Answer:
The work done on the jet by the catapult is 1.53 x 10⁷ J
Step-by-step explanation:
Given;
force of thrust engines, F = 2.3 x 10⁵ N
distance moved by the thrust engines, d = 90 m
kinetic energy of the plane, K.E = 3.60 x 10⁷ J
Based on work-energy theorem;
the net work done on the plane by catapult and the thrust engine is given as;

work done by the thrust engine on the jet;

Work done on the jet by the catapult;

Therefore, the work done on the jet by the catapult is 1.53 x 10⁷ J