•1 SSM The square surface shown in Fig. 23-30 measures 3.2 mm on each side. It is immersed in a uni- form electric field with magnitude E = 1800 N/C and with field lines at an angle of 9 = 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 Normal %3D through the surface. Figure 23-30 Problem 1.
•1 SSM The square surface shown in Fig. 23-30 measures 3.2 mm on each side. It is immersed in a uni- form electric field with magnitude E = 1800 N/C and with field lines at an angle of 9 = 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 Normal %3D through the surface. Figure 23-30 Problem 1.
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![CH23_Exercises_ PDF
т
•1 SSM The square surface shOwn
in Fig. 23-30 measures 3.2 mm on
each side. It is immersed in a uni-
form electric field with magnitude
E = 1800 N/C and with field lines at
an angle of 9 = 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 surfacœ.
Normal
Figure 23-30 Problem 1.
II
II](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F4b663cc5-ba9f-4dbd-aefa-66cda229d93f%2F8ecb08a7-d264-4c4f-aaae-93adeb496ec5%2Fbw2r6ir_processed.jpeg&w=3840&q=75)
Transcribed Image Text:CH23_Exercises_ PDF
т
•1 SSM The square surface shOwn
in Fig. 23-30 measures 3.2 mm on
each side. It is immersed in a uni-
form electric field with magnitude
E = 1800 N/C and with field lines at
an angle of 9 = 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 surfacœ.
Normal
Figure 23-30 Problem 1.
II
II
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