M-0918__random_3args_grpo-rl
0
eval_rl
1
2025-11-09T11:23:23.404328
TAUR-dev/D-EVAL__standard_eval_v3__FinEval_16k_fulleval_3args_Random-RL-longmult_2dig-eval_rl
59 x 36
2124
longmult_2dig
longmult
[ { "content": "Answer the following problem. Explain your reasoning step by step. When you are finished, give your answer in this format: <answer>(your answer)</answer>.\n\n# Problem\nWhat is the solution to the multiplication equation below?\n59 x 36\n\nGive your answer in the following format:\n<answer>\n(your...
[]
[]
{"metadata": "{\"arg1\": 59, \"arg2\": 36, \"solution\": 2124}", "task_source": "longmult"}
test
{"arg1": 59, "arg2": 36, "solution": 2124}
[ "<think>\n<sample>\nTo solve the multiplication equation \\( 59 \\times 36 \\), we can use long multiplication.\n\nFirst, we multiply 59 by 6 (the ones digit of 36):\n\\[ 59 \\times 6 = 354 \\]\n\nNext, we multiply 59 by 30 (the tens digit of 36, which is just adding a zero to the end of 36):\n\\[ 59 \\times 30 = 1...
[ false, false, false, false ]
[ "", "", "", "" ]
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[ true, true, true, false ]
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2025-11-09
test
main
TAUR-dev/M-0918__random_3args_grpo-rl
0
eval_rl
1
2025-11-09T11:23:23.404329
TAUR-dev/D-EVAL__standard_eval_v3__FinEval_16k_fulleval_3args_Random-RL-longmult_2dig-eval_rl
23 x 24
552
longmult_2dig
longmult
[ { "content": "Answer the following problem. Explain your reasoning step by step. When you are finished, give your answer in this format: <answer>(your answer)</answer>.\n\n# Problem\nWhat is the solution to the multiplication equation below?\n23 x 24\n\nGive your answer in the following format:\n<answer>\n(your...
[]
[]
{"metadata": "{\"arg1\": 23, \"arg2\": 24, \"solution\": 552}", "task_source": "longmult"}
test
{"arg1": 23, "arg2": 24, "solution": 552}
[ "<think>\n<sample>\nTo solve the multiplication equation \\( 23 \\times 24 \\), we can use the standard long multiplication method:\n\n1. Multiply 23 by 4 (the ones place of 24):\n \\[\n 23 \\times 4 = 92\n \\]\n\n2. Multiply 23 by 20 (the tens place of 24), but remember to shift one position to the left:\n ...
[ false, false, false, false ]
[ "", "", "", "" ]
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2025-11-09
test
main
TAUR-dev/M-0918__random_3args_grpo-rl
0
eval_rl
1
2025-11-09T11:23:23.404330
TAUR-dev/D-EVAL__standard_eval_v3__FinEval_16k_fulleval_3args_Random-RL-longmult_2dig-eval_rl
47 x 41
1927
longmult_2dig
longmult
[ { "content": "Answer the following problem. Explain your reasoning step by step. When you are finished, give your answer in this format: <answer>(your answer)</answer>.\n\n# Problem\nWhat is the solution to the multiplication equation below?\n47 x 41\n\nGive your answer in the following format:\n<answer>\n(your...
[]
[]
{"metadata": "{\"arg1\": 47, \"arg2\": 41, \"solution\": 1927}", "task_source": "longmult"}
test
{"arg1": 47, "arg2": 41, "solution": 1927}
[ "<think>\n<sample>\nTo solve the multiplication equation \\( 47 \\times 41 \\), we can use the standard long multiplication method:\n\n1. Multiply 47 by 1 (the ones place of 41):\n \\[ 47 \\times 1 = 47 \\]\n\n2. Multiply 47 by 40 (the tens place of 41):\n \\[ 47 \\times 40 = 1880 \\]\n\n3. Add the results from...
[ false, false, false, false ]
[ "", "", "", "" ]
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{ "backend": "litellm", "model_name": "hosted_vllm/TAUR-dev/M-0918__random_3args_grpo-rl", "n_responses": 4 }
[ true, true, true, true ]
[ "1927", "1927", "1927", "(1927)" ]
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2025-11-09
test
main
TAUR-dev/M-0918__random_3args_grpo-rl
0
eval_rl
1
2025-11-09T11:23:23.404331
TAUR-dev/D-EVAL__standard_eval_v3__FinEval_16k_fulleval_3args_Random-RL-longmult_2dig-eval_rl
89 x 46
4094
longmult_2dig
longmult
[ { "content": "Answer the following problem. Explain your reasoning step by step. When you are finished, give your answer in this format: <answer>(your answer)</answer>.\n\n# Problem\nWhat is the solution to the multiplication equation below?\n89 x 46\n\nGive your answer in the following format:\n<answer>\n(your...
[]
[]
{"metadata": "{\"arg1\": 89, \"arg2\": 46, \"solution\": 4094}", "task_source": "longmult"}
test
{"arg1": 89, "arg2": 46, "solution": 4094}
[ "<think>\n<sample>\nTo solve the multiplication equation 89 x 46, we can use long multiplication.\n\nFirst, we multiply 89 by 6:\n\n89 × 6 = 534\n\nNext, we multiply 89 by 40 (which is 46 - 6):\n\n89 × 40 = 3560\n\nNow, we add the two results together:\n\n534 + 3560 = 4094\n\nSo, the solution to the multiplication ...
[ false, false, false, false ]
[ "", "", "", "" ]
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{ "backend": "litellm", "model_name": "hosted_vllm/TAUR-dev/M-0918__random_3args_grpo-rl", "n_responses": 4 }
[ true, true, true, false ]
[ "4094", "(4094)", "(4094)", "(2136)" ]
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2025-11-09
test
main
TAUR-dev/M-0918__random_3args_grpo-rl
0
eval_rl
1
2025-11-09T11:23:23.404332
TAUR-dev/D-EVAL__standard_eval_v3__FinEval_16k_fulleval_3args_Random-RL-longmult_2dig-eval_rl
30 x 35
1050
longmult_2dig
longmult
[ { "content": "Answer the following problem. Explain your reasoning step by step. When you are finished, give your answer in this format: <answer>(your answer)</answer>.\n\n# Problem\nWhat is the solution to the multiplication equation below?\n30 x 35\n\nGive your answer in the following format:\n<answer>\n(your...
[]
[]
{"metadata": "{\"arg1\": 30, \"arg2\": 35, \"solution\": 1050}", "task_source": "longmult"}
test
{"arg1": 30, "arg2": 35, "solution": 1050}
[ "<think>\n<sample>\nTo solve the multiplication equation \\( 30 \\times 35 \\), we can use the standard long multiplication method:\n\n1. Multiply 30 by 5:\n - \\( 30 \\times 5 = 150 \\)\n\n2. Multiply 30 by 30 (remember to place a zero at the end because we're multiplying by 3):\n - \\( 30 \\times 30 = 900 \\)...
[ false, false, false, false ]
[ "", "", "", "" ]
{ "api_url": "http://10.32.37.15:9080/v1", "backend": "litellm", "chat_template_applied": true, "generation_params": { "chat_template_applied": true, "max_tokens": 16384, "n": 1, "repetition_penalty": 1.1, "temperature": 0.7, "top_k": 20, "top_p": 0.8 }, "model_name": "hosted_vllm/TAUR-dev/M-0918__random_3args_grpo-rl", "prompt": [ { "content": "Answer the following problem. Explain your reasoning step by step. When you are finished, give your answer in this format: <answer>(your answer)</answer>.\n\n# Problem\nWhat is the solution to the multiplication equation below?\n30 x 35\n\nGive your answer in the following format:\n<answer>\n(your answer)\n</answer>\n\nWhere \"(your answer)\" is the numerical solution to the problem.\n\nLet's think step by step.", "role": "user" } ] }
{ "backend": "litellm", "model_name": "hosted_vllm/TAUR-dev/M-0918__random_3args_grpo-rl", "n_responses": 4 }
[ true, false, true, true ]
[ "1050", "(450)", "1050", "(1050)" ]
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{ "flips_by": [ 0, 1, 0, 0 ], "flips_total": 1, "num_correct": 3, "pass_at_n": 1, "percent_correct": 0.75, "skill_count": { "answer_revision": [ 0, 0, 0, 0 ], "best_of_n": [ 0, 0, 0, 0 ], "reflect_close": [ 3, 3, 2, 2 ], "reflect_open": [ 3, 3, 2, 2 ], "reflection_sbon": [ 0, 0, 0, 0 ], "sample_close": [ 3, 3, 2, 2 ], "sample_open": [ 3, 3, 2, 2 ], "vote_close": [ 0, 0, 0, 0 ], "vote_open": [ 0, 0, 0, 0 ], "voting": [ 0, 0, 0, 0 ] }, "total_responses": 4 }
2025-11-09
test
main
TAUR-dev/M-0918__random_3args_grpo-rl
0
eval_rl
1
2025-11-09T11:23:23.404333
TAUR-dev/D-EVAL__standard_eval_v3__FinEval_16k_fulleval_3args_Random-RL-longmult_2dig-eval_rl
75 x 94
7050
longmult_2dig
longmult
[ { "content": "Answer the following problem. Explain your reasoning step by step. When you are finished, give your answer in this format: <answer>(your answer)</answer>.\n\n# Problem\nWhat is the solution to the multiplication equation below?\n75 x 94\n\nGive your answer in the following format:\n<answer>\n(your...
[]
[]
{"metadata": "{\"arg1\": 75, \"arg2\": 94, \"solution\": 7050}", "task_source": "longmult"}
test
{"arg1": 75, "arg2": 94, "solution": 7050}
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[ "", "", "", "" ]
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2025-11-09
test
main
TAUR-dev/M-0918__random_3args_grpo-rl
0
eval_rl
1
2025-11-09T11:23:23.404334
TAUR-dev/D-EVAL__standard_eval_v3__FinEval_16k_fulleval_3args_Random-RL-longmult_2dig-eval_rl
67 x 36
2412
longmult_2dig
longmult
[ { "content": "Answer the following problem. Explain your reasoning step by step. When you are finished, give your answer in this format: <answer>(your answer)</answer>.\n\n# Problem\nWhat is the solution to the multiplication equation below?\n67 x 36\n\nGive your answer in the following format:\n<answer>\n(your...
[]
[]
{"metadata": "{\"arg1\": 67, \"arg2\": 36, \"solution\": 2412}", "task_source": "longmult"}
test
{"arg1": 67, "arg2": 36, "solution": 2412}
[ "<think>\n<sample>\nTo solve the multiplication equation \\( 67 \\times 36 \\), we can use the standard long multiplication method:\n\n1. Multiply 67 by 6:\n - 67 × 6 = 402\n\n2. Multiply 67 by 30 (remember to place a zero at the end because we're multiplying by 30):\n - 67 × 30 = 2010\n\n3. Add the two results...
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2025-11-09
test
main
TAUR-dev/M-0918__random_3args_grpo-rl
0
eval_rl
1
2025-11-09T11:23:23.404335
TAUR-dev/D-EVAL__standard_eval_v3__FinEval_16k_fulleval_3args_Random-RL-longmult_2dig-eval_rl
89 x 88
7832
longmult_2dig
longmult
[ { "content": "Answer the following problem. Explain your reasoning step by step. When you are finished, give your answer in this format: <answer>(your answer)</answer>.\n\n# Problem\nWhat is the solution to the multiplication equation below?\n89 x 88\n\nGive your answer in the following format:\n<answer>\n(your...
[]
[]
{"metadata": "{\"arg1\": 89, \"arg2\": 88, \"solution\": 7832}", "task_source": "longmult"}
test
{"arg1": 89, "arg2": 88, "solution": 7832}
[ "<think>\n<sample>\nTo solve the multiplication equation \\( 89 \\times 88 \\), we can use the distributive property of multiplication over addition:\n\n\\[\n89 \\times 88 = (90 - 1) \\times 88\n\\]\n\nNow, distribute 88:\n\n\\[\n= 90 \\times 88 - 1 \\times 88\n\\]\n\nCalculate each term separately:\n\n\\[\n90 \\ti...
[ false, false, false, false ]
[ "", "", "", "" ]
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[ false, false, false, false ]
[ "5696", "(5696)", "5696", "801" ]
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2025-11-09
test
main
TAUR-dev/M-0918__random_3args_grpo-rl
0
eval_rl
1
2025-11-09T11:23:23.404336
TAUR-dev/D-EVAL__standard_eval_v3__FinEval_16k_fulleval_3args_Random-RL-longmult_2dig-eval_rl
82 x 74
6068
longmult_2dig
longmult
[ { "content": "Answer the following problem. Explain your reasoning step by step. When you are finished, give your answer in this format: <answer>(your answer)</answer>.\n\n# Problem\nWhat is the solution to the multiplication equation below?\n82 x 74\n\nGive your answer in the following format:\n<answer>\n(your...
[]
[]
{"metadata": "{\"arg1\": 82, \"arg2\": 74, \"solution\": 6068}", "task_source": "longmult"}
test
{"arg1": 82, "arg2": 74, "solution": 6068}
[ "<think>\n<sample>\nTo solve the multiplication equation 82 x 74, we can use the standard long multiplication method:\n\n1. Multiply 82 by 4 (the ones place of 74):\n - 82 × 4 = 328\n\n2. Multiply 82 by 70 (the tens place of 74):\n - 82 × 70 = 5740\n\n3. Add the results from steps 1 and 2:\n - 328 + 5740 = 60...
[ false, false, false, false ]
[ "", "", "", "" ]
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2025-11-09
test
main
TAUR-dev/M-0918__random_3args_grpo-rl
0
eval_rl
1
2025-11-09T11:23:23.404337
TAUR-dev/D-EVAL__standard_eval_v3__FinEval_16k_fulleval_3args_Random-RL-longmult_2dig-eval_rl
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Experiment Tracker: FinEval_16k_fulleval_3args_Random-RL-longmult_2dig

Experiment Description: Evaluation experiment for task longmult_2dig from FinEval_16k_fulleval_3args_Random-RL

Start Time: 2025-11-09T11:06:14.167316

Tracker Dataset: TAUR-dev/D-ExpTracker__FinEval_16k_fulleval_3args_Random-RL-longmult_2dig__v1

Stages Completed

Total stages: 1

Models Created

Dataset Configurations

This tracker dataset contains the following configurations with immediate upload as stages complete:

Training Data (Complete Datasets)

Hyperparameters (Complete Configurations)

Logs (Stage-Specific)

Evaluation Results (Complete with Annotations)

Metadata

  • experiment_metadata: Timeline and stage information

Usage

Load specific configurations with:

from datasets import load_dataset

# Load experiment metadata
metadata = load_dataset('TAUR-dev/D-ExpTracker__FinEval_16k_fulleval_3args_Random-RL-longmult_2dig__v1', 'experiment_metadata')

# Load complete training datasets
sft_data = load_dataset('TAUR-dev/D-ExpTracker__FinEval_16k_fulleval_3args_Random-RL-longmult_2dig__v1', 'training_data__sft')
sft_metadata = load_dataset('TAUR-dev/D-ExpTracker__FinEval_16k_fulleval_3args_Random-RL-longmult_2dig__v1', 'training_data__sft_metadata')

# Load complete configurations
sft_hyperparams = load_dataset('TAUR-dev/D-ExpTracker__FinEval_16k_fulleval_3args_Random-RL-longmult_2dig__v1', 'hyperparameters__sft')
rl_hyperparams = load_dataset('TAUR-dev/D-ExpTracker__FinEval_16k_fulleval_3args_Random-RL-longmult_2dig__v1', 'hyperparameters__rl')

# Load stage-specific logs
sft_logs = load_dataset('TAUR-dev/D-ExpTracker__FinEval_16k_fulleval_3args_Random-RL-longmult_2dig__v1', 'logs__sft')
rl_logs = load_dataset('TAUR-dev/D-ExpTracker__FinEval_16k_fulleval_3args_Random-RL-longmult_2dig__v1', 'logs__rl')

# Load evaluation results with annotations
sft_eval_results = load_dataset('TAUR-dev/D-ExpTracker__FinEval_16k_fulleval_3args_Random-RL-longmult_2dig__v1', 'evals_eval_sft')
rl_eval_results = load_dataset('TAUR-dev/D-ExpTracker__FinEval_16k_fulleval_3args_Random-RL-longmult_2dig__v1', 'evals_eval_rl')

Models

Registry

All models from this experiment are automatically registered in the SkillFactory Model Registry with:

  • Complete training configuration (hyperparameters, datasets, methods)
  • Experiment lineage (links back to this tracker dataset)
  • Stage-specific metadata (SFT vs RL training details)
  • Structured input data references (training datasets and configurations)

Registry entries follow the naming pattern: Model - FinEval_16k_fulleval_3args_Random-RL-longmult_2dig - {stage_name} - {SFT/RL}


Generated by SkillFactory Experiment Management System All artifacts uploaded immediately as stages complete with perfect data provenance

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