A coil of 40 cm in diameter consists of 25 turns of circular copper wire of 2.5 mm in diameter each, wound around a nail. When the switch is closed, the flux in the core is given by the equation, o = 0.4 sin 200t Wb. Please set your calculator in the Radian Mode. i) Calculate the flux density obtained at t-4 s. ii) Find the magnetic flux linkage, 1 iii) Plot the induced voltage at the terminal versus time for t-0 s until t= 6s

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Question 1
A coil of 40 cm in diameter consists of 25 turns of circular copper wire of 2.5 mm in
diameter each, wound around a nail. When the switch is closed, the flux in the core is given
by the equation, o = 0.4 sin 200t Wb. Please set your calculator in the Radian Mode.
i) Calculate the flux density obtained at t=4 s.
ii) Find the magnetic flux linkage, a
iii) Plot the induced voltage at the terminal versus time for t=0 s until t= 6s
Ø = A• Baverage
2 = no
E = N
At
AØ
Transcribed Image Text:Question 1 A coil of 40 cm in diameter consists of 25 turns of circular copper wire of 2.5 mm in diameter each, wound around a nail. When the switch is closed, the flux in the core is given by the equation, o = 0.4 sin 200t Wb. Please set your calculator in the Radian Mode. i) Calculate the flux density obtained at t=4 s. ii) Find the magnetic flux linkage, a iii) Plot the induced voltage at the terminal versus time for t=0 s until t= 6s Ø = A• Baverage 2 = no E = N At AØ
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