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square-rectangle-rhombus-parallelogram
A rhombus, a parallelogram, a trapezium (unless isosceles) and the most general quadrilateral.
No it's not possible. The triangle with the most lines of symmetry is Isosceles triangle and that has 3 lines of symmetry. Unless you draw on the back, but that isn't correct.
circle
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square-rectangle-rhombus-parallelogram
A rhombus, a parallelogram, a trapezium (unless isosceles) and the most general quadrilateral.
Yes because it has infinite lines of symmetry.
Most parallelograms do not have any lines of symmetry. The only parallelograms that can have lines of symmetry are squares, rectangles, and rhombuses.
It is a circle whose lines of symmetry are infinite
A circle. It has an infinate amount of lines of symmetry.
No it's not possible. The triangle with the most lines of symmetry is Isosceles triangle and that has 3 lines of symmetry. Unless you draw on the back, but that isn't correct.
Most of the time.If a quadrilateral contains no parallel lines or two pairs of parallel lines then it is not a trapezium.
Yes, most (non-regular) hexagons do not have lines of symmetry.
Most shapes do not have lines of symmetry so why should it come as a surprise that a parallelogram has none?
A trapezium can have at most 1 line of symmetry.
Octagon