nconducting material. Figure (a) shows a cross section. Figure (b) gives the net flux through a Gaussian sphere centered cle, as a function of the radius r of the sphere. The scale of the vertical axis is set by @,- 3.0x 105 N-m²/C. (a) What is the he central particle? What are the net charges of (b) shell A and (c) shell B? 1.06 -3.19E12 5.31E12 3) Units pC (10²° N+m²/C) Units UC Units PC 4₁ (6)
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- PlzAn infinitely long wire with charge per unit length 2 passes through the center of a cube as shown. Assume the length of the edge of the cube is L. (a) Sketch the electrical field lines from the charged wire. (b) Find the flux coming out of each surface of the cube. Fig. 1A sphere centered at the origin has a radius 0.200 m. A -4.20-µC charge is on the x-axis at x = 0.500 m. The net flux throught the sphere is 400 N·m2 / C. Calculate the total charge inside the sphere.
- Find the ratio of q/Q for the E-field to be zero at adistance of z = 3.52R for the charge distributionand geometry of problem #30 of the text. a isthe charge on the LARGER ring. Q is the chargeon the SMALLER ring.A long straight wire has fixed negative charge with a linear charge density of magnitude 4.8 nC/m. The wire is to be enclosed by a coaxial, thin-walled, nonconducting cylindrical shell of radius 1.2 cm. The shell is to have positive charge on its outside surface with a surface charge densitys that makes the net external electric field is zero. Calculate s.XUJI MA T B 2. A positive charge is located at the center of a cube.eq leups sendi otni bebloeg to Are the intersections of the field lines with a side of the box uniformly distributed across that side? Explain. ob o bobaan 918 210130 OVIM WOH 210SY BOTB A Bohus sn) AA madi ladal brs ISTRAL Wsiv obie od no od dor12 EM HW-88 Electric field and flux a. b. We can consider the left side of the box as composed of many small surface elements of equal area. i. Is the number of field lines through surface element A greater than, less than, or equal to VETERINDE and sostie sa the number of field lines through surface element B? Explain. REOS 0 que p vode 1310912 posts or to brida qol od rignonds xuftodel svoda nielque bri) sibbim edt deuotó xuft sdt of loups 10 anizz ii. Is the flux through surface element A greater than, less than, or equal to the flux through surface element B? Explain. c. Consider the surface element A itself as composed of many even smaller pieces. Would the number of field…
- Handwritten or typed, vll upvote, it is urgent plzNeeds Complete typed solution with 100 % accuracy.The charge center of athundercloud, drifting 3.0 km above the earth’s surface, contains 20 Cof negative charge. Assuming the charge center has a radius of 1.0 km,and modeling the charge center and the earth’s surface as parallel plates,calculate: the average strength of the electric field between cloud and ground
- aneli 王+ ++ ++d m A flat slab of nonconducting material has thickness 2d, which is small compared to Lar its height and breadth. As shown in the figure, the x axis is defined to be along the drection of the slab's thickness with the origin at the center of the slab. This slab region the charge density p(x) = -Po in carries volume a -dsx<0 and p(x) = +P, in the region 0Problem 1: A spherical conductor is known to have a radius and a total charge of 10 cm and 20uC. If points A and B are 15 cm and 5 cm from the center of the conductor, respectively. If a test charge, q = 25mC, is to be moved from A to B, determine the following: What isThe work done in moving the test charge;Insulator Conductor 9. A solid, insulating sphere of radius a shown in figure has a total charge -2Q . Concentric with this sphere is a conducting hollow sphere with a total charge 3Q whose inner and outer radii are b and c, as shown in Figure. a) Using Gauss Law find the magnitude of electrical field in the region r>c. The Gaussian surfaces used should be shown on the figure. The steps followed while applying Gauss's law should be written in detail. b) Write the magnitude of the electric field in the region bSEE MORE QUESTIONSRecommended textbooks for youCollege PhysicsPhysicsISBN:9781305952300Author:Raymond A. Serway, Chris VuillePublisher:Cengage LearningUniversity Physics (14th Edition)PhysicsISBN:9780133969290Author:Hugh D. Young, Roger A. FreedmanPublisher:PEARSONIntroduction To Quantum MechanicsPhysicsISBN:9781107189638Author:Griffiths, David J., Schroeter, Darrell F.Publisher:Cambridge University PressPhysics for Scientists and EngineersPhysicsISBN:9781337553278Author:Raymond A. Serway, John W. JewettPublisher:Cengage LearningLecture- Tutorials for Introductory AstronomyPhysicsISBN:9780321820464Author:Edward E. Prather, Tim P. Slater, Jeff P. Adams, Gina BrissendenPublisher:Addison-WesleyCollege Physics: A Strategic Approach (4th Editio…PhysicsISBN:9780134609034Author:Randall D. Knight (Professor Emeritus), Brian Jones, Stuart FieldPublisher:PEARSONCollege PhysicsPhysicsISBN:9781305952300Author:Raymond A. Serway, Chris VuillePublisher:Cengage LearningUniversity Physics (14th Edition)PhysicsISBN:9780133969290Author:Hugh D. Young, Roger A. FreedmanPublisher:PEARSONIntroduction To Quantum MechanicsPhysicsISBN:9781107189638Author:Griffiths, David J., Schroeter, Darrell F.Publisher:Cambridge University PressPhysics for Scientists and EngineersPhysicsISBN:9781337553278Author:Raymond A. Serway, John W. JewettPublisher:Cengage LearningLecture- Tutorials for Introductory AstronomyPhysicsISBN:9780321820464Author:Edward E. Prather, Tim P. Slater, Jeff P. Adams, Gina BrissendenPublisher:Addison-WesleyCollege Physics: A Strategic Approach (4th Editio…PhysicsISBN:9780134609034Author:Randall D. Knight (Professor Emeritus), Brian Jones, Stuart FieldPublisher:PEARSON