Solved

Two Disks Are Mounted on Low-Friction Bearings on a Common ω \omega

Question 2

Multiple Choice

Two disks are mounted on low-friction bearings on a common shaft. The first disc has rotational inertia I and is spinning with angular velocity ω \omega . The second disc has rotational inertia 2I and is spinning in the same direction as the first disc with angular velocity 2 ω \omega as shown. The two disks are slowly forced toward each other along the shaft until they couple and have a final common angular velocity of:  Two disks are mounted on low-friction bearings on a common shaft. The first disc has rotational inertia I and is spinning with angular velocity    \omega  . The second disc has rotational inertia 2I and is spinning in the same direction as the first disc with angular velocity 2   \omega  as shown. The two disks are slowly forced toward each other along the shaft until they couple and have a final common angular velocity of:   A)  5   \omega  /3 B)    C)    D)     \omega   E)  3   \omega


A) 5 ω \omega /3
B)  Two disks are mounted on low-friction bearings on a common shaft. The first disc has rotational inertia I and is spinning with angular velocity    \omega  . The second disc has rotational inertia 2I and is spinning in the same direction as the first disc with angular velocity 2   \omega  as shown. The two disks are slowly forced toward each other along the shaft until they couple and have a final common angular velocity of:   A)  5   \omega  /3 B)    C)    D)     \omega   E)  3   \omega
C)  Two disks are mounted on low-friction bearings on a common shaft. The first disc has rotational inertia I and is spinning with angular velocity    \omega  . The second disc has rotational inertia 2I and is spinning in the same direction as the first disc with angular velocity 2   \omega  as shown. The two disks are slowly forced toward each other along the shaft until they couple and have a final common angular velocity of:   A)  5   \omega  /3 B)    C)    D)     \omega   E)  3   \omega
D) ω \omega
E) 3 ω \omega

Correct Answer:

verifed

Verified

Related Questions