Within the green dashed circle shown in the figure below, the magnetic field changes with time according to the expression B = 5.00t - 1.00t2 + 0.800, where B is in teslas, t is in seconds, and R = 2.45 cm. x x x x P. x x x x x x x Bin (a) When t = 2.00 s, calculate the magnitude of the force exerted on an electron located at point P,, which is at a distance r, = 4.90 cm from the center of the circular field region. (b) When t = 2.00 s, calculate the direction of the force exerted on an electron located at point P,, which is at a distance r, 4.90 cm from the center of the circular field region. O tangent to the electric field line passing through point P, and clockwise O tangent to the electric field line passing through point P, and counterclockwise O The magnitude is zero. (c) At what instant is this force equal to zero? (Consider the time after t = 0 s.) .095 The induced electric field is determined by the rate of change of the magnetic flux. s

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Within the green dashed circle shown in the figure below, the magnetic field changes with time according to the expression B = 5.00t3 – 1.00t2 + 0.800, where B is in teslas, t is in
seconds, andR = 2.45 cm.
* x x x x
x 7x
* x x X x x
* x x XX
Bin
(a) When t = 2.00 s, calculate the magnitude of the force exerted on an electron located at point P,, which is at a distance r, = 4.90 cm from the center of the circular field
region.
(b) When t = 2.00 s, calculate the direction of the force exerted on an electron located at point P,, which is at a distance r, = 4.90 cm from the center of the circular field region.
O tangent to the electric field line passing through point P, and clockwise
O tangent to the electric field line passing through point P, and counterclockwise
O The magnitude is zero.
(c) At what instant is this force equal to zero? (Consider the time after t = 0 s.)
095
The induced electric field is determined by the rate of change of the magnetic flux. s
Transcribed Image Text:Within the green dashed circle shown in the figure below, the magnetic field changes with time according to the expression B = 5.00t3 – 1.00t2 + 0.800, where B is in teslas, t is in seconds, andR = 2.45 cm. * x x x x x 7x * x x X x x * x x XX Bin (a) When t = 2.00 s, calculate the magnitude of the force exerted on an electron located at point P,, which is at a distance r, = 4.90 cm from the center of the circular field region. (b) When t = 2.00 s, calculate the direction of the force exerted on an electron located at point P,, which is at a distance r, = 4.90 cm from the center of the circular field region. O tangent to the electric field line passing through point P, and clockwise O tangent to the electric field line passing through point P, and counterclockwise O The magnitude is zero. (c) At what instant is this force equal to zero? (Consider the time after t = 0 s.) 095 The induced electric field is determined by the rate of change of the magnetic flux. s
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