As seen in the image, three point charges are positioned on the x-axis. Find the force's magnitude on the -3.00 C charge. +2.00 μC +2.00 μC 0 -3.00 μC 40 -5.00 uc O-x (cm) 120
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- Solve the following problem by writing complete solutions with corresponding units and by using the constant value.The force on two positive charges of magnitude 7 μC and 16 μC is 135N. What is the distance the two charges in centimeters?Two tiny, spherical water drops, with identical charges of -8.95 × 1016 C, have a center-to-center separation of 1.42 cm. (a) What is the magnitude of the electrostatic force acting between them? (b) How many excess electrons are on each drop, giving it its charge imbalance? (a) Number i Units (b) Number i Units
- Point charges 91 distance 3.70 mm, forming an electric dipole. == 4.20 nC and q2 = + 4.20 nC are separated byThere 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.An electric field of magnitude 5.25 x 105 N/C points due south at a certain location. Find the magnitude and direction of the force on a-5.75 μC charge at this location. magnitude N direction ---Select--- ✓