Answer:
The acceleration of the rocket during launch is

Step-by-step explanation:
The rocket works on the principle of Newton’s third law which states that every action has an equal and opposite reaction. The average thrusting force from the momentum is given as

Here Δp is the change in momentum during the process of launching and Δt is the time taken by the rocket to attain its maximum speed for launching.
We also know that
and
from Newton’s second law of motion.

As the mass of the rocket will be constant during launching so Δp will have only variation in velocity. Thus the acceleration during launch of rocket will be

Thus the launching acceleration is 1600 ms-2.