Each of the images below shows a metal wire sliding with velocity = 2m/s on fixed metal rails. there is also a magnetic field of B = 10 T into the page exists only in the region pictured. The loop has a resistance r= 2 Ω. (a) Calculate what is the magnetic flux through each loop when the moving wire is at the x = 8 cm location and state formula used clearly. (b)each loop, determine the magnitude of the current and its direction (Clock-wise, Counterclockwise) when the moving wire is at x = 8 cm. Explain why. c) in both loops from the image below find the magnitude of the magnetic force on the moving rod at x=8cm.
Each of the images below shows a metal wire sliding with velocity = 2m/s on fixed metal rails. there is also a magnetic field of B = 10 T into the page exists only in the region pictured. The loop has a resistance r= 2 Ω. (a) Calculate what is the magnetic flux through each loop when the moving wire is at the x = 8 cm location and state formula used clearly. (b)each loop, determine the magnitude of the current and its direction (Clock-wise, Counterclockwise) when the moving wire is at x = 8 cm. Explain why. c) in both loops from the image below find the magnitude of the magnetic force on the moving rod at x=8cm.
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Each of the images below shows a metal wire sliding with velocity = 2m/s on fixed metal rails. there is also a magnetic field of B = 10 T into the page exists only in the region pictured. The loop has a resistance r= 2 Ω.
(a) Calculate what is the magnetic flux through each loop when the moving wire is at the x = 8 cm location and state formula used clearly.
(b)each loop, determine the magnitude of the current and its direction (Clock-wise, Counterclockwise) when the moving wire is at x = 8 cm. Explain why.
c) in both loops from the image below find the magnitude of the magnetic force on the moving rod at x=8cm.
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