An electric dipole with dipole moment p = 3 x 10-5 C. m sets up an electric field (in newtons per coulomb) kp F(z,y, z) = (3zz, 3yz, 2z? – a² – y²) %3D where r = (2? + y? + 2²)? with distance in meters and k = 8.99 x 10° Nm. Calculate the work against F required to move a particle of charge q = 0.03 C from (1, –5, 0) to (3,2, 4). Note: The force on q is qF newtons. (Use decimal notation. Give your answer to one decimal place.)

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Chapter1: Units, Trigonometry. And Vectors
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An electric dipole with dipole moment p = 3 x 10-5 C. m sets up an electric field (in newtons per coulomb)
kp
F(z,y, z) =
(3zz, 3yz, 2z? – a² – y²)
%3D
where r = (2? + y? + 2²)? with distance in meters and k = 8.99 x 10° Nm. Calculate the work against F required to move
a particle of charge q = 0.03 C from (1, –5, 0) to (3,2, 4).
Note: The force on q is qF newtons.
(Use decimal notation. Give your answer to one decimal place.)
Transcribed Image Text:An electric dipole with dipole moment p = 3 x 10-5 C. m sets up an electric field (in newtons per coulomb) kp F(z,y, z) = (3zz, 3yz, 2z? – a² – y²) %3D where r = (2? + y? + 2²)? with distance in meters and k = 8.99 x 10° Nm. Calculate the work against F required to move a particle of charge q = 0.03 C from (1, –5, 0) to (3,2, 4). Note: The force on q is qF newtons. (Use decimal notation. Give your answer to one decimal place.)
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