Given:
The force applied on the box, F=23.4 N
The time duration for which the force is applied, t=2.56 s
The initial velocity of the box, u=0 m/s
The mass of the box, m=7.33 kg
To find:
The velocity of the box.
Step-by-step explanation:
From Newton's second law, the force applied to the box is given by,

Where a is the acceleration of the box due to the applied force.
On substituting the known values,

From the equation of motion, the final velocity of the box is given by,

On substituting the known values,

Final answer:
The velocity of the box is 8.17 m/s