Rigid rods of negligible mass lying along the y axis connect three particles (Fig. P10.25). The system rotates about the x axis with an angular speed of 2.00 rad/s. Find (a) the moment of inertia about the x axis, (b) the total rotational kinetic energy evaluated from Iw², (c) the tan- gential speed of each particle, and (d) the total kinetic energy evaluated from Emv,? (e) Compare the answers for kinetic energy in parts (a) and (b). 4.0 2. 3.C

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SECTION 10.7 Rotational Kinetic Energy
25. Rigid rods of negligible mass
QIC
lying along the y axis connect
three particles (Fig. P10.25). The
system rotates about the x axis
with an angular speed of 2.00
rad/s. Find (a) the moment of
inertia about the x axis, (b) the
total rotational kinetic energy
evaluated from lo?, (c) the tan-
gential speed of each particle,
and (d) the total kinetic energy
evaluated from Emv? (e)
Compare the answers for kinetic
energy in parts (a) and (b).
4.00 kg
y = 3.00 m
2.00 kg
y= -2.00 m
3.00 kg
y = -4.00 m
Figure P10.25
Transcribed Image Text:SECTION 10.7 Rotational Kinetic Energy 25. Rigid rods of negligible mass QIC lying along the y axis connect three particles (Fig. P10.25). The system rotates about the x axis with an angular speed of 2.00 rad/s. Find (a) the moment of inertia about the x axis, (b) the total rotational kinetic energy evaluated from lo?, (c) the tan- gential speed of each particle, and (d) the total kinetic energy evaluated from Emv? (e) Compare the answers for kinetic energy in parts (a) and (b). 4.00 kg y = 3.00 m 2.00 kg y= -2.00 m 3.00 kg y = -4.00 m Figure P10.25
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