The electric potential difference A V, also called voltage, is expressed in terms of the electric field as follows Δν |Edr where. a is the initial position and bis the final position. If an electric field in a region in space is defined as E= - Br? where B is just a constant without an arbitrary value. What is the electric potential difference from position o to R? O AV = (1– BR²)ar O AV = - BR 2 AV = Av - A BR3 O AV = -(1– B)aR3 O AV = -BR AV = Br AV = AV = -a- Mar? AV = The electric potential difference, also called voltage, is expressed in terms of the electric field as follows

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The electric potential difference AV, also called voltage, is expressed in terms of the electric field as follows
AV = -
Edr
where, a is the initial position and b is the final position.
If an electric field in a region in space is defined as
E= - Br?
where B is just a constant without an arbitrary value. What is the electric potential difference from position 0 to R?
O AV = (1- BR?)ar
Ο ΔV-βR3
2
AV =
Br3
1
AV =
BR?
O AV = - (1- B)aR3
AV = - BR
1
AV = Br
1 BR?
AV =
들(1-BlaR
AV = -6
The electric potential difference , also called voltage, is expressed in terms of the electric field
as follows
Transcribed Image Text:The electric potential difference AV, also called voltage, is expressed in terms of the electric field as follows AV = - Edr where, a is the initial position and b is the final position. If an electric field in a region in space is defined as E= - Br? where B is just a constant without an arbitrary value. What is the electric potential difference from position 0 to R? O AV = (1- BR?)ar Ο ΔV-βR3 2 AV = Br3 1 AV = BR? O AV = - (1- B)aR3 AV = - BR 1 AV = Br 1 BR? AV = 들(1-BlaR AV = -6 The electric potential difference , also called voltage, is expressed in terms of the electric field as follows
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