sheet of paper. (a) What is the induced emf and current in the rod if the bar move to the right with a constant speed of 6.00 m/s? 1) A conducting bar moves along frictionless conducting rails connected to a 4.00-2 resistor as shown m th 29-13. The length of the bar is 1.60 m and a uniform magnetic field of 2.20 Tis applied perpendicular e 00 m/s? (b) What is the applied force required to move the bar to the right with a constant speed of 6.00 m/s FIGURE 29-13

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provided or on a separate sheet of paper.
(a) What is the induced emf and current in the rod if the bar move to the right with a constant speed of 6.00 m/s?
29-13. The length of the bar is 1.60 m and a uniform magnetic field of 2.20 T is applied perpendicular to the pape
1) A conducting bar moves along frictionless conducting rails connected to a 4.00-2 resistor as shown
(b) What is the applied force required to move the bar to the right with a constant speed of 6.00 mys:
FIGURE 29-13
R.
Fapplied
II
B-field I out (O)
Transcribed Image Text:provided or on a separate sheet of paper. (a) What is the induced emf and current in the rod if the bar move to the right with a constant speed of 6.00 m/s? 29-13. The length of the bar is 1.60 m and a uniform magnetic field of 2.20 T is applied perpendicular to the pape 1) A conducting bar moves along frictionless conducting rails connected to a 4.00-2 resistor as shown (b) What is the applied force required to move the bar to the right with a constant speed of 6.00 mys: FIGURE 29-13 R. Fapplied II B-field I out (O)
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