A charge of 8.0 pC is distributed uniformly on u spherica surfaco (rudius - 2.0 cm), and a second charge of -3.0 pC distributed uniformly on a concentric spherical surfuce (radius - 4.0 cmj. Determine the magnitude of the clectric field 5.0 cm from the center of the two surfaces.
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- Suppose the conducting spherical shell of the Figure carries a charge of Q=78.0nC. A point charge of q=-21.OnC is at the center of the sphere. If a=1.5.0m and b=2.5.0m. Calculate the magnitude of the electric field (unit in N/C) at r=1.20m bA charge q1 is located at x = 0 and has a value of 8.84 nC. Another charge q2 is located at x = 0.56 m and has a value of -4.2 nC. Calculate the angle of the net electric field at a point in space located at y = 0.205 m (right above q1). Important note: The angle must be measured from the nearest x-axis (not necessarily the total angle from the postive x axis). Also remember angles measured counterclockwise are positive and angles measure clockwise are negative. Give your numerical result to three significant figures and in "units" of degrees (measures of angle are not real units). Do not type in anything after the number.Given the two charged particles shown in the figure below, find the electric field at the origin. (Let 91 1049001 + 129100j N/C ↑E = 4 92 2 y (cm) 4 № -2 HP 4 2 91 x (cm) = : -26.00 nC and 92 = 4.00 nC. Express your answer in vector form.)
- Three charged marbles, labeled q,, 9,, and q3, are oriented such that q, is between q, and q3: The charge on q, is -14.6 µC. E field lines 93 (a) q, and q, have what sign of charge? 91 Lpositive 93 positive (b) If the magnitude of the charge on q, is 8.4 µC, what is the magnitude of charge on q3?A thin cylindrical shell of radius R₁ = 4.5 cm is surrounded by a second cylindrical shell of radius R₂ = 9.5 cm, as in ( Figure 1). Both cylinders are 15 m long and the inner one carries a total charge Q₁ = -0.68 nC and the outer one Q2 = +1.56 nC. Figure RR R₂ 1 of 1 Part A If an electron (m = 9.1 x 10-31 kg) escaped from the surface of the inner cylinder with negligible speed, what would be its speed when it reached the outer cylinder? Express your answers with the appropriate units. Ve= Submit Part B Up = Submit Value 0 μÅ If a proton (m = 1.67 x 10-27 kg) revolves in a circular orbit of radius R = 7.0 cm about the axis (i.e., between the cylinders), what must be its speed? Express your answers with the appropriate units. Request Answer Provide Feedback ī μA Value Units Request Answer wwww ? Units ?+8.0 µC and Qc = -2.0 µC. Consider three charges, QA = +6.0 µC, QB Charge Qais placed at point A = (-4.0,0) cm, charge QB is placed distance 4.0 cm from the origin, so that the line connecting it with origin makes an angle 0 = 60° with the negative x axis and charge Qc is at the origin. y QB QA What is the magnitude and direction of the electric force exerted by charges QA and QB on charge Qc?
- E =5N ocet 50N In the above sketch the box is a cube of side 2.0 cm. An electric field of magnitude 50 N/C enters the box and a field of 5.0 N/C exits the box, as shown. Using Gauss's Law find the charge sitting inside the box. You can choose your own i,j,k co- ordinate system.(a) Determine the electric field strength at a point 1.00 cm to the left of the middle charge shown in the figure below. (Enter the magnitude of the electric field only.) Three charges lie along a horizontal line. A 6.00 µC positive charge is on the left. 3.00 cm to its right is a 1.50 µC positive charge. 2.00 cm to the right of the 1.50 µC charge is a −2.00 µC charge. N/C(b) If a charge of −2.10 µC is placed at this point, what are the magnitude and direction of the force on it? magnitude N direction