3/65 The rocket moves in a vertical plane and is being propelled by a thrust T of 32 kN. It is also subjected to an atmospheric resistance R of 9.6 kN. If the rocket has a velocity of 3 km/s and if the gravitational acceleration is 6 m/s² at the altitude of the rocket, calculate the radius of curvature p of its path for the position described and the time-rate-of-change of the magnitude v of the velocity of the rocket. The mass of the rocket at the instant considered is 2000 kg.

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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Please solve and also clearly state the magnitude of acceleration of the rocket in m/s^2 and direction of the rocket relative to the ground in degrees.

3/65 The rocket moves in a vertical plane and is being
propelled by a thrust T of 32 kN. It is also subjected to an
atmospheric resistance R of 9.6 kN. If the rocket has a
velocity of 3 km/s and if the gravitational acceleration is
6 m/s² at the altitude of the rocket, calculate the radius of
curvature p of its path for the position described and the
time-rate-of-change of the magnitude v of the velocity of
the rocket. The mass of the rocket at the instant considered
is 2000 kg.
Transcribed Image Text:3/65 The rocket moves in a vertical plane and is being propelled by a thrust T of 32 kN. It is also subjected to an atmospheric resistance R of 9.6 kN. If the rocket has a velocity of 3 km/s and if the gravitational acceleration is 6 m/s² at the altitude of the rocket, calculate the radius of curvature p of its path for the position described and the time-rate-of-change of the magnitude v of the velocity of the rocket. The mass of the rocket at the instant considered is 2000 kg.
T
Vertical
30°
PROBLEM 3/65
R
Transcribed Image Text:T Vertical 30° PROBLEM 3/65 R
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