A conducting loop is made in the form of two squares of sides S = 3.2cm...
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A conducting loop is made in the form of two squares of sides S₁ = 3.2cm and s2 = 5.1 cm as shown. At time t = 0, the loop enters a region of length L = 16.5 cm that contains a uniform magnetic field B = 1.9 T, directed in the positive z-direction. The loop continues through the region with constant speed v = 41 cm/s. The resistance of the loop is R = 1.9 Ω. A Submit Submit $₂ A N Submit o ofo o A Submit 0 1) At time t = t₁ = 0.026 s, what is 1₁, the induced current in the loop? I₁ is defined to be positive if it is in the counterclockwise direction. 0 0 0 O 0 0 O O O O 2) At time t = t₂ = 0.522 s, what is l2, the induced current in the loop? 12 is defined to be positive if it is in the counterclockwise direction. O 3) What is FX(t₂), the x-component of the force that must be applied to the loop to maintain its constant velocity v = 41 cm/s at t = t₂ = 0.522 s? 4) At time t = t3 = 0.428 s, what is 13, the induced current in the loop? 13 is defined to be positive if it is in the counterclockwise direction. + 5) Consider the two cases shown above. How does I₁, the magnitude of the induced current in Case I, compare to I, the magnitude of the induced current in Case II? Assume s2 = 3s₁. A conducting loop is made in the form of two squares of sides S₁ = 3.2cm and s2 = 5.1 cm as shown. At time t = 0, the loop enters a region of length L = 16.5 cm that contains a uniform magnetic field B = 1.9 T, directed in the positive z-direction. The loop continues through the region with constant speed v = 41 cm/s. The resistance of the loop is R = 1.9 Ω. A Submit Submit $₂ A N Submit o ofo o A Submit 0 1) At time t = t₁ = 0.026 s, what is 1₁, the induced current in the loop? I₁ is defined to be positive if it is in the counterclockwise direction. 0 0 0 O 0 0 O O O O 2) At time t = t₂ = 0.522 s, what is l2, the induced current in the loop? 12 is defined to be positive if it is in the counterclockwise direction. O 3) What is FX(t₂), the x-component of the force that must be applied to the loop to maintain its constant velocity v = 41 cm/s at t = t₂ = 0.522 s? 4) At time t = t3 = 0.428 s, what is 13, the induced current in the loop? 13 is defined to be positive if it is in the counterclockwise direction. + 5) Consider the two cases shown above. How does I₁, the magnitude of the induced current in Case I, compare to I, the magnitude of the induced current in Case II? Assume s2 = 3s₁.
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from ohms laws N AR J VR ER The Emf is induced by the righ... View the full answer
Related Book For
Intermediate Accounting
ISBN: 978-0077400163
6th edition
Authors: J. David Spiceland, James Sepe, Mark Nelson
Posted Date:
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