A total electric charge of 4.50 nC is distributed uniformly over the surface of a metal sphere with a radius of 26-0 cm. The potential is zero at a point at infinity IMER Find the value of the potential at 600 con from the center of the sphere V= Submit Part B ΜΕ ΑΣΦ 4 Request Answer VAZ ? Find the value of the potential at 26 0 cas from the center of the sphere 4 V
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- The hall of electricity at Boston museum of science contains a large van-degraff gunerator a device that builds up charge on a metal sphere. A Metal sphere has radius, r=2.30m devalops a charge of 640 micro coloumb consider this to be single isolaled sphere. Find Potential of its surface. The work neded to bring a proton from infinity to sphere surface, the potential difference between the sphere surface and a point 2 r from is centre.1) Assume that the electric potential field in a certain region is: V(x,y,z) = |200 y, where y is the distance along the y-axis. a) Compute the electric field in this region (remember that the electric field is a vector). b) What charge distribution could have created such a field? c) What potential difference will a proton move through while moving from V(Onm,10nm,0nm) to V(10nm,0nm,0nm)? Will it speed up or slow down?What is the charge on each capacitor in the figure, if AV = 9.0 V ?(Figure 1) Enter your answers numerically separated by commas. Πν ΑΣφ Q1, Q2, Q3 = µC Submit Request Answer Part B What is the potential difference across each capacitor in the figure? Enter your answers numerically separated by commas. nνα ΑΣφ ? AV, AV2, AV; = V Submit Request Answer Provide Feedback ( C,=4 µF Δν C,+5 µF C3 +6 µF
- Find the potential at points P₁, P2, P3, and P4 in the diagram due to the two given charges. PA 4 + +5 mC -4 cm Hint P₁ Figure Description a. Potential at P₁ = b. Potential at P₂ c. Potential at P3 = d. Potential at P₁ = = T 3 cm 2 cm- P31 -2 cm 3 cm 4 cm P2 V V V V 4 -10 MC (Yes, these numbers are quite large because even one millicoulomb is quite a large amount of charge. Use the "E" notation to enter your answers in scientific notation, if necessary, e.g. "3.14E12" for 3.14 × 10¹².)There is a non contuctive thin spherical shell with radius r=20 cm. It Carries a uniformly distributed + charge of q=1.5nC. The electric potential at point P, located at distance D=30cm from the sphere surface is equal to what? (The following have units V) a. 27 b. 45 c.54 d. 67 e. 150I Review A 13.0 nC charge is at x = Ocm and a -1.4 nC charge is at = 3.0 cm Part A At what point or points on the a-axis is the electric potential zero? Express your answer in centimeters. If there is more than one answer, give each answer separated by a comma. Vα ΑΣφ ? x0 = cm Submit Request Answer
- For the following electric field: E(x,y) = (x² + y²)î + 2xyŷ Calculate the potential in the xy plane. Assume the potential at the origin equals to zero, meaning (0,0) = 0. Select one: a. 4(x,y) = 3 -2xy2 ○ b. x(x, y) = - - xy c. y(x, y): == -x³-xy² ○ d. 2:3 (x, y): = - +xy² 3 e. (x, y) = x3 + xy² ○ f. (x, y): - 3 xy2 ×A uniformly charged insulating rod of length 12.0 cm is bent into the shape of a semicircle as shown in the figure below. The rod has a total charge of -9.00 μC. Find the electric potential at O, the center of the semicircle. x All the charge is equidistant from the center. Would the potential change if we gathered all of the charge into a single point at this same distance? MV ⓇIf the potential Vof an array of charges versus the distance from the charges is as shown in graph 1, which graph shows the electric field E as a function of distance r? V E (1) (2) (3) E E (4) (5) (6) O 3 O 4 2.
- See attached image for picture that accompanies the problem. Three point charges q1 = 65 nC, q2 = -130 nC, and q3 = 195 nCare arranged at the corners of a square of side a = 10.0 cm. Whatis the potential at the 4th corner, point A, assuming V = 0 at r = ∞?please show full solutionNeeds Complete typed solution with 100 % accuracy.