9.19
When a rocket is launched, its motion is affected by the Earth's gravitational force, which is directed opposite to the rocket's motion.
The change in instantaneous velocity of the rocket is expressed as the negative ratio of reduced mass of the rocket to its initial mass for a given constant velocity minus the acceleration due to gravity times the time interval.
Integrating the above equation with initial and final limits, the mathematical expression for the change in velocity under the influence of the Earth's gravity is obtained.
Thus, the velocity of expelled gases and the ratio of initial mass to the mass after fuel combustion during time Δt influences the change in the rocket's velocity.
The rocket's velocity is smaller by a factor gΔt compared to the rocket's velocity in space for the same combustion rate.
Thus, it is essential to have quicker combustion to achieve a significant change in velocity during the launch.
A rocket's velocity in the presence of a gravitational field is decreased by the amount of force exerted by Earth's gravitational field, which opposes…
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