978-0073398242 Chapter 17 Solution Manual Part 11

subject Type Homework Help
subject Pages 9
subject Words 1457
subject Authors Brian Self, David Mazurek, E. Johnston, Ferdinand Beer, Phillip Cornwell

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page-pf1
PROBLEM 17.64 (Continued)
page-pf2
PROBLEM 17.65
Show that the system of momenta for a rigid body in plane motion reduces to a single vector, and express the
distance from the mass center G to the line of action of this vector in terms of the centroidal radius of gyration
k of the body, the magnitude
v
of the velocity of G, and the angular velocity
.
page-pf3
PROBLEM 17.66
Show that, when a rigid body rotates about a fixed axis through O perpendicular
to the body, the system of the momenta of its particles is equivalent to a single
vector of magnitude
,mr
perpendicular to the line OG, and applied to a Point
P on this line, called the center of percussion, at a distance
2
/GP k r
from the
mass center of the body.
page-pf4
PROBLEM 17.67
Show that the sum
A
H
of the moments about a Point A of the momenta of the particles of a rigid body in
plane motion is equal to
,
A
I
where
is the angular velocity of the body at the instant considered and
A
I
the
moment of inertia of the body about A, if and only if one of the following conditions is satisfied: (a) A is
the mass center of the body, (b) A is the instantaneous center of rotation, (c) the velocity of A is directed along
a line joining Point A and the mass center G.
page-pf5
PROBLEM 17.68
Consider a rigid body initially at rest and subjected to an impulsive force
F
contained in the plane of the body. We define the center of percussion P as the point
of intersection of the line of action of
F
with the perpendicular drawn from G.
(a) Show that the instantaneous center of rotation C of the body is located on line GP
at a distance
2
/GC k GP
on the opposite side of G. (b) Show that if the center of
percussion were located at C the instantaneous center of rotation would be located
at P.
page-pf6
PROBLEM 17.68 (Continued)
page-pf7
PROBLEM 17.69
A flywheel is rigidly attached to a 1.5-in.-radius shaft that rolls without sliding
along parallel rails. Knowing that after being released from rest the system
attains a speed of 6 in./s in 30 s, determine the centroidal radius of gyration of
the system.
page-pf8
PROBLEM 17.70
A wheel of radius r and centroidal radius of gyration k is released from rest on
the incline shown at time
0.
t
Assuming that the wheel rolls without sliding,
determine (a) the velocity of its center at time t, (b) the coefficient of static
friction required to prevent slipping.
page-pf9
PROBLEM 17.70 (Continued)
page-pfa
PROBLEM 17.71
The double pulley shown has a mass of 3 kg and a radius of gyration of 100 mm.
Knowing that when the pulley is at rest, a force
P
of magnitude 24 N is applied
to cord B, determine (a) the velocity of the center of the pulley after 1.5 s,
(b) the tension in cord C.

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