It would have have 7 vertices.
A polygon has the same amount of vertices as it does sides, so it would have 7 vertices.
35
A heptagon has 7 sides and 7 vertices.
7 vertices.
A pyramid with an n-sided base will have n + 1 vertices, n + 1 faces, and 2n edges. 7 vertices
A pyramid with an n-sided base will have n + 1 vertices, n + 1 faces, and 2n edges. 7 vertices.
A pyramid with an n-sided base will have n + 1 vertices, n + 1 faces, and 2n edges. 7 vertices
A 7 sided heptagon has 7 points which are its vertices.
To determine how many heptagons can be formed by joining the vertices of a 10-sided polygon, we can use the combination formula. Specifically, we need to choose 7 vertices from the 10 available. This is calculated as ( \binom{10}{7} ), which is equal to ( \binom{10}{3} ) (since choosing 7 vertices to include is the same as choosing 3 vertices to exclude). Thus, ( \binom{10}{3} = \frac{10!}{3!(10-3)!} = 120 ). Therefore, 120 heptagons can be drawn by joining the vertices of a 10-sided polygon.
A pyramid with an n-sided base will have n + 1 vertices, n + 1 faces, and 2n edges. 12 edges, 7 vertices, 12 edges
A pyramid with an n-sided base will have n + 1 vertices, n + 1 faces, and 2n edges. 7 vertices
A prism with an n-sided base will have 2n vertices, n + 2 faces, and 3n edges. 7 faces