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Mathematics, 18.10.2019 13:30 carthur71

James cut out four parallelograms, the dimensions of which are shown below. parallelogram 1 length: 12 in. width: 15 in. diagonal: 20 in. parallelogram 2 length: 16 in. width: 30 in. diagonal: 34 in. parallelogram 3 length: 20 in. width: 21 in. diagonal: 29 in. parallelogram 4 length: 18 in. width: 20 in. diagonal: 26 in. james put the parallelograms together so one vertex from each paper exists on a point, as shown in the circle. mr025-1.jpg which statement explains whether or not the parallelgrams can be put together so each occupies one-quarter of the area of the circle without overlapping any other pieces? check all that apply. the quadrilaterals can be placed such that each occupies one-quarter of the circle. the quadrilaterals cannot be placed such that each occupies one-quarter of the circle because the vertices of parallelogram 1 do not form right angles. the quadrilaterals cannot be placed such that each occupies one-quarter of the circle because the vertices of parallelogram 2 do not form right angles. the quadrilaterals cannot be placed such that each occupies one-quarter of the circle because the vertices of parallelogram 3 do not form right angles. the quadrilaterals cannot be placed such that each occupies one-quarter of the circle because the vertices of parallelogram 4 do not form right angles.

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James cut out four parallelograms, the dimensions of which are shown below. parallelogram 1 length:...

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