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Math Question

The figure shows parallelogram \( A B C D \) with \( A E=16 \).
not drawn to scale
Let \( B E=x^{2}-48 \) and let \( D E=2 x \).
What is the length of BE? and DE?
\( B E \) is 16 units.
\( D E \) is 16 units.
What conclusion can be made regarding the specific classification of parallelogram ABCD?
\( A B C D \) is a because the lengths \( A E, B E, C E \), and \( D E \) are all making diagonals \( \mathrm{AC} \) and \( \mathrm{BD} \) congruent.

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