1. Calculate the electric flux for E= 2i + 4 j N/C though an area with the normal of A = 2i + 2j +5 k m². (12 Nm²/C) 2.

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1. Calculate the electric flux for E= 2i + 4 j N/C though an area with the normal of A = 2i + 2j +5 k m². (12 Nm²/C) 2.

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1 Calculate The Electric Flux For E 2i 4 J N C Though An Area With The Normal Of A 2i 2j 5 K M 12 Nm C 2 1
1 Calculate The Electric Flux For E 2i 4 J N C Though An Area With The Normal Of A 2i 2j 5 K M 12 Nm C 2 1 (58.15 KiB) Viewed 58 times
1. Calculate the electric flux for E= 2i + 4 j N/C though an area with the normal of A = 2i + 2j +5 k m². (12 Nm²/C) 2. Calculate the electric flux for E = 6i + 3k N/C though an area with the normal of A = i + 2j +3 km². (15 Nm²/C) 3. Use Gauss' law to derive the E-field a distance r away from a point charge. Be sure to include all steps including a sketch. (See Lecture) 4. Derive the electric field at a distance r from away very long line of positive charge. Be sure to include all steps including a sketch (See Lecture) 5. Charge is distributed uniformly throughout a spherical volume of radius R and total charge Q. Be sure to include all steps including a sketch (See Lecture) a) Write an expression for E inside the sphere (r< R). b) Write an expression for E outside the sphere (r> R).
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