5. Find the charge of a 1.0 m-long silver wire which electric field has a magnitude of 4.0 x 10° N/C at distance of 5 cm.
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2.5) Find the charge of a 1.0 m long silver wire which electric field has a magnitude of 4.0 x 103 N/C at distance of 5 cm.
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- A charge q₁ equal to 0.600 μC is at the origin, and a second charge 92 equal to 0.900 μC is on the x axis at 5.00 cm. 1) Find the force (magnitude and direction) that 0.600-μC charge exerts on 0.900-μC charge. Enter a positive value if the force acts in the +x direction and a negative value if the force acts in the - x direction. (Express your answer to three significant figures.) Submit N 2) Find the force (magnitude and direction) that 0.900-μC charge exerts on 0.600-μC charge. Enter a positive value if the force acts in the +x direction and a negative value if the force acts in the - x direction. (Express your answer to three significant figures.) NA metal wire 6.5 m long is carring a charge of 6.75 nC. What would be the electric field strength 10 cm away from the wire?A positive charge is being pushed by a 5.65 N/C field with a force of 65.32 N. What is the value of the charge (in C)?
- A positive charge is being pushed by a 9.48 N/C field with a force of 15.63 N. What is the value of the charge (in C)?An electric field of magnitude 5.25 ✕ 105 N/C points due west at a certain location. Find the magnitude and direction of the force on a −7.95 ?C charge at this location. magnitude N directionCharge is distributed uniformly along a long straight wire. The electric field 52 cm from the wire is measured to be 14,500 N/C. What is the linear charge density of the wire? The linear charge density, K = Units Select an answer v
- a) At what distance from a particle with a charge of 6.00 nC does the electric field of that charge have a magnitude of 4 N/C? The distance =A 0.4 g object is placed in a 449 N/C uniform electric field. Upon being released from rest, it moves 62 m in 1.8 s. Determine the object's acceleration & charge magnitude. Assume the acceleration is due to the E-field (i.e., ignore all other forces). a = Q =