The net moment of the body is zero that means the distance between the force and the rotational axis is zero thus the stability of equilibrium configuration.

The net moment of the body is zero that means the distance between the force and the rotational axis is zero thus the stability of equilibrium configuration. Correct Answer The first part of the statement is true and other part is false

The net moment of the body is zero that doesn’t mean that the distance between the force and the rotational axis is zero. This means moments caused by different forces cancels out. If this happens there is no motion of the body along any direction and hence the body is said to be in equilibrium.

Related Questions

Sometimes in the calculations involving the wedges, there are situations when there is a toppling effect on the body. In that, if the net moment of the body is zero that means the distance between the force and the rotational axis is zero.
The net moment of the body is zero that means the distance between the force and the rotational axis is zero.
The net moment of the body is zero that means the work done by the force and the rotational axis is zero.
According to parallel axis theorem, the moment of inertia of a section about an axis parallel to the axis through center of gravity (i.e. $$I$$P) is given by (where, A = Area of the section, $$I$$G = Moment of inertia of the section about an axis passing through its C.G. and h = Distance between C.G. and the parallel axis.)
According to parallel axis theorem, the moment of inertia of a section about an axis parallel to the axis through center of gravity (i.e. $${I_{\text{P}}}$$) is given by (where, A = Area of the section, $${I_{\text{G}}}$$ = Moment of inertia of the section about an axis passing through its C.G. and h = Distance between C.G. and the parallel axis.)