A cone has a circular base of radius 1 m in the xyxyzEzthru the base plane centered on the origin, and its apex at the point ( = = 0, = 1 m). A uniform electric field of magnitude E = 1 N/C, making a 60˚ angle with the -axis, passes thru the cone from below. The electric flux ΦE , in units of N-m2/C, has magnitude: (a) 1 (b) π/2 (c) π Sign: (d) positive (e) negative (f) could be either positive or negative. It can’t be determined in this case.
A cone has a circular base of radius 1 m in the xyxyzEzthru the base
plane centered on the origin, and its apex at the point ( = = 0, = 1 m). A uniform electric field of magnitude E = 1 N/C, making a 60˚ angle with the -axis, passes thru the cone from below. The electric flux ΦE , in units of N-m2/C, has magnitude: (a) 1 (b) π/2 (c) π
Sign: (d) positive (e) negative (f) could be either positive or negative. It can’t be determined in this case.
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The post A cone has a circular base of radius 1 m in the xyxyzEzthru the base plane centered on the origin, and its apex at the point ( = = 0, = 1 m). A uniform electric field of magnitude E = 1 N/C, making a 60˚ angle with the -axis, passes thru the cone from below. The electric flux ΦE , in units of N-m2/C, has magnitude: (a) 1 (b) π/2 (c) π Sign: (d) positive (e) negative (f) could be either positive or negative. It can’t be determined in this case. appeared first on Superb Professors.