Imagine another universe, where alternate electrons and protons have electric charge with magnitude 5 × 10−19 C but opposite signs. In that universe, an alternate electron and an alternate proton are situated in an "alternate hydrogen atom", separated by a distance of 5.29 × 10−11 m. Coulomb's law is valid in that universe, and Coulombs constant is the same as in our universe, 9 × 109 N·m2/C2. Calculate the magnitude of the electrostatic force exerted on the alternate electron by the alternate proton.
Imagine another universe, where alternate electrons and protons have electric charge with magnitude 5 × 10−19 C but opposite signs. In that universe, an alternate electron and an alternate proton are situated in an "alternate hydrogen atom", separated by a distance of 5.29 × 10−11 m. Coulomb's law is valid in that universe, and Coulombs constant is the same as in our universe, 9 × 109 N·m2/C2. Calculate the magnitude of the electrostatic force exerted on the alternate electron by the alternate proton.
College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
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Imagine another universe, where alternate electrons and protons have electric charge with magnitude 5 × 10−19 C but opposite signs. In that universe, an alternate electron and an alternate proton are situated in an "alternate hydrogen atom", separated by a distance of 5.29 × 10−11 m. Coulomb's law is valid in that universe, and Coulombs constant is the same as in our universe, 9 × 109 N·m2/C2. Calculate the magnitude of the electrostatic force exerted on the alternate electron by the alternate proton.
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Is the direction of the electrostatic force exerted on the electron by the proton along a straight line from the proton to the electron?
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