Consider a sphere of radeus R and cylinder of length L, if both same chauge density ot's and Ec are electric intensity at a point at a distance or from axis of sphere f cylinder erespectively, the Es equal to @ EcR ® Ecr ©2 Eer @ Eer R 2R r
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- A particle begins to move on top of a it leave the surface? hemispherical surface. Where will m R-) ← ↑ Due Thirs Oct 13 of P linear. A line of length L has a charger. a distance. charge deurenty x=ay, where y is measured from the right hand side of the rock, as shown a) Find E d to the right of the rod, as shown b) fund the total charge & of the rod terms of K, dj by and. Express answers in Santiago Neri NAME a a) Find Ex and Ey at pourt P, where the rod has total charge Q. Assume a uniform charge density. Хорость Q=107% az 10cu b) Find the acceleration on an electron placed at p ceSuppose we have a charge, q1=3 μC. This charge makes an electric field some distance r=69 cm away from it. Now suppose our measurement of q1 is only accurate to within 0.1 μC, and our measurement of r is only accurate to within 1 cm. a)If we were to calculate the electric field made by that charge at the indicated distance, what would be the uncertainty in our calculation due only to the uncertainty in the size of q1? b)What is the uncertainty in our field calculation due only to the uncertainty in the charge separation r? c)What is the total uncertainty in our electric field calculation due to the uncertainty in the size of q1 and the uncertainty in the charge separation r?
- Calculate, in Newtons/Coulomb, the strength of the electric field produced by a particle with 0.802nC (nanoCoulombs) of charge, at some point P’ located 4.922m away from the charge. Compute your answer to 2 decimal places. Be careful with unitsCurrent Attempt in Progress The total electric field consists of the vector sum of two parts. One part has a magnitude of E₁ - 1100 N/C and points at an angle 01 = 35° above the +x axis. The other part has a magnitude of E2 - 1700 N/C and points at an angle 02 - 55° above the +x axis. Find the magnitude and direction of the total field. Specify the directional angle relative to the x axis. (a) Number i (b) Number i eTextbook and Media GO Tutorial Save for Later Units Units Attempts: 0 of 6 used Submit Ans