Consider a cylindrical surface in this electric field as shown in the figure. Electric field vector in space is defined as E = (ay²+by+c)ĵ where a = 1 (N/Cm²), b = -2 (N/Cm) and c = 3 (N/C). The cylinder has radius R and length 3R. Take 7 = 3 and R as 100 cm. 13. What is the electric flux through its surface at y = 3R in units of Nm²/C? (a) -18 (b) -9 (c) 0 (d) 9 (e) 18 14. What is the total electric flux through the whole cylinder in units of Nm²/C? (a) 0 (b) 9 (c) -18 (d) 18 (e) -9 15. What is the net charge inside this cylindrical surface? (a) 0 (b) -9€0 (c) 90 (d) -180 (e) 18€0

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Chapter1: Units, Trigonometry. And Vectors
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Questions 13-15
Consider a cylindrical surface in this electric field as shown in the figure. Electric field
vector in space is defined as E = (ay²+by+c)ĵ where a = 1 (N/Cm²), b = -2 (N/Cm)
and c = 3 (N/C). The cylinder has radius R and length 3R. Take 7 = 3 and Ras
100 cm.
13. What is the electric flux through its surface at y = 3R in units of Nm²/C?
(a) -18 (b) -9 (c) 0
(d) 9 (e) 18
14. What is the total electric
flux through the whole cylinder in units of Nm²/C?
(a) 0 (b) 9 (c) -18 (d) 18 (e) -9
15. What is the net charge inside this cylindrical surface?
(a) 0 (b) -9€0 (c) 9€0 (d) -18€0 (e) 18€0
E
3R
Transcribed Image Text:Questions 13-15 Consider a cylindrical surface in this electric field as shown in the figure. Electric field vector in space is defined as E = (ay²+by+c)ĵ where a = 1 (N/Cm²), b = -2 (N/Cm) and c = 3 (N/C). The cylinder has radius R and length 3R. Take 7 = 3 and Ras 100 cm. 13. What is the electric flux through its surface at y = 3R in units of Nm²/C? (a) -18 (b) -9 (c) 0 (d) 9 (e) 18 14. What is the total electric flux through the whole cylinder in units of Nm²/C? (a) 0 (b) 9 (c) -18 (d) 18 (e) -9 15. What is the net charge inside this cylindrical surface? (a) 0 (b) -9€0 (c) 9€0 (d) -18€0 (e) 18€0 E 3R
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