5. Consider two concentric conducting spherical shells. Inner shell carries an excess charge of -3 µC and outer shell carries +6 µC. Which figure shews a qualitatively accurate sketch of the electric field lines in and around this system? (a) (b) (c) (d) (e)

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5. Consider two concentric conducting spherical shells. Inner shell carries an excess charge of -3 µC and outer shell carries +6 µC. Which figure shows a qualitatively accurate sketch of the electric field lines in and around this system?
Page
> of 7
d) What is the magnitude of the magnetic field at the point P(x,y) = (0,– 0.1) m? (Ho =
4n x 10-7 T · m/A)
5. Consider two concentric conducting spherical shells. Inner shell carries an excess charge of
-3 µC and outer shell carries +6 µC. Which figure shows a qualitatively accurate sketch of
the electric field lines in and around this system?
(a)
(b)
(c)
(d)
(e)
6. The electric potential function in a volume of space is given by V (x, y, z) = x² + xy² + yz.
Determine the electric field in this region at the coordinate (3,4,5).
7. Two capacitors are connected in series. A potential difference, Vois applied across the
combination of capacitors.
a) What is the equivalent capacitance in terms of C, and C2.
Transcribed Image Text:Page > of 7 d) What is the magnitude of the magnetic field at the point P(x,y) = (0,– 0.1) m? (Ho = 4n x 10-7 T · m/A) 5. Consider two concentric conducting spherical shells. Inner shell carries an excess charge of -3 µC and outer shell carries +6 µC. Which figure shows a qualitatively accurate sketch of the electric field lines in and around this system? (a) (b) (c) (d) (e) 6. The electric potential function in a volume of space is given by V (x, y, z) = x² + xy² + yz. Determine the electric field in this region at the coordinate (3,4,5). 7. Two capacitors are connected in series. A potential difference, Vois applied across the combination of capacitors. a) What is the equivalent capacitance in terms of C, and C2.
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