Physics equations/22-Magnetism/Q:AmpereLaw

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c22Magnetism_ampereLaw_v1

1. Amphere's law for magnetostatic currents is that \oint\vec H\cdot\vec{d\ell}=\int\vec J\cdot \vec {dA} equals the current enclosed by the closed loop, and B=\mu_0H is the magnetic field. A current of 8.5A flows upward along the z axis. Noting that for this geometry, \oint \vec B \cdot\vec{d\ell} = B\oint d\ell, calculate the line integral \oint d\ell for a circle of radius 4.7m.

a) 2.69E+01 m
b) 2.95E+01 m
c) 3.24E+01 m
d) 3.55E+01 m
e) 3.89E+01 m

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c22Magnetism_ampereLaw_v1

1. If H=B/\mu_0, where B is magnetic field, what is H at a distance of 4.7m from a wire carrying a current of 8.5A?

a) 2.63E-01 A/m
b) 2.88E-01 A/m
c) 3.16E-01 A/m
d) 3.46E-01 A/m
e) 3.79E-01 A/m

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c22Magnetism_ampereLaw_v1

1. If H=B/\mu_0, where B is magnetic field, what is H_y at the point (3.4389,3.2037) if a current of 8.5A flows through a wire that runs along the z axis?

a) 1.46E-01 A/m
b) 1.60E-01 A/m
c) 1.75E-01 A/m
d) 1.92E-01 A/m
e) 2.11E-01 A/m

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c22Magnetism_ampereLaw_v1

1. A very long and thin solenoid has 1331 turns and is 140 meters long. The wire carrys a current of 9.6A. What is the magnetic field in the center?

a) 8.70E-05 Tesla
b) 9.54E-05 Tesla
c) 1.05E-04 Tesla
d) 1.15E-04 Tesla
e) 1.26E-04 Tesla

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c22Magnetism_ampereLaw_v1

1. A very long and thin solenoid has 1770 turns and is 140 meters long. The wire carrys a current of 9.6A. If this solenoid is sufficiently thin, what is the line integral of\int \vec H\cdot\vec{d\ell} along an on-axis path that starts 25 meters from the center and stops 98 meters from the center?

a) 4.54E+03 A
b) 4.98E+03 A
c) 5.46E+03 A
d) 5.99E+03 A
e) 6.57E+03 A

Your score is 0 / 0
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