By describing the Xð3872Þ using the extended Friedrichs scheme, in which DD Ã is considered as the dominant component, we calculate the decay rates of the Xð3872Þ to π 0 and a P-wave charmonium χ cJ state with J ¼ 0, 1, or 2, and the rate of its decay to J=ψπ þ π − with the help of the Barnes-Swanson model, where π þ π − are assumed to be produced via an intermediate ρ state. This calculation shows that the decay rate of Xð3872Þ to χ c1 π 0 is 1 order of magnitude smaller than its decay rate to J=ψπ þ π − and the decay widths of Xð3872Þ → χ cJ π 0 for J ¼ 0, 1, 2 are of the same order.