a) Make a sketch of the dipole after it rotates. This is its lowest energy state, that is, the orientation the dipole would like to be in. Explain your reasoning. b) c) d Determine the change in (potential) energy of the dipole-field system from the original orientation to this lowest energy orientation. Explain your reasoning. Hint: Consider the work done by the electric force Sketch the orientation of the dipole that corresponds to the highest energy state (the position the dipole would least like to be in). Explain your reasoning.

University Physics Volume 2
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Chapter5: Electric Charges And Fields
Section: Chapter Questions
Problem 118AP: Three charges are positioned at the cornets of a parallelogram as shown below. (a) If Q=8.0C what is...
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E
A dipole of size d is placed in a uniform field E,
as shown in the figure at right. We determined last week that this
dipole will rotate, but the center will not move (no net force).
Make a sketch of the dipole after it rotates. This
a)
b)
is its lowest energy state, that is, the orientation the dipole
would like to be in. Explain your reasoning.
+Q
d
Determine the change in (potential) energy of the dipole-field system from the
original orientation to this lowest energy orientation. Explain your reasoning. Hint: Consider
the work done by the electric force
Sketch the orientation of the dipole that corresponds to the highest energy state (the
position the dipole would least like to be in). Explain your reasoning.
Transcribed Image Text:E A dipole of size d is placed in a uniform field E, as shown in the figure at right. We determined last week that this dipole will rotate, but the center will not move (no net force). Make a sketch of the dipole after it rotates. This a) b) is its lowest energy state, that is, the orientation the dipole would like to be in. Explain your reasoning. +Q d Determine the change in (potential) energy of the dipole-field system from the original orientation to this lowest energy orientation. Explain your reasoning. Hint: Consider the work done by the electric force Sketch the orientation of the dipole that corresponds to the highest energy state (the position the dipole would least like to be in). Explain your reasoning.
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