The figure (Figure 1) shows a portion of a silver ribbon with z = 12.0 mm and y =0.23 mm, carrying a current of 110 A in the +z-direction. The ribbon lies in a uniform magnetic field, in the...


The figure (Figure 1) shows a portion of a silver ribbon with z = 12.0 mm and y =0.23 mm,<br>carrying a current of 110 A in the +z-direction. The ribbon lies in a uniform magnetic field, in the<br>v-direction, with magnitude 0.93 T. Apply the simplified model of the Hall effect.<br>• Part B<br>Find the magnitude of the electric field in the z-direction due to the Hall effect.<br>Express your answer in volts per meter.<br>undo redo<br>keyboard shortcuts Help<br>3.942<br>V/m<br>Submit<br>Prevlous Anewera Request Answer<br>X Incorrect; Try Again; 5 attempts remaining<br>Part C<br>Find the direction of the electric field in the z-direction due to the Hall effect.<br>Prevlous Answere<br>Figure<br>1 of 1<br>v Correct<br>Part D<br>B<br>Find the Hall emf.<br>Express your answer in volts.<br>undo redo teset keyboard shortcuts Help<br>V.<br>Enan =<br>P Type here to search<br>99+<br>hp<br>

Extracted text: The figure (Figure 1) shows a portion of a silver ribbon with z = 12.0 mm and y =0.23 mm, carrying a current of 110 A in the +z-direction. The ribbon lies in a uniform magnetic field, in the v-direction, with magnitude 0.93 T. Apply the simplified model of the Hall effect. • Part B Find the magnitude of the electric field in the z-direction due to the Hall effect. Express your answer in volts per meter. undo redo keyboard shortcuts Help 3.942 V/m Submit Prevlous Anewera Request Answer X Incorrect; Try Again; 5 attempts remaining Part C Find the direction of the electric field in the z-direction due to the Hall effect. Prevlous Answere Figure 1 of 1 v Correct Part D B Find the Hall emf. Express your answer in volts. undo redo teset keyboard shortcuts Help V. Enan = P Type here to search 99+ hp

Jun 10, 2022
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