4) Consider a uniformly charged thin rod of length 3L and charge (+Q) lying along the x-axis as shown in the figure. Calculate the electric field at the point P a distance of L from the right end of the rod. y L 2L L +Q P
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Q: A uniformly charged, straight filament 4.90 m in length has a total positive charge of 2.00 µC. An…
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Q: A rod 12.0 cm long is uniformly charged and has a total charge of -24.0 μC. Determine the magnitude…
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Q: Question 1 L + + + + + + + + + P 8.10 nC of charge is uniformly distributed along a thin rod of…
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- A long silver rod of radius 5 cm has a charge of -4 µC/cm on its surface. (a) Find the electric field (in N/C in the f direction) at a point 15 cm from the center of the rod (an outside point). X N/C î5) A long, thin rod parallel to the y-axis is located at x = -1 cm and carries a uniform positive charge density λ = 1 nC/m. A second long, thin rod parallel to the z-axis is located at x = +1 cm and carries a uniform negative charge density λ = - 1 nC/m. What is the electric field at the origin?The entire y axis is covered with a uniform linear charge density 3.6 nC/m. Determine the magnitude of the electric field on the x axis at x=9.6m
- Needs complete typed solution with 100 % accuracy.Suppose the conducting spherical shell in the figure below carries a charge of 2.80 nC and that a charge of -2.40 nC is at the center of the sphere. If a = 1.80 m and b = 2.30 m, find the electric field at the following. XAX magnitude direction + 7 b a (a) r= 1.50 m magnitude 9.6 direction radially inward (b) r2.20 m 0 (c) r= 2.50 m magnitude 0.576 direction Ⓡ radially outward N/C ✔ N/C The magnitude is zero. ✔ v ✔ N/C (d) What is the charge distribution on the sphere? inner surface outer surface x Your response differs from the correct answer by more than 100 %. nC nC DShow that for a charged circular ring of radius a and total charge Q, the electric field anywhere inside the plane of the ring would be zero if the electric field was inversely proportional to r not r2. Your answer is partly verbal and graphical.