In Fig. a, a circular loop of wire is concentric with a solenoid and lies in a plane perpendicular to the solenoid's central axis. The loop has radius 6.00cm. The solenoid has radius 10.0 cm, consists of 8000 turns/m, and has a current 2 sol varying with time t as given in Fig. b, where the vertical axis scale is set by is 1.00A and the horizontal axis scale is set by t 2.0s. Figure C shows, = as a function of time, the energy Eth that is transferred to thermal energy of the loop; the vertical axis scale is set by Es 100.0n.J. What is the loop's resistance in units of m? Z 33 r(0)

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n Fig. a, a circular loop of wire is concentric with a solenoid and lies in a plane
perpendicular to the solenoid's central axis. The loop has radius 6.00cm. The
solenoid has radius 10.0 cm, consists of 8000 turns/m, and has a current 2 sol
varying with time t as given in Fig. b, where the vertical axis scale is set by
1.00A and the horizontal axis scale is set by t 2.0s. Figure C shows,
as a function of time, the energy Eth that is transferred to thermal energy of the
loop; the vertical axis scale is set by E = 100.0n.J. What is the loop's
resistance in units of m?
-
=
33
r()
(6)
(c)
(6)
Transcribed Image Text:n Fig. a, a circular loop of wire is concentric with a solenoid and lies in a plane perpendicular to the solenoid's central axis. The loop has radius 6.00cm. The solenoid has radius 10.0 cm, consists of 8000 turns/m, and has a current 2 sol varying with time t as given in Fig. b, where the vertical axis scale is set by 1.00A and the horizontal axis scale is set by t 2.0s. Figure C shows, as a function of time, the energy Eth that is transferred to thermal energy of the loop; the vertical axis scale is set by E = 100.0n.J. What is the loop's resistance in units of m? - = 33 r() (6) (c) (6)
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