The end state of our Sun will most likely be a white dwarf star. It would have about one fourth of its current mass and a radius about two percent of its current radius. The Sun today takes 30 days to rotate once about its internal spin axis. This is equivalent to an angular speed of 2.42 x 10-6 rad/s. Its moment of inertia today can be approximated as 3.86 x 1047 kg m². Its final angular speed will be 2.42 x 10-2 rad/s. What would its' final moment of inertia be? Select one: a. O b. C. d. 3.86 x 104³ kg m² 2 1.52 x 10-55 kg m² 6.59 x 1054 kg m² 3.86 x 105¹ kg m²

College Physics
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Chapter1: Units, Trigonometry. And Vectors
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The end state of our sun will most likely be a white dwarf star. It would have about one fourth of its
current mass and a radius about two percent of its current radius. The Sun today takes 30 days to
rotate once about its internal spin axis. This is equivalent to an angular speed of 2.42 x 10-6 rad/s.
Its moment of inertia today can be approximated as 3.86 x 1047 kg m². Its final angular speed will
be 2.42 x 10-2 rad/s. What would its' final moment of inertia be?
Select one:
a.
b.
1.52 x 10-55 kg m²
OC. 6.59 x 1054 kg m²
3.86 x 1051 kg m²
3.86 x 1043 kg m²
d.
Transcribed Image Text:The end state of our sun will most likely be a white dwarf star. It would have about one fourth of its current mass and a radius about two percent of its current radius. The Sun today takes 30 days to rotate once about its internal spin axis. This is equivalent to an angular speed of 2.42 x 10-6 rad/s. Its moment of inertia today can be approximated as 3.86 x 1047 kg m². Its final angular speed will be 2.42 x 10-2 rad/s. What would its' final moment of inertia be? Select one: a. b. 1.52 x 10-55 kg m² OC. 6.59 x 1054 kg m² 3.86 x 1051 kg m² 3.86 x 1043 kg m² d.
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