Answer :
Answer:
605447.7066 kgm²/s
Explanation:
[tex]m_1[/tex] = Mass of sphere = 10000 kg
[tex]m_2[/tex] = Mass of rod = 10 kg
r = Radius of sphere = 2 m
l = Length of antenna = 3 m
Angular speed
[tex]\omega=6\times 2\pi\\\Rightarrow \omega=37.69911\ rad/s[/tex]
Angular momentum is given by
[tex]L=I\omega[/tex]
Moment of inertia of the satellite is
[tex]I_s=\frac{2}{5}m_1r^2[/tex]
Moment of antenna of the satellite is
[tex]I_a=\frac{1}{3}m_2l^2[/tex]
The angular momentum of the system is
[tex]L=I_s\omega+I_a\omega\\\Rightarrow L=\left(\frac{2}{5}m_1r^2+2\times \frac{1}{3}m_2l^2\right)\omega\\\Rightarrow L=\left(\frac{2}{5}10000\times 2^2+2\times \frac{1}{3}\times 10\times 3^2\right)\times 37.69911\\\Rightarrow L=605447.7066\ kgm^2/s[/tex]
The angular momentum of the satellite is 605447.7066 kgm²/s