M5 June 2010 Q4

EdexcelOld spec13 marksMomentsVectors

4. Two forces \(\mathbf{F}_1 = (\mathbf{i} + 2\mathbf{j} + 3\mathbf{k})\) N and \(\mathbf{F}_2 = (3\mathbf{i} + \mathbf{j} + 2\mathbf{k})\) N act on a rigid body. The force \(\mathbf{F}_1\) acts through the point with position vector \((2\mathbf{i} + \mathbf{k})\) m and the force \(\mathbf{F}_2\) acts through the point with position vector \((\mathbf{j} + 2\mathbf{k})\) m.

(a) If the two forces are equivalent to a single force \(\mathbf{R}\), find
(i) \(\mathbf{R}\), (2)
(ii) a vector equation of the line of action of \(\mathbf{R}\), in the form \(\mathbf{r} = \mathbf{a} + \lambda\mathbf{b}\). (6)
(b) If the two forces are equivalent to a single force acting through the point with position vector \((\mathbf{i} + 2\mathbf{j} + \mathbf{k})\) m together with a couple of moment \(\mathbf{G}\), find the magnitude of \(\mathbf{G}\). (5)