35
a Pentagon has 5 diagonals, they form a star inside the polygon
There is 8 triangles in the Star of David.
The lines inscribed as directed will result in a "star" being formed inside, and a pentagon will be formed in the middle of the star. The pentagram will have been separated into 11 regions by inscribing it as directed.
One star has five triangles on the sides, and about three in the middle, if enough lines are drawn.
10
10
35
there are 35 triangles in a pentagon with a pentagram inside. We can see that there are seven different distinct types of triangles(you can cout them). Since you can rotate the triangle in five different ways we do 7*5 do i knw u telephone by lady gaga tik tok by k
5
135
a Pentagon has 5 diagonals, they form a star inside the polygon
There are 3 to 10 triangles in a star.
To determine the number of triangles in a star inside a hexagon, we need to consider the number of triangles formed by the lines connecting the vertices of the hexagon and the points where the lines of the star intersect. Each intersection point forms a triangle with two adjacent vertices of the hexagon. Therefore, if the star has n points of intersection, the total number of triangles would be n multiplied by 2. Additionally, we need to consider the triangles formed by the lines of the star itself, which would add n triangles to the total count. So, the total number of triangles in a star inside a hexagon would be 3n.
There is 8 triangles in the Star of David.
4 because the Hebrew star has 2 triangles on it meaning if you had a star in a star you would have double right? So There we conclude that there is 4 triangles in a star within a star.
The lines inscribed as directed will result in a "star" being formed inside, and a pentagon will be formed in the middle of the star. The pentagram will have been separated into 11 regions by inscribing it as directed.
Six triangles.