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le battery at +1.5 V, increase the plate area to 400 mm? while keeping the plate separation of 6 mm. What are the values of
le battery at +1.5 V, increase the plate area to 400 mm? while keeping the plate separation of 6 mm. What are the values of capacitance, top plate charge and stored energy and measured voltage between the plates (you may have to reposition the voltage probes)? a. 0.30 pF, 0.44 pC, 0.33 pJ, and 1.5 V. b. 0.59 pF, 0.44 pC, 0.66 pJ, and 1.5 V. c. 0.59 pF, 0.89 pC, 0.66 pJ, and 1.5 V. d. 0.30 pF, 0.89 PC, 0.33 pJ, and 1.5 V. 15. With the battery at +1.5 V, decrease the plate area to 100 mm while keeping the plate separation of 6 mm. What are the values of capacitance, top plate charge and stored energy and measured voltage between the plates (you may have to reposition the voltage probes)? a. 0.30 pF, 0.44 pC, 0.33 pJ, and 1.5 V. b. 0.30 pF, 0.44 pC, 0.66 pJ, and 1.5 V. c. 0.15 pF, 0.22 pC, 0.33 pJ, and 1.5 V. d. 0.15 pF, 0.22 pC, 0.17 pJ, and 1.5 V. 16. With the battery at +1.5 V, and plate area set to 200 mm, increase the plate separation distance to 10 mm. What are the values of capacitance, top plate charge and stored energy and measured voltage between the plates (you may have to reposition the voltage probes)? a. 0.30 pF, 0.44 pC, 0.33 pJ, and 1.5 V. b. 0.18 pF, 0.27 pC, 0.20 pJ, and 1.5 V. c. 0.59 pF, 0.89 pC, 0.66 pJ, and 1.5 V. d. 0.18 pF, 0.89 pC, 0.20 pJ, and 1.5 V.of 8 the message: there is a polarity to a change in voltage (or potential), and in practice, when you use a voltmeter and obtain a negative voltage, it just means you should exchange the placement of the probes to obtain a positive reading. With the battery set at +1.5 V, the top plate is positively charged and the bottom plate is negatively charged, and you observe the direction of the electric field lines going from higher or more positive potential to lower or more negative potential. For the rest of the problems, place the red voltage probe on the top plate and the black voltage probe on the bottom plate. 11. With the battery at +1.5 V, plate area of 200 mm and the plate separation of 6 mm, what is the capacitance of the capacitor? a. 0 pF b. 0.30 pF c. Not enough information provided to answer the question. 12. With the batter at +1.5 V, plate area of 200 mm and the plate separation of 6 mm, what is the charge on the top plate of the capacitor? a. 0 pC b. 0.44 pC c. Not enough information provided to answer the question.12. With the batter at +1.5 V, plate area of 200 mm and the plate separation of 6 mm, what is the charge on the top plate of the capacitor? a. 0 pC b. 0.44 pC c. Not enough information provided to answer the question. 13. With the batter at +1.5 V, plate area of 200 mm and the plate separation of 6 mm, what is the value of the stored energy of the capacitor? a. 0 pJ b. 0.33 pJ c. Not enough information provided to answer the
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