A long, straight metal rod has a radius of 5.30 cm and a charge per unit...
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A long, straight metal rod has a radius of 5.30 cm and a charge per unit length of 26.0 nC/m. Find the electric field at the following distances from the axis of the rod, where distances are measured perpendicular to the rod's axis. (a) 3.40 cm magnitude 0 direction (b) 19.0 cm magnitude direction (c) 190 cm magnitude direction magnitude is zero N/C X If the charge on the outside of the rod were moved to the central axis, would the field at this point change? N/C outward C X You appear to be using a correct formula but may have a problem with units. N/C outward Ⓒ A long, straight metal rod has a radius of 5.30 cm and a charge per unit length of 26.0 nC/m. Find the electric field at the following distances from the axis of the rod, where distances are measured perpendicular to the rod's axis. (a) 3.40 cm magnitude 0 direction (b) 19.0 cm magnitude direction (c) 190 cm magnitude direction magnitude is zero N/C X If the charge on the outside of the rod were moved to the central axis, would the field at this point change? N/C outward C X You appear to be using a correct formula but may have a problem with units. N/C outward Ⓒ A long, straight metal rod has a radius of 5.30 cm and a charge per unit length of 26.0 nC/m. Find the electric field at the following distances from the axis of the rod, where distances are measured perpendicular to the rod's axis. (a) 3.40 cm magnitude 0 direction (b) 19.0 cm magnitude direction (c) 190 cm magnitude direction magnitude is zero N/C X If the charge on the outside of the rod were moved to the central axis, would the field at this point change? N/C outward C X You appear to be using a correct formula but may have a problem with units. N/C outward Ⓒ
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Related Book For
University Physics with Modern Physics
ISBN: 978-0321501219
12th Edition
Authors: Hugh D. Young, Roger A. Freedman, Lewis Ford
Posted Date:
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