In class this week we used the following expression a lot: dĒ = _¹ da. Which of 1 4περ 2 the following best characterizes what this actually is? This is the differential contribution to the electric field at some point in space due to the differential charge element, dq, as given by Coulomb's law. This is the energy stored in a differential piece of the electric field. O This is rate at which the electric field is changing in space as charge changes. This is the contribution to the electric field due to one electron or proton in the charged object. O None of the others is a valid explanation of the expression

College Physics
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Chapter1: Units, Trigonometry. And Vectors
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In class this week we used the following
expression a lot: dĒ = _¹ da. Which of
Απεο 2
the following best characterizes what this
actually is?
This is the differential contribution to the
electric field at some point in space due to the
differential charge element, dq, as given by
Coulomb's law.
This is the energy stored in a differential piece
of the electric field.
This is rate at which the electric field is
changing in space as charge changes.
This is the contribution to the electric field due
to one electron or proton in the charged
object.
None of the others is a valid explanation of the
expression
Transcribed Image Text:In class this week we used the following expression a lot: dĒ = _¹ da. Which of Απεο 2 the following best characterizes what this actually is? This is the differential contribution to the electric field at some point in space due to the differential charge element, dq, as given by Coulomb's law. This is the energy stored in a differential piece of the electric field. This is rate at which the electric field is changing in space as charge changes. This is the contribution to the electric field due to one electron or proton in the charged object. None of the others is a valid explanation of the expression
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