The electric field along the z-axis is given by È = azk where a = 11 N/m.C. Find the electric potential difference between z1=1.4m and z3=3.9m: V(z2) – V(z1) =? Express your answer in units of Volts and use one decimal place. Hint: de = îdx +ĵdy +kdz
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- P1. A plane parallel capacitor, whose plates are eadh of area A and separation d, is ch arged with a bat tery of E MF V. How much work is done if a large met allic slab with thickness d/3 is in serted in side the capacitor? The slab is parallel with the plates. The capacitor is connected to the battery while we move the metallic slab, so the potential of the capacitor is fixed. metal d/3 d ASuppose in the figure(Figure 1) that C1=C2=C3=40.9μFC1=C2=C3=40.9μF and C4=71.2μFC4=71.2μF. a.If the charge on C2C2 is Q2=20.7μCQ2=20.7μC, determine the charge on each of the other capacitors. Enter your answers numerically separated by commas. Determine the voltage across each capacitor. Enter your answers numerically separated by commas. Determine the voltage Vabacross the entire combination.a. Review the method of calculating the electrostatic potential for a conducting sphere. Now since the whole conductor is an equipotential surface, lind the ratio of charge on sphere I to the charge on sphere 2: Q1/Q2. b. Find the ratio of surface charge density on sphere 1 to sphere 2: 01/02. c. Find the ratio of electric field strength on sphere 1 to sphere 2: E1/E2.
- An electron is fired at a speed vi = 3.1 × 106 m/s and at an angle θi = 36.8° between two parallel conducting plates as shown in the figure. If s = 1.8 mm and the voltage difference between the plates is ΔV = 98.8 V, determine how close, w, the electron will get to the bottom plate. Put your answer in meters and include at 6 decimal places in your answer. Do not include units. The x-axis of the coordinate system is in the middle of the parallel plate capacitorBA parallel plate capacitor has metal plates, each of area 1.25 m2, separated by 1.80 mm. What charge (in µC) is stored in this capacitor if a voltage of 2.10 ✕ 103 V is applied to it? µC