Question: DeVry Student Portal | X * Course Hero X Module 5: Charge and X VA Module 5: Charge and X Q Two charged particles x

 DeVry Student Portal | X * Course Hero X Module 5:

DeVry Student Portal | X * Course Hero X Module 5: Charge and X VA Module 5: Charge and X Q Two charged particles x C Two charged particles x + X G https://www.webassign.net/web/Student/Assignment-Responses/last?courseKey=WA-production-12483228dep=31637238&elS... :The two tapes were prepared in such a way that the square tape and pointy tape had opposite signs of charge. Like signed charges repel and opposite signed charges attract. The fact that two square tapes repel show they :have the same sign of charge, and the same is true for two pointy tapes. The square and pointy tapes are attracted to each other because their charges have opposite sign. Note, however, that attraction is not always sufficient ; Q evidence to show both objects have a net charge. Charged objects can attract neutral objects due to polarization effects in the neutral object. Need Help? Read It 2. [3.5/7 Points] DETAILS PREVIOUS ANSWERS SERCP11 15.2.OP.001. 4/5 Submissions Used MY NOTES ASK YOUR TEACHER Two charged particles are a distance of 1.62 m from each other. One of the particles has a charge of 7.31 nC, and the other has a charge of 4.54 nC. o (a) What is the magnitude (in N) of the electric force that one particle exerts on the other? IN (b) Is the force attractive or repulsive? O attractive + O repulsive Need Help? Read It Submit Answer 3. [6/6 Points] DETAILS PREVIOUS ANSWERS SERCP11 15.2.P.007. 3/5 Submissions Used MY NOTES ASK YOUR TEACHER Two uncharged spheres are separated by 2.50 m. If 3.30 x 1012 electrons are removed from one sphere and placed on the other, determine the magnitude of the Coulomb force (in N) on one of the spheres, treating the spheres as point charges. HINT 4.01e-4 0.000402 Notice the use of charge conservation: Removing electrons from one sphere left it with a positive charge while the other sphere acquired a negative charge of equal magnitude. N OD Q Search a 9:10 AM 6/23/2023

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