A closed cylinder with a 0.15-m radius ends is in a uniform electric field of 300 N/C, perpendicular to the ends. The total flux through the cylinder is:
A. 0 Nm2 /C
B. 4.2 Nm2 /C
C. 21 Nm2 /C
D. 280 Nm2 /C
E. can't tell without knowing the length of the cylinder
option A 0Nm^2/C because flux entering the closed is equal to flux leaving the closed surface so net flux is zero .Net flux is flux entering - flux leaving ,since both are equal it is zero
A closed cylinder with a 0.15-m radius ends is in a uniform electric field of 300...
A closed cylinder with a 0.35m radius ends is in a uniform electric field of 150N/C, perpendicular to the ends. The total flux through the cylinder is: a. 0 N⋅m2/C b. can't tell without knowing the length of the cylinder c. 150 N⋅m2/C d. 4.5 N⋅m2/C e. 24 N⋅m2/C
1. A cylinder of radius R immersed in a uniform electric field E. with the cylinder axis parallel to the field what is the flux ? of the electric field through this closed surface.
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A circular surface with a radius of 0.052 m is exposed to a uniform electric field of magnitude 1.71 x 104 N/C. The electric flux through the surface is 71 N-m2/c. What is the angle between the direction of the electric field and the normal to the surface? Number Units
Q1) A uniform electric field of magnitude 8x 10 N/C passes through a circle of radius 13 cm. What is the electric flux through the circle when its face is (a) perpendicular to the Geld lines, (b) at 30° to the field lines, and (c) parallel to the field lines?
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