It was shown in Example 21.11 (Section 21.5) in the textbook that the electric field due to an infinite line of charge is perpendicular to the line and has magnitude E-X/2TEOT Consider an imaginary cylinder with a radius of r = 0.220 m and a length of 1 = 0.495 m that has an infinite line of positive charge running along its axis. The charge per unit length on the line is A = 6.85 μC/m.

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Chapter1: Units, Trigonometry. And Vectors
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Part A
What is the electric flux through the cylinder due to this infinite line of charge?
$=
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Part B
$=
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VE ΑΣΦ S
Part C
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What is the flux through the cylinder if its radius is increased to r=0.560 m ?
Ф
1971 ΑΣΦ G a
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?
97| ΑΣΦ 6
N-m²/C
?
k
What is the flux through the cylinder if its length is increased to 1-0.765 m ?
N-m²/C
N-m²/C
Transcribed Image Text:▼ Part A What is the electric flux through the cylinder due to this infinite line of charge? $= Submit Part B $= Submit VE ΑΣΦ S Part C Request Answer What is the flux through the cylinder if its radius is increased to r=0.560 m ? Ф 1971 ΑΣΦ G a Show Transcribed Text Request Answer ? 97| ΑΣΦ 6 N-m²/C ? k What is the flux through the cylinder if its length is increased to 1-0.765 m ? N-m²/C N-m²/C
It was shown in Example 21.11 (Section 21.5) in the
textbook that the electric field due to an infinite line of
charge is perpendicular to the line and has magnitude
E-X/2πeor. Consider an imaginary cylinder with a
radius of r = 0.220 m and a length of 1 = 0.495 m
that has an infinite line of positive charge running
along its axis. The charge per unit length on the line is
A = 6.85 μC/m.
Transcribed Image Text:It was shown in Example 21.11 (Section 21.5) in the textbook that the electric field due to an infinite line of charge is perpendicular to the line and has magnitude E-X/2πeor. Consider an imaginary cylinder with a radius of r = 0.220 m and a length of 1 = 0.495 m that has an infinite line of positive charge running along its axis. The charge per unit length on the line is A = 6.85 μC/m.
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