Chapter 29: Q. 72 (page 834)
The two springs in FIGURE P29.72 each have a spring constant of 10 N/m. They are compressed by 1.0 cm when a current passes through the wire. How big is the current?
Short Answer
The required current is 2.0 A.
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Chapter 29: Q. 72 (page 834)
The two springs in FIGURE P29.72 each have a spring constant of 10 N/m. They are compressed by 1.0 cm when a current passes through the wire. How big is the current?
The required current is 2.0 A.
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Determine the magnetic field direction that causes the charged particles shown in FIGURE to experience the indicated magnetic force.

At what distance on the axis of a current loop is the magnetic field half the strength of the field at the center of the loop? Give your fanswer as a multiple of .
The earth’s magnetic dipole moment is .
a. What is the magnetic field strength on the surface of the earth at the earth’s north magnetic pole? How does this compare to the value in Table 29.1? You can assume that the current loop is deep inside the earth.
b. Astronauts discover an earth-size planet without a magnetic field. To create a magnetic field at the north pole with the same strength as earth’s, they propose running a current through a wire around the equator. What size current would be needed?
What are the magnetic fields at points a to c in FIG URE EX29.12? Give your answers as vectors.
The right edge of the circuit in FIGURE EX29.35 extends into a 50 mT uniform magnetic field. What are the magnitude and direction of the net force on the circuit?

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