Calculate the electric field, E, at the origin for the three scenarios given. The magnitude 4περ of all charges is 3 C and the charges form squares with each side 1-m long. k = 8.99 x 10°Nm²/C².
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- In (Figure 1), take q1 = 62 µC, q2 = -32 µC, and g- 12 μC. Figure у (m) 2- O 43 10 92 x (m) 3 2 Find the components of the electric force on q3. Enter your answers in newtons to two significant figures separated by a comma. ΑΣφ ? F3z, F3y = NCalculate the electric field, E, at the origin for the three scenarios given. The magnitude of all charges is 3 C and the charges form squares with each side 1-m long. k = 4псо 8.99 x 10°Nm²/C².An α - particle has mass of m = 6.64 x 10-27 kg and charge q = +2e (e = 1.60 x 10-19 C). Find the magnitude of the electric repulsion between two α - particle at 4.0 cm. Write your answer in decimal with 2 - significant figure. No unit required.
- Part 1: What is the magnitude of the net electric fieldat the position of the charge at the origin?Answer in units of N/C. Part 2: What is the direction of the net electric field(as an angle between −180◦and +180◦ measured from the positive x-axis, with counterclockwise positive).Answer in units of ◦.Use the following constants if necessary. Coulomb constant, k = 8.987 × 10º N · m² /C². Vacuum permitivity, €o = 8.854 × 10¬12 Permeability of vacuum, µo = 12.566370614356 × 10–7 H/m. Magnitude of the Charge of one electron, e = -1.60217662 × 10¬19 C. Mass of one electron, me = 9.10938356 ×x 10-31 kg. Unless specified otherwise, each symbol carries their usual meaning. For example, µC means micro coulomb F/m. Magnetic 2, Y a Corigin b bThe electric field strength at a distance of 2.00 cm from a 2.1 x 10-5 C point charge, expressed in scientific notation, is a.bc x 10dN/C. What are The values of a,b,c and d?
- Charge q=1.6 µC is placed in the electric field with x component Ex=-0.064 MN/C. What is the x-component of the electric force exerted on the charge? Provide your answer in newtons, rounded to three significant digits.Charges q1 and q2 are located on the corners of a rectangle. If width w = 60 cm and length I = 80.2 cm find %3D the magnitude of the electric field (in N/C) at P when q1 = 4.08 nC and q2 = 1.43 nC. Round your answer to 1 decimal place.A circular ring of radius 23.0 cm has a continuous charge distribution of -1.4 C/m. How many excess electrons are on the ring? Write your result as multiplicative of 1018. Your result must contain one figure after the decimal point. Maximum of 3% of error is accepted in your answer. One electron charge is -1.6x10 19 C.
- An electric field of E = 34.97 MV/m is desired between two parallel plates, each of area 4.1 cm2 and separated by 14.19 mm of air. What charge must be on each plate? Express your answer in nC. Note: For this problem, use ε0 = 8.8541878x10-12 F/mCharges q1 and q2 are located on the corners of a rectangle. If width w = 60.4 cm and length l = 80.1 cm find the magnitude of the electric field (in N/C) at P when q1 = 4.18 nC and q2 = 1.05 nC. Round your answer to 1 decimal place.An electric field of E = 38.29 MV/m is desired between two parallel plates, each of area 15.41 cm² and separated by 2.16 mm of air. What charge must be on each plate? Express your answer in nC. Note: For this problem, use ɛo = 8.8541878x10-12 F/m