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- Figure A E 1000 V/m 7.0 cm B. Part B What is the potential difference between A and B? Express your answer in volts. VA-VB = Submit Provide Feedback for Part for Pan do for Part redo fo Gert B Request Answer Doomoon or Part B keyboard shortcuts for Part B help for Part B VCalculate the magnitude of the potential difference between points a and b in the figure if R₁=2.262, R₂=4.46£,and R3=10.02Q. 12.0 V R₁ R₂ 4.00 V www R3part b need help
- 37. A particle (mass m, charge +q) enters at an angle a and with the speed vo a plate capacitor. The voltage U is applied between the two plates (distance d from each other). Using the given parameters, give the formula for the distance of flight L of the particle inside the capacitor. LAttached question.A parallel-plate capacitor has a plate separation of 1.5 mm and is charged to 900 V. 1) If an electron leaves the negative plate, starting from rest, how fast is it going when it hits the positive plate? (Express your answer to two significant figures.) ×10¹ km/s
- An electron is accelerated from rest through a potential difference of 3.00 kV. What is its final velocity? The mass of an electron is 9.109×10- 31 kg. a. 7.26x105 m/s b. 1.03×106 m/s c. 22.97x106 m/s d. 32.48×106 m/sWhat is the magnitude, in volts, of the maximum potential difference between two parallel conducting plates separated by 0.51 cm of air?You measure the voltage across two parallel capacitors to be 38 V. If they have a separation distance 0f 3.5 mm, what is the strength of the electric field in N/C? a. 1.09 x 10^4 N/C b. 1.33 x 10^4 N/C c. 9.21 x 10^-5 N/C d. 722 N/C e. None of the above
- How do I rearrange this equation so that I am solving for t?QUESTION 4 An electron is released from rest at the negative plate of a parallel plate capacitor and accelerates to the positive plate. The plates are separated by a distance of 1.39 cm, and the electric field within the capacitor has a magnitude of 1743307 V/m. What is the kinetic energy of the electron just as it reaches the positive plate? (Give your answer in 2 d.p. with scientific notation(i.e. 1.23e-12)} 1 Electric field Electron F + + + + + + + + + +What speed must the proton have in the velocity selector diagrammed below to make it through the capacitor plates undeflected? a. 1.24 x 105 m/s b. 1.83 x 105 m/s c. 7.53 x 104 m/s d. 2.22 x 106 m/s e. 2.50 x 104 m/s