Question: D Question 4 1 pts A parallel-plate capacitor with radius R = 2.0 em is being discharged at the rate of -0.80 C/s, as shown

 D Question 4 1 pts A parallel-plate capacitor with radius R= 2.0 em is being discharged at the rate of -0.80 C/s,as shown in the figure. The axis of the capacitor is defined

D Question 4 1 pts A parallel-plate capacitor with radius R = 2.0 em is being discharged at the rate of -0.80 C/s, as shown in the figure. The axis of the capacitor is defined as the straight line connecting the center of the two plates. To calculate the induced magnetic held circling around the axis, we build a circular path with radius r = 1,0 cm around the axis. Use clockwise (viewed from left) as the circular path direction, as shown in the figure. Note that the circular path is inside the capacitor. What is the displacement current magnitude through the area bounded by the circular path ISelect] *? What is the induced Select magnetic field strength (in units of ( T) at radius . [ Select ) D.60 A irection of the induced 0.20 A 10A magnetic field at radius r, when viewed from the left [ Select ] ONDA 0.80 A C.W. (viewed from left)D Question 4 1 pts A parallel-plate capacitor with radius R - 2.0 can is being discharged at the rate of - 0.80 C/s, as shown in the figure. The axis of the capacitor is defined as the straight line connecting the center of the two plates. To calculate the induced magnetic held circling around the axis, we build a circular path with radius + = 1.0 cm around the axis. Use clockwise (viewed from left) as the circular path direction, as shown in the figure. Note that the circular path is inside the capacitor. What is the displacement current magnitude through the area bounded by the circular path ( Select ] 7 What is the induced magnetic field strength (in units of (T) at radius ~ [ Select ] 2 What is the direction of the induced Select magnetic field at radiusr, when viewed from the # 40 4.0 20 C.W. (viewed from left)Question 4 1 pts A parallel-plate capacitor with radius R - 2.0 cm is being discharged at the rate of -0.80 C/'s as shown in the figure The axis of the capacitor is defined as the straight line connecting the center of the two plates. To calculate the induced magnetic Field circling around the axis, we build a carcular path with radius r = 1.0 cm around the axis. Use clockwise (viewed from left) as the circular path direction, as shown in the figure. Note that the circular path is inside the capacitor, What is the displacement current magnitude through the area bounded by the circular path [ Select ) we What is the Induced magnetic field strength (in units of a7 ) at radius y [ Select ] " ? What Is the direction of the induced magnetic held at radius r. when viewed from the left [ Select ] no magnetic held counter clockwise clockwise C.W. (viewed from left)

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