For the first two questions below, use these values for the charges: 91-110 nC, q2 = +220 nC, 93 = -330 nC, and 94 = +440 nC. 1. 2. How far from 92 would you have to place q4 to create a situation where q4 experienced an electric force of 10 N? In Figure P2 to the right, there are three charges held in place. (a) Draw a free body diagram for the charge at the origin showing the size and direction of the elec- tric forces it experiences due to the other two charges. (b) What is the magnitude and direction of the net force on the charge at the origin? y (mm) 20 15 55 10 92 B5 92 935 10 15 20 Figure P2 ib 3 x (mm)
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- What is the magnitude of the net electric force on charge A in the figure (Figure 1)? Assume that q_1 = 1.7 nC and q_2 = 4.4 nC. Express your answer to two significant figures and include the appropriate units.Imagine you have four identical charge q, placed on the corners of a square. If q = 6.49 nC, then the side of the square is s = 19.22 cm, calculate the net electric force acting on the charge at the upper right corner. NOTE: Final answer in FIVE decimal places. Then, state the SI unit of the variable being sought off. Add your answerConsider the following charge configurations below. Here q, = 5 µC, q2 = 5 µC, and q3 = 10 µC. The distance is a = 1 mm. Calculate the force on 93. You should calculate the force component along x and y directions). Present the results in terms of a force vector. a
- Red blood cells can often be charged. Consider two red blood cells with the following charges: -17.6 pc and +49.8 pC. The red blood cells are 3.31 cm apart. (1 pC = 1 × 10-12 C.) ..(a)..What.is.the magnitude of the force on each red blood cell? Enter a number. alculate the force of a charged particle on another charged particle? N Are the red blood cells attracted or repulsed by each other? attracted repulsed (b) The red blood cells come into contact with each other and then are separated by 3.31 cm. What magnitude of force does each of the red blood cells now experience? What is the net charge of the system? Assuming the cells are identical, how much charge will each have after contact? N Are the red blood cells attracted or repulsed by each other? attracted repulsedDUE IN 30 MINUTES. Please Answer it in written GRESA format (Given, Required, Equation, Solution, and Answer). Thank you! May I request for the solution and answer to be written on paper? Three charges line vertically respectively 41C, -51C, -26C. q1and q2 is separated by 31um while q2 and q3 is separated by 52nm. What is magnitude and direction of the net force experience by q3?Spheres A and B have the same initial positive charge The magnitude of the repulsive electric force between the two spheres is 14.4 N when separated by a distance of 0.03 m. (a) Find the initial charge Express your answer in micro. (b) The spheres are then allowed to touch each other and then separated. Find the electric force between them if the radius of sphere A is three times that of sphere B. Please include detailed solution. I will attach the reference formulas that we use. The value of k is 8.99 x 10^9, not rounded off to 9. Thank you!
- Three charges, g1=002- and g3=+q, are at the vertices of an equilateral triangle, as shown in the figure.(Figure 1) Figure 1 of 1 ▾ Part B Submit Largest Part C Submit Telden vannakken dat 9= 1 2 3 Give the direction angle, &, of the net electric force experienced by charge 1. Note that is measured counterclockwise from the positive axis. Express your answer as an integer. - Part D Request Answer ()=3 Repeat part B for charge 2. Express your answer as an integer. Request Answer Submit Request Answer Smallest Repeat part B for charge 3. Express your answer as an Integer. degrees degrees ReviewDUE IN 30 MINUTES. Please Answer it in written GRESA format (Given, Required, Equation, Solution, and Answer). Thank you! You have an equilateral triangle and you happen to place three charges 25C, -55C, 57C on each vertex. q2 is placed at the center vertex of the equilateral triangle whose sides are equal to 41fm. What is the net force experience by q2 due to other two charges?A positive charge q is fixed at point (−4, 3) and a negative charge -q is fixed at point (-4,0). Determine the net electric force Fnet acting on a negative test charge -Q at the origin (0, 0) in terms of the given quantities and physical constants, including the permittivity of free space Eo. Express the force using ij unit vector notation. Enter precise fractions rather than entering their approximate numerical values. F net = = 4- 3- 2- 1- -1- -2- -3- y 2 4
- Two charges q1 = +2.27 μC and q2 = +8.2 μC are separated by a distance of 19.49 cm. Point P is locatedalong the line segment joining the two charges. How far is P (in cm) from q1, if the magnitude of the electricfield at P due to the two charges is equal to zero? Express your answers accurate to two decimal places.Draw a sketch of the problem and label appropriately.Three positive particles of equal charge, Q = 6.8 µC , are located at the corners of an equilateral triangle of side 15.0 cm. (Figure 1) Part A Calculate the magnitude of the net force on each particle due to the other two. Express your answer to two significant figures and include the appropriate units. HA ? F = Value Units Submit Request Answer Part B Choose the direction of the force exerted on the upper particle. left up Figure 1 of 1 right down Submit Request Answer Provide Feedback 15.0 cm Q. ооо О 15.0 cm 15.0 cmThree point charges are arranged in a horizontal line as shown below. Find the electric forces (in units of kQ2/R2) on the charges given the following: Q1 = -27 Q, Q2 = 80 Q, Q3 = 147 Q, r1 = 3 R, and r2 = 4 R. What is the net force on charge Q1? What is the net force on charge Q2? What is the net force on charge Q3? What is the sum of the forces on all three charges?