Question: Exercise 24.2 - Enhanced - with Feedback Part A The plates of a parallel-plate capacitor are 3.22 mm apart, and each has an area of

 Exercise 24.2 - Enhanced - with Feedback Part A The platesof a parallel-plate capacitor are 3.22 mm apart, and each has anarea of 9.92 cm?. Each plate carries a charge of magnitude 4.65*10-C. The plates are in vacuum. What is the capacitance? Express youranswer with the appropriate units. HA C = Value Units Submit RequestAnswer Part B What is the potential difference between the plates? Expressyour answer with the appropriate units. HA V = Value Units SubmitRequest Answer Part C What is the magnitude of the electric field

Exercise 24.2 - Enhanced - with Feedback Part A The plates of a parallel-plate capacitor are 3.22 mm apart, and each has an area of 9.92 cm?. Each plate carries a charge of magnitude 4.65*10- C. The plates are in vacuum. What is the capacitance? Express your answer with the appropriate units. HA C = Value Units Submit Request Answer Part B What is the potential difference between the plates? Express your answer with the appropriate units. HA V = Value Units Submit Request Answer Part C What is the magnitude of the electric field between the plates? Express your answer with the appropriate units. HA HOE ? E= Value Units Submit Request AnswerExercise 24.17 - Enhanced - with Feedback Part A In (Figure 1), each capacitor has C = 4.40 /F and Vab = 34.0 V. Calculate the charge on capacitor C1. Express your answer in coulombs. ? Q1= Submit Request Answer Part B Calculate the potential difference across capacitor C1. Express your answer in volts. IVO AZo OF ? Submit Request Answer Figure Part C CI C2 Calculate the charge on capacitor C2 Express your answer in coulombs. C3 ? d Q2 = Submit Request Answer CAPart D Calculate the potential difference across capacitor C2. Express your answer in volts. DA O ? V = V Submit Request Answer Part E Calculate the charge on capacitor C3. Express your answer in coulombs. VO O ? Q3 = C Submit Request Answer Part F Calculate the potential difference across capacitor C3. Express your answer in volts. ? V3 = V Submit Request AnswerPart G Calculate the charge on capacitor CA. Express your answer in coulombs. AEd ? QA = C Submit Request Answer Part H Calculate the potential difference across capacitor CA. Express your answer in volts. VO O V= V Submit Request Answer Part I Calculate the potential difference between points a and d. Express your answer in volts. O ? Vad = V Submit Request AnswerExercise 24.28 - Enhanced - with Feedback Part A For the capacitor network shown in (Figure 1), the potential difference across ab is 58 V. Find the total charge stored in this network. Express your answer with the appropriate units. HA Q : Value Units Submit Request Answer Part B Find the charge on the 150 nF capacitor. Express your answer with the appropriate units. HA Q1 = Value Units Submit Request Answer Figure Part C Find the charge on the 120 nF capacitor. Express your answer with the appropriate units. 150 nF 120 nF -ob HA Q2 = Value Units Submit Request AnswerProblem 24.52 Part A In (Figure 1) C1 = 10.0 AF, C2 = 6.00 /F, C3 = 4.00 /F, and C4 = 4.00 /F. The capacitor network is connected to an applied potential difference Vat- After the charges on the capacitors have reached their final values, the voltage across C3 is 40.0 V. What is the voltage across C1? Express your answer with the appropriate units. HA V= Value Units Submit Request Answer Part B What is the voltage across C2? Express your answer with the appropriate units. HA ? V2 = Value Units Submit Request Answer igure Part C CI C2 HH What is the voltage across CA? Express your answer with the appropriate units. C3 HA ? V= Value Units b Submit Request Answer CAExercise 25.19 Part A In household wiring, copper wire 2.05 mm diameter is often used. Find the resistance of a piece of copper wire of length 26.0 m. Express your answer with the appropriate units. HA ? R= Value Units Submit Request AnswerExercise 25.44 Part A A battery has emf & and internal resistance r = 1.50 02. A 14.0 $ resistor is connected to the battery, and the resistor consumes electrical power at a rate of 96.0 J/s. What is the emf of the battery? Express your answer with the appropriate units. HA O ? E = Value Units Submit Request Answer Provide Feedback

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