2. &=3.00 V, &= 1.00 V, R₁ = 4.00 £2, R2 = 2.00 2, R3 = 5.00 £2, and both batteries are ideal. What is the rate at which energy is dissipated in (a) R1, (b) R2, and (c) R3? What is the power of (d) battery 1 and (e) battery 2? E T E T R www Problem 2.
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- c, - 10uF C, - 22µF Cz - 10µF 12V FIGURE A .Refer to FIGURE A Three capacitors are connected as shown from Figure A. Compute for the total charge of the entire circuit. A. 288 μC В. 125.76 иС С. 104.30 ис D. 288 µC Select one: О а. А Оь. В O. C O d. DIn the figure below, assuming C=67.5µC and Vp-Va= 9.4V, find the total energy stored in the system of capacitors in the units of mJ. C а C C C |C C C Select one: O A. 1.49 О в. 5.96 OC. 5.96 O D. 2.98 O E. 2.392.5 + 0.5 4V 1H Find out reading of meters at steady state (T ha a) ll & charge stored on capacitor. 3µF 2V . A,→ 1 ampere A, → 0 wwwam 1H 14V A, → 1 ampere Charge on capacitor → 24µC
- In the figure below, assuming C=77.8µC and Vo-Va= 15V, find the total energy stored in the system of capacitors in the units of mJ. C а C C C C Select one: O A. 8.75 11 O B. 4.38 OC. 17.50 OD. 17.50 O E. 7.00348page%=D1 If a = 30 cm, b = 20 cm, q = +6 nC, and Q = -4.8 nC in the figure, what is the potential difference VA-V8 (in units of volts).? a a A Q Select one: OA. 110.16 OB. 14.40 OC. 129.60 OD. 1.99 OE. 141.482:03 P Flag question In the figure below, assuming C=76.2µC and Vb-Va= 8.3V, find the total energy stored in the system of capacitors in the units of mJ. C a C C C Select one: O A. 2.62 В. 5.25 O C. 1.31 O D. 2.10 O E. 5.25
- 1::00 A Imssb1.mutah.edu.jo/mod/q Find the total energy stored ( in units of mJ) in the group of capacitors shown below given that the potential difference Vab is equal to 49 V? 50 µF a 10 µF b 20 µF Select one: A. 8.70 В. 18.01 С. 36.02 D. 36.02 E. 4.20 + II1. Given the circuit shown below where V=20.0 V, R=210. 2, C₁ = 22.0 μF, and C₂ = 35.0 µF. R wwwwwww a. wwwwww R C₂ C₂ S Consider the case when no charges stored in all capacitors at t = 0. How much energy is stored in capacitor C₁ at t = 3.00 ms?In the figure below, assuming C=63.7µC and Vp-Va= 9.6V, find the total energy stored in the system of capacitors in the units of mJ. C а C C C |C C Select one: O A. 5.87 О в. 5.87 OC. 1.47 O D. 2.35 O E. 2.94
- If a = 30 cm, b = 20 cm, q = +3.8 nC, and Q = -7.8 nC in the figure, what is %D the potential difference VA -V8 (in units of volts).? a a A B Q Select one: A. 139.20 B. -46.15 C. -48.00 D. 151.96 E. 118.32Detemine the potential difference, V-Vs. in the cirauit segment shown below when/= 28 mA and Q 50 µC. 15KQ of 15V 2uF ion, a. -385.00 V O b.385.00 V O410.00V 0d-410.0OV e. 430.00 VFor most purposes, we store electrical energy in batteries. But there are drawbacks to batteries: They release their energy rather slowly and are very damaging environmentally. Capacitors would be much cleaner for the environment and can be quickly recharged. Unfortunately they don’t store much energy. 1)A new 1.5-V AAA battery has a “capacity” (not capacitance) of 1100 mA·h. What does this “capacity” actually represent? Express it in standard SI units. (Express your answer to three significant figures.) 2)How many joules of energy can be stored in the AAA battery?( (Express your answer to two significant figures.) 3)At a steady current of 400 mA, how many hours will the AAA battery last? (Express your answer to two significant figures.) 4)How much energy can be stored in a typical 10-μF capacitor charged to a potential of 1.5 V? (Express your answer to two significant figures.) 5)How does that compare to the energy stored in the AAA battery? (Express your answer to two significant…