D4.3. We shall see later that a time-varying E field need not be conservative. (If it is not conservative, the work expressed by Eq. (3) may be a function of the path used.) Let E = ya, V/m at a certain instant of time, and calculate the work required to move a 3-C charge from (1, 3, 5) to (2, 0, 3) along the straight line segments joining: (a) (1, 3, 5) to (2, 3, 5) to (2, 0, 5) to (2, 0, 3); (b) (1, 3, 5) to (1, 3, 3) to (1, 0, 3) to (2,0, 3). Ans. -9 J; 0

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D4.3. We shall see later that a time-varying E field need not be conservative. (If it is not
conservative, the work expressed by Eq. (3) may be a function of the path used.) Let
E = ya, V/m at a certain instant of time, and calculate the work required to move a 3-C
charge from (1, 3, 5) to (2, 0, 3) along the straight line segments joining: (a) (1, 3, 5) to
(2, 3, 5) to (2, 0, 5) to (2, 0, 3); (b) (1, 3, 5) to (1, 3, 3) to (1, 0, 3) to (2, 0, 3).
Ans. -9 J; 0
Transcribed Image Text:D4.3. We shall see later that a time-varying E field need not be conservative. (If it is not conservative, the work expressed by Eq. (3) may be a function of the path used.) Let E = ya, V/m at a certain instant of time, and calculate the work required to move a 3-C charge from (1, 3, 5) to (2, 0, 3) along the straight line segments joining: (a) (1, 3, 5) to (2, 3, 5) to (2, 0, 5) to (2, 0, 3); (b) (1, 3, 5) to (1, 3, 3) to (1, 0, 3) to (2, 0, 3). Ans. -9 J; 0
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