The slide generator in the figure below is in a uniform magnetic field of magnitude 0.0500 T. The bar of length 0.345 m is pulled at a constant speed of 0.500 m/s. The U-shaped conductor and the bar have a resistivity of 2.75 x 10-8 - m and a cross-sectional area of 8.50 x 10-4 m². Find the current in the generator when x = 0.680 m. (Note that the A in the image below is the area of the of the conductor and bar.) loop, not the cross-sectional area A Bulb is unlit. A. B. Bulb is lit. O O O O O Qº O O O O(x O O O 010 O O O O A O O O OBO O O O O O O O O O no O O OBO O O MO OOO O BI O O 010 O mech O O O O

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Chapter1: Units, Trigonometry. And Vectors
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The slide generator in the figure below is in a uniform magnetic field of magnitude 0.0500 T. The bar of length 0.345 m is pulled at a constant speed of 0.500 m/s. The U-shaped conductor and the bar
have a resistivity of 2.75 × 10-8 · m and a cross-sectional area of 8.50 × 10−4 m². Find the current in the generator when x = 0.680 m. (Note that the A in the image below is the area of the
loop, not the cross-sectional area of the conductor and bar.)
A
Bulb is
unlit.
A.
B.
Bulb
is lit.
X
E
mech
Transcribed Image Text:The slide generator in the figure below is in a uniform magnetic field of magnitude 0.0500 T. The bar of length 0.345 m is pulled at a constant speed of 0.500 m/s. The U-shaped conductor and the bar have a resistivity of 2.75 × 10-8 · m and a cross-sectional area of 8.50 × 10−4 m². Find the current in the generator when x = 0.680 m. (Note that the A in the image below is the area of the loop, not the cross-sectional area of the conductor and bar.) A Bulb is unlit. A. B. Bulb is lit. X E mech
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