Two thin parallel conducting plates are placed 4.2 µm apart. Each plate is 4.2 cm on a side; one plate carries a net charge of 9.2 µC, and the other plate carries a net charge of −9.2 µC. What is the charge density (in C/m2) on the inside surface of each plate? (Enter the magnitude.) _____ C/m2 What is the electric field (in N/C) between the plates? (Enter the magnitude.) _____ N/C
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- A solid metal sphere of radius 2.50m carries a total charge of -5.10 с. Part A What is the magnitude of the electric fiald at a distance from the sphere's center of 0.300 m ? |E₁|= Submit Part B |E₂|= Submit What is the magnitude of the electric field at a distance from the sphere's center of 2.40 m ? Part C Es= Submit Part D Templates Symbols Undo rado Reset keyboard shortcurs help N Request Answer E4= What is the magnitude of the electric field at a distance from the sphere's center of 2.55 m ? Templates Symbols Undo redo Reset keyboard shortcuts help Submit Temptates Symbore undo rego Peser keyboard shortcurs help Request Answer Request Answer N/C What is the magnitude of the electric fiald at a distance from the sphere's center of 8.00 m 2 Templates Symfois Undo rego Pes keyboard shortcuts Help N/C Request Answer N/C N/CA small piece of foam has a mass of 3.56 g and a charge of -17.8 µC. It levitates, motionless, when placed in a uniform electric field perpendicular to the ground. What is the magnitude of the electric field (in N/C)? N/C What is the direction of the electric field? upward downward east westThe electric flux through the surface shown in the figure is 17 Nm^2/C. What is the electric field strength? Express your answer to two significant figures and include the appropriate units
- A thin, square, conducting plate 49.0 cm on a side lies in the xy plane. A total charge of 3.70 x 10-8 C is placed on the plate. You may assume the charge density is uniform. (a) Find the charge density on each face of the plate. C/m² (b) Find the electric field just above the plate. magnitude N/C direction -Select--- ✓ (c) Find the electric field just below the plate. magnitude N/C direction -Select--- ✓A 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/cWhat 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 2
- What is the magnitude of the electric field 15 mm from the center? Give the numerical value when calculated in units of N/C.I need help with part b, please! Point charges of 30.0 µC and 45.0 µC are placed 0.650 m apart. (a) At what point (in m) along the line between them is the electric field zero? ANSWER: 0.292 m away from the 30.0 µC charge (b) What (in N/C) is the electric field halfway between them? (Enter the magnitude.) ______N/CAn infinitely long object consists of an inner cylinder of radius a which has a uniform positive volume charge density p > 0 and a concentric thin cylinder of radius b which has a uniform negative surface charge density o0 Figure 7: A cross-sectional view of two cylinders c) Calculate the electric field for r > b. b 0 <0 d) Calculate the electric potential difference for rA circular surface with a radius of 0.071 m is exposed to a uniform electric field of magnitude 1.47 x 104 N/C. The electric flux through the surface is 64 N-m2/C. What is the angle between the direction of the electric field and the normal to the surface? Number i eTextbook and Media UnitsNccAn irregular neutral conductor has a hollow cavity inside of it and is insulated from its surroundings. An excess charge of 18.0 nCnC is sprayed onto this conductor. 1.Find the charge on the inner surface of the conductor.Express your answer in nanocoulombs. 2.Find the charge on the outer surface of the conductor.Express your answer in nanocoulombs. 3.Without touching the conductor, a charge of -15.0 nCnC is inserted into the cavity through a small hole in the conductor. Find the charge on the inner surface of the conductor in this case.Express your answer in nanocoulombs. 4.Find the charge on the outer surface of the conductor in this case.Express your answer in nanocoulombs.SEE MORE QUESTIONS