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- (#565957-34) (Energy in Capacitor} Consider a round parallel plate capacitor consisting of two circular metal plates of radius, R = 1.0 cm, separated by d = 150 µm of air. The capacitor is connected to a potential source, as shown in the figure below. F Image size: S M L MaxUCF PHY2054 Post Lab - Unit 04 Relating Field to Equipotential Lines Consider this field to be an electric field produced by a negatively charged sphere. Recall that an equipotential line consists of points that all have the same potential. So, when a charge moves along an equipotential line, it neither gains nor loses potential energy. Draw the equipotential line through point G, making sure it contains all 1. points on the page that have the same potential as G. Explain your reasoning. Draw the equipotential line through point H. 2. Censide lectric fold INIA PIN VICTORIAS ST or F A capacitor is a charge storage device whose capacitance is defined as the ratio of the amount of the potential difference (in volts) across its plates to the charge (in coulombs) on its plates.
- The volume enclosed by the plates of a parallel plate capacitor is given by the equation Volume = Ad. If one doubles the area, A, of the plates and reduces the plate separation, d, by a factor of two so that the volume remains the same, the capacitance will do which of the following? decrease by a factor of 4 O increase by a factor of 4 increase by a factor of 2 decrease by a factor of 2 O remain constantThe figure shows equipotential curves for 30.0 V, 10.0 V, and -10.0 V. A proton follows the path shown in the figure. A B 30.0 V 10.0 V -10.0 V If the proton's speed at point A is 68.0 km/s, what is its speed UB at point B? m/s UR = Question Source: Freedman College Physics 3e | Publisher: Ma MacBook AirFirst box choices are positve work, negative work, It cannot be determined without knowing the moving path, zero work. the second box is -50, -40, 30, -30, 50 (eV) and the third box pick from I-VI
- Explain why the work needed to move a charge Q through a potential difference AV is W = QAV, whereas the energy stored in a charged capacitor is U = 1/2 QAV. This answer has not been graded yet. Where does the 1/2 factor come from?answer c d eIf you want to store 35 J of energy in a capacitor charged to 24 V , how do you determine the required capacitance?