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- A cube has sides of length Z-0.350 m. It is placed with one corner at the origin as shown in (Eigure 1). The electric field is not uniform but is given by E-(-5.25 N/(C-m))zi+(223 N/(C-m))sk Figure (left side) L Se (front) L S₂ (top) L 1 of 1 S, (back) -S, (right side) S (bottom) Part A Find the electric flux through each of the six cube faces S1, S2, S3, S4, Ss, and Se.. Enter your answers in newtons per coulomb times meter squared separated by commas. IVE ΑΣΦ Submit Part B q= Find the total electric charge inside the cube. Express your answer in coulombs. 15. ΑΣΦΑ Submit Request Answer Provide Feedback 4 . Request Answer ? C (N/C)-m² Next >2/(2a) A spherically symmetric charge distribution has density p(r) = Q- 4Ta2r where a is a constant with units of length. (a) Show that the total charge is Q (b) Find the radial component of the electric field, as a function of rTwo non-conducting solid spheres of radii R and 2R, having uniform volume charge densities P, and p, respectively, touch each other. The net electric field at a distance 2R from the center of the smaller sphere, along the line joining the centers of the spheres, is zero. The ratio p,/p, can be 32 32 (b) 25 (d) 4 -4 25
- 20 15 ap A conducting solid sphere of radius R and net charge Q₁+6Q is concentric with a thin conducting spherical shell of radius a as shown in the figure. If the charge on the shell is Q₂-2Q, then the magnitude of the electric field at point "A" outside at 1-2a is: 回五〇 50 f6 D & 67 f7 f8 7 1. ( hp ( f9 8 8 f10 ) 9 9 9] f11 95°F ^ @ f12 ? + Conducting thin shell with net charge Q₂ PARIC scroll num Ik A Active WindoConducting sphere Go Settings to actwith net charge Q₁ HA X r=2a 12:07 PM 7/2/2022 EliteBook 8460p pause break insertA hollow spherical shell with inner radius a" and outer radius b carries a charge density P(r) = in CAREER ENDEAVOUR the region asrsb. The electric field in the region akb [H.C.U.-2014] 1r-a; 1 b-a; 1 r-b (d) (a) 47 E0 (b) E, r8) In Fig. 23-56, a nonconducting spherical shell of inner radius a= 2 cm and outer radius b= 2.4 cm has (within its thickness) a positive uniform volume charge density p = 2.5nC/m³. In addition, a small ball of charge q = +4.5 nC is located at that center. What are the magnitude and direction of the electric field at radial distances (a) r = 1 cm, (b) r = 2.2 cm and (c) r = 3 cm?
- (10% ) Problem 7: An infinite conducting cylindrical shell of outer radius ri-0.10 m and inner radius r2 0.08 m initially carries a surface charge density 0.15 μC/m2 A thin wire with linear charge density 1.3 μC m s nserted along the shells' axis. The shell and the wire do not touch and these is no charge exchanged between them Banchi, Stephen - banchis3@students.rowan.edu @ theexpertta.com - tracking id: 2N74-2F-82-4A-BAAB-13083. In accordance with Expert TA's Terms of Service. copying this information to any solutions sharing website is strictly forbidden. Doing so may result in termination of your Expert TA Account. -a33% Part (a) What is the new surface charge density, in microcoulombs per square meter, on the inner surface of the cylindrical shell? -là 33% Part (b) What is the new surface charge density, in microcoulombs per square meter, on the outer surface of the cylindrical shell? 33% Part (c) Enter an expression for the magnitude of the electric field outside the cylinder (r…Q1) given the spherical surfaces of (r=1 m and r=5 m), curry charge densities of (-20 nC/m² and 30 nC/m³) respectively, find (i) D at r=2.5 m (ii) The total flux leaving the outer surface (r=5).3) The electric flux density D inside a dielectric sphere of radius a centered at the origin is given by D = Rp,R [/m²] where po is a constant. Find the total charge inside the sphere.
- 2) A thick, insulating spherical shell with an inner radius a and an outer radius b has a nonuniform volume charge density given by p(r) = C/r3, where C is a positive known constant; see the figure. (a) What is the total charge Q in the shell? (b) Determine the value of the electric field for r s a, a srsb, and r > b. %3D 17:56 15.00 20 21°C Çok bulutlu amak için buraya yazınQUESTION 4 Find the acceleration in Pm/s2 (1P=1015) for the electron in problem 22.48.a. using a charge density of a = 9.98 µC/m²(iv)