1. The potential difference AV34 in the figure is AV12 30 V A) 30 V AV23 = 50 V B) -10 V С) -20 V D) -30 V AV41 = -60 V AV, 34 E) Can not be determined from the figure 2013Pron Edcton n

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Chapter1: Units, Trigonometry. And Vectors
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1. The potential difference AV34 in the figure is
AV12
30 V
A)
AV23
= 50 V
30 V
B)
-10 V
C)
-20 V
Е — 60 V
AVA1
D)
-30 V
AV
34
4
E)
Can not be determined from the figure
0 2013 Pearson Education, Inc.
The long straight wire in the figure carries a current / that is decreasing
with time at a constant rate. The circular loops A, B, and C all lie in a
plane containing the wire. The induced emf in each of the loops A, B, and
C is such that
A
В
A)
loop A has a clockwise emf, loop B has no induced emf, and loop C has a
counterclockwise emf.
B)
loop A has a counter-clockwise emf, loop B has no induced emf, and loop C has a
clockwise emf.
C)
loop A has a counter-clockwise emf, loops B and C have clockwise emfs.
D)
no emf is induced in any of the loops.
E)
a counterclockwise emf is induced in all the loops.
2.
Transcribed Image Text:1. The potential difference AV34 in the figure is AV12 30 V A) AV23 = 50 V 30 V B) -10 V C) -20 V Е — 60 V AVA1 D) -30 V AV 34 4 E) Can not be determined from the figure 0 2013 Pearson Education, Inc. The long straight wire in the figure carries a current / that is decreasing with time at a constant rate. The circular loops A, B, and C all lie in a plane containing the wire. The induced emf in each of the loops A, B, and C is such that A В A) loop A has a clockwise emf, loop B has no induced emf, and loop C has a counterclockwise emf. B) loop A has a counter-clockwise emf, loop B has no induced emf, and loop C has a clockwise emf. C) loop A has a counter-clockwise emf, loops B and C have clockwise emfs. D) no emf is induced in any of the loops. E) a counterclockwise emf is induced in all the loops. 2.
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