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Q2.PNGA sphere of radius R has a specified potential at it’s surface that is given by: V (R, θ) = kR /epsilon0 (3 cos^2 θ − 1) . a) Using the method of separation of variables in spherical coordinate, solve Laplace’s equation to find the potential inside and outside.of the sphere. Refer to Griffith’s examples 3.6 and 3.7 for the method and on how to ”eye-ball” the coefficients in the general solution. (10 points)Using the continuity equation, find the surface charge density...
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Confusion Products has projected the following sales for the coming year:Q1 $620 Q2 $690 Q3 $860 Q4 $780Sales in the year following this one are projected to be 15 percent greater in each quarter.Calculate payments to suppliers assuming that the company places orders during each quarter equal to 30 percent of projected sales for the next quarter. Assume thatthe company pays immediately.1. What is the payables period in this case?2. For payment of accounts:Q1 $Q2 $Q3 $Q4 $Calculate payments to...
Using the midpoint method, the price elasticity of demand for a good is computed to be approximately 1.5, the price increases by 3.5%, and Q1=25,294. What is Q2?
Two large conducting parallel plates A and B are separated by 2.4 m. A uniform field of 1500 V/m, in the positive x-direction, is produced by charges on theplates. The center plane at x = 0.0 m is an equipotential surface on which V = 0. An electron is projected from x = 0.0 m, with an initial kinetic energy K = 300eV, in the positive x-direction as shown.In the figure, the kinetic energy of the electron as it reaches...
I need help solving this DE by seperation of variables. dy хy + 2y —х — 2 ху — Зу + x -3 dx
2. Sketch the state diagram for the circuit shown (using state variables Q2Q1Qo). For ease of reading, please write the state notation in decimal (i.e. O through 7 with Q2 as the most significant bit). ooo K clock
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For problem 24.25 part b, calculate the potential at point P in volts using a value of Q2 = -5.31 Q1instead of the value in the stated problem. 25 A plastic rod has been bent into a circle of radius R -8.20 cm. It has a charge Q1- +4.20 pC uniformly distributed along one- quarter of its circumference and a charge Q2601 uniformly distributed along the Problem 24. rest of the circumference (Fig. 24-44). With V 0 at infinity, what...
a concentration cell was made by putting 5 mL of 0.050 M Pb(NO3)2 solution into one half-cell in a test plate. for the neighboring well in the test plate, weplaced 5 mL of a PbI2 solution that was made by mixing 9 mL of 0.050 KI solution with 3 mL of 0.050 M Pb(NO3)2 solution inside. Pb Electrodes were placed in eachcell, and a KNO3-soaked string was used as the salt bridge.data was collected and we recorded the average cell...