I 96. Consider the circuit below. The capacitor has a capacitance of 10 mF. The switch is closed and after a long time the capacitor is fully charged. (a) What is the current through each resistor a long time after the switch is closed? (b) What is the voltage across each resistor a long time after the switch is closed? (c) What is the voltage across the capacitor a long time after the switch is closed? (d) What is the charge on the capacitor a long time after the switch is closed? (e) The switch is then opened. The capacitor discharges through the resistors. How long from the time before the current drops to one fifth of the initial value? V = 12 V R₁ = 20 R₁₂ = 30 R₂ = 42 C R₁₁ = 30
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- what is the total resistance? Assume that the current enters one coraer and the sides of a cube. exits at the diagonally opposite corner. B. A cell with internal resistance of 1.0 o is connected in series withn5.0 oresistor and 3.0 N. The voltage across the 5 n resistor is 5 V. (al What current flows through the circuit? (b) What is the voltage across the 3 a resistor? iel What is the terminal voltage of the cell? (d) What is the emf of the cell? 9. There are 100 graduations In the scale of an ammeter with internal resistance of 0.18 n and intended to measure a current up to 10 A. (a) What is the value of each graduation? (b) Convert this to an ammeter that can measure up to 100 A. (c) How will the value of the graduations change? 10. There are 30 graduations in the scale of a voltmeter with an internal ading of 30 V.connected con sist of five resis tors 7.a A circit as below. Determine the effective Tesistance in the circuit. RI RS- R2 R+ Ginen R, = sor, Rz=25Jr, R3= 30r, R¢=60r, Rs= 70r iD Wlhat is Hhe current is Hhe circuit iç the potential the resistors is 24 V? CICcross What is the potential that ccin be tapped across Rs? b.A circuit consist sisc capacitors connicted as below, detemine the effective capacitalnce. (3 G= SmF, G= Smf, G= 6mF, C4 = 6mF, Gaigg fo Cs= 8mF, C6 = 8 mF. What is the energy stored in the capacitors in ;circuit if the potential across %3D the the capacitors is 24V? C- lwo charges +3C and t 5C are placed 20Cm from in Yacuum- Wlhat magnitude of force will. their Centres they ebcert on each other, If Hhe sccond charge hes its polacity changed to negative (-sc). Inlliat would be the nature of the force ? Will there be a change in magnitude ? LPermitivity of free space a 8.8sx 10 -12A multi loop circuit has four resistors, all of 2.5 MΩ, and two 12 V batteries asshown. What are the currents thru the resistors in this circuit? Explicitly statetheir directions.
- R V Two uncharged capacitors and a resistor are connected as in the figure. If V = 5V,c = 2200 uF ve R = 1Okn, a. What is the time constant of the circuit? (1 b. What is the maximum charge on the capacitor? ( c. What is the maximum current? d. How long will it take to "fully charge" the capacitor from the supply?mam/sir how do u draw an electrical circuit, with a voltometer and a anmeter.A. Determine the equivalent resistance fir the circuit.keep vaules in ohms B. Determine hiw much current the battery produces. keep vaules in amps C. Determine the voltage across R12 and R3; call these values V12 and V3, keep the vaules in volts. then usr ohms law: V=i r, to fkmd the current across R12 and R3; call tjese 12 and 13, keep these vaules in amps. D. use ohms law to caculare the voltages across R1 and R2; call these vaules V1 and V2, keep results in volts. Requivatont,scris= Sihi=R1 tket . kequivaknt, papli=Zi Ri =RI K You circuit are given the following below. combination Z Rz R3 where V is a 12 V battery; R1 is 330ohms R2 is 180 ohms R3 is 270 ohms please write all work legaie thanks :)
- 0. An electric power station is producing 1.40 x 10 W of power that is to be sen o* town located 60.0 km away. Each of the two wires that comprise the trannion e resistance per kilometer of length of 400 x 10 Olpe/km. Find the power lont in beatin the wires if the voltage is stepped up from 2200 V to 20000 V using an ideal tranlorr. a) 1.21 x 10 Watts b) 2.32 x 10 Watts c) 1.12 x 10 Watts d) 5.59 x 10 Watts e) 1.16 x 10 Watts nhilo L4.00 yu which have their tratish u o m I. What is the total resistance ! 0 hol 2. What is the total current? 3. What is the voltage drop at the 2 onm resistor? 4. What Is the Power provided by the battery? 5. What Is the power Consumed by the n resistor? iliomit ort abnu bataFor the cirouit shown in the figure, the switch Sis initisly open and the capacitor voltage is 78 V. The switch is then dlosed at time =0. Aher closing the switch, what is the time (in s) wil the current in the resistor be 5 22 uF 2.8 MO El- ww
- ssignment6.pptx (65.9 KB) supply. For the circuit shown in Fig. 2.2 calculate (a) the circuit resistance, (b) the circuit current, (c) the p.d. developed across each resistor, and (d) the power dissipated by the complete circuit. R, R2 Ra 330 2 I 1.5 k2 470 2 V2 V3 Fin 22 bome ort sc delete nun loc + backspace 8 6 4. R ento K pause M B1) A circuit containing a linear resistor is powered by a 25 Vbattery and has a current of 5 Arunning through it. a) What is the resistance in the circuit? b) At what rate does the resistor dissipate energy? c) What would the current in the circuit be if the voltage were doubled?Q6. Figure shows resistors wired in a combination of series and paralle We can consider R, to be the resistance of wires leading to R2and R3 |(a) Find the equivalent resistance of the circuit. |(b) What is the potential drop V7across resistor R,? (c) Find the current Ithrough resistor R2. |(d) What power is dissipated by R2? 4= ? Vị = ? R1 = 1.00 N V = 12.0 V 12 = ? R2 = 6.00 2. R3 = 13.00 2 V3 = ? %3D