Rank the electric fluxes through each gaussian surface shown in the figure from largest to smallest. Display any cases of equality in your ranking. QO 3Q 4Q 1. a>b>c>d 2. b>a>d>c 3. c>a b>d 4. d>b c >a
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- i.Compare the electric flux in a cubical surface of a side 10cm and spherical surface of radius 10 cm, when a charge of 5µC is enclosed by them. ii.The electric field intensity of a point charge can be infinite. Where does this occur and what is the physical meaning of this ?The rod below has equal amounts of positive and negative charge on each half. What is the direciton of the electric field at point P? Down To the right Up and to the right Up To the left3. A sphere of radius R has a polarizationP(r) = kr,where k is a constant and r is the vector from its center.(a) Calculate the polarization charge densities σb and ρb.(b) Find the electric field E and the displacement vector D inside and outside the sphere.
- #5 What is the electric flux evaluated on the closed surface represented by the dashed line S? Can you explain to me why the answer is C? Thank you so much.Calculate the electric flux for each of the closed surfaces a, b, c, and d.Problem 1. Electric Flux. Consider the charge distribution shown in the figure on the right. The loops are cross sections of closed surfaces labeled S₁ to S₄. Suppose that the only charges in the distribution are the ones shown in the figure. Find the electric flux across (a) S₁, (b) S₂, (c) S₃, and (d) S₄.
- Calculate the electric flux for each of the closed surface a, b, c, and d.Part 1 In Fig-1, there are two infinite planes A and B, parallel to YZ plane. Their surface charge densities are σA=34nC/m2 and σB=29nC/m2. The separation between the planes A and B is d=8m. Calculate the net electric field due to both the planes in unit vector notation in three regions shown in the Fig-1. a) (i) Find the electric field in unit vector notation in region I. x component of the electric field Give your answer to at least three significance digits.y component of the electric field Give your answer to at least three significance digits. (ii) Find the electric field in unit vector notation in region II. x component of the electric field Give your answer to at least three significance digits.y component of the electric field Give your answer to at least three significance digits. (iii) Find the electric field in unit vector notation in region III. x component of the electric field Give your answer to at least three significance digits. y component of the electric field Give…What is the electric flux through closed surface S5, whose cross-section inside the surface is shown above? What is the electric flux through closed surface , whose cross-section inside the surface is shown above?
- Pls, help me with the following. make sure your answer is correct, thank you (Figure 1) shows cross sections of five closed surfaces S1�1, S2�2, and so on. Assume that q1�1 = 4.0 μC�C , q2�2 = 8.2 μC�C , q3�3 = 1.5 μC�C , q4�4 = 8.4 μC�C , q5�5 = -7.2 μC�C , and q6�6 = -9.7 μC�C . Part B. Find the net electric flux passing through the surface S2�2. Express your answer in newton meters squared per coulomb. Part E. Find the net electric flux passing through the surface S5�5. Express your answer in newton meters squared per coulomb.Use GFSA (Given, Find, Solution, and Answer) on the given space below. Encircle your final answer, write it in scientific notation with 2 decimal places (if possible). Determine the electric flux for a Gaussian surface that contains 100 million electrons.A cube centered at the orgin with sides that are parallel to the x-y, y-z, x-z plane and have an edge length of L, immersed in an E of E(x)=E0(ax3i, 2j,5k). find total flux. I don't know what I am doing wrong, please help step by step.