In the figure, a copper rod of mass 210 grams rests on a pair of rails 85 cm apart. The rod is perpendicular to the rails. The rails are bare metal and carry a current of 40 amps, which of course is shared by the rod. The coefficient of friction is .65.A.055 T magnetic field exists, pointing almost straight up, making an angle of 25 degrees with the vertical. Find the acceleration of the rod. 40 A T 40 A 40 A
In the figure, a copper rod of mass 210 grams rests on a pair of rails 85 cm apart. The rod is perpendicular to the rails. The rails are bare metal and carry a current of 40 amps, which of course is shared by the rod. The coefficient of friction is .65.A.055 T magnetic field exists, pointing almost straight up, making an angle of 25 degrees with the vertical. Find the acceleration of the rod. 40 A T 40 A 40 A
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![In the figure, a copper rod of mass 210 grams rests on a pair of rails 85 cm apart. The rod is perpendicular to the
rails. The rails are bare metal and carry a current of 40 amps, which of course is shared by the rod. The coefficient
of friction is 65. A.055 T magnetic field exists, pointing almost straight up, making an angle of 25 degrees with
the vertical. Find the acceleration of the rod.
40 A
F
40 A
40 A](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F640887de-34e2-4fb5-a217-028aef2f5eb9%2F738d8713-b53c-4508-92a2-a8d46ffb6d6e%2Fhv9tjjf_processed.png&w=3840&q=75)
Transcribed Image Text:In the figure, a copper rod of mass 210 grams rests on a pair of rails 85 cm apart. The rod is perpendicular to the
rails. The rails are bare metal and carry a current of 40 amps, which of course is shared by the rod. The coefficient
of friction is 65. A.055 T magnetic field exists, pointing almost straight up, making an angle of 25 degrees with
the vertical. Find the acceleration of the rod.
40 A
F
40 A
40 A
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