14 A wheel with a radius of 22.0 cm rolls without slipping along a horizontal floor (Fig. 3-21). At time t,, the dot P painted on the rim of the wheel is at the point of contact between the wheel and the floor. At a later time t2, the wheel has rolled through one-half of a revolution. What are (a) the mag- nitude and (b) the angle (relative to b At time t oAt time 42 the floor) of the displacement of P? airomdinn to aslut
14 A wheel with a radius of 22.0 cm rolls without slipping along a horizontal floor (Fig. 3-21). At time t,, the dot P painted on the rim of the wheel is at the point of contact between the wheel and the floor. At a later time t2, the wheel has rolled through one-half of a revolution. What are (a) the mag- nitude and (b) the angle (relative to b At time t oAt time 42 the floor) of the displacement of P? airomdinn to aslut
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a horizontal floor (Fig. 3-21). At then have
time t,, the dot P painted on the
rim of the wheel is at the point of
contact between the wheel and the
floor. At a later time t2, the wheel
has rolled through one-half of a
revolution. What are (a) the mag-
nitude and (b) the angle (relative to bb At time 4 TAt time
the floor) of the displacement of P?
iton
Figure 3-21 Problem 14.
olun sd"
Transcribed Image Text:14 A wheel with a radius of 22.0 cm rolls without slipping along
a horizontal floor (Fig. 3-21). At then have
time t,, the dot P painted on the
rim of the wheel is at the point of
contact between the wheel and the
floor. At a later time t2, the wheel
has rolled through one-half of a
revolution. What are (a) the mag-
nitude and (b) the angle (relative to bb At time 4 TAt time
the floor) of the displacement of P?
iton
Figure 3-21 Problem 14.
olun sd
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