Vacuum permitivity, €o = 8.854 X 10 m. Magnitude Use the following constants if necessary. Coulomb constant, k = 8.987 X 10° N · m/C of the Charge of one electron, e = -1.60217662 × 10¬19 C. Mass of one electron, me = 9.10938356 × 10-31 kg. Unless specified otherwise, each symbol carries their usual meaning. For example, µC means micro coulomb. -38 50 Consider two charges q1 = 32 e and p = -29 e at positions (-35, –13, 13) and ( -36) respectively where all the coordinates are measured in the scale of 10-9 m or nano meters. If position vector of the charge q1 is r1 and charge q2 is r2. a) Find the relative position vector that points from charge q1 to charge q2. x component Give your answer to at least three significance digits. m y component Give your answer to at least three significance digits. m z component Give your answer to at least three significance digits. m
Vacuum permitivity, €o = 8.854 X 10 m. Magnitude Use the following constants if necessary. Coulomb constant, k = 8.987 X 10° N · m/C of the Charge of one electron, e = -1.60217662 × 10¬19 C. Mass of one electron, me = 9.10938356 × 10-31 kg. Unless specified otherwise, each symbol carries their usual meaning. For example, µC means micro coulomb. -38 50 Consider two charges q1 = 32 e and p = -29 e at positions (-35, –13, 13) and ( -36) respectively where all the coordinates are measured in the scale of 10-9 m or nano meters. If position vector of the charge q1 is r1 and charge q2 is r2. a) Find the relative position vector that points from charge q1 to charge q2. x component Give your answer to at least three significance digits. m y component Give your answer to at least three significance digits. m z component Give your answer to at least three significance digits. m
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Kindly give me the answers of a, b and c. all the questions are related.
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