When constructing an inscribed regular hexagon and you are given a point on the circle, how many arcs will be drawn on the circle? 6 5 7 8
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6? @mathmate
@mathmate i really need this fast is it 6???
Why 6 and not 8?
Because it said 6 in the hexagon region is that incorrect?
is it 8? can you help me on one or two more please? @mathmate
Your reasoning is correct. Have confidence!!!
so its 6!! thank you can you help me on these?? @mathmate
Which of these is a step in constructing an inscribed equilateral triangle using technology? Construct segment DB, segment BC, segment CE, segment EG, segment GI, and segment ID. Create circle A with point B on the original circle. Create circle E, which passes through points A and C. Draw point E anywhere on segment DB.
im guessing this one is A
I suggest you post a new question every time. You get more people to help you! They all love medals!
well more assuming than guessing but can you help with that here or do u want me to post it so you get a medal?
Which of the following is the final step in bisecting a line segment? Keeping the compass at the same width, place the compass on the other endpoint and swing arcs on either side so that they intersect the first two arcs created. Mark the intersection points of the arcs, and draw a line through those two points. Place the compass on one of the endpoints, and open the compass to a distance more than halfway across the segment. Swing an arc on either side of the segment.
those two are what i need help with @mathmate
can you help please?? @mathmate
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