An aluminum wire with a diameter of 0.100 mm has a form electric field of 0.200 V/m imposed along its entire length. The temperature of the wire is 50.0°C. Assume one free electron per atom. (a) Use the information in Table 26.2 to determine the resistivity of aluminum at this temperature. (b) What is the current density in the wire? (c) What is the total current in the wire? (d) What is the drift speed of the conduction electrons? (e) What potential difference must exist between the ends of a 2.00-m length of the wire to produce the stated electric field?

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Chapter1: Units, Trigonometry. And Vectors
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temperature of the hot filament.
19. An aluminum wire with a diameter of 0.100 mm has a uni-
form electric field of 0.200 V/m imposed along its entire
length. The temperature of the wire is 50.0"C. Assume
one free electron per atom. (a) Use the information in
Table 26.2 to determine the resistivity of aluminum at this
temperature. (b) What is the current density in the wire?
(c) What is the total current in the wire? (d) What is the
drift speed of the conduction electrons? (e) What potential
difference must exist between the ends ofa 2.00-m length of
the wire to produce the stated electric ficld?
Transcribed Image Text:temperature of the hot filament. 19. An aluminum wire with a diameter of 0.100 mm has a uni- form electric field of 0.200 V/m imposed along its entire length. The temperature of the wire is 50.0"C. Assume one free electron per atom. (a) Use the information in Table 26.2 to determine the resistivity of aluminum at this temperature. (b) What is the current density in the wire? (c) What is the total current in the wire? (d) What is the drift speed of the conduction electrons? (e) What potential difference must exist between the ends ofa 2.00-m length of the wire to produce the stated electric ficld?
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