Four protons (shown in red) are at the corners of a square, as shown. Which of the following statements best describes the electric field at the centre of the square? a. The electric field points to the right. b. The electric field points to the left. c. The electric field is zero. d. The electric field points towards the upper-right corner.
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- 3. Four charges are located on the corners of a square of sides a = 4.5 cm as shown inproblem 1. The charges are q1 = +15.0 nC, q2 = -30.0 nC and q3 = +30.0 nC, and q4 = -15.0 nC.a. Determine the electric field in unit vector notation at the center of the square.b. If a particle of mass 1.20 mg having a charge of q5 = -25.0 nC is placed at thecenter of the square, determine the magnitude and direction of its acceleration.35.A2. surface in the figure on the right? The charges of magnitude 1C, 4C, and 5C are inside the surface, the charges of magnitude 2C and 3C are outside of the surface, and each C stands for Coulomb. (a) What is the total electric flux through the dashed +1C -2c -4C / +5C +3C (b) In parts (i), (ii), and (i) below, an insulating sphere of radius R carries a total positive charge O uniformly distributed throughout its volume. (i) numerical constants. Write an expression for the charge density of the sphere in terms of Q and R and any physical or CI
- There are three rules for electric field lines: 1. Electric field lines start at positive charges 2. Electric field lines end at negative charges 3. Electric field lines can never cross Draw the electric field lines for the following three charge distributions: (a) (b) (c) + + + D11. Calculate the x-component of the electric field produced by the charge distribution ‘Q’ at points on the positive x-axis. Calculate the y-component of the electric field produced by the charge distribution ‘Q’ at points on the positive x-axis. Calculate the x-component of the force that the charge distribution ‘Q’ exerts on ‘q’. Calculate the y-component of the force that the charge distribution ‘Q’ exerts on ‘q’. Please answer all in terms of variables q,Q,x,y,a and constant k.2. Two point charges are placed on XY plane such that +2C charge at the origin and -4C charge on the X axis at X= 4 m. Label electric field due to each charge on the y axis at y= -3 m with arrowheads as electric field due to +2C as E1 and electric field due to - 4C as E2. Label the direction of net electric field as E with another arrowhead.
- 1. A drop of oil (m = 8.000 × 10 7g) with excess negative charge is suspended between two horizontal charged plates by an electric field of magnitude 1.960 × 108 N/C. The plate spacing is 25.00 cm. (a) What is the direction of the electric force acting on the drop of oil? (Circle one.) Unable to be determined Up Down Left Right (b) What is the direction of the electric field acting on the drop of oil? (Circle one.) Left Right Unable to be determined Up Down (c) Choose the sign of the charge on each plate. (Circle one of each.) Upper plate: Positive Negative Unable to be determined Unable to be determined Lower plate: Positive Negative (d) Find the amount of charge on the drop of oil. (e) Determine the number of electrons stuck to the drop of oil. (f) Determine the voltage across the plates. Which plate is at a higher potential?24. Two point charges are secured in place as shown in the figure. The point P is indicated by the dot to the right of both charges. -1.5 nC 1.5 nC 1.2 cm 1.2 cm (a) What is the magnitude of the total electric field at point P?7. as Three parallel infinite planes of charge have surface charge densities of -n, n and n shown in the figure. Find the magnitude and direction of the electric field in regions 1, 2, 3 and 4. - in - η + - n 3 2