THERE IS AN ISOLATED POSITIVE POINT CHARGE Q = 1.2 x 10-8 ℃ IN À VACUUM, USING A TEST CHARGE 90 = 6.5x10**C, DETERMINE THE MAGNITUDE OF ELECTRIC FIELD AT A LOCATION 0.10m AWAY.
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- What is the electric field vector at the point where charge q₂ is located due to charges q₁ and q₃? (Hint: q₂ has no effect on the electric field on the point where it is located.)a. -8.640x10⁶ N/C ? - 1.152x10⁷ N/C jb. -1.728x10⁷ N/C ? - 2.304x10⁷ N/C jc. -8.364x10⁷ N/C ? - 2.396x10⁷ N/C jd. -1.296x10⁷ N/C ? - 1.728x10⁷ N/C j What is the electric potential at the point where charge q₂ is located due to charges q₁ and q₃? (Hint: q₂ has no effect on the electric potential on the point where it is located.)a. -180 000 Vb. 360 000 Vc. 0 Vd. 180 000 V What is the electric potential at the point where charge q₃ is located due to charges q₁ and q₂? (Hint: q₃ has no effect on the electric potential on the point where it is located.)a. 0 Vb. 180 000 Vc. 360 000 Vd. -540 000 V1.5 m 2.0 m 1.0 m The electric field in a region is given by E = a/(b + cx)î where a= 100 , b=2.0 , and c=2.0 What is the net charge enclosed by the shaded volume shown above? Yoi answer: O A) -8,8x 10¬10 C O B) -4,4x10-10 C O C) 0 O D) 3,5x10-10 C p E) -1,5x10-10 CWhat is the electric flux through a sphere that has a radius of 1 m and carries a charge of 1µC at its centre? 2.13x105 N.m²/C A) 2.54x105 N.m²/C B) 1.43x105 N.m² /C C) 1.13x105 N.m²/C D) 1.87x105 N.m²/C E)
- 1) This question refers to the charge distribution shown, where three charges tq 9 and + 29 are placed on a ccde of radius 5em, and 9=1.5x10^9 C. a) The net electric field at the center of the circle is the rector surn of the fields from each of the charges. Calculate the magnitude of the net electric Gueld at the center of the circle. b) In electron-volts (ev), calculate the dechic potential energy placed at the center of the circe. +291 -2 +qTwo charges are placed on the x axis, +6.00 μC at the origin and -13.0 μC at x = 10.0 cm. 1) Find the electric field on the x axis at x = 6.00 cm. Enter a positive value if the electric field points in the +x direction and a negative value if the electric field points in the -x direction. (Express your answer to three significant figures.) Submit MN CFind the magnitude of the electric field at 2.5 [m] outside of a sphere with radius 0.1 [m] carrying charge density p -Use numbers when answering, rounding to the hundredths in the format 0.00 -Answer in units of [V/m] = 1 [μC/m³].
- 3. In the following system: q1 = +8.0 µC, q2 = -6.00 µC, q3 = -10.0 µC. q2 6m q1 8m q3 a) Find the force on charge 3 due to charge 1, F13 . b) Find the force on charge 3 due to charge 2, F23 . c) Find the resultant force on charge 3, Fres . and its direction (angle Y)2. Calculate the total electric field (a) at point A and (b) at point B in the given figure due to point Q1 and Q2. A В 30 cm Q1 = + 50 µC 26 cm 26 cm Q2 = - 50 µCFind the magnitude of the electric field at position P(0, 0, (h = 4, 5(m))) as shown in the figure due to the charge density p, = 0.01 * 2, 7(uCoulomb/m2) with the radius b = 7, 2(m) and a = 3,1(m) (e = E0 = 35 10-)? 367 a. y Ps
- A point charge of -4.00 nC is located at (0, 1.00) m. What is the magnitude ofthe electric field due to the point charge at (4.00, -2.00) m?a. 1.15 N/Cb. -0.864 N/Cc. 1.44 N/Cd. -1.15 N/CA spherical volume of radius 2 m is centered at the origin and contains an electric volume charge density of: Pv = 2/(r.sine) (c/m³), What is the total charge contained in the sphere? Select one: O a. 7.895 C O b. 78.95 C C. None of these O d. 0.7895 CFind the electric field at the location of qa in the figure given that qb = qc = qd = +2.00 mC, q = -1.00 nC, and the square is 20.0 cm on a side. a) Calculare the electric field at qa due to q and qd (add the fields due to those two charges together). Give a positive value if the field is in the second quadrant, and negative if it is in the fourth quadrant. b) Now calculate the field due to qb and qc. Add the fields together, remembering that they are vectors. GIve a positive value for 2nd quadrant, negative for 4th.