21-35. The 200-kg satellite has its center of mass at point G. Its radii of gyration about the z', x',y' axes are k. = 300 mm, k = k = 500 mm, respectively. At the instant shown, the satellite rotates about the x', y', and z' axes with the angular velocity shown, and its center of mass G has a velocity of vG = {-250i + 200j + 120k} m/s. Determine the kinetic energy of the satellite at this instant. Jo: = 1250 rad/s w, = 600 rad/ o, = 300 rad/s 800 mm

Classical Dynamics of Particles and Systems
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Author:Stephen T. Thornton, Jerry B. Marion
Publisher:Stephen T. Thornton, Jerry B. Marion
Chapter8: Central-force Motion
Section: Chapter Questions
Problem 8.9P
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21-35. The 200-kg satellite has its center of mass at point G.
Its radii of gyration about the z', x',y' axes are k. = 300 mm,
k = k = 500 mm, respectively. At the instant shown, the
satellite rotates about the x', y', and z' axes with the angular
velocity shown, and its center of mass G has a velocity
of vG = {-250i + 200j + 120k} m/s. Determine the
kinetic energy of the satellite at this instant.
Jo: = 1250 rad/s
w, = 600 rad/
o, = 300 rad/s
800 mm
Transcribed Image Text:21-35. The 200-kg satellite has its center of mass at point G. Its radii of gyration about the z', x',y' axes are k. = 300 mm, k = k = 500 mm, respectively. At the instant shown, the satellite rotates about the x', y', and z' axes with the angular velocity shown, and its center of mass G has a velocity of vG = {-250i + 200j + 120k} m/s. Determine the kinetic energy of the satellite at this instant. Jo: = 1250 rad/s w, = 600 rad/ o, = 300 rad/s 800 mm
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