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Use microscopic field theory and the integral form of Gauss's Law for the E-field in your solution to this problem. A storm chaser surmises that

Use microscopic field theory and the integral form of Gauss's Law for the E-field in your solution to this problem.

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A storm chaser surmises that they observed a "horizontal roll cloud associated with a severe thunderstorm", similar to the one shown here: You have been asked to use microscopic electrostatic field modeling to estimate the spatial variation of E-field and electrostatic potential associated with this phenomenon. You and the storm chaser establish the following parameters for your microscopic field model:. IGNORE FRWGIVE FIELDS. . fu IS UNIFORM FOR PEA. P= b IS UNIFORM. Ip=k Note: Potential at p = b (surface of the earth) is zero volts. a (meters) b (meters) ( (meters) QI (Coulombs) 1128 5,136 6.2b 15.3 A) Use the integral form of Gauss's Law for the E-field to find the E-field everywhere in the model. B) Find the electrostatic potential everywhere in the model. C) Use MATLAB to plot the electrostatic potential for (0

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