An electric dipole with dipole moment p = 6 × 10-5 C · m sets up an electric field (in newtons per coulomb) kp -(3xz, 3yz, 2z² – x² - y²) F(x, y, z) = کر 1/2 where r = : (x² + y² + z²)¹²² with distance in meters and k = 8.99 × 10⁹ Nm². Calculate the work against F required to move a particle of charge q = 0.03 C from (1, −5, 0) to (4, 3, 3). Note: The force on q is qF newtons. (Use decimal notation. Give your answer to one decimal place.)

Advanced Engineering Mathematics
10th Edition
ISBN:9780470458365
Author:Erwin Kreyszig
Publisher:Erwin Kreyszig
Chapter2: Second-order Linear Odes
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An electric dipole with dipole moment p = 6 × 10−5 C · m sets up an electric field (in newtons per coulomb)
kp
-(3xz, 3yz, 2z² – x² − y² )
F(x, y, z) =
1/2
where r =
(x² + y² + z²)¹¹² with distance in meters and k = 8.99 × 10⁹ Nm². Calculate the work against F required to move a
particle of charge q = 0.03 C from (1, -5, 0) to (4, 3, 3).
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 = 6 × 10−5 C · m sets up an electric field (in newtons per coulomb) kp -(3xz, 3yz, 2z² – x² − y² ) F(x, y, z) = 1/2 where r = (x² + y² + z²)¹¹² with distance in meters and k = 8.99 × 10⁹ Nm². Calculate the work against F required to move a particle of charge q = 0.03 C from (1, -5, 0) to (4, 3, 3). Note: The force on q is qF newtons. (Use decimal notation. Give your answer to one decimal place.)
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