

PHYS2004 CH23 Part #2 pg4 Problem. A 13.2 cm long rod moves and generates an emf...
Consider the motional emf arrangement shown in the figure. The 27.5 cm long rod moves at a constant 6.50 m/s. What is the strength of the magnetic field, in Teslas, if a 48.0 V emf is induced? BLANK-1 What is the magnitude of the current, in Amperes, that flows through the 75.0-ohm load resistor? BLANK-2 What force, in Newtons, must be applied to the rod to maintain its constant speed? BLANK-3 How far, in meters, will the 0.50-kg rod continue...
What is the magnitude of the emf induced in the rod?
A metal rod with a length of 21.0 cm lies in the xy-plane and makes an angle of 36.7° with the positive z-axis and an angle of 53.3° with the positive y-axis. The rod is moving in the +x-direction with a speed of 6.80 m/s. The rod is in a uniform magnetic field B = (0.160T) { – (0.280T) i – (0.0400T )k.
13. A certain rod has a length of 96.0 cm and moves southward through a uniform magnetic field that is directed downward. The ends of the rod are oriented to the east and west and the magnitude of the field is 0.0480 T. If the induced emf between the ends of the rod is 38.0 mV, what is the speed of the rod a) 17.5 cm's b) 24.3 cm/s c) 49.8 cm/s d) 67.4 cm/s e) 82.5 cm/s
Part A A metal rod with a length of 22.0 cm lies in the xy-plane and makes an angle of 38.4 ° with the positive x-axis and an angle of 51.6° with the positive y-axis. The rod is moving in the +x-direction with a speed of 6.80 m/s. The rod is in a uniform magnetic field B = (0.130T) i – (0.210T) Î – (0.0200T )Â. What is the magnitude of the emf induced in the rod? ΑΣΦ ? E...
In the figure, a conducting rod of length L= 27.0 cm moves in a magnetic field B of magnitude 0.370 T directed into the plane of the figure. The rod moves with speed v = 7.00 m/s in the direction shown. (Figure 1) A. When the charges in the rod are in equilibrium, what is the
magnitude E of the electric field within the rod?B. What is the magnitude Vba of the potential difference
between the ends of the rod?C. What...
The conducting rod shown in the accompanying figure moves along parallel metal rails that are 25-cm apart. The system is in a uniform magnetic field of strength 0.75 T, which is directed into the page. The resistances of the rod and the rails are negligible, but the section PQ has a resistance of 0.25 Ω. (a) What is the emf induced in the rod when it is moving to the right with a speed of 5.0 m/s? (b) What force is required to...
2. A metal rod of length 15 cm is moving to the left though a magnetic field that points into the plane of the paper. The rod is moving with a constant speed of 1.8 m/s. The magnitude of the magnetic field is 0.26 tesla. a) . If you connected a voltmeter to the two ends of the metal rod, what would it say? (Be specific. Your answer should include a number.) b) According to your voltmeter, which is the...
please help
2. A metal rod with a length of 25.0 cm lies in the xz-plane and makes an angle of 15.00 with the positive x-axis and an angle of 75.0° with the positive z-axis. The rod is moving in the plane at a direction perpendicular to its length with a speed of 7.50 m/s. The rod is in a uniform magnetic field of B3(0.120T)/^ + (0.260T)/^-(0.0500T)k". what is the magnitude of the emf induced in the rod? Start with...
A metal rod with a length of 30.0 cm lies in the xy-plane and makes an angle of 33.6 ∘ with the positive x-axis and an angle of 56.4 ∘ with the positive y-axis. The rod is moving in the +x-direction with a speed of 6.80 m/s . The rod is in a uniform magnetic field B⃗ =(0.100T)i^−(0.300T)j^−(0.0800T )k^. What is the magnitude of the emf induced in the rod?
A metal rod with a length of 30.0 cm lies in the xy-plane and makes an angle of 37.1 ° with the positive x-axis and an angle of 52.9° with the positive y-axis. The rod is moving in the +x-direction with a speed of 6.80 m/s. The rod is in a uniform magnetic field B = (0.110T)2 – (0.240T)j – (0.0800T )k. Part A What is the magnitude of the emf induced in the rod?