Announcements Homework for tomorrow… Ch. 32: Probs. 38, 39, & 63

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Announcements Homework for tomorrow… Ch. 32: Probs. 38, 39, & 63 CQ7: a) into page b) no deflection 32.16: a) 3.1 x 10-4 Am2 b) 5.0 x 10-7 T 32.18: a) 6.2 x 10-5 T b) 1.8 x 109 A 32.48: 4.1 x 10-4 T, into the page Office hours… MW 10-11 am TR 9-10 am F 12-1 pm Tutorial Learning Center (TLC) hours: MTWR 8-6 pm F 8-11 am, 2-5 pm Su 1-5 pm

Chapter 32 The Magnetic Field (Magnetic Forces on Current-Carrying Wires & Forces and Torques on Current Loops)

Review… The radius and frequency for cyclotron motion… The force on a current-carrying wire in a B-field is…

Force Between Two Parallel Wires What is the force on wire1 due to wire2?

Force Between Two Parallel Wires What is the force on wire1 due to wire2?

Quiz Question 1 The horizontal wire can be levitated – held up against the force of gravity – if the current in the wire is Right to left. Left to right. It can’t be done with this magnetic field.

i.e. 32.14 A current balance Two stiff, 50 cm long parallel wires are connected at the ends by metal springs. Each spring has an unstretched length of 5.0 cm and a spring constant of 0.025 N/m. The wires push each other apart when a current travels around the loop. How much current is required to stretch the springs to lengths of 6.0 cm?

32.9 Forces and Torques on Current Loops Alternative but equivalent ways to view magnetic forces between two current loops. Parallel currents attract, opposite currents repel. Opposite poles attract, like poles repel.

32.9 Forces and Torques on Current Loops Consider a current loop in a B-field… Ffront and Fback are opposite in direction, but equal in magnitude, therefore ΣFx = 0. Ftop and Fbottom are opposite in direction, but equal in magnitude, therefore ΣFy = 0. Ftop and Fbottom exert a net torque, therefore Στ ≠ 0! So what is the net torque?

32.9 Forces and Torques on Current Loops Consider a current loop in a B-field… Ffront and Fback are opposite in direction, but equal in magnitude, therefore ΣFx = 0. Ftop and Fbottom are opposite in direction, but equal in magnitude, therefore ΣFy = 0. Ftop and Fbottom exert a net torque, therefore Στ ≠ 0! So what is the net torque?

Quiz Question 2 If released from rest, the current loop will Move upward. Move downward. Rotate clockwise. Rotate counterclockwise. Do something not listed here.

32.9 Forces and Torques on Current Loops A simple electric motor…