{"task": {"agent_timeout": 600, "task": "kramabench-astronomy-easy-2", "verifier_timeout": 300, "instruction": "Under `/app/data`, consider the following files for analysis:\n* STORM-AI/warmup/v2/OMNI2/omni2-wu091-20140826_to_20141025.csv\n* STORM-AI/warmup/v2/OMNI2/omni2-wu224-20150929_to_20151128.csv\n* STORM-AI/warmup/v2/OMNI2/omni2-wu492-20171211_to_20180209.csv\n* STORM-AI/warmup/v2/Sat_Density/swarma-wu016-20140314_to_20140317.csv\n* STORM-AI/warmup/v2/Sat_Density/swarma-wu260-20160315_to_20160318.csv\n* STORM-AI/warmup/v2/Sat_Density/swarma-wu545-20180718_to_20180721.csv\n* STORM-AI/warmup/v2/Sat_Density/swarma-wu553-20180811_to_20180814.csv\n* STORM-AI/warmup/v2/Sat_Density/swarma-wu593-20181209_to_20181212.csv\n* space-track/58214_storm.csv\n* swarm/POD/SW_OPER_SP3ACOM_2__20190927T235942_20190928T235942_0201/SW_OPER_SP3ACOM_2__20190927T235942_20190928T235942_0201.sp3\n\nCalculate the ratio of peak atmospheric mass density experienced by Swarm A satellite during March 14th-17th 2014 vs July 18th-21st 2018.\n\nSave your EXACT NUMERIC answer AND NOTHING ELSE in the file `/app/answer.txt`.", "memory": "4096m", "runnable": false, "difficulty": "easy", "language": "", "cpus": 1, "instruction_truncated": false, "category": "data-science", "compose": false, "has_solution": true, "oracle": null, "docker_image": "", "taskset": "kramabench", "tags": ["data-processing", "coding", "numeric_exact", "astronomy"]}, "runs": []}