Both circular coils A and B ( Fig. E27.44 ) have area A and N turns. They are free to rotate about a diameter that coincides with the x -axis. Current I circulates in each coil in the direction shown. There is a uniform magnetic field B → in the + z -direction. (a) What is the direction of the magnetic moment μ → for each coil? (b) Explain why the torque on both coils due to the magnetic field is zero, so the coil is in rotational equilibrium . (c) Use Eq. (27.27) to calculate the potential energy for each coil. (d) For each coil, is the equilibrium stable or unstable? Explain. Figure E27.44
Both circular coils A and B ( Fig. E27.44 ) have area A and N turns. They are free to rotate about a diameter that coincides with the x -axis. Current I circulates in each coil in the direction shown. There is a uniform magnetic field B → in the + z -direction. (a) What is the direction of the magnetic moment μ → for each coil? (b) Explain why the torque on both coils due to the magnetic field is zero, so the coil is in rotational equilibrium . (c) Use Eq. (27.27) to calculate the potential energy for each coil. (d) For each coil, is the equilibrium stable or unstable? Explain. Figure E27.44
Both circular coils A and B (Fig. E27.44) have area A and N turns. They are free to rotate about a diameter that coincides with the x-axis. Current I circulates in each coil in the direction shown. There is a uniform magnetic field
B
→
in the +z-direction. (a) What is the direction of the magnetic moment
μ
→
for each coil? (b) Explain why the torque on both coils due to the magnetic field is zero, so the coil is in rotational equilibrium. (c) Use Eq. (27.27) to calculate the potential energy for each coil. (d) For each coil, is the equilibrium stable or unstable? Explain.
Figure E27.44
Definition Video Definition A state wherein a body is not experiencing any resultant angular acceleration. If the net torque acting on the body is zero, then the body is said to be in rotational equilibrium. If the body is stationary and net torque is zero, then the body is in static rotational equilibrium. If the body is moving with constant velocity and net torque is zero, then, the body is said to be in dynamic rotational equilibrium. Video
PROBLEM 3
Cables A and B are Supporting a 185-lb wooden crate.
What is the magnitude of the tension force in each
cable?
A
20°
35°
185 lbs
No chatgpt pls will upvote
No chatgpt pls will upvote
Chapter 27 Solutions
University Physics with Modern Physics, Books a la Carte Edition; Modified MasteringPhysics with Pearson eText -- ValuePack Access Card -- for ... eText -- Valuepack Access Card (14th Edition)
Chemistry: An Introduction to General, Organic, and Biological Chemistry (13th Edition)
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What is Electromagnetic Induction? | Faraday's Laws and Lenz Law | iKen | iKen Edu | iKen App; Author: Iken Edu;https://www.youtube.com/watch?v=3HyORmBip-w;License: Standard YouTube License, CC-BY