A total charge 5.3 x 10 C is distributed uniformly throughout a cubical volume whose edges are 9.0 cm long. (a) What is the charge density in the cube (in C/m)? C/m3 (b) What is the electric flux (in N m/C) through a cube with 11.0 cm edges that is concentric with the charge distribution? IN m2/c (c) Do the same calculation for cubes whose edges are 19.0 cm long and 6.0 cm long. 19.0 cm edge cube N m2/c 6.0 cm edge cube N m/c (d) What is the electric flux (in N. m/C) through a spherical surface of radius 2.0 cm that is also concentric with the charge distribution? IN.m2/c

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B6
A total charge 5.3 x 10 6 C is distributed uniformly throughout a cubical volume whose edges are 9.0 cm long.
(a) What is the charge density in the cube (in C/m)?
C/m
(b) What is the electric flux (in N. m/C) through a cube with 11.0 cm edges that is concentric with the charge
distribution?
N-m?/c
(c) Do the same calculation for cubes whose edges are 19.0 cm long and 6.0 cm long.
19.0 cm edge cube
N.
•m²/c
6.0 cm edge cube
IN m²/c
(d) What is the electric flux (in N- m2/c) through a spherical surface of radius 2.0 cm that is also concentric with the
charge distribution?
N m2/c
Transcribed Image Text:A total charge 5.3 x 10 6 C is distributed uniformly throughout a cubical volume whose edges are 9.0 cm long. (a) What is the charge density in the cube (in C/m)? C/m (b) What is the electric flux (in N. m/C) through a cube with 11.0 cm edges that is concentric with the charge distribution? N-m?/c (c) Do the same calculation for cubes whose edges are 19.0 cm long and 6.0 cm long. 19.0 cm edge cube N. •m²/c 6.0 cm edge cube IN m²/c (d) What is the electric flux (in N- m2/c) through a spherical surface of radius 2.0 cm that is also concentric with the charge distribution? N m2/c
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