A given system has the equipotential surfaces shown in the figure below. (a) (16) What are the magnitude and direction of the electric field at point P? (b) (4) What is the shortest distance one can move to undergo a change in potential of magnitude 6.00 V? Assume that the blue lines shown below are each straight, parallel and equally spaced. ykm) 8 5 4 3 8.00V 600V 400V 12.00 V T 2 3 4 5 G → x(em)
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- (a) What is the energy (in J) stored in the 18.0 µF capacitor of a heart defibrillator charged to 6.40 ✕ 103 V? J (b) Find the amount of stored charge (in mC). mCplease answerrrrr asap thank youuuFor problem 25 part b, calculate the potential at point P in volts using a value of Q2=-3.17 Q1 instead of the value in the stated problem. Answer in 5 sig figs!!
- An electric field pointing in the positive x direction has a magnitude that increases linearly with x as described by the functionEx = b x, where b = 5 N/C/m.Find the potential difference between thepoints on the x-axis at x = 1 m and x = 2 m.Answer in units of V.Let C, = Cs = 8.4 uF, C2 = C3 = CA= 4.2 µF, and the applied potential Vab = 220 V. (a) What is the equivalent capacitance of the network? (b) What is the charge at capacitor C2? C at C2 Cs C4 be Select one: O a (a) Cag = 53 UF, (b) Q2= 210 µc O b. (a) Cag = 2.5 UF, (b) Q2 = 370 pc O cla) Caq = 5.3 UF, (b) Q2 = 540 µC O d. (a) Cag = 9.5 UF, (b) Q2= 250 pc e. None of these is correctIn one of the classic nuclear physics experiments at the beginning of the 20th century, an alpha particle was accelerated towards a gold nucleus and its path was substantially deflected by the Coulomb interaction. If the initial kinetic energy of the doubly charged alpha nucleus was 5.10 MeV, how close to the gold nucleus (79 protons) could it come before being turned around?If the electric field is 12 V/m in the positive x-direction, what is the potential difference between the origin, (0, 0), and the point (3.0 m, 4.0 m)? Please Needs Complete typed solution with 100 % accuracy.Figure 2 shows four capacitors connected in the combination between point A and point B. Given C1 = 12 µF, C2 = 8 µF, C3 =4 µF and C4 = 6 µF. C2 Ci C3 A в Figure 2 If a potential difference of 20.0 V is connected through point A and point B, compute the (i) equivalent capacitance. (ii) total charge stored in the equivalent capacitor.Find the maximum potential difference between two parallel conducting plates separated by 0.5 cm of air, given the maximum sustainable electric field strength in air to be 3.0 x 106 V/m. Hint The maximum potential difference between them is Question Help: Message instructor Submit Question V.The electric field strength between two parallel conducting plates separated by 3.40 cm is 7.10 ✕ 104 V/m. (a) What is the potential difference between the plates (in kV)? kV (b) The plate with the lowest potential is taken to be at zero volts. What is the potential (in V) 1.90 cm from that plate (and 1.50 cm from the other)? V(a) What is the energy (in J) stored in the 40.0 µF capacitor of a heart defibrillator charged to 8.90 x 103 v? (b) Find the amount of stored charge (in mC). mcSEE MORE QUESTIONS