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A c f g In the figure (Figure 1) a conducting rod of length L =...

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In the figure (Figure 1) a conducting rod of length L = 33.0 cm moves in a magnetic field B of magnitude 0.480 T directed int
Exercise 29.23 In the figure (Figure 1) a conducting rod of length L = 33.0 cm moves in a magnetic field B of magnitude 0.480
SIUS 121 - Spring 2020 - Section 018-Gokce <HW11 Exercise 29.23 In the figure (Figure 1) a conducting rod of length L - 33.0
e figure (Figure 1) a conducting rod of length L = cm moves in a magnetic field B of magnitude T directed into the plane of t

a c f g
In the figure (Figure 1) a conducting rod of length L = 33.0 cm moves in a magnetic field B of magnitude 0.480 T directed into the plane of the figure. The rod moves with speed v = 5.90 m/s in the direction shown. - Part A What is the potential difference between the ends of the rod? VO AE O V = 3.36 Figure < 1 of 1 Submit Previous Answers Request Answer x x x x x X Incorrect; Try Again; 6 attempts remaining B x b X X X X X Part B Which point, a orb, is at higher potential? X a 0 x хха x x • b
Exercise 29.23 In the figure (Figure 1) a conducting rod of length L = 33.0 cm moves in a magnetic field B of magnitude 0.480 T directed into the plane of the figure. The rod moves with speed u = 5.90 m/s in the direction shown. Part When the charges in the rod are in equilibrium, what is the magnitude of the electric fie 110 AED V/m Figure 1 of 1 Submit Request Answer Request Answer Part D X X X X B What is the direction of the electric field within the rod? x From a to b x From b to a Previous Answers x Χ αX X ✓ Correct
SIUS 121 - Spring 2020 - Section 018-Gokce <HW11 Exercise 29.23 In the figure (Figure 1) a conducting rod of length L - 33.0 cm moves in a magnetic field B of magnitude 0.480 T directed into the plane of the figure. The rod moves with speed v = 5.90 m/s in the direction shown. Part E When the charges in the rod are in equilibrium, which point, or b, has an excess of Previous Answers Figure 1 of 1 Correct X X X X Part F B X b + x X X X What is the potential difference across the rod if it moves parallel to ab? сxx VALD OB? x x < X X Submit Request Answer
e figure (Figure 1) a conducting rod of length L = cm moves in a magnetic field B of magnitude T directed into the plane of the figure. The rod es with speed v = 5.90 m/s in the direction shown. What is the potential difference across the rod if it moves parallel to ab? ΑΣφ Submit Request Answer 1 of 1 > Part G What is the potential difference across the rod if it moves directly out of the page? X X X X X 0 AED X X X , X Submit Request Answer V X < xa X X X Provide Feedback

Answers

x x Tu=5.9mis В=0.4-3Т | L20.33m part A. Potential differencer induced across all - the good is ex Lav = ₂ x B). ÈL Direction→ E= 2.832 V/m parst D since point b is at higher potential than a soa direction of electric field is from b to a. Part E sin

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