perpendicular bisector
It is called a bisector.
It's the perpendicular bisector.
A segment bisector is a line, ray, or segment that divides a segment into two equal parts. Examples include the perpendicular bisector of a line segment, which intersects the segment at its midpoint at a right angle, and a midpoint connector that connects the midpoints of two segments. Additionally, any line that passes through the midpoint of a segment and extends in both directions can also be considered a segment bisector.
To find the midpoint of a segment using paper folding, start by marking a point off the segment. Then, fold the paper so that this marked point aligns with one endpoint of the segment, causing the other endpoint to lie on the crease. The crease created by the fold represents the perpendicular bisector of the segment, and where it intersects the segment is the midpoint. Unfolding the paper will reveal this point clearly.
A line that intersects a segment at its midpoint bisects the segment.
I line that intersects a segment at its midpoint.
A Segment Bisector
It is a bisector.
perpendicular bisector
It is called a bisector.
It's the perpendicular bisector.
bisector
Such a line is called a perpendicular bisector.
Take a compass, extend it about 3/4 of the length of the segment. Then from one end of the segment, draw a 180 degree arc. From the other end draw another arc. Connect the points where the arcs intersect. Where the line intersects with the segment is the midpoint of the segment. That is how you bisect a segment to find the midpoint - geometrically.
A segment bisector is a line, ray, or segment that divides a segment into two equal parts. Examples include the perpendicular bisector of a line segment, which intersects the segment at its midpoint at a right angle, and a midpoint connector that connects the midpoints of two segments. Additionally, any line that passes through the midpoint of a segment and extends in both directions can also be considered a segment bisector.
To find the midpoint of a segment using paper folding, start by marking a point off the segment. Then, fold the paper so that this marked point aligns with one endpoint of the segment, causing the other endpoint to lie on the crease. The crease created by the fold represents the perpendicular bisector of the segment, and where it intersects the segment is the midpoint. Unfolding the paper will reveal this point clearly.