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no they are not

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Q: Are dilations always congruent
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Related questions

Which transformation does not always result in an image that is congruent to the original figure?

A dilation (or scaling) is a transformation that does not always result in an image that is congruent to the original figure. While translations, rotations, and reflections always produce congruent figures, dilations change the size of the figure, which means the image may be similar to, but not congruent with, the original figure.


Why do dilations produce similar figures but not congruent figures?

Because congruent figures just rotate or reflect making the shape the same size same everything, but when you dilate you shrink it or enlrge it making a similar figure but not a congruent figure. but translations, reflections, rotations, and dilations common thing is that when you move it or shrink it your shape still has the same angles.


What composition of transformations will create a pair of similar not congruent triangles?

Enlargements (or dilations) will create similar shapes.


Are the diagonals of a trapezoid always congruent?

the diagonals of a trepazoid always congruent?


What are angles that are always congruent?

Angles that are always congruent are applesauce angles


Is congruent figures are always similar?

Are congruent figures always similar? Yes.


What are dilations in math?

Dilations are a geometric transformation that results in the image being similar to the preimage.


Is these two triangles always congruent sometimes congruent or never congruent?

Never


Are Equal angles are always congruent?

the shape? no, not always. but they are always at least similar figures. but the angles alone are always congruent


If one side of a quadrilateral is congruent can it be always parallelograms be congruent?

One side cannot be congruent: it must be congruent to something!


What are dilations?

They are relating to kidneys.


Which quadrilaterals are consecutive and opposite angles always congruent?

quadrilaterals are consecutive and opposite angles always congruent?