Two large rectangular sheets of charge of side L are parallel to each other and separated by a distance d (d << L). The left and right sheets have surface charge densities of 4.4 μC/m2 and -18.9 μC/m2, respectively. Points A, B, C, and D are outside the sheets near the center of the squares. Take +x to be to the right. 1. Assume point A is at a distance 0.1d from the left sheet. Find the value of the electric field, in newtons per coulomb with its sign, at point A. 2. Assume point B is at a distance 0.25d from the left sheet. Find the value of the electric field, in newtons per coulomb with its sign, at point B. 3. Assume point C is at a distance 0.4d from the right sheet. Find the value of the electric field, in newtons per coulomb with its sign, at point C. 4. Assume point D is at a distance 0.1d from the right sheet. Find the value of the electric field, in newtons per coulomb with its sign, at point D.
Two large rectangular sheets of charge of side L are parallel to each other and separated by a distance d (d << L). The left and right sheets have surface charge densities of 4.4 μC/m2 and -18.9 μC/m2, respectively. Points A, B, C, and D are outside the sheets near the center of the squares. Take +x to be to the right.
1. Assume point A is at a distance 0.1d from the left sheet. Find the value of the electric field, in newtons per coulomb with its sign, at point A.
2. Assume point B is at a distance 0.25d from the left sheet. Find the value of the electric field, in newtons per coulomb with its sign, at point B.
3. Assume point C is at a distance 0.4d from the right sheet. Find the value of the electric field, in newtons per coulomb with its sign, at point C.
4. Assume point D is at a distance 0.1d from the right sheet. Find the value of the electric field, in newtons per coulomb with its sign, at point D.
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