A fluoronium ion (H2F*) can be thought of as the superposition of 2 tiny electric dipoles that are oriented with an angle of 114.75° between them. The positive end of each dipole has a charge of qe and the negative end of each has (-qe/2), where qe = 1.6x1019 C. The separation distance d for each of the 2 dipoles is 9.5x1011 m.

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Chapter1: Units, Trigonometry. And Vectors
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A fluoronium ion (H2F*) can be thought of as the superposition of 2 tiny electric dipoles that are
oriented with an angle of 114.75° between them.
The positive end of each dipole has a charge of qe and the negative end of each has (-qe/2),
where qe = 1.6x1019 C. The separation distance d for each of the 2 dipoles is 9.5x1011 m.
95 pm
[Image source: Wikipedia]
114.75°
What happens to the fluoronium ion when it is placed in a uniform electric field (select all that
apply)?
It experiences a net torque about the midpoint of the fluoronium ion's resultant dipole vector
O It experiences a net torque about a point in between the midpoint and the tail the fluoronium ion's
resultant dipole vector
O It experiences no net force
O It experiences a net torque about a point in between the midpoint and the head the fluoronium ion's
resultant dipole vector
O It experiences no net torque
It experiences a net torque about the location of the fluorine (F) nucleus
O It experiences a net force in the direction parallel to the applied electric field
Transcribed Image Text:A fluoronium ion (H2F*) can be thought of as the superposition of 2 tiny electric dipoles that are oriented with an angle of 114.75° between them. The positive end of each dipole has a charge of qe and the negative end of each has (-qe/2), where qe = 1.6x1019 C. The separation distance d for each of the 2 dipoles is 9.5x1011 m. 95 pm [Image source: Wikipedia] 114.75° What happens to the fluoronium ion when it is placed in a uniform electric field (select all that apply)? It experiences a net torque about the midpoint of the fluoronium ion's resultant dipole vector O It experiences a net torque about a point in between the midpoint and the tail the fluoronium ion's resultant dipole vector O It experiences no net force O It experiences a net torque about a point in between the midpoint and the head the fluoronium ion's resultant dipole vector O It experiences no net torque It experiences a net torque about the location of the fluorine (F) nucleus O It experiences a net force in the direction parallel to the applied electric field
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