The diagram below shows four compressed springs, attached to various masses at one end and to a wall at the other end. The springs constants and attached masses are shown. If each spring was not compressed or stretched, its attached mass would be located at x = 0. (a) 4m (b) WO 4m k 2m (c) (d) x (cm) -20 -15 -10 -5 0 When the masses are released from the positions shown, they start to oscillate. Which mass/spring system has the lowest frequency of oscillation? O System (d) O System (b) O At least two of the systems have the equal lowest frequency. O System (a) O System ()

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The diagram below shows four compressed springs, attached to various masses at one end and to a
wall at the other end. The springs constants and attached masses are shown. If each spring was not
compressed or stretched, its attached mass would be located at x = 0.
(a)
WO 4m
(b) wwO 4m
k
2m
(c)
minino
(d)
(cm)
-20 -15 -10 -5
When the masses are released from the positions shown, they start to ocillate.
Which mass/spring system has the lowest frequency of oscillation?
O System (d)
O System (b)
O At least two of the systems have the equal lowest frequency.
O System (a)
System (c)
Transcribed Image Text:The diagram below shows four compressed springs, attached to various masses at one end and to a wall at the other end. The springs constants and attached masses are shown. If each spring was not compressed or stretched, its attached mass would be located at x = 0. (a) WO 4m (b) wwO 4m k 2m (c) minino (d) (cm) -20 -15 -10 -5 When the masses are released from the positions shown, they start to ocillate. Which mass/spring system has the lowest frequency of oscillation? O System (d) O System (b) O At least two of the systems have the equal lowest frequency. O System (a) System (c)
Refer to the diagram in the previous question. Assume that the masses have been released from
the positions shown and are oscillating. For each of the four mass/spring systems, enter the x
coordinate of the attached mass when it has its maximum velocity.
(a) x =
%3D
cm.
(b) x =
cm.
(c) x =
cm.
(d) x =
cm.
(Enter your answers as integers.)
Referring to the same diagram for the four mass/spring systems as in the previous two questions,
which of the following is the correct ranking of the maximum speeds of the masses in the four
systems, from lowest to highest maximum speed?
(Note: "=" signs in the options below indicate that two or more of the systems have the same
maximum speed.)
OB<A<C< D
O A =D<B<C
OD<A<B<C
OB<A= C= D
OD<A<B-C
OD<C<B= A
O A <B-C<D
OB-C<A<D
Transcribed Image Text:Refer to the diagram in the previous question. Assume that the masses have been released from the positions shown and are oscillating. For each of the four mass/spring systems, enter the x coordinate of the attached mass when it has its maximum velocity. (a) x = %3D cm. (b) x = cm. (c) x = cm. (d) x = cm. (Enter your answers as integers.) Referring to the same diagram for the four mass/spring systems as in the previous two questions, which of the following is the correct ranking of the maximum speeds of the masses in the four systems, from lowest to highest maximum speed? (Note: "=" signs in the options below indicate that two or more of the systems have the same maximum speed.) OB<A<C< D O A =D<B<C OD<A<B<C OB<A= C= D OD<A<B-C OD<C<B= A O A <B-C<D OB-C<A<D
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