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- An electric field of magnitude 5.25 x 105 N/C points due north at a certain location. Find the magnitude and direction of the force on a-7.85 μC charge at this location. magnitude N direction -Select-- v Select- north Need Help south east west Show My Work (Optional)?Use the number line problem below to answer the following five questions (parts a through e). C = centi = 102 m= milli = 10 H= micro = 10 n= nano= 10 k= 9.0x10 Nm Qi Qs -3 -2 -1 0 1 2 3 4 5 67 8 9 X(m) A negative charge Q = -40.0 uC is located at a point X = -2.00 m, a positive charge Q2 = 30.0 µC is located at a point X2 = 3.00 m and a negative charge Qs= -20.0 uč is located at a point X = 7.00 m. a. What is the direction of the force (right or left) acting on charge Q,, due to Q,? Your answer b. What is the direction of the force (right or left) acting on charge Q2. due to Qa? Your answer c. Find the magnitude of the electric force between Qz and Q.. Your answer d. Find the magnitude of the electric force between Q; and Q3. Your answer e. Find the magnitude and direction of the net electric force on charge Q2. Your answerThe figure shows a small positive charge some distance away from a larger positive charge. The smaller charge is currently a distance r₁ away from the center of the larger charge. The radius r₁ is twice as far away from the larger charge as 12. Answer the three questions below using three sig figs. S r.
- Set the charge values for q1 and q2 as instructed below, then set the distance between the charges to 3 cm (It does not matter where on the ruler q1 and q2 are just make sure they are either 3cm apart). Determine the magnitude of the force for both charges for each cell in the table. Report the forces to two decimal places.Imagine you have four identical charge q, placed on the corners of a square. If q = 14.77 uC, then the side of the square is s = 13.04 cm, calculate the energy needed to bring these charges from infinity to their current configuration. NOTE: Final answer in THREE decimal places. Then, state the SI unit of the variable being sought off. Add your answer ContinueConsider (3) point charges that are located on a circular arc of radius r = 3.60cm as shown in the figure. Show your work and use significant figures in the final answer. a. Find the electric field at point P.[ Answer: 22,200 N/C]
- Problem Solving: Please show your solutions clearly. 1. Two-equally charged balls are 3cm apart in air and repel each other with a force of 40µN. Compute the charge on each ball.Consider (3) point charges that are located on a circular arc of radius r = 3.60 cm as shown in the figure. Show your work and use significant figures in the final answer. a. Find the electric field at point P.[ Answer: 22,200 N/C ]Copy of Two charges Q1-24uc and Q41uC are placed on a semi-circle with a radius R-14mm as shown in the figure below. How much work must be done to bring a third charge Q-Suc from infinity to point P. Express your answer in units of joules using zero decimal places. Take Coulomb constant as ke9.0x10° N.m2ic2, Please do not forget the minus sign if your answer is negative. R Q1
- Two point charges of -6.1 C and 3.4 µC were placed 15 mm from one another. What is the magnitude and direction of the force produced? Show your work.We have a 5 charge field the grid is 1 meter spacing and the charges are in Micro Coulombs. Ive atached two pictures of my work in solving for the force enacted on charge A for context. If added a 6th charge of (+10) at what location would we add it to make Fa = 0 ? and need to solve the value of DE ? Location Charge(microcoulombs) A (0,0) -20 B (-2,+4) -10 C (-4,+2) +20 D (+1,+3,-5) -10 E (-3,-1,+2) -20Two charges q and 3q are separated by a distance of 1 m. If the force of repulsion between them is 9 mN, what are the values of these charges? Show your worknn