if the sphere is moved so that its center is at x = +1, find the total charge bounded by a sphere of radius 5cm
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Referring to SP4, if the sphere is moved so that its center is
at x = +1, find the total charge bounded by a sphere of radius
5cm
![50
20
20
иС/ ст
иС/ст
4
10 uC
-3
-1
1
3
sphere of
r = 5cm
-y](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F3a4f0bb4-4708-44d9-8ca3-c6cb0e2ec74e%2Fd6a3e4fa-8a64-44aa-b1fe-54e61068bb57%2Fprljns_processed.png&w=3840&q=75)
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- Please AsapA 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 ?two positive point charges, q1=+16uc and q2=+4uc, are located on the x-axis of a coordinate plane. charge q1 is located at the origin, and charge q2 is 3m to the right. If the sign of charge Q2 was changes (from positive to negative) would there ba a location on the line in between Q1 and Q2 where the net electric field is zero?
- A total amount of positive charge Q is spread onto a thin non-conducting circular annulus of inner radius a and outer radius b. The charge is distributed in a way so that the charge density per unit area is given by ? =??3, where r is the distance from the center of the annulus to any point on it and k is a constant.(a) Find an expression for the total charge Q on the annulus. (b) Find an expression for the potential V at the center of the annulus in term of Q, a and bGiven a non-uniform SURFACE charge density 0= 0• sin 0 cos? p, oo = = constant, 0, oi e spherical coordinate angles: 11. Find the total "Q" placed on a sphere of radius "R" centered on the origin+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?
- Please AsapA +2nC point charge is located in between a +5nC charged flat plate of area 1.2m2 and another point charge of -3nC. The latter is located 6mm to the right of the first (+2nC) point charge, along a line that intersects the plate at 90o. The plate is located 4.3mm from the first, (+2nC) charge. A) What is the total electric force exerted on the +2nC charge? B) What is the total electric force exerted on the -3nC charge? C) What is the total electric field “seen” by the +2nC charge, as generated by the -3nC and +5nC objects? D) What is the total electric field (magnitude and direction) “seen” by the +2nC charge, as generated by the -3nC and +5nC objects? E) What is the electric field generated by flat plate (magnitude and direction), a distance 0.5mm away from it? F) What is the total electric field (magnitude and direction) generated by all three charges, at a location 2mm to the right of the -3nC charge?Given a non-uniform SURFACE charge density o= ko r z cos q, ko constant, r, o,z are cylindrical coordinate variables 12. Find the total "Q" placed on a closed cylinder of radius "R" and length "L" centered on the origin with one base in the x-y plane, along the positive z-axis.
- An arch of radius r = R has the charge of Q between ≤ ≤of nonuniform linear charge Ꮎ density given by λ = sin(0). Which of the followings is the constant ? a) b) d) R 6Q (2-√2)R √2R 8Q (√2-1)RAn arc of charge is in the first quadrant. It has a charge of 0.098nG uniformly distributed along its length. The radius of the arc is 17.1cm. Determine the magnitude of the electric field vector at the point (0,0) in