R19-2. The space capsule has a mass of 1200 kg and a moment of inertia lg = 900 kg - m² about an axis passing through G and directed perpendicular to the page. If it is traveling forward with a speed vg = 800 m/s and executes a turn by means of two jets, which provide a constant thrust of 400 Ń for 0.3 s, determine the capsule's angular velocity just after the jets are turned off. T= 400 N 15° 1.5 m G = 800 m/s 1.5 m 15° T= 400 N
R19-2. The space capsule has a mass of 1200 kg and a moment of inertia lg = 900 kg - m² about an axis passing through G and directed perpendicular to the page. If it is traveling forward with a speed vg = 800 m/s and executes a turn by means of two jets, which provide a constant thrust of 400 Ń for 0.3 s, determine the capsule's angular velocity just after the jets are turned off. T= 400 N 15° 1.5 m G = 800 m/s 1.5 m 15° T= 400 N
Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
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Transcribed Image Text:R19-2. The space capsule has a mass of 1200 kg and a
moment of inertia lg = 900 kg - m² about an axis passing
through G and directed perpendicular to the page. If it is
traveling forward with a speed vg = 800 m/s and executes
a turn by means of two jets, which provide a constant thrust
of 400 Ń for 0.3 s, determine the capsule's angular velocity
just after the jets are turned off.
T= 400 N
15°
1.5 m
G = 800 m/s
1.5 m
15°
T= 400 N
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