{"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":"1cada8eb-4480-5ce4-95ac-9c6d5f7b0b5c","task_key":"olympiad--test--239c543b~2d7543~2d445a~2db492~2d89c994b9ba7c","task_revision_id":"1","upstream_id":"239c543b-7543-445a-b492-89c994b9ba7c","short_description":"Consider an infinite two-dimensional plane of nodes arranged in a uniform…","config":"olympiad","split":"test","body":"{\"problem\":\"Consider an infinite two-dimensional plane of nodes arranged in a uniform triangular lattice. Each node is connected to each of its 6 nearest neighbors by a resistor with resistance `\\\\(R\\\\)`. Find an equation for `\\\\(R_{eq}\\\\),` the equivalent resistance between two neighbouring grid points in terms of `\\\\(R\\\\)`.\\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":[]}