What is the force on the charge in newtons located at x = +8.00 cm in part (a) of the figure below given that q = 5.00 μC? (The positive direction is to the right.) N (a) (b) 0 -29 +9 5 5 +9 -29 +3q 10 10 +q x (cm) x (cm) -9
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- A charge +q is located at 3.000 cm, a second charge -2q is located at 8.000 cm, and a third charge +q is located at 11.00 cm. The magnitude of q is 1.450 μC. + 0 +9 5.000 -29 +9 10.00 x (cm) Assume that the positive direction is to the right, and use k = 8.988 x 10' N-m²/C2 for the Coulomb constant. What is the force Fx on the charge located at x = 8.000 cm? Fx = NWhat is the magnitude of the net force on the charge ?1 =+1.11×10−10? due to the charges ?2 =−1? and ?3 =−8?? What angle (acute) ? does the net force make with the x-axis?There are two point charges q1=(7.000x10^0) µC and q2=(-3.0000x10^0) µC. q1 is located at origin (0, 0). q2 is located at (4.00x10^0) m,(5.000x10^0) m). Now we place another point charge q3 = (1.0000x10^1) µC at ((4.00x10^0) m, 0), i.e. q3 is right underneath of q2. Please calculated the X-component of the electrostatic force on q3 . Give your answer in the unit of N with 3 sf. Note: Use the sign to represent the direction, for example -2.11x10^-4 means the force is on the negative x direction.
- In the figure, charge q 1 = 2.0 × 10-6 C is placed at the origin and charge q 2 = -4.3 × 10-6 C is placed on the x-axis, at x = -0.20 m. Where along the positive x-axis can a third charge Q = -8.3 µC be placed such that the resultant force on this third charge is zero?A charge Q is located at x = 0 and a charge 4Q is at x = 12.0 cm. The force on a charge of -7 µC is zero if that charge is placed at x = 4.0 cm and is 619 N in the positive x direction if placed at x = 8.0 cm. Determine the charge Q in µCThree charges are located on the corners of a right-angle triangle as in the figure. If a = 3,0 mm, b= 4.0 mm, Q-44 nCin the figure, what is the magnitude of the total electric force acting on the charge Q located at 4.0 mm from the origin on the x-axis? 2Q 3Q b= 4.0 mm Select one: OA 1.94 N OB. 11.62 N OC. 446 N Activate Widosat OD. 8.72 N a= 3.0 mm
- 00:59 1/10 A line of positive charge is formed into a semicircle of radius R = 25 cm, as shown in figure. The charge per unit length along the semicircle is described by the expression A = total charge on the semicircle is 10 µC. 9 do cos 0. The Find the value of constant Ao. 10 μC/m 8 µC/m 7.5 µC/m O 20 µC/m O 6.25 µC/m Paylaşmayı durdur Gizle I| itu.witwises.io, ekranınızı ve sesinizi paylaşıyor. W EXCALIBURA 0.01294 kg ball with a positive charge of 47.4 μC hangs from a light string right next to a large vertical metal plate (the metal plate is so large compared to the length of the string and ball consider it to be infinite in size). How much surface charge density must the plate have to repel the ball so that the string makes and angle of 5.03 degrees from the vertical. Give your answer to 3 significant figures and in units of nC/m/m (nanoCoulombs per meter squared: Blackboard has trouble with squred units). Type in the units right after your numerical answer.