Datasets:
Download examples/evaporation_example.json from JOHNNYlee1/LabOPBench: direct link, hf CLI and curl.
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https://huggingface.co/datasets/JOHNNYlee1/LabOPBench/resolve/main/examples/evaporation_example.json
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hf download hf://datasets/JOHNNYlee1/LabOPBench/examples/evaporation_example.json
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curl -L -o evaporation_example.json https://huggingface.co/datasets/JOHNNYlee1/LabOPBench/resolve/main/examples/evaporation_example.json
1.4 kB
| { | |
| "id": "c1cbc175-9f89-4219-9f97-686780e864c9", | |
| "category": "Evaporation", | |
| "question": "In the rotary evaporation scenario shown in Evaporation_018_01.png, identify the problems occurring in the current run and propose optimization recommendations.", | |
| "model_question_text": "In the rotary evaporation scenario shown in Figure 1, identify the problems occurring in the current run and propose optimization recommendations.", | |
| "image": [ | |
| "images/Evaporation/Evaporation_018_01.png" | |
| ], | |
| "model": "claude-opus-4-7-thinking", | |
| "answer": "**Problem Identified:**\nThe receiving (collection) flask is overfilled ? the condensed solvent has accumulated to near its working capacity (close to the 1000 mL mark and approaching the joint level).\n\n**Main Cause:**\nThe receiving flask was not emptied in time during continuous evaporation, causing solvent buildup that approaches the ground-glass joint.\n\n**Optimization Recommendation:**\nPause the evaporation, release the vacuum, detach and empty the receiving flask, then resume operation. As a routine practice, monitor the receiving flask and drain it before the liquid level reaches more than ~50% of its capacity to prevent solvent backflow into the condenser, loss of vacuum efficiency, and contamination of the recovered solvent.", | |
| "score": 0.5, | |
| "max_score": 3, | |
| "reference_answer": "withheld", | |
| "scoring_rationale": "withheld" | |
| } | |