A circle has lines of symmetry that are infinite
A circle has an endless or infinite lines of symmetry.
There are infinitely many lines of symmetry on a circle.
A circle has an unlimited number of lines of symmetry. These lines are called the diameter. Why does a circle have an unlimited number of lines of symmetry? It's because a circle has a constant diameter regardless of where the diameter is measured from.
A circle does not have a set of parallel lines in the traditional sense, as parallel lines are defined as lines that never intersect and remain equidistant from each other. However, you can draw lines that are tangent to a circle at various points, and these tangent lines can be parallel if they are at the same distance from the center of the circle. But in the context of the circle itself, it does not contain parallel lines.
The company that uses a green circle with three black lines as its logo is the environmental organization known as the "Sustainable Forestry Initiative" (SFI). This logo represents its commitment to promoting sustainable forest management and responsible forestry practices. SFI works with various stakeholders to ensure that forest resources are managed sustainably.
revelation
Allianz,
A camera company known as Konica Minolta has a logo with a blue circle with white lines. The circle is a representation of Earth and the offering of innovative value to customers throughout the world. The five white lines represents light beams and express their technological expertise in the field of imaging, and the blue color of the circle expresses creative innovation.
BitTorrent
A circle has lines of symmetry that are infinite
Infinite lines because a circle has infinite lines of symmetry.
No they are two separate lines on the London Underground. Circle line is yellow ,Central line is black I think.
There's an infinite number of lines of symmetry in a circle.
A circle has an infinite amount of lines of symetry.
A circle has an endless or infinite lines of symmetry.
Yes, there are infinite lines of symmetry in a circle.