2) Calculate the electric field vector at point P as a function of q, y, a. Beware, the two charges are not equal and the vector will have x and y components. Write the vector in terms of the unit vectors i, j. Draw the electric field vector. In which quadrant does the vector point? What is its magnitude? It does not have to simplifying algebraic expressions. +24
2) Calculate the electric field vector at point P as a function of q, y, a. Beware, the two charges are not equal and the vector will have x and y components. Write the vector in terms of the unit vectors i, j. Draw the electric field vector. In which quadrant does the vector point? What is its magnitude? It does not have to simplifying algebraic expressions. +24
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
Transcribed Image Text:2) Calculate the electric field vector at point P as a function of q, y, a. Beware, the two charges are not
equal and the vector will have x and y components. Write the vector in terms of the unit vectors i, j.
Draw the electric field vector. In which quadrant does the vector point? What is its magnitude? It does
not have to
simplifying algebraic expressions.
+24
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