Suppose an electric dipole P is created by the NaBr molecule, which has a bond spacing of a = 0.298 nm. The molecule is placed in a uniform electric field of 35.6 N/C (along the x-axis), with the direction of P at an angle of +47.0 deg from the positive x-axis in the xy-plane, as shown in the diagram below. Determine the torque on the dipole. (Express as a product of the Z unit vector.) E Alkali metal +e E 0 a E Halogen 1240x10^-28 N*m T=PXE. Because Torque is a vector, direction is important. You

Elements Of Electromagnetics
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Author:Sadiku, Matthew N. O.
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Suppose an electric dipole P is created by the NaBr
molecule, which has a bond spacing of a = 0.298 nm. The
molecule is placed in a uniform electric field of 35.6 N/C
(along the x-axis), with the direction of P at an angle of
+47.0 deg from the positive x-axis in the xy-plane, as
shown in the diagram below. Determine the torque on the
dipole. (Express as a product of the Z unit vector.)
E
Alkali metal
+e
E
0
a
E
Halogen
1240x10^-28 N*m
T=PXE. Because Torque is a vector, direction is
important.
You
Transcribed Image Text:Suppose an electric dipole P is created by the NaBr molecule, which has a bond spacing of a = 0.298 nm. The molecule is placed in a uniform electric field of 35.6 N/C (along the x-axis), with the direction of P at an angle of +47.0 deg from the positive x-axis in the xy-plane, as shown in the diagram below. Determine the torque on the dipole. (Express as a product of the Z unit vector.) E Alkali metal +e E 0 a E Halogen 1240x10^-28 N*m T=PXE. Because Torque is a vector, direction is important. You
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