A point charge is surrounded by a Gaussian Sphere, with the charge at the centre. The flux at the surface of a Gaussian sphere of radius (1.4966x10^1) cm is (-1.19x10^3) N.m2/C. What is the electric field in N/C at the surface of this sphere? Assume the flux is perpendicular to the surface of the sphere. You do not need to include a unit vector in your answer, but if the field points into the centre of the sphere, then you must include a negative sign. da E
Q: A charge of 87.6 pC is uniformly distributed on the surface of a thin sheet of insulating material…
A: Given: The charge distributed on surface is q=87.6 pC. The area of insulating material is A=29.2…
Q: A charge of 87.6 pCpC is uniformly distributed on the surface of a thin sheet of insulating material…
A: The charge density of the thin sheet is, σ=Total chargeTotal area=QA…
Q: A solid sphere of radius R has a charge Q distributed in its volume with a charge density p= kr,…
A: We are aware that a solid sphere of radius R has a charge Q dispersed throughout its volume with a…
Q: What is the electric flux through one side of a cube that has a single point charge of -3.7 µC…
A: charge = q = - 3.7 x 10-6 C flux through one side of a cube = ?
Q: An infinitely long cylinder with a radius of 1.0 cm has a charge density that is proportional to the…
A:
Q: A spherical shell of radius 1.50 m contains a single charged particle with q = 24.0 nC at its…
A:
Q: charge Spr The flux at the surface of a Gaussian sphere of radius (5.95x10^1) cm is (3.695x10^3)…
A:
Q: A spherically symmetric charge distribution produces an electric field E = (6250 r2) r N/C (here r…
A: Given:Electric field, E = 6250 r2 r^ N/Cdiameter, d = 34 cm = 0.34 m
Q: A hollow, conducting sphere with an outer radius of 0.260 m and an inner radius of 0.200 m has a…
A:
Q: Suppose that the electric field inside a plastic sphere is the radial field (Evector = Er * rhat,…
A:
Q: A point charge of magnitude qq is at the center of a cube with sides of length L. What is the…
A: The number of field lines passing through a particular area is called Electric Flux. Consider a…
Q: An infinitely long solid cylinder of radius 10 cm has a non-uniform volume charge density given by…
A:
Q: A uniformly charged conducting sphere of 1.5 m diameter has a surface charge density of 6.7 µC/m2.…
A:
Q: L A point charge produces an electric flux of 273 N-m²/C through a Gaussian sphere of radius 22.2 cm…
A:
Q: In the figure a solid sphere of radius a = 3.20 cm is concentric with a spherical conducting shell…
A:
Q: What is the electric flux passing through a Gaussian surface that surrounds a +3.4 microcoulomb…
A: Electric flux due to charge enclosed by a surface.
Q: A spherical insulator with radius R is centered at the origin. The volume charge density p of the…
A: Given,
Q: What is the charge per length of this cylinder? Give the answer in terms of the variables R. p, and…
A:
Q: 1) A sphere of radius R centred at the origin, carries charge density: R p(r,0) = C(R - 2r)sint…
A: Given Data: To find: The total charge Q due to the charge distribution. Electric flux due to the…
Q: A hollow non-conducting spherical shell has inner radius R1 = 9 cm and outer radius R2 = 18 cm. A…
A:
Q: Inside a spherical surface is a 10.6 x10-6C and a -4.4 x10-6 C charge. What is the total electric…
A: q1 = 10.6×10-6 Cq2 = -4.4×10-6 Cε0 = 8.85×10-12 Nm2/C2 Flux is given by ϕ = qε0
Q: Consider the uniform electric field E = (2.5 j + 2.5 k) × 103 N/C. a) Calculate the electric flux…
A: Given: The uniform electric filed E is (2.5 j⏜ + 2.5 k⏜)×103 N/C. The radius of the circular area in…
Q: A hollow sphere has concentric surfaces with an inside a, an outside radius b and is uniformly…
A: We would use Gauss law to solve this question According to the gauss law," the electric flux through…
Q: Three charges of 3.4, 3.1 and -6.5 nC respectively are surrounded by a Gaussian surface in the shape…
A:
Q: A Gaussian surface has the form of a tetrahedron, a four-sided object where all four sides are…
A: We will answer the question using Gauss's law. The details are as follows.
Q: The square surface shown in the figure measures 2.38 cm on each side. It is immersed in a uniform…
A: Here is the step-by-step explanation:Stepe 1: Use formula:We will use the formula, to calculate the…
Q: A point charge causes an electric flux of -750 N m2/ C to pass through a spherical Gaussian surface…
A: Given value--- A point charge causes an electric flux of -750 N m2/ C to pass through a spherical…
Q: A small conducting ball that carries a charge of 30.0 nC is located at the center of an electrically…
A:
Q: Inside a spherical surface is a 5.3 x 106C and a -2.2 x10-6 C charge. What is the total electric…
A:
Q: A shere of radius R = 0.35 m has a volume charge distribution described by: ρ(r) = ρ0 (1− r/R)…
A:
Q: The flux through a closed surface is Φ = (-9.00x10^3) N.m2/C. Calculate the charge in Coulombs…
A:
Step by step
Solved in 2 steps
- A uniformly charged disk of radius R=25 cm carries a total charge of Q=2 μC. R P 1 Find the magnitude of the electric field E created by the disk at the point P located at distance 40 cm from the center of the disk. E = [N/C] 2. What is the direction of the electric field E created by the disk at point P. Direction: 3. Write the expression of the electric filed E created by the disk at point P. Ē =< [N/C] 4. Find the magnitude of the electric field E created by the disk at the point P located at distance 8 m from theA sphere shell of radius R, centered on the origin, has a uniform surface charge density /sigma and no charge in its interior. What is the magnitude of the electric field outside the sphere, at the distance r from the center, where r > R?The electric field everywhere on the surface of a thin, spherical shell of radius 0.700 m is of magnitude 855 N/C and points radially toward the center of the sphere. (a) What is the net charge within the sphere's surface? 4.655e(-8 x nC (b) What is the distribution of the charge inside the spherical shell? O The positive charge has a spherically symmetric charge distribution. O The negative charge has a spherically symmetric charge distribution. O The negative charge has an asymmetric charge distribution. O The positive charge has an asymmetric charge distribution.
- The Electric Field of a Charged Cylinder and a Concentric Cylindrical Shell. A non-conducting cylinder of radius a is charged with charge density p(r) = p.r, where r is the distance from the cylinder axis. The cylinder is placed inside a shell with cylindrical inner and outer radii b and c, respectively. The outer shell is charged with a uniform charge density p(r) = Po. The cylinder and the shell are concentric (see figure). D B b 0 Derive the formulas for the magnitude of the electric field at points A, B, C, and D. Guidance: 1. If required by the formulas, specify Coulomb's force constant through the Vacuum Permittivity, E = 1/4nk instead of Coulomb's onstant, k. 2. Type epso, rhoo, and pi, if the respective symbols Eo,Po, and n, are required.Calculate the absolute value of the electric flux for the following situations (In all case provide your answer in N m2/C): a. A constant electric field of magnitude 300 N/C at a 30 degrees angle with respect to the flat rectangular surface shown in the Figure above. b. A uniform electric field E = (70 i + 90 k) N/C through a 4 cm ×5 cm in the x-y plane. c. A uniform electric field E = (−350 i + 350 j + 350 k) N/C through a disk of radius 3 cm in the x-z plane.A hollow sphere of radius .05m contains a negative charge sitting right at its center. (The sphere itself is not charged.) The electric field everywhere on the surface of the sphere has the magnitude 3.0*10^-4 N/C. Draw the sphere and show the electric field vectors on your drawing. What is the total electric flux through the surface of the sphere?
- A point charge is located at the origin. Centered along the x axis is a cylindrical closed surface of radius 10 cm with one end surface located at x = 2 m and the other end surface located at x = 2.5 m. If the magnitude of the electric flux through the surface at x = 2 m is 4 N . m2 /C, what is the magnitude of the electric flux through the surface at x = 2.5 m? Select one: a. 1.8 N . m2 /C b. 2.56 N . m2 /C c. 1.0 N . m2 /C d. 4.0 N . m2 /C e. 5.0 N . m2 /CA cylinder has a volume of 5.2 cm^3 and a charge density of 6.1 μC/cm^3, and is enclosed in a spherical surface with a radius of 17.5 cm. What is the total charge on the cylinder? What is the total electric flux through the surface of the sphere?A uniformly charged conducting sphere of 1.2 m diameter has a surface charge density of 8.1 µC/m2.(a) What is the net charge on the sphere?(b) What is the total electric flux leaving the surface of the sphere? Show step-by-step calculation. Please Don,t copy.