Find the Maxwell relationships for G, holding N fixed. Upload your work here.
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- ttps://openvellum.ecollege.com/course.html?courseld=17816193&OpenVellumHMAC=411334d67013f5b1608456d6ceec... A to Attempt 1 gure 1). Let r = 4.6 cm. r X W S Type here to search 3.0 nC alt X 3 E 4 BI Part B 5 F Copyright © 2023 Pearson Education Inc. All rights reserved. Terms of Use Privacy Policy | Permissions 8 = What is the direction of the electric field at the position indicated by the dot in the figure? Specify the direction as an angle measured clockwise from the positive axis. Express your answer in degrees. ▸ View Available Hint(s) Submit -- ΑΣΦΑ 46 6 4 Pearson ? 9 O FROMUNDObt DEGHUKUL CVBNI NM²² Contact Us | Heavy rain alt 1 ☆= E pause 6 of 14 Review > 11:40 AM 2/25/2023 backspace enter 1 st ctrl LOKA FWhat is the magntiude of the integral of B over dl for part c? Enter in your answer in micro-T*m. Assume that all currents are 11.1 A.Problem An insulating sphere with radius R contains a total non-uniform charge (i.e. Hydrogen atom) Q such that its volume charge density is 38 312 where Bis a constant and ris the distance from the center of the sphere. What is electric field at any point inside the sphere? Solution To find the electric field inside the non-uniformly charged sphere, we may apply integration method or the Gauss's Law method. Here, let us use the Gauss's law which is expressed as We will choose a symmetric Gaussian surface, which is the surface of a sphere, then evaluate the dot product to obcain (Equation 1) The issue however is how much charge does the Gaussian surface encoses? Since, our sphere is an insulating material. charges will get distributed non-uniformly within the volume of the object. So, we look into the definition of volume charge density to find the enclosed charge. So, we have dq p= dv Based on the given problem, we can also say that dgenc p= 38 dV