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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Textbook Solutions for Fundamentals of Physics, Volume 2 (Chapters 21 - 44)
Question
In Fig. 23-56, a nonconducting spherical shell of inner radius a 2.00 cm and outer radius b 2.40 cm has (within its thickness) a positive volume charge density r A/r, where A is a constant and r is the distance from the center of the shell. In addition, a small ball of charge q 45.0 fC is located at that center. What value should A have if the electric field in the shell (a r b) is to be uniform? baq Figure 23-56 51.
Solution
The first step in solving 23 problem number 51 trying to solve the problem we have to refer to the textbook question: In Fig. 23-56, a nonconducting spherical shell of inner radius a 2.00 cm and outer radius b 2.40 cm has (within its thickness) a positive volume charge density r A/r, where A is a constant and r is the distance from the center of the shell. In addition, a small ball of charge q 45.0 fC is located at that center. What value should A have if the electric field in the shell (a r b) is to be uniform? baq Figure 23-56 51.
From the textbook chapter Gauss Law you will find a few key concepts needed to solve this.
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