PROBLEM 1 Three charged particles lie on an x axis. Particles 1 and 2 are fixed in place, while particle 3 is free to move. If the net force due to particles 1 and 2 on 3 is zero, and L, = Lp: 2 3 What is the ratio q, / q,? *
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- Charges q1, q2 and q3 are arranged in the x-axis. Charge q3 = 14 nC and is at the origin. Charge q2 = 0.6 nC and is at x = 3 cm. Charge q1 is at x =3. Solve for q1 (magnitude and sign) if the net force on q3 is zero. Express your answer in nC.Charges q1, q2 and q3 are arranged in the x- axis. Charge q3 = 14 nC and is at the origin. Charge q2 = 0.6 nC and is at x = 3 cm. Charge q1 is at x =3. Solve for q1 (magnitude and sign) if the net force on q3 is zero. Express your answer in nC.A positively charged particle with Q - 5 mC is placed between two negatively charged particles with q1-1 mC (left) and q2 - 9 mC (right). The distance between q1 and Q is 5 cm and the distance from Q to q2 is 9 cm. Find: a. the total force acting on the middle particle. b. the total force direction.
- Charges q1, 92 and 93 are arranged in the x-axis. Charge q3 = 14 nC and is at the origin. Charge q2 = 3.8 nC and is at x = 9 cm. Charge q1 is at x = 5 cm. Solve for q1 (magnitude and sign) if the net force on q3 is zero. Express your answer in nC.of hypothetical plane equilateral hexagon has six charged particles on each of its vertices. If Q1 has a charge of 7nC and there is an increasing amount of charge per each vertex by a factor of seven up to Q6, what would A be the net force experienced by Q1? Assume that the charge sign positive starting on Q1. alternates from to negative,Three point charges are fixed as shown in (Figure 1). Take q₁ = 20 μC, q2 = -30 μC, 93 = 40 μC, and d = 9.0 mm. The point charge of 3.6 μC is placed at the center of the triangle. Figure y Ko 0 X 93 91 d 92 ▼ Part A What is the magnitude of the force exerted on the charge at the center of the triangle? Express your answer with the appropriate units. |F|net Submit Part B = 0 = 346 Submit O HÅ Value What is the direction of the force exerted on the charge at the center of the triangle? Express your answer in degrees, measured counterclockwise from the positive x-axis. Request Answer ✔ Correct Previous Answers Units P Pearson Wwwwww ?
- Using the symmetry of the arrangement, determine the direction of the force on negative charge q in the figure below, given that qa 9c = +6.60 µC and qb %3D %3D -6.60 µC. The charge q is located at the center of the square. N NW, „NE SW SE Use the compass rose to specify the direction. NE SE ŚW W NW Submit Answer Tries 0/99 Calculate the magnitude of the force on the charge q, given that the square is 10.8 cm on a side and q . -1.50 μC.(Figure 1) shows five electric charges. Four charges with the magnitude of the charge 2.0 nC form a square with the size a = 2.0 cm. Positive charge with the magnitude of q = 2.0 nC is placed in the center of the square. Figure My Research Fo. -2.0 nC -2.0 nC y a 9 2.0 nC + a + 2.0 nC ▼ What is the magnitude of the force on the 2.0 nC charge in the middle of the figure due to the four other charges? Express your answer with the appropriate units. Fon q = Submit Part B O 0 = HÅ Value Request Answer Units ? What is the direction of the force on the 2.0 nC charge in the middle of the figure due to the four other charges? Express your answer in degrees to two significant figures. 15. ΑΣΦ wwww. 2 Review | Constants | Periodic Table ? counterclockwise from the positive x-axisThree charges are arranged in the xy-plane as shown below. A charge Q is at the point A with (x.y) coordinates (0, a), a charge -20 is at the point B with coordinates (2a, 0) and a charge Q is at point C, which is the origin (0, 0). A. Q B.-20 Find an expression for the force Fc an the charge at C due to the other two charges and hence determine the magnitude |Fcl of the force and the unit vector that specifies the direction of Fc. Enter your results as decmal numbers in the boxes in the expressions below: |Fcl Unit vector in direction of |Fcl: Je].
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