The following is a list of centroids of various two-dimensional and three-dimensional objects. The centroid of an object
X
n
X
X
For each two-dimensional shape below, the area and the centroid coordinates
(\bar{x},\bar{y})
Shape | Figure | \barx | \bary | Area | |||||||||||||||||||||||||
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
rectangle area |
|
| {bh} | ||||||||||||||||||||||||||
General triangular area |
|
|
| ||||||||||||||||||||||||||
Isosceles-triangular area |
|
|
| ||||||||||||||||||||||||||
Right-triangular area |
|
|
| ||||||||||||||||||||||||||
Circular area | 0 | 0 | {\pir2} | ||||||||||||||||||||||||||
Quarter-circular area[2] |
|
|
| ||||||||||||||||||||||||||
Semicircular area[3] | 0 |
|
| ||||||||||||||||||||||||||
Circular sector |
| \ | 0 | \ | \alpha r^2 | ||||||||||||||||||||||||
Circular segment |
| \ | 0 |
(2\alpha-\sin(2\alpha)) | |||||||||||||||||||||||||
Annular sector |
| \ | 0 | \alpha
| |||||||||||||||||||||||||
Quarter-circular arc | The points on the circle x2+y2=r2 |
|
|
| |||||||||||||||||||||||||
Semicircular arc | The points on the circle x2+y2=r2 \ | x axis | \ | 0 |
| L=\ | \pi r | ||||||||||||||||||||||
Arc of circle | The points on the curve (in polar coordinates) \rho=r \ | \theta = -\alpha to \theta=\alpha |
| \ | 0 | L=\ | 2\alpha \rho | ||||||||||||||||||||||
elliptical area | 0 | 0 | {\piab} | ||||||||||||||||||||||||||
Quarter-elliptical area |
|
|
| ||||||||||||||||||||||||||
Semielliptical area | \ | 0 |
|
| |||||||||||||||||||||||||
Parabolic area | The area between the curve y=
x2 \ | y = h | \ | 0 |
|
| |||||||||||||||||||||||
Semiparabolic area The area between the curve y=
x2 y \ | y = 0 to y=h |
|
|
| |||||||||||||||||||||||||
Parabolic spandrel | The area between the curve y=
x2 \ | x axis, from x=0 \ | x = b |
|
|
| |||||||||||||||||||||||
General spandrel | The area between the curve y=
xn x \ | x = 0 to x=b |
b |
h |
|
For each three-dimensional body below, the volume and the centroid coordinates
(\bar{x},\bar{y},\bar{z})
Shape | Figure | \barx | \bary | \barz | Volume | ||||||||||||
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
Cuboid | a, b = the sides of the cuboid's base c = the third side of the cuboid |
|
|
| {abc} | ||||||||||||
Right-rectangular pyramid | a, b = the sides of the base h = the distance is from base to the apex |
|
|
|
| ||||||||||||
General triangular prism | b = the base side of the prism's triangular base, h = the height of the prism's triangular base L = the length of the prism | see above for general triangular base |
|
|
| ||||||||||||
Isosceles triangular prism | b = the base side of the prism's triangular base, h = the height of the prism's triangular base L = the length of the prism |
|
|
|
| ||||||||||||
Right-triangular prism | b = the base side of the prism's triangular base, h = the perpendicular side of the prism's triangular base L = the length of the prism |
|
|
|
| ||||||||||||
Right circular cylinder | r = the radius of the cylinder h = the height of the cylinder | 0 | 0 |
| {\pir2h} | ||||||||||||
Right circular solid cone | r = the radius of the cone's base h = the distance is from base to the apex | 0 | 0 |
|
| ||||||||||||
Solid sphere | r = the radius of the sphere | 0 | 0 | 0 |
| ||||||||||||
Solid hemisphere | r = the radius of the hemisphere | 0 | 0 |
|
| ||||||||||||
Solid semi-ellipsoid of revolution around z-axis | a = the radius of the base circle h = the height of the semi-ellipsoid from the base cicle's center to the edge | 0 | 0 |
|
| ||||||||||||
Solid paraboloid of revolution around z-axis | a = the radius of the base circle h = the height of the paboloid from the base cicle's center to the edge | 0 | 0 |
|
| ||||||||||||
Solid ellipsoid | a, b, c = the principal semi-axes of the ellipsoid | 0 | 0 | 0 |
| ||||||||||||
Solid semi-ellipsoid around z-axis | a, b = the principal semi-axes of the base ellipse c = the principal z-semi-axe from the center of base ellipse | 0 | 0 |
|
| ||||||||||||
Solid paraboloid around z-axis | a, b = the principal semi-axes of the base ellipse c = the principal z-semi-axe from the center of base ellipse | 0 | 0 |
|
|