Median absolute deviation

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In physics, the perpendicular axis theorem (or plane figure theorem) can be used to determine the moment of inertia of a rigid object that lies entirely within a plane, about an axis perpendicular to the plane, given the moments of inertia of the object about two perpendicular axes lying within the plane. The axes must all pass through a single point in the plane.

Define perpendicular axes x, y, and z (which meet at origin O) so that the body lies in the xy plane, and the z axis is perpendicular to the plane of the body. Let Ix, Iy and Iz be moments of inertia about axis x, y, z respectively, the perpendicular axis theorem states that[1]

Iz=Ix+Iy

This rule can be applied with the parallel axis theorem and the stretch rule to find moments of inertia for a variety of shapes.

If a planar object (or prism, by the stretch rule) has rotational symmetry such that Ix and Iy are equal, then the perpendicular axes theorem provides the useful relationship:

Iz=2Ix=2Iy

Derivation

Working in Cartesian co-ordinates, the moment of inertia of the planar body about the z axis is given by:[2]

Iz=(x2+y2)dm=x2dm+y2dm=Iy+Ix

On the plane, z=0, so these two terms are the moments of inertia about the x and y axes respectively, giving the perpendicular axis theorem. The converse of this theorem is also derived similarly.

Note that x2dm=IyIx because in r2dm, r measures the distance from the axis of rotation, so for a y-axis rotation, deviation distance from the axis of rotation of a point is equal to its x co-ordinate.

References

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See also

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  2. 20 year-old Real Estate Agent Rusty from Saint-Paul, has hobbies and interests which includes monopoly, property developers in singapore and poker. Will soon undertake a contiki trip that may include going to the Lower Valley of the Omo.

    My blog: http://www.primaboinca.com/view_profile.php?userid=5889534