The location of the sliding bar in the figure below is given by the equation x(t) = 8t + 5 (m), where t is the time. The separation of the two rails is 120 cm. The magnetic field density varies in space as shown by the following equation B= 20y a, (Tesla). VM H Calculate the magnitude of Vemf in Volts. Answer: 1448 HEMIKO WAKO

Electricity for Refrigeration, Heating, and Air Conditioning (MindTap Course List)
10th Edition
ISBN:9781337399128
Author:Russell E. Smith
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Chapter8: Basic Electric Motors
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The location of the sliding bar in the figure below is given by the equation x(t) = 8t + 5 (m), where t is the time.
The separation of the two rails is 120 cm.
The magnetic field density varies in space as shown by the following equation B= 20y a, (Tesla).
VM
H
#
Calculate the magnitude of Vemf in Volts.
Answer:
KANKAMAKO
Transcribed Image Text:The location of the sliding bar in the figure below is given by the equation x(t) = 8t + 5 (m), where t is the time. The separation of the two rails is 120 cm. The magnetic field density varies in space as shown by the following equation B= 20y a, (Tesla). VM H # Calculate the magnitude of Vemf in Volts. Answer: KANKAMAKO
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