They are similar.
The fact that corresponding angles are congruent does not require corresponding sides to be proportional - except in the case of a triangle. For quadrilaterals, think of a square and rectangle.
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For segments or angles, "congruent" means that they have the same measure.For more complicated figures, such as triangles, "congruent" means that all corresponding sides and angles are congruent. "Corresponding" means that you make an assignment, from angles and sides of one triangle, to angles and sides of the other triangle. For example, you might label the sides of one triangle a1, b1, c1, and the sides of other triangle a2, b2, c2 - and you consider the "a" sides to be "corresponding".
If two parallelograms are similar then the corresponding angles are EQUAL.
It means that the sides of one are directly proportional to the corresponding sides of the other. That all the corresponding angles are equal.
Yes, similar figures always have congruent corresponding angles and proportional corresponding side lengths.
Yes
They are said to be similar
Yes, similar figures always have congruent corresponding angles and proportional corresponding side lengths.
Two figures are similar if: - The measures of their corresponding angles are equal. - The ratios of the lengths of the corresponding sides are proportional.
In geometry, similar refers to two figures that have the same shape but may differ in size. Specifically, similar figures have corresponding angles that are equal and corresponding sides that are proportional in length.
polygons that have corresponding angles congruent and corresponding sides proportional
Corresponding angles in similar figures should be the same, not supplementary.
Two geometric shapes are similar if they differ only in their size. For polygons this requires that the corresponding angles of the two polygons are congruent and that the ratio of their corresponding sides is the same.
Proportional.
The fact that corresponding angles are congruent does not require corresponding sides to be proportional - except in the case of a triangle. For quadrilaterals, think of a square and rectangle.