Consider an uniform electric field E (4.58x10^0) and a cubic box with side %3D (4.8200x10^1)-cm, centered at the origin and having six faces described by the normal unitary vectors: î1 and î6 t, în2 = ŷ, nz = -â, î4 = -ŷ, îns = -2 2. What is the net electric charge encapsulated by this cubic box? Give %3D |3D %3D %3D your answer in Ç with three significant figures.
Consider an uniform electric field E (4.58x10^0) and a cubic box with side %3D (4.8200x10^1)-cm, centered at the origin and having six faces described by the normal unitary vectors: î1 and î6 t, în2 = ŷ, nz = -â, î4 = -ŷ, îns = -2 2. What is the net electric charge encapsulated by this cubic box? Give %3D |3D %3D %3D your answer in Ç with three significant figures.
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Question
![Consider an uniform electric field
(4.58x10^0) and a cubic box with side
(4.8200x10^1)-cm, centered at the origin and having six faces described by the
normal unitary vectors: î1 = , în2 = ŷ, în3 = -â, î4 = -y, ns = -2
2. What is the net electric charge encapsulated by this cubic box? Give
|3D
%3D
and în6
|3D
your answer in C with three significant figures.
Note: Your answer is assumed to be reduced to the highest power possible.
Your Answer:
x10
units
Answer](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F0037f6d4-02ee-4e85-ba77-fd8ddb1cd9c1%2F4dffe429-1b1e-4444-b682-3473fa74a875%2Faom5d5l_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Consider an uniform electric field
(4.58x10^0) and a cubic box with side
(4.8200x10^1)-cm, centered at the origin and having six faces described by the
normal unitary vectors: î1 = , în2 = ŷ, în3 = -â, î4 = -y, ns = -2
2. What is the net electric charge encapsulated by this cubic box? Give
|3D
%3D
and în6
|3D
your answer in C with three significant figures.
Note: Your answer is assumed to be reduced to the highest power possible.
Your Answer:
x10
units
Answer
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