The square surface shown in Fig. 23-30 measures 3.2 mm on each side. It is immersed in a uniform electric field with magnitude E $ 1800 N/C and with field lines at an angle of u $ 35 with a normal to the surface, as shown. Take that normal to be directed outward, as though the surface were one face of a box. Calculate the electric flux through the surface Normal Figure 23-30 Problem 1.
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Question
Space vehicles traveling through Earths radiation belts can intercept a significant number of electrons. The resulting charge buildup can damage electronic components and disrupt operations. Suppose a spherical metal satellite 1.3 m in diameter accumulates 2.4 mC of charge in one orbital revolution. (a) Find the resulting surface charge density. (b) Calculate the magnitude of the electric field just outside the surface of the satellite, due to the surface charge.
Solution
The first step in solving 23 problem number 19 trying to solve the problem we have to refer to the textbook question: Space vehicles traveling through Earths radiation belts can intercept a significant number of electrons. The resulting charge buildup can damage electronic components and disrupt operations. Suppose a spherical metal satellite 1.3 m in diameter accumulates 2.4 mC of charge in one orbital revolution. (a) Find the resulting surface charge density. (b) Calculate the magnitude of the electric field just outside the surface of the satellite, due to the surface charge.
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