Problem 2- An electric field in free space is given by E = xa, + ya, + za, V/m. Find the work done in moving a IµC charge through this field a) from (1.1.1) to (0,0.0): The work will be b) from (p = 2, o = 0) to (p = 2, o = 90°): The path involves changing o with p and z fixed c) from (r = 10, 0 = 00) to (r = 10, 0 = 0, + 180°): %3D
Problem 2- An electric field in free space is given by E = xa, + ya, + za, V/m. Find the work done in moving a IµC charge through this field a) from (1.1.1) to (0,0.0): The work will be b) from (p = 2, o = 0) to (p = 2, o = 90°): The path involves changing o with p and z fixed c) from (r = 10, 0 = 00) to (r = 10, 0 = 0, + 180°): %3D
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![Problem 2-
An electric field in free space is given by E = xa, + ya, + za, V/m. Find the work done in moving a
IµC charge through this field
a) from (1.1,1) to (0,0.0): The work will be
b) from (p = 2, o = 0) to (p = 2, o = 90°): The path involves changing o with p and z fixed,
c) from (r = 10, 0 = 00) to (r = 10, 0 = 0, + 180°):
%3D](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fde7c2f12-82ee-4561-95d9-b8fe5e6d3493%2F14a08448-7eae-48e8-9252-735008aa5fca%2Fvup77f4_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Problem 2-
An electric field in free space is given by E = xa, + ya, + za, V/m. Find the work done in moving a
IµC charge through this field
a) from (1.1,1) to (0,0.0): The work will be
b) from (p = 2, o = 0) to (p = 2, o = 90°): The path involves changing o with p and z fixed,
c) from (r = 10, 0 = 00) to (r = 10, 0 = 0, + 180°):
%3D
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