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statement_describes/train.jsonl
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{"question": "The statement of Gauss's law for gravity describes", "references": ["gravity", "gravitation", "gravitational force"]}
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{"question": "The statement of Hardy\u2013Littlewood inequality describes", "references": ["measurable function"]}
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{"question": "The statement of butterfly theorem describes", "references": ["circle", "\u2b55", "\u26aa", "chord", "chord of a curve", "chord of a circle"]}
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{"question": "The statement of Clifford's circle theorems describes", "references": ["circle", "\u2b55", "\u26aa"]}
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{"question": "The statement of Torelli theorem describes", "references": ["algebraic curve"]}
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{"question": "The statement of Monsky's theorem describes", "references": ["square", "2-orthoplex", "bicross", "2-cube", "2-cross-polytope", "regular quadrilateral", "triangle", "3-gon", "2-simplex", "\u2206"]}
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{"question": "The statement of Lefschetz theorem on (1,1)-classes describes", "references": ["K\u00e4hler manifold"]}
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{"question": "The statement of Half-side formula describes", "references": ["spherical triangle", "spherical triangles"]}
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{"question": "The statement of Appell\u2013Humbert theorem describes", "references": ["complex torus"]}
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{"question": "The statement of Desargues' theorem describes", "references": ["triangle", "3-gon", "2-simplex", "\u2206"]}
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{"question": "The statement of 2\u03c0 theorem describes", "references": ["hyperbolic 3-manifold"]}
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{"question": "The statement of Viviani's theorem describes", "references": ["equilateral triangle", "regular triangle", "equiangular triangle"]}
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{"question": "The statement of Birkhoff\u2013Grothendieck theorem describes", "references": ["holomorphic vector bundle"]}
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{"question": "The statement of Apollonius' theorem describes", "references": ["triangle", "3-gon", "2-simplex", "\u2206"]}
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{"question": "The statement of Petr\u2013Douglas\u2013Neumann theorem describes", "references": ["polygon", "2-polytope"]}
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{"question": "The statement of Barrow's inequality describes", "references": ["triangle", "3-gon", "2-simplex", "\u2206"]}
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{"question": "The statement of Routh's theorem describes", "references": ["triangle", "3-gon", "2-simplex", "\u2206"]}
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{"question": "The statement of Braikenridge\u2013Maclaurin theorem describes", "references": ["hexagon", "6-gon", "Hexagonal", "conic section", "conic curve"]}
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{"question": "The statement of Busemann's theorem describes", "references": ["convex body"]}
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{"question": "The statement of Monge's theorem describes", "references": ["circle", "\u2b55", "\u26aa"]}
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{"question": "The statement of hyperbolic law of cosines describes", "references": ["hyperbolic triangle"]}
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{"question": "The statement of Heron's formula describes", "references": ["triangle", "3-gon", "2-simplex", "\u2206"]}
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{"question": "The statement of Pick's theorem describes", "references": ["simple polygon"]}
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{"question": "The statement of Gr\u00f6tzsch's theorem describes", "references": ["planar graph", "graph coloring", "Graph Coloring Problem", "triangle-free graph"]}
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{"question": "The statement of isosceles triangle theorem describes", "references": ["isosceles triangle"]}
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{"question": "The statement of Blaschke\u2013Lebesgue theorem describes", "references": ["reuleaux triangle", "reuleaux rotor"]}
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{"question": "The statement of triangle postulate describes", "references": ["triangle", "3-gon", "2-simplex", "\u2206"]}
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{"question": "The statement of Brianchon's theorem describes", "references": ["conic section", "conic curve", "hexagon", "6-gon", "Hexagonal"]}
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{"question": "The statement of Brahmagupta theorem describes", "references": ["quadrilateral", "tetragon", "4-gon", "cuadril\u00e1tero", "quadrangle", "quadrangular"]}
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{"question": "The statement of Morley's trisector theorem describes", "references": ["triangle", "3-gon", "2-simplex", "\u2206"]}
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