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a. Predict the resultant force that acts on the 7.00 C as a result of the other two charges. Make this prediction by first drawing

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a. Predict the resultant force that acts on the 7.00 C as a result of the other two charges. Make this prediction by first drawing force vectors for the interaction between the charge at the origin and each of the other charges. Ensure that the force vectors you draw are to scale (e.g. if one force is greater than the other, the arrows you draw should reflect that). Use head-to-tail vector addition to arrive at your prediction. No calculations are necessary to answer this question, only vector diagrams are needed. b. Calculate the magnitude of the force on the 7.00 /C due to each of the other charges. Explain your calculations. C. Find the resultant force that acts on the 7.00 C as a result of the other two charges and express your answer as a vector using the unit vectors i and j. Explain your work. d. Find the magnitude and direction of the force in part c. Explain your conclusions. e. Predict the resultant electric field that exists at the location of the 7.00 /C as a result of the other two charges. Make this prediction by first drawing electric field vectors from each of the point charges. Ensure that the force vectors you draw are to scale (e.g. if one force is greater than the other, the arrows you draw should reflect that). Use head-to-tail vector addition to arrive at your prediction. No calculations are necessary to answer this question, only vector diagrams are needed. f. Calculate the magnitude of the electric field at the location of the 7.00 /C due to each of the other two charges. Explain your calculations. g. Find the resultant electric field at the location of the 7.00 /C as a result of the other two charges and express your answer as a vector using the unit vectors i and j. Explain your work. h. Find the magnitude and direction of the electric field in part g. Explain your conclusions. i. Show that your answers to parts d and h are related by the equation F = qE.1. Another Ensemble of Discrete Charges Consider the following arrangement of fixed point charges positioned at the vertices of an equilateral triangle of sides with length 0.500 m. +7.00 /C 0.500 m 60 +2.00 /C -4.00 uC

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