a) The electric field E at a point P (p, 6, z) due to a linear charge distribution carrying a charge density p, in free space is given as ;l-sin 8, – sin e,) p+ (cos 0, – cos 0,) z]. E = Using this equation, obtain the expression for E at a distance p away from the bisector of finitely long (length 41) linear charge distribution. b) Calculate the magnitude of E if pi = 10 C m', p = 15 cm and I= 10 cm.

College Physics
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Chapter1: Units, Trigonometry. And Vectors
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2. a) The electric field E at a point P (p, o, z) due to a linear charge distribution carrying a charge
density pi in free space is given as
E = (-(sin 02 – sin 8,) p + (cos 02 – cos 0,) z ].
Using this equation, obtain the expression for E at a distance p away from the bisector of
finitely long (length 41) linear charge distribution.
b) Calculate the magnitude of E if pi = 10 C m', p = 15 cm and / = 10 cm.
Transcribed Image Text:2. a) The electric field E at a point P (p, o, z) due to a linear charge distribution carrying a charge density pi in free space is given as E = (-(sin 02 – sin 8,) p + (cos 02 – cos 0,) z ]. Using this equation, obtain the expression for E at a distance p away from the bisector of finitely long (length 41) linear charge distribution. b) Calculate the magnitude of E if pi = 10 C m', p = 15 cm and / = 10 cm.
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