Determine the electric flux through each closed surface where the cross-section inside the surface is shown below, enter your answer multiplied by 80 -29 S5 S2 -29
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- What happens with the flux through a surface of fixed area when the surface is tilted in such a way the surface creates an angle? With precise explanation plsFind the electric flux between one plate and the other. Don’t use Gauss’s law, you can more easily multiply the electric field by the area (remember, flux is electric field times area if both of these things are constant, which they are here). How much flux does each arrow represent?Vertical prism with side lengths of 4m, 2m and 3m,E j = 20 (N / C) exists in the electric field. a) Calculate the electric flux passing through the shaded upper part of the prism. b) Calculate the total electric flux through all surfaces of the prism.
- Determine the electric flux through each surfacewhose cross-section is shown below (figure attached).Solve for the value of Area and Electric flux. *I Don't Know how to get it :(Draw the problem and solve. Thanks A charge of 82 f C is placed inside a cube. What is the amount of electric flux passing through each side?
- Determine the electric flux through each closed surface where the cross-section inside the surface is shown below.Explain the electric flux of figure 12a using Gauss Law if there is another positive charge at r/2.Suppose we extend the Gaussian surface so that its right end cap is within the metal of the right plate. The left end ofthe Gaussian surface remains in its original location. What is the electric flux through this new Gaussian surface?
- Question 1a. A soccer goal, found is a city park, is made up of tubing that supports an odd-shaped hanging net behind the goal, but has a rectangular opening infront. The height of the opening is 2.5m and the width is 3.2m. If a uniform E-field, with a magnitude of 0.1N/C, passes through the goal from the front to the back, entering at 90 degrees to the plane of the goal opening, what is the flux through the net? Also, find the flux through the net if the E-fieldenters the goal at 60 degrees angle to the plane of the front goal. In both cases, assume that there no charge found inside the goal itself. CR (10)b. Show that the D field due to a point charge has a divergence of zero E(5)c.Find the charge in the volume defined 1 ≤ r ≤ 2m in spherical coordinates, if P=(c/m)A circular ring with a radius of 0.5 m lies horizontally on a surface (Figure 4). A uniform electric field of magnitude 1000 N/C is angled 40° from the horizontal. Calculate the flux through the ring.can you also provide how much flux each arrow represents