Problem 24.1QQ: Suppose a point charge is located at the center of a spherical surface. The electric field at the... Problem 24.2QQ: If the net flux through a gaussian surface is zero, the following four statements could be true.... Problem 24.1OQ: A cubical gaussian surface surrounds a long, straight, charged filament that passes perpendicularly... Problem 24.2OQ: A coaxial cable consists of a long, straight filament surrounded by a long, coaxial, cylindrical... Problem 24.3OQ: In which of the following contexts ran Gausss law not be readily applied to find the electric field?... Problem 24.4OQ: A particle with charge q is located inside a cubical gaussian surface. No other charges are nearby,... Problem 24.5OQ: Charges of 3.00 nC, -2.00 nC, -7.00 nC, and 1.00 nC are contained inside a rectangular box with... Problem 24.6OQ: A large, metallic, spherical shell has no net charge. It is supported on an insulating stand and has... Problem 24.7OQ: Two solid spheres, both of radius 5 cm. carry identical total charges of 2 C. Sphere A is a good... Problem 24.8OQ: A uniform electric field of 1.00 N/C is set up by a uniform distribution of charge in the xy plane.... Problem 24.9OQ: A solid insulating sphere of radius 5 cm carries electric charge uniformly distributed throughout... Problem 24.10OQ: A cubical gaussian surface is bisected by a large sheet of charge, parallel to its top and bottom... Problem 24.11OQ: Rank the electric fluxes through each gaussian surface shown in Figure OQ24.11 from largest to... Problem 24.1CQ: Consider an electric field that is uniform in direction throughout a certain volume. Can it be... Problem 24.2CQ: A cubical surface surrounds a point charge q Describe what happens to the total flux through the... Problem 24.3CQ: A uniform electric field exists in a region of space containing no charges. What can you conclude... Problem 24.4CQ: If the total charge inside a closed surface is known but the distribution of the charge is... Problem 24.5CQ: Explain why the electric flux through a closed .surface with a given enclosed charge is independent... Problem 24.6CQ: If more electric field lines leave a gaussian surface than enter it, what can you conclude about the... Problem 24.7CQ: A person is placed in a large, hollow, metallic sphere that is insulated from ground, (a) If a large... Problem 24.8CQ: Consider two identical conducting spheres whose surfaces are separated by a small distance. One... Problem 24.9CQ: A common demonstration involves charging a rubber balloon, which is an insulator, by rubbing it on... Problem 24.10CQ: On the basis of the repulsive nature of the force between like charges and the freedom of motion of... Problem 24.11CQ: The Sun is lower in the sky during the winter than it is during the summer. (a) How does this change... Problem 24.1P: A flat surface of area 3.20 m2 is rotated in a uniform electric field of magnitude E = 6.20 105... Problem 24.2P: A vertical electric field of magnitude 2.00 104 N/C exists above the Earths surface on a day when a... Problem 24.3P: A 40.0-cm-diameter circular loop is rotated in a uniform electric field until the position of... Problem 24.4P: Consider a closed triangular box resting within a horizontal electric field of magnitude E = 7.80 X... Problem 24.5P: An electric field of magnitude 3.50 kN/C is applied along the x axis. Calculate the electric flux... Problem 24.6P: A nonuniform electric field is given by the expression E=ayi+bzj+cxk where a, b, and c are... Problem 24.7P: An uncharged, nonconducting, hollow sphere of radius 10.0 cm surrounds a 10.0-C charge located at... Problem 24.8P: Find the net electric flux through the spherical closed surface shown in Figure P23.14. The two... Problem 24.9P: The following charges are located inside a submarine: 5.00 C, -9.00 C, 27.0 C, and -84.0 C. (a)... Problem 24.10P: The electric field everywhere on the surface of a thin, spherical shell of radius 0.750 m is of... Problem 24.11P: Four closed surfaces, S1 through S4 together with the charges 2Q, Q, and Q are sketched in Figure... Problem 24.12P: A charge of 170 C is at the center of a cube of edge 80.0 cm. No other charges are nearby. (a) Find... Problem 24.13P: In the air over a particular region at an altitude of 500 m above the ground, the electric field is... Problem 24.14P: A particle with charge of 12.0 C is placed at the center of a spherical shell of radius 22.0 cm.... Problem 24.15P: (a) Find the net electric flux through the cube shown in Figure P23.17. (b) Can you use Gausss law... Problem 24.16P: (a) A panicle with charge q is located a distance d from an infinite plane. Determine the electric... Problem 24.17P: An infinitely long line charge having a uniform charge per unit length lies a distance d from point... Problem 24.18P: Find the net electric flux through (a) the closed spherical surface in a uniform electric field... Problem 24.19P: A particle with charge Q = 5.00 C is located at the center of a cube of edge L = 0.100 m. In... Problem 24.20P: A particle with charge Q is located at the center of a cube of edge L. In addition, six other... Problem 24.21P: A particle with charge Q is located a small distance immediately above the center of the flat face... Problem 24.22P: Figure P23.23 represents the top view of a cubic gaussian surface in a uniform electric field E... Problem 24.23P: In nuclear fission, a nucleus of uranium-238, which contains 92 protons, can divide into two smaller... Problem 24.24P: The charge per unit length on a long, straight filament is 90.0 C/m. Find the electric field (a)... Problem 24.25P: A 10.0-g piece of Styrofoam carries a net charge of 0.700 C and is suspended in equilibrium above... Problem 24.26P: Determine the magnitude of the electric field at the surface of a lead-208 nucleus, which contains... Problem 24.27P: A large, flat, horizontal sheet of charge has a charge per unit area of 9.00 C/m2. Find the electric... Problem 24.28P: Suppose you fill two rubber balloons with air, suspend both of them from the same point, and let... Problem 24.29P: Consider a thin, spherical shell of radius 14.0 cm with a total charge of 32.0 C distributed... Problem 24.30P: A nonconducting wall carries charge with a uniform density of 8.60 C/cm2. (a) What is the electric... Problem 24.31P: A uniformly charged, straight filament 7.00 m in length has a total positive charge of 2.00 C. An... Problem 24.32P: Assume the magnitude of the electric field on each face of the cube of edge L = 1.00 m in Figure... Problem 24.33P: Consider a long, cylindrical charge distribution of radius R with a uniform charge density . Find... Problem 24.34P: A cylindrical shell of radius 7.00 cm and length 2.40 m has its charge uniformly distributed on its... Problem 24.35P: A solid sphere of radius 40.0 cm has a total positive charge of 26.0 C uniformly distributed... Problem 24.36P: Review. A particle with a charge of 60.0 nC is placed at the center of a nonconducting spherical... Problem 24.37P: A long, straight metal rod has a radius of 5.00 cm and a charge per unit length of 30.0 nC/m. Find... Problem 24.38P: Why is the following situation impossible? A solid copper sphere of radius 15.0 cm is in... Problem 24.39P: A solid metallic sphere of radius a carries total charge Q. No other charges are nearby. The... Problem 24.40P: A positively charged panicle is at a distance R/2 from the center of an uncharged thin, conducting,... Problem 24.41P: A very large, thin, flat plate of aluminum of area A has a total charge Q uniformly distributed over... Problem 24.42P: In a certain region of space, the electric field is E = 6.00 103 x2i, where E is in newtons per... Problem 24.43P: Two identical conducting spheres each having a radius of 0.500 cm are connected by a light,... Problem 24.44P: A square plate of copper with 50.0-cm sides has no net charge and is placed in a region of uniform... Problem 24.45P: A long, straight wire is surrounded by a hollow metal cylinder whose axis coincides with that of the... Problem 24.46P: A thin, square, conducting plate 50.0 cm on a side lies in the xy plane. A total charge of 4.00 108... Problem 24.47P: A solid conducting sphere of radius 2.00 cm has a charge of 8.00 C. A conducting spherical shell of... Problem 24.48AP: Consider a plane surface in a uniform electric field as in Figure P24.48, where d = 15.0 cm and =... Problem 24.49AP: Find the electric flux through the plane surface shown in Figure P23.37 if = 60.0, E = 350 N/C, and... Problem 24.50AP: A hollow, metallic, spherical shell has exterior radius 0.750 m, carries no net charge, and is... Problem 24.51AP: A sphere of radius R = 1.00 m surrounds a particle with charge Q = 50.0 C located at its center as... Problem 24.52AP: A sphere of radius R surrounds a particle with charge Q located at its center as shown in Figure... Problem 24.53AP: A very large conducting plate lying in the xy plane carries a charge per unit area of . A second... Problem 24.54AP: A solid, insulating sphere of radius a has a uniform charge density throughout its volume and a... Problem 24.55AP: A solid insulating sphere of radius a = 5.00 cm carries a net positive charge of Q = 3.00 C... Problem 24.56AP: Two infinite, nonconducting sheets of charge are parallel to each other as shown in Figure P24.56.... Problem 24.57AP: For the configuration shown in Figure P24.45, suppose a = 5.00 cm, b = 20.0 cm, and e = 25.0 cm.... Problem 24.58AP: An insulating solid sphere of radius a has a uniform volume charge density and carries a total... Problem 24.59AP: A uniformly charged spherical shell with positive surface charge density contains a circular hole... Problem 24.60AP: An insulating solid sphere of radius a has a uniform volume charge density and carries a total... Problem 24.61CP: A slab of insulating material has a nonuniform positive charge density = Cx2, where x is measured... Problem 24.62CP Problem 24.63CP: A dosed surface with dimensions a = b= 0.400 111 and c = 0.600 in is located as shown in Figure... Problem 24.64CP: A sphere of radius 2a is made of a nonconducting material that has a uniform volume charge density .... Problem 24.65CP: A spherically symmetric charge distribution has a charge density given by p = a/r; where a is... Problem 24.66CP: A solid insulating sphere of radius R has a nonuniform charge density that varies with r according... Problem 24.67CP: An infinitely long insulating cylinder of radius R has a volume charge density that varies with the... Problem 24.68CP: A particle with charge Q is located on the axis of a circle of radius R at a distance b from the... Problem 24.69CP: Review. A slab of insulating material (infinite in the y and z directions) has a thickness d and a... format_list_bulleted