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|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
61662 x 44241 | 2727988542 | longmult_5dig | longmult | [
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"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?\n61662 x 44241\n\nGive your answer in the following format:\n<answer>\... | [] | [] | {"metadata": "{\"arg1\": 61662, \"arg2\": 44241, \"solution\": 2727988542}", "task_source": "longmult"} | test | {"arg1": 61662, "arg2": 44241, "solution": 2727988542} | [
"To solve the multiplication of 61662 and 44241, we can break it down into smaller steps for clarity:\n\n### Step 1: Multiply 61662 by 40000 (this will be easier to handle)\n\n\\[ 61662 \\times 40000 = 61662 \\times 4 \\times 10000 \\]\n\nFirst, calculate \\( 61662 \\times 4 \\):\n\n\\[ 61662 \\times 4 = 246648 \\]... | [
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... | 2025-11-09 | test | main | TAUR-dev/M-BASELINE_gtp4o_BOLT-sft | 0 | eval_sft | 1 | 2025-11-09T00:50:41.787889 | TAUR-dev/D-EVAL__standard_eval_v3__FinEval_16k_fulleval_3args_BoLT-SFT-longmult_5dig-eval_sft |
98270 x 48469 | 4763048630 | longmult_5dig | longmult | [
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"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?\n98270 x 48469\n\nGive your answer in the following format:\n<answer>\... | [] | [] | {"metadata": "{\"arg1\": 98270, \"arg2\": 48469, \"solution\": 4763048630}", "task_source": "longmult"} | test | {"arg1": 98270, "arg2": 48469, "solution": 4763048630} | [
"To solve the multiplication equation \\( 98270 \\times 48469 \\), we can break it down into smaller steps for easier calculation:\n\n1. **Break down the numbers**:\n - \\( 98270 = 98000 + 270 \\)\n - \\( 48469 = 48000 + 469 \\)\n\n2. **Multiply each part separately**:\n - Multiply \\( 98000 \\) by \\( 48000 ... | [
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... | 2025-11-09 | test | main | TAUR-dev/M-BASELINE_gtp4o_BOLT-sft | 0 | eval_sft | 1 | 2025-11-09T00:50:41.787903 | TAUR-dev/D-EVAL__standard_eval_v3__FinEval_16k_fulleval_3args_BoLT-SFT-longmult_5dig-eval_sft |
85574 x 60628 | 5188180472 | longmult_5dig | longmult | [
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"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?\n85574 x 60628\n\nGive your answer in the following format:\n<answer>\... | [] | [] | {"metadata": "{\"arg1\": 85574, \"arg2\": 60628, \"solution\": 5188180472}", "task_source": "longmult"} | test | {"arg1": 85574, "arg2": 60628, "solution": 5188180472} | [
"To solve the multiplication equation \\( 85574 \\times 60628 \\), we can break it down into simpler steps for easier calculation.\n\n### Step 1: Break Down Numbers\nFirst, let’s split each number into smaller parts that might be easier to multiply:\n\n- **\\( 85574 \\)**: This can be broken down as \\( 85000 + 500... | [
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... | 2025-11-09 | test | main | TAUR-dev/M-BASELINE_gtp4o_BOLT-sft | 0 | eval_sft | 1 | 2025-11-09T00:50:41.787906 | TAUR-dev/D-EVAL__standard_eval_v3__FinEval_16k_fulleval_3args_BoLT-SFT-longmult_5dig-eval_sft |
87369 x 14157 | 1236882933 | longmult_5dig | 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?\n87369 x 14157\n\nGive your answer in the following format:\n<answer>\... | [] | [] | {"metadata": "{\"arg1\": 87369, \"arg2\": 14157, \"solution\": 1236882933}", "task_source": "longmult"} | test | {"arg1": 87369, "arg2": 14157, "solution": 1236882933} | [
"To solve the multiplication equation \\(87369 \\times 14157\\), we can use the standard algorithm for multiplying large numbers. However, let's break it down into smaller steps and understand how each part contributes to the final result.\n\n### Step-by-Step Solution:\n\n#### Step 1: Multiply 87369 by 7 (from 1415... | [
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... | 2025-11-09 | test | main | TAUR-dev/M-BASELINE_gtp4o_BOLT-sft | 0 | eval_sft | 1 | 2025-11-09T00:50:41.787908 | TAUR-dev/D-EVAL__standard_eval_v3__FinEval_16k_fulleval_3args_BoLT-SFT-longmult_5dig-eval_sft |
52577 x 84823 | 4459738871 | longmult_5dig | 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?\n52577 x 84823\n\nGive your answer in the following format:\n<answer>\... | [] | [] | {"metadata": "{\"arg1\": 52577, \"arg2\": 84823, \"solution\": 4459738871}", "task_source": "longmult"} | test | {"arg1": 52577, "arg2": 84823, "solution": 4459738871} | [
"To solve the multiplication equation \\(52577 \\times 84823\\), we will follow these steps:\n\n### Step 1: Understand the Multiplication\nWe need to multiply two numbers together: \n- The first number is \\(52577\\).\n- The second number is \\(84823\\).\n\n### Step 2: Break Down the Multiplication\nWe can break do... | [
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... | 2025-11-09 | test | main | TAUR-dev/M-BASELINE_gtp4o_BOLT-sft | 0 | eval_sft | 1 | 2025-11-09T00:50:41.787910 | TAUR-dev/D-EVAL__standard_eval_v3__FinEval_16k_fulleval_3args_BoLT-SFT-longmult_5dig-eval_sft |
28441 x 57792 | 1643662272 | longmult_5dig | 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?\n28441 x 57792\n\nGive your answer in the following format:\n<answer>\... | [] | [] | {"metadata": "{\"arg1\": 28441, \"arg2\": 57792, \"solution\": 1643662272}", "task_source": "longmult"} | test | {"arg1": 28441, "arg2": 57792, "solution": 1643662272} | [
"To solve the multiplication equation \\(28441 \\times 57792\\), we can break it down into smaller parts and then multiply the results together.\n\n### Step-by-Step Solution:\n\n1. **Break Down Numbers**:\n - \\(28441\\) has digits that are easy to work with.\n - \\(57792\\) also has digits that are manageable ... | [
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... | 2025-11-09 | test | main | TAUR-dev/M-BASELINE_gtp4o_BOLT-sft | 0 | eval_sft | 1 | 2025-11-09T00:50:41.787911 | TAUR-dev/D-EVAL__standard_eval_v3__FinEval_16k_fulleval_3args_BoLT-SFT-longmult_5dig-eval_sft |
81212 x 52484 | 4262330608 | longmult_5dig | 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?\n81212 x 52484\n\nGive your answer in the following format:\n<answer>\... | [] | [] | {"metadata": "{\"arg1\": 81212, \"arg2\": 52484, \"solution\": 4262330608}", "task_source": "longmult"} | test | {"arg1": 81212, "arg2": 52484, "solution": 4262330608} | [
"To solve the multiplication equation \\( 81212 \\times 52484 \\), we will follow these steps:\n\n### Step 1: Understand the Multiplication Process\nMultiplying two numbers involves adding one number repeatedly to itself many times. In this case, we need to add \\( 81212 \\) to itself \\( 52484 \\) times.\n\n### St... | [
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... | 2025-11-09 | test | main | TAUR-dev/M-BASELINE_gtp4o_BOLT-sft | 0 | eval_sft | 1 | 2025-11-09T00:50:41.787913 | TAUR-dev/D-EVAL__standard_eval_v3__FinEval_16k_fulleval_3args_BoLT-SFT-longmult_5dig-eval_sft |
75436 x 27876 | 2102853936 | longmult_5dig | longmult | [
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"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?\n75436 x 27876\n\nGive your answer in the following format:\n<answer>\... | [] | [] | {"metadata": "{\"arg1\": 75436, \"arg2\": 27876, \"solution\": 2102853936}", "task_source": "longmult"} | test | {"arg1": 75436, "arg2": 27876, "solution": 2102853936} | [
"To solve the multiplication equation \\( 75436 \\times 27876 \\), we will follow these steps:\n\n1. **Write down the numbers and align them vertically**:\n ```\n 75436\n × 27876\n ------\n ```\n\n2. **Multiply each digit of the second number (27876) with the first digit of the first number (75436)**:... | [
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... | 2025-11-09 | test | main | TAUR-dev/M-BASELINE_gtp4o_BOLT-sft | 0 | eval_sft | 1 | 2025-11-09T00:50:41.787915 | TAUR-dev/D-EVAL__standard_eval_v3__FinEval_16k_fulleval_3args_BoLT-SFT-longmult_5dig-eval_sft |
42929 x 73055 | 3136178095 | longmult_5dig | 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?\n42929 x 73055\n\nGive your answer in the following format:\n<answer>\... | [] | [] | {"metadata": "{\"arg1\": 42929, \"arg2\": 73055, \"solution\": 3136178095}", "task_source": "longmult"} | test | {"arg1": 42929, "arg2": 73055, "solution": 3136178095} | [
"To solve the multiplication of two large numbers like 42929 and 73055, we can use various methods such as long multiplication or using a calculator. However, for accuracy, let's break it down into manageable steps:\n\n1. **Break Down the Numbers**: First, decompose each number into smaller parts that are easier to... | [
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... | 2025-11-09 | test | main | TAUR-dev/M-BASELINE_gtp4o_BOLT-sft | 0 | eval_sft | 1 | 2025-11-09T00:50:41.787916 | TAUR-dev/D-EVAL__standard_eval_v3__FinEval_16k_fulleval_3args_BoLT-SFT-longmult_5dig-eval_sft |
96109 x 64265 | 6176444885 | longmult_5dig | 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?\n96109 x 64265\n\nGive your answer in the following format:\n<answer>\... | [] | [] | {"metadata": "{\"arg1\": 96109, \"arg2\": 64265, \"solution\": 6176444885}", "task_source": "longmult"} | test | {"arg1": 96109, "arg2": 64265, "solution": 6176444885} | [
"To solve the multiplication of 96109 and 64265, we will follow these steps:\n\n### Step 1: Align the numbers vertically for easy calculation.\n```\n 96109\n × 64265\n-----------------\n```\n\n### Step 2: Multiply each digit of the bottom number (64265) with every digit of the top number (96109), starting fr... | [
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... | 2025-11-09 | test | main | TAUR-dev/M-BASELINE_gtp4o_BOLT-sft | 0 | eval_sft | 1 | 2025-11-09T00:50:41.787918 | TAUR-dev/D-EVAL__standard_eval_v3__FinEval_16k_fulleval_3args_BoLT-SFT-longmult_5dig-eval_sft |
30971 x 61764 | 1912892844 | longmult_5dig | longmult | [
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"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?\n30971 x 61764\n\nGive your answer in the following format:\n<answer>\... | [] | [] | {"metadata": "{\"arg1\": 30971, \"arg2\": 61764, \"solution\": 1912892844}", "task_source": "longmult"} | test | {"arg1": 30971, "arg2": 61764, "solution": 1912892844} | [
"To solve the multiplication equation \\(30971 \\times 61764\\), we will break it down into smaller steps for easier calculation:\n\n### Step 1: Break Down Numbers\nWe can split both numbers into more manageable parts:\n\n- \\(30971\\) becomes \\(30000 + 971\\)\n- \\(61764\\) remains as it is because it's already q... | [
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... | 2025-11-09 | test | main | TAUR-dev/M-BASELINE_gtp4o_BOLT-sft | 0 | eval_sft | 1 | 2025-11-09T00:50:41.787920 | TAUR-dev/D-EVAL__standard_eval_v3__FinEval_16k_fulleval_3args_BoLT-SFT-longmult_5dig-eval_sft |
77674 x 53129 | 4126741946 | longmult_5dig | longmult | [
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"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?\n77674 x 53129\n\nGive your answer in the following format:\n<answer>\... | [] | [] | {"metadata": "{\"arg1\": 77674, \"arg2\": 53129, \"solution\": 4126741946}", "task_source": "longmult"} | test | {"arg1": 77674, "arg2": 53129, "solution": 4126741946} | [
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... | 2025-11-09 | test | main | TAUR-dev/M-BASELINE_gtp4o_BOLT-sft | 0 | eval_sft | 1 | 2025-11-09T00:50:41.787921 | TAUR-dev/D-EVAL__standard_eval_v3__FinEval_16k_fulleval_3args_BoLT-SFT-longmult_5dig-eval_sft |
Experiment Tracker: FinEval_16k_fulleval_3args_BoLT-SFT-longmult_5dig
Experiment Description: Evaluation experiment for task longmult_5dig from FinEval_16k_fulleval_3args_BoLT-SFT
Start Time: 2025-11-09T00:24:18.631128
Tracker Dataset: TAUR-dev/D-ExpTracker__FinEval_16k_fulleval_3args_BoLT-SFT-longmult_5dig__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_BoLT-SFT-longmult_5dig__v1', 'experiment_metadata')
# Load complete training datasets
sft_data = load_dataset('TAUR-dev/D-ExpTracker__FinEval_16k_fulleval_3args_BoLT-SFT-longmult_5dig__v1', 'training_data__sft')
sft_metadata = load_dataset('TAUR-dev/D-ExpTracker__FinEval_16k_fulleval_3args_BoLT-SFT-longmult_5dig__v1', 'training_data__sft_metadata')
# Load complete configurations
sft_hyperparams = load_dataset('TAUR-dev/D-ExpTracker__FinEval_16k_fulleval_3args_BoLT-SFT-longmult_5dig__v1', 'hyperparameters__sft')
rl_hyperparams = load_dataset('TAUR-dev/D-ExpTracker__FinEval_16k_fulleval_3args_BoLT-SFT-longmult_5dig__v1', 'hyperparameters__rl')
# Load stage-specific logs
sft_logs = load_dataset('TAUR-dev/D-ExpTracker__FinEval_16k_fulleval_3args_BoLT-SFT-longmult_5dig__v1', 'logs__sft')
rl_logs = load_dataset('TAUR-dev/D-ExpTracker__FinEval_16k_fulleval_3args_BoLT-SFT-longmult_5dig__v1', 'logs__rl')
# Load evaluation results with annotations
sft_eval_results = load_dataset('TAUR-dev/D-ExpTracker__FinEval_16k_fulleval_3args_BoLT-SFT-longmult_5dig__v1', 'evals_eval_sft')
rl_eval_results = load_dataset('TAUR-dev/D-ExpTracker__FinEval_16k_fulleval_3args_BoLT-SFT-longmult_5dig__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_BoLT-SFT-longmult_5dig - {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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