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Exercise:
The strength of the electric field produced by an electric dipole charges pm q separation d at a po Pr theta can be written as Er thetaEaF where pq d is the dipole moment rgg d the distance between P and the centre of the dipole and theta the angle between the dipole axis and the vector poing to P. The dipole moment of a water molecule is pO. abcliste abc Calculate the strength of the electric field produced by a water molecule at a distance of rO perpicular to the dipole axis. What is the force acting on an electron at this place and what is its acceleration? abc Calculate the distance to a po in the direction of the dipole axis where the field has a strength of EbO. abcliste

Solution:
abcliste abc Er theta EaF nckctimesfracpr^timessqrtcos^pi/+ Ea approx resultEaP F_E q E FaF ncetimesEa Fa approxFaS a aaF fracFancme aaapprox resultaaS abc r^ k_CfracpEsqrtcos^theta + rightarrow r rbF leftnckctimesfracpEbtimessqrtcos^tb +right^/ rbapprox resultrbP- abcliste
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Exercise:
The strength of the electric field produced by an electric dipole charges pm q separation d at a po Pr theta can be written as Er thetaEaF where pq d is the dipole moment rgg d the distance between P and the centre of the dipole and theta the angle between the dipole axis and the vector poing to P. The dipole moment of a water molecule is pO. abcliste abc Calculate the strength of the electric field produced by a water molecule at a distance of rO perpicular to the dipole axis. What is the force acting on an electron at this place and what is its acceleration? abc Calculate the distance to a po in the direction of the dipole axis where the field has a strength of EbO. abcliste

Solution:
abcliste abc Er theta EaF nckctimesfracpr^timessqrtcos^pi/+ Ea approx resultEaP F_E q E FaF ncetimesEa Fa approxFaS a aaF fracFancme aaapprox resultaaS abc r^ k_CfracpEsqrtcos^theta + rightarrow r rbF leftnckctimesfracpEbtimessqrtcos^tb +right^/ rbapprox resultrbP- abcliste
Contained in these collections:
  1. 17 | 19
  2. 11 | 16

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Branches
Electrostatics
Tags
dipole, electric field, electrostatics
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Difficulty
(1, default)
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0 (default)
Language
ENG (English)
Type
Calculative / Quantity
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