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- ll JO 100 4G 3:24 AM 1 59% A Imssb1.mutah.edu.jo Consider a series RC circuit as in Figure below for which R =4.9 M2, C=4.2 µF, and ɛ=30.0 V. Find the maximum charge ( in units of uC) the capacitor can have after a very long time of the switch S being closed. R Select one: O A. 163.80 B. 252.00 O C. 189.00 D. 126.00 O E. 63.00ETC CIMS R R, R. Rs In the above circuit, R1: 100, R2 = 40O, R3 = 302, R4 = 202, R5 = 602. The battery voltage is %3D %3D 12V. 1. The equivalent resistance of the circuit is = Ω 2. The source current is = 3. The voltage drop across R3 is = V 4.The voltage drop across R2 is = V 5. The power dissipated across R1 is = W Car 12VConsider a series RC circuit as in Figure below for which R =5.1 MQ, C=10.1 µF, and ɛ=30.0 V. Find the maximum charge ( in units of µC) the capacitor can have after a very long time of the switch S being closed. S R Select one: O A. 393.90 O B. 454.50 OC. 303.00 O D. 606.00 O E. 151.50
- R1 R R3 R5 In the above circuit, R1 102, R2 = 402, R3 = 302, R4 = 202, Rs = 602. The battery voltage is %3D %3D 12V. Ω 1. The equivalent resistance of the circuit is = 2. The source current is = 3. The voltage drop across R3 is = V 4.The voltage drop across R2 is = 5. The power dissipated across R1 is = W 12VWhen a R = 87.7 O resistor is connected across a 11.3 V battery, a current of 113.2 mA flows. What is the internal resistance of the battery and Terminal voltage of the battery ? A (1) E(MF) Rexternal (v external Rinternal (a) internal resistance of the battery(in 2) = (b) Terminal voltage of the battery in V = Batteryul JO 100 4G 3:25 AM C 60% A Imssb1.mutah.edu.jo Not yet answered Marked out of 6.25 P Flag question Consider a series RC circuit as in Figure below for which R =6.2 M2, C=4.2 µF, and ɛ=30.0 V. Find the time constant of the circuit in units of seconds. S R Select one: O A. 33.85 O B. 0.68 OC. 1.48 O D. 26.04 O E. 41.66
- R1 R, R3 R5 In the above circuit, R1 = 10N, R2 = 402, R3 = 300, R4 = 200, R5 = 602. The battery voltage is 12V. 1. The equivalent resistance of the circuit is = 2. The source current is = A 3. The voltage drop across R3 is = 4.The voltage drop across R2 is = V 5. The power dissipated across R1 is = W 12VConsider a series RC circuit as in Figure below for which R =6.5 MQ, C=4.3 µF, and ɛ=30.0 V. Find the maximum charge ( in units of uC) the capacitor can have after a very long time of the switch S being closed. R Select one: O A. 167.70 OB. 64.50 OC. 129.00 OD. 258.00 OE 193.50 Next page 108What differential equation corresponds to an RC circuit with a resistor of R = 10n and a ed capacitor of C 0.04 F connected in series with a voltage source of 12 V? out of a. 10i' + 25i = 12 b. 10q'+ 25q = 6 c. 10i' + 25i = 6 d. 10q' + 25q 0 e. None of the above O (c) O (d) (e) (b)
- For the following circuit R1=R2=60 ohms , R3 = 250 ohms , R4= 325 ohms , R5= 260 ohms, and Vtotal = 35V . What is the total current (It)is same acrOSs the circuit in series circuits. O Voltage O current O resistance O none 942f3eb89375d41..jpg P Type here to search hp 米 %24R1 R2 R3 R MW Rs In the above circuit, R1 = 10O, R2 = 402, R3 = 300, R4 = 200, Rs = 600. The battery voltage is 12V. %3D 1. The equivalent resistance of the circuit is = 2. The source current is = 3. The voltage drop across R3 is = 4.The voltage drop across R2 is = 5. The power dissipated across R1 is = 12V