Two stationary positive point charges, charge 1 of magnitude 3.80 nC and charge 2 of magnitude 1.90 nC , are separated by a distance of 50.0 cm . An electron is released from rest at the point midway between the two charges, and it moves along the line connecting the two charges. Part A What is the speed vfinal of the electron when it is 10.0 cm from charge 1? Express your answer in meters per second. • View Available Hint(s) ΑΣφ ? Vfinal = m/s 圓
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- 10 nC B. A -5 nC You wish to place a charge at A, which when released will move away from the two charges shown, and then determine the speed of the charge when it gets an infinite distance away from the two charges. The rectangle is 18.4 cm high and 21.9 cm wide. In order for the charge placed at A to move to infinity, you must use an electron a proton When released, approximately which direction will the charge initially accelerate? Image an analog clock face placed at A with 12 o'clock upward. toward ---Select--- v o'clock How fast will the charge be moving when it gets an infinite distance from the two charges? m/sNeeds Complete typed solution with 100 % accuracy.Part A Two positive point charges are 5.00 cm apart. If the electric potential energy is 75.0 UJ, what is the magnitude of the force between the two charges? Express your answer with the appropriate units. X•10n Value Units Submit Previous Answers Request Answer
- Part A An electron moving parallel to a uniform electric field increases its speed from 2.0x10' m/s to 4.0×10 m/s over a distance of 1.2 cm. What is the electric field strength? Express your answer with the appropriate units. HA E = Value Units Submit Request AnswerAuniform electric field of magnitude 3.8×10 N/C points in the positive z direction. Find the change in electric potential energy of a 7.5-uC charge as it moves from the origin to the point (0, 6.0m) Express your answer using one significant figure. Templates Symbols undo rego teset keyboard shortcuts Help AU = Submit: Requeet Answer • Part B Find the change in electric potential energy of a 7.5-uC charge as it moves from the origin to the point (6.0 m, 0). Express your answer using two significant figures TEmplates ymbols undo redo teset keyboard shortcuts Help AU = Submit Requeet Answer • Part C Find the change in electric potential energy of a 7.5-uC charge as it moves from the origin to the point (6.0 m, 6.0 m). Express your answer using two significant figures. Tempratesymbor undo rego Teset keyboard shortcuts help AU = J Submit RequeetAnswer• Part A Electrostatic cleaners remove small dust particles and pollen grains from air by first lonizing them, then towing the air between the plates of a paralel plate capacitor, paralel to the plates, where electric forces deposit charged particies on one of the electrodes. A typical polien grain has a mass of 5.0 x 10". the lonizer charges it with 650 extra electrons, and a fan moves the air at 4.5 m/s Ignore air resistance and gravity. How long does it take a pollen grain to pass behween 12 cm x 12 cm electrodes? Express your answer with the appropriate units. At Value Units Submit Previous Anawers Request Answer Part B What menmum electric feid strength is needed to deflect the grain by 3.0 mm before t leaves the eiectrodes? Express your answer with the appropriate units. E. Value Units
- Part A Two stationary positive point charges, charge 1 of magnitude 3.85 nC and charge 2 of magnitude 1.70 nC are separated by a distance of 39.0 cm An electron is released from rest at the point midway between the two charges, and it moves along the line connecting the two charges. What is the speed vfinal of the electron when it is 10.0 cm from charge 1? Express your answer in meters per second. > View Available Hint(s) ΑΣφ Ufinal m/sItem 9 A point charge with charge q1 = 2.80 μC is held stationary at the origin. A second point charge with charge q2 = -4.70 μC moves from the point (0.125 m, 0) to the point (0.250 m, 0.270 m ). Part A How much work is done by the electrostatic force on the moving point charge? Express your answer in joules. ► View Available Hint(s) W = 0.62558 Submit - ΑΣΦ Provide Feedback Previous Answers ? X Incorrect; Try Again; One attempt remaining JPart A How far must the point charges qi = 7.10 µC and q2 = -26.1 µC be separated for the electric potential energy of the system to be -166 J ? r = cm Submit Request Answer Provide Feedback Next >