The electric field E → 1 at one face of a parallelepiped is uniform over the entire face and is directed out of the face. At the opposite face, the electric field E → 2 is also uniform over the entire face and is directed into that face ( Fig. P22.37 ). The two faces in question are inclined at 30.0° from the horizontal, while both E → 1 and E → 2 are horizontal; E → 1 has a magnitude of 2.50 × 10 4 N/C, and E → 2 has a magnitude of 7.00 × 10 4 N/C. (a) Assuming that no other electric field lines cross the surfaces of the parallelepiped, determine the net charge contained within, (b) Is the electric field produced by the charges only within the parallelepiped, or is the field also due to charges outside the parallelepiped? How can you tell? Figure P22.37
The electric field E → 1 at one face of a parallelepiped is uniform over the entire face and is directed out of the face. At the opposite face, the electric field E → 2 is also uniform over the entire face and is directed into that face ( Fig. P22.37 ). The two faces in question are inclined at 30.0° from the horizontal, while both E → 1 and E → 2 are horizontal; E → 1 has a magnitude of 2.50 × 10 4 N/C, and E → 2 has a magnitude of 7.00 × 10 4 N/C. (a) Assuming that no other electric field lines cross the surfaces of the parallelepiped, determine the net charge contained within, (b) Is the electric field produced by the charges only within the parallelepiped, or is the field also due to charges outside the parallelepiped? How can you tell? Figure P22.37
The electric field
E
→
1
at one face of a parallelepiped is uniform over the entire face and is directed out of the face. At the opposite face, the electric field
E
→
2
is also uniform over the entire face and is directed into that face (Fig. P22.37). The two faces in question are inclined at 30.0° from the horizontal, while both
E
→
1
and
E
→
2
are horizontal;
E
→
1
has a magnitude of 2.50 × 104 N/C, and
E
→
2
has a magnitude of 7.00 × 104 N/C. (a) Assuming that no other electric field lines cross the surfaces of the parallelepiped, determine the net charge contained within, (b) Is the electric field produced by the charges only within the parallelepiped, or is the field also due to charges outside the parallelepiped? How can you tell?
No chatgpt pls will upvote Already got wrong chatgpt
A hydrogen atom has just a single electron orbiting the nucleus, which happens to be a single proton without any neutrons. The proton is positively charged, the electron negatively, but both with the same magnitude of charge given by e=1.602x10-19C. The mass of an electron is 9.11x10-31kg, and the proton is 1.67x10-27kg. Find the ratio of the electrostatic to the gravitational force of attraction between the electron and the proton in hydrogen.
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What is the third law pair to the normal force as you sit in a chair? What effect does the sun's pull on earth have in terms of third law pairs?
Chapter 22 Solutions
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