3. A conducting loop is stationary in a uniform and time-varying magnetic field that points along the positive z-axis. The EMF induced in the loop versus time is shown in the figure below. The sign of this EMF is defined by the loop's area vector, which is also directed along the positive z-axis. Sketch a plot of the magnetic field as a function of time given that the magnetic field starts at zero at time t = 0 s. EMF (V) t = a t = b Time (s) t = c t=d The EMF induced in the stationary loop by the time-varying magnetic field.

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3. A conducting loop is stationary in a uniform and time-varying magnetic field that points along the
positive z-axis. The EMF induced in the loop versus time is shown in the figure below. The sign of this
EMF is defined by the loop's area vector, which is also directed along the positive z-axis. Sketch a plot
of the magnetic field as a function of time given that the magnetic field starts at zero at time t = 0 s.
EMF (V)
t = a
t = b
Time (s)
t = c
t=d
The EMF induced in the stationary loop by the time-varying magnetic field.
Transcribed Image Text:3. A conducting loop is stationary in a uniform and time-varying magnetic field that points along the positive z-axis. The EMF induced in the loop versus time is shown in the figure below. The sign of this EMF is defined by the loop's area vector, which is also directed along the positive z-axis. Sketch a plot of the magnetic field as a function of time given that the magnetic field starts at zero at time t = 0 s. EMF (V) t = a t = b Time (s) t = c t=d The EMF induced in the stationary loop by the time-varying magnetic field.
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