A longer solenoid of diameter 0.1 m has 2×104 turns per meter. At the center of the solenoid, a coil of 100 turns and radius 0.01 m is placed with its axis coinciding with the solenoid axis. The current in the solenoid reduces at a constant rate to 0 A from 4 A in 0.05 s. If the resistance of the coil is 10π2 Ω, the total charge flowing through the coil during this time is
Given,
r1=120m, N1=2×104 /m
r2=1100m, N2=100 /m
R=10π2 Ω
dIdt=4−00.05=80 A/s
As we know, induced emf =MdIdt
where, M=μ0N1N2A2l
and Q=I.dt=induced emfR.dt
So,
q=μoN1N2πr2△I.△tl.△t.R
q=[4π×10−7×2×104×100×π×(10−2)−2×40.05]110π2×0.05
q=32 μC