{"kind":"task","effective_mode":"full","benchmark":{"kind":"benchmark","effective_mode":"full","slug":"frontierscience","formal_name":"FrontierScience","introduction":"専門的な科学課題を解く能力を評価するベンチマークです。公開データはolympiadとresearchに分かれ、競技問題と研究課題を区別して扱います。\n\nFrontierScience evaluates the ability to solve expert-level scientific tasks. Its public data separates olympiad and research problems so that competition and research tasks can be examined independently.","introduction_ja":"","introduction_en":"","category":"Category not supplied","task_count":null,"acquisition_status":"Acquisition status not supplied","official_url":"https://huggingface.co/datasets/openai/frontierscience","indexing_mode":"noindex"},"task_id":"bd9eb68c-9403-5c93-a243-0b9ea1d015d6","task_key":"olympiad--test--2c46387b~2d36e6~2d43cb~2d9e73~2ddbf1341bfafd","task_revision_id":"1","upstream_id":"2c46387b-36e6-43cb-9e73-dbf1341bfafd","short_description":"When discussing the orbits of three stars of equal mass under the influence of…","config":"olympiad","split":"test","body":"{\"problem\":\"When discussing the orbits of three stars of equal mass under the influence of each other's gravity alone, intuition might suggest a co-circular orbit. Recent research has found that the motion of three stars of equal mass under the influence of each other's gravity can also present an eight-shaped orbit. It is assumed that the position and shape of the orbit does not change over time.\\n\\n\\\\\\\\(O\\\\\\\\) and \\\\\\\\(P\\\\\\\\) are points on the eight-shaped orbit. Let \\\\\\\\(O\\\\\\\\) be at the centre of the eight-shaped orbit (where the curve intersects itself). Let \\\\\\\\(P\\\\\\\\) be at one of the points on the orbit furthest from \\\\\\\\(O\\\\\\\\).\\nWe enumerate the stars with \\\\\\\\(1\\\\\\\\), \\\\\\\\(2\\\\\\\\) and \\\\\\\\(3\\\\\\\\) in the order they pass a given point. At a given moment when star \\\\\\\\(1\\\\\\\\) passes point \\\\\\\\(O\\\\\\\\), let \\\\\\\\(O_2\\\\\\\\) and \\\\\\\\(O_3\\\\\\\\) denote the positions of stars \\\\\\\\(2\\\\\\\\) and \\\\\\\\(3\\\\\\\\) respectively at this moment. Likewise, at a given moment when star \\\\\\\\(1\\\\\\\\) passes through point \\\\\\\\(P\\\\\\\\), let \\\\\\\\(P_2\\\\\\\\) and \\\\\\\\(P_3\\\\\\\\) denote the positions of stars \\\\\\\\(2\\\\\\\\) and \\\\\\\\(3\\\\\\\\).\\\\\\nThe distances \\\\\\\\(OO_2 = 145.2 L\\\\\\\\), and \\\\\\\\(PP_2 = 242 L\\\\\\\\) are known, as well as the angle \\\\\\\\(\\\\\\\\angle OPP_2 = 11.6^\\\\\\\\circ\\\\\\\\). Here, \\\\\\\\(L\\\\\\\\) is an arbitrary unit of length.\\n\\nFind a numerical value for the ratio of the distances \\\\\\\\(s = \\\\\\\\frac{OO_2}{OP_2} \\\\\\\\), rounded to 3 significant figures.\\n\\nThink step by step and solve the problem below. At the end of your response, write your final answer on a new line starting with “FINAL ANSWER”. It should be an answer to the question such as providing a number, mathematical expression, formula, or entity name, without any extra commentary or providing multiple answer attempts.\",\"subject\":\"physics\"}","display_format":"text","language":"","answer_status":"published","assets":[],"source_url":"https://huggingface.co/datasets/openai/frontierscience","history":"initial import","indexing_mode":"noindex","subproblems":[],"grids":[]}