Question: fPart A: Electric field Calculate the net eld at the x in the configuration below. +Y 3 nC +x 0 x 2 m K >|

 \fPart A: Electric field Calculate the net eld at the xin the configuration below. +Y 3 nC +x 0 x 2 mK >| 5 mm 1 nC O 2 11C 1. On thediagram, sketch the electric field that the 2 nC charge produces atthe x (52), the field that the +3 nC charge produces atthe x (53), and the net field at the x, 2. Calculate

52. Give your answer in component vector form. 3' Calculate 53. Giveyour answer in component vector form' 4. Add 32 and E3 toget the net eld at the x. Give your answer in componentvector form. It should be consistent with your sketch. 5' You placea 1 mg, +1 nC at the x. What is the electrostaticforce eld on it, due to the 2 and 3 HC charges?

\fPart A: Electric field Calculate the net eld at the x in the configuration below. +Y 3 nC +x 0 x 2 m K >| 5 mm 1 nC O 2 11C 1. On the diagram, sketch the electric field that the 2 nC charge produces at the x (52), the field that the +3 nC charge produces at the x (53), and the net field at the x, 2. Calculate 52. Give your answer in component vector form. 3' Calculate 53. Give your answer in component vector form' 4. Add 32 and E3 to get the net eld at the x. Give your answer in component vector form. It should be consistent with your sketch. 5' You place a 1 mg, +1 nC at the x. What is the electrostatic force eld on it, due to the 2 and 3 HC charges? Give your answer in vector form Note: this should be a very easy calculation using your result from the previous part1 Part B: Electric potential 1. Calculate the net electric potential at the x in the previous configuration. 2. You place a 1 mg, +1 nC at the x and release it from rest. In what direction does it initially move'.' 3. The +1 nC charge will fly away from the other two charges. How fast will it be moving when it gets very far from them'? Note that the +3 nC and 2 nC charges do not move: imagine they are glued in place

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