C1 C3 Voltage Source C5 C4 C2 Find the equivalent capacitance of the circuit above if: C1 = 10 µF C2 = 5 µF C3 = 9 µF C4 = 6 µF C5 = 8 µF Express in microFarad.
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- In the circuit below the voltage of the battery is 40 V. C1 = 20.0μF, C₂ = 5.0 μF, C3 = 30.0 μF, C₁ = 30.0 uF. Find the equivalent capacitance in microfarad. Find the voltage for the capacitor C₂. HH HH 30% T TE 1 ptsThree capacitors (with capacitances C, = 12 µF C2 = 20 µF and C, = 30 µF ) and power supply (U = 12 V) are connected in the circuit as shown in the diagram. !! C, C, C, Find the total capacitance of the capacitors part of circuitConsider the circuits shown below: a V = 102 V battery is connected to R, = 40 0, R2 = 15 N, R3 = 45 0, and R4 = 15 0. For the left-side circuit, what is the potential difference between points a and b? R, R, R1 R, ww ww. LAWM WW b R3 b R4 R3 R4 V V The potential difference, Vab = Units Select an answer For the right-side circuit, what is the current between points a and b? The current, lab= Units |Select an answer
- Of the circuit below, C1 = 9 nF, C2 = 7 nF, C3 = 9 nF, and V = 7 V. What is the equivalent capacitance? GIve your answer in nF.The capacitors C₁ = 42.5 µF and C₂ = 127.5 µF are connected to a 9-V battery as shown in the figure below. What is the equivalent capacitance of the circuit? C₁ HH S €₂ V HI The equivalent capacitance, Ceq = What is the charge in each capacitor? The charge in C₁, Q₁ = Units UC The charge in C₂, Q₂ = What is the energy stored in each capacitor? The energy in C₁, U₁ : = The energy in C₂, U₂ = Units HC Units mJ Units mJ Units UFA combination of series and parallel connections of capacitors is shown in the figure. The sizes of the capacitors are listed below.Randomized VariablesC1 = 1.73 μFC2 = 6.2 μFC3 = 10.6 μF Find the total capacitance of the combination of capacitors, in microfarads.
- Consider the circuit shown in the figure below. The four capacitors have capacitances C1=10µF, C2=1/µF, C3=14µF, C4=19µF and are connected to a battery of voltage V=37Volts. When all capacitors are fully charged, determine the voltage across C1. Express your answer in units of Volts using one decimal place. C2 C3 C1 VFour capacitors are arranged in the circuit shown in the figure. The capacitors have the values,C1=22.5 μF,C2=45.5 μF, ,C3=50.5 μF, and ,C4=40.5 μF, and the power supply is at voltage V=25.5 V. What is the equivalent capacitance of the circuit? equivalent capacitance: What is the charge on capacitor ?2?C2? charge on C2: What is the potential difference across capacitor C3? What is the potential energy stored in capacitor C4?For the given circuit, find the equivalent capacitance. C1 = 5µF , C2 = 4µF, C3 = 8µF and C4 = 8µF. Express your answer in units of uF with one decimal place. C2 C4 V
- Refer to the given circuit. C1 = 5 µF %3D C3 = 8 µF C2 = 4 µF C, = 6 µF C5 = 4 µF DURACELL VT = 12 V Solve for the total capacitance of the circuit. Select one: O a. 5.28 micro Farads O b. 6.64 micro Farads O c. 8.42 micro Farads O d. 5.92 micro FaradsA capacitor C = 5 µF, resistor R = 140 Q and a voltmeter are connected to a battery of Emf = 15 V as shown in the figure below. If the voltmeter is disconnected, what is the potential difference across the capacitor? R a C Fint Emf The potential difference, V, = Units Select an answer v. Then the voltmeter is connected to points a and b and used to measure the potential difference across the capacitor. What does the voltmeter read if its internal resistance is rint = 1 kN? The voltmeter readings, V2 = Units Select an answer v How can the accuracy of voltmeter be increased? What internal resistance would provide more accurate measurements? Please write your answer in the box below. pe here to search 3. 5 E KA capacitor discharges through a 220kN resistor and drops to its original voltage in 3 min. How many farads is the capacitor? V =VneRČ