AS October 2020 Q3

EdexcelCurrent spec12 marksVariable Force & Kinematics

3. At time \(t = 0\), a toy electric car is at rest at a fixed point \(O\). The car then moves in a horizontal straight line so that at time \(t\) seconds \((t \gt 0)\) after leaving \(O\), the velocity of the car is \(v\ \text{m s}^{-1}\) and the acceleration of the car is modelled as \((p + qv)\ \text{m s}^{-2}\), where \(p\) and \(q\) are constants.

When \(t = 0\), the acceleration of the car is \(3\ \text{m s}^{-2}\)

When \(t = T\), the acceleration of the car is \(\dfrac{1}{2}\ \text{m s}^{-2}\) and \(v = 4\)

(a) Show that \[8\frac{\mathrm{d}v}{\mathrm{d}t} = (24 - 5v)\] (6)
(b) Find the exact value of \(T\), simplifying your answer. (6)