The figure shows a circuit section of four air-filled capacitors that is connected to a larger circuit. The graph below the section shows the electric potential V(x) as a function of position x along the lower part of the section, through capacitor 4. Similarly, the graph above the section shows the electric potential V(x) as a function of position x along the upper part of the section, through capacitors 1, 2, and 3. Capacitor 3 has a capacitance of 0.39 µF. What are the capacitances of (a) capacitor 1 and (b) capacitor 2? 12V 15 V

College Physics
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Chapter1: Units, Trigonometry. And Vectors
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The figure shows a circuit section of four air-filled capacitors that is connected to a larger circuit. The graph below the section shows
the electric potential V(x) as a function of position x along the lower part of the section, through capacitor 4. Similarly, the graph above
the section shows the electric potential V(x) as a function of position x along the upper part of the section, through capacitors 1, 2, and
3. Capacitor 3 has a capacitance of 0.39 µF. What are the capacitances of (a) capacitor 1 and (b) capacitor 2?
(a) Number i
(b) Number
V (V)
2
Units
Units
V
12V
+
15V
¹8
Transcribed Image Text:The figure shows a circuit section of four air-filled capacitors that is connected to a larger circuit. The graph below the section shows the electric potential V(x) as a function of position x along the lower part of the section, through capacitor 4. Similarly, the graph above the section shows the electric potential V(x) as a function of position x along the upper part of the section, through capacitors 1, 2, and 3. Capacitor 3 has a capacitance of 0.39 µF. What are the capacitances of (a) capacitor 1 and (b) capacitor 2? (a) Number i (b) Number V (V) 2 Units Units V 12V + 15V ¹8
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