a.) The horizontal component of the earth's magnetic field at SBCC is about 5 E-5 T. Determine the value of the current in a wire that would produce this magnetic strength at a distance of 10 cm. (25-A) b.) A cardiac pacemaker can be affected by static magnetic fields as small as 1.7 mT. How close can a pacemaker wearer come to a long, straight wire carrying 20-A? (2.35 E-3 m = 2.35 mm) (generally a pretty safe distance) A c.) If we were in the lab I would show you that we could suspend 1-2-m long straight wire having a mass of 10.2g in the magnetic field produced by a set of horseshoe magnets when the wire carried a current of 18-A. Determine the magnetic field FORCE strength produced by the horseshoe magnets. Hint: do an FBD for the wire. (4.6 E-3 T) Current ..... 192 x 200-gi

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a.) The horizontal component of the earth's magnetic field at SBCC is about 5 E-5 T.
Determine the value of the current in a wire that would produce this magnetic
strength at a distance of 10 cm. (25-A)
b.) A cardiac pacemaker can be affected by static magnetic fields as small as 1.7 mT.
How close can a pacemaker wearer come to a long, straight wire carrying 20-A?
(2.35 E-3 m = 2.35 mm) (generally a pretty safe distance)
c.) If we were in the lab I would show you that we
could suspend 1-2-m long straight wire having a
mass of 10.2g in the magnetic field produced by a
set of horseshoe magnets when the wire carried a
current of 18-A. Determine the magnetic field
FORCE
strength produced by the horseshoe magnets. Hint:
do an FBD for the wire. (4.6 E-3 T)
Current
192 x 200- g
physicslab.ore
Page 3 of 3
319 words
English (United States)
O Focus
135%
Transcribed Image Text:a.) The horizontal component of the earth's magnetic field at SBCC is about 5 E-5 T. Determine the value of the current in a wire that would produce this magnetic strength at a distance of 10 cm. (25-A) b.) A cardiac pacemaker can be affected by static magnetic fields as small as 1.7 mT. How close can a pacemaker wearer come to a long, straight wire carrying 20-A? (2.35 E-3 m = 2.35 mm) (generally a pretty safe distance) c.) If we were in the lab I would show you that we could suspend 1-2-m long straight wire having a mass of 10.2g in the magnetic field produced by a set of horseshoe magnets when the wire carried a current of 18-A. Determine the magnetic field FORCE strength produced by the horseshoe magnets. Hint: do an FBD for the wire. (4.6 E-3 T) Current 192 x 200- g physicslab.ore Page 3 of 3 319 words English (United States) O Focus 135%
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