2) A cone is resting on a tabletop as shown in the figure with its face horizontal. A uniform electric field of magnitude 4550 N/C points vertically upward. How much electric flux passes through the sloping side surface area of the cone? A 18.5 cm I 4.22 cm I -Sloping side surface Face
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- Figure a -10 nC b 1 of 1 Part A What is the electric field at point 1 in (Figure 1)? Assume that a = 3.0 cm and b = 4.0 cm. Enter the x and y components of the electric field in newtons per coulomb separated by a comma. ▸ View Available Hint(s) Elx, Ely = Submit Part B E2x, E2y = Submit What is the electric field at point 2 in (Figure 1)? Enter the x and y components of the electric field in newtons per coulomb separated by a comma. ▸ View Available Hint(s) Part C H He E3x, E3y = Submit H He Be < Return to Assignment ?? What is the electric field at point 3 in (Figure 1)? Enter the and y components of the electric field in newtons per coulomb separated by a comma. ▸ View Available Hint(s) 6 4? Provide Feedback @= ?? N/C P Pearson N/C N/C3. Charge is distributed uniformly over the plane y = -5 cm with a surface charge density of 1/36 nC/m². Find the Electric field intensity. A Find the charge in th e volumo dofined hy 0A pyramid has a square base with an area of 7.50 m² and a height of 3.5 m. Its walls are four isosceles triangles. The pyramid is in a uniform electric field of 950 N/C pointing downward (see figure below). What is the electric flux through all four walls combined? N-m²/c B hThere is a long insulating cylinder of radius R that has a uniform charge density through- out of p. a) Find the electric field at a distance r R c) Sketch the electric field as a function of r.Calculate the magnitude of the flux of a constant electric field of 5.00 N/C tilted 60° from the positive z-direction through a rectangle with area 4.00 m² in the xy-plane. O 0 O 10.0 Nm²/C O 20.0 N-m2/C O more information needed Need Help? Read ItA flat surface of area 3.10 m² is rotated in a uniform electric field of magnitude E = 6.65 x 105 N/C. (a) Determine the electric flux through this area when the electric field is perpendicular to the surface. N. m²/c (b) Determine the electric flux through this area when the electric field is parallel to the surface. N. m²/cA spherical shell of radius 1.40 m contains a single charged particle with q = 38.0 nC at its center. (a) What is the total electric flux through the surface of the shell? N. m²/c (b) What is the total electric flux through any hemispherical portion of the shell's surface? N. m²/cA 39.0-cm-diameter circular loop is rotated in a uniform electric field until the position of maximum electric flux is found. The flux in this position is measured to be 5.42 x 105 Nm²/C. What is the magnitude of the electric field? MN/C Need Help? Read It Master itThe figure(Figure 1) shows four sides of a 2.5cm×2.5cm×2.5cm cube. What is the electric fluxe Φ through sides 1, 2 , 3, and 4? What is the net flux through these four sides? Express your answer using two significant figures.What is the net electric flux through each of the four surfaces shown in the figure below? (Assume Q₁ = 30.0 μC and Q₂ = 60.0 μC.) $E,1 = 0 ΦΕ,2 ⓇE,3 ΦΕ,4 = = = ✓ N.m²/C N. m²/c Nm²/C Nm²/C +9₁ -2₁ l₂ 3 2At each point on the surface of the cube shown in the figure the electric field is parallel to the z axis. The length of each edge of the - 49k N/C and on the bottom face it is E = + 24k N/C . cube is 3.5 m. On the top face of the cube the electric field Ễ Determine the net charge contained within the cube. = - x y Number i -2.70E3 Units nCA uniform electric field of magnitude 2.7 x 104 N/C is perpendicular to a square sheet with sides 2.5 m long. What is the electric flux through the sheet? Hint Electric flux is PE Question Help: Message instructor Submit Question N.m²/C.SEE MORE QUESTIONS