ECE
TheveninNortonSuperposition2

# TheveninNortonSuperposition2 - It n equivalent circuits for...

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Unformatted text preview: @ It}, n equivalent circuits for the following Problem # 5 Find the Thevenin and Norto circuit. +o 9- ' will result in maximum power transfer to the load ? What value of RL .1..— V0 c, '1'" = 7"; '£ '43 (who) , V}? . a 2“ 2 yo?” f¢ - ’42:?” z é 647‘” Pd 775111qu M“ o ‘71" ~12?“ A» it =/6:‘_ ma? 5 ' If 6w 6/) W Engineer's Computation Pad N0. 937 811E OSTAEDTLEFF D‘TKZMc-J‘ Lu 3‘ Q 7;; NO£7ﬁJ £QUIU4Uﬁ-lf Cuba-th L IO [(9.] ff), ‘ 1,-5.9 g ’15» Lo .59— : 4647-“- '25 3511:1501-st ’66 '0 CB cg 271% g 3. E E 8 1.; 5n 5 2g § Z7” " z 2 5 2° ”° Problem # 7 (16 Points) uivalent circuit for R1, in the following 3 o .a. ._ Determine the Thevenin eq circuit. No. 937 811E ‘ 0 35mm Engineer's Computation Pad 7 "" Dzrzﬂmuz. m: Malaya \Joc. EQJaMktJZ Ctﬂcdrl five -—-9 Engineer's Computation Pad No. 937 8115 3mm? Lo Sl— ﬁdh‘t mum P00.) ‘L K» V ' Er» Problem # 4 Write a set of independent mesh-current equations for the following circuit. Put the equations in matrix form and solve for 11, [2, and 13. Use thereinesh currents to determine the Vaughn?“ the current source. Determine both 'tude and polarity. \ Problem # 5 Find the Norton equivalent circuit for the following circuit. E‘SHEETR 22ml" SHEETS ZDESHEETS «nn 2 2.‘ rl'? .Aiaanuu: 5(05 ___,._____-__. SHEET 5 53' 2‘?- '7'! 7-30 SHEETS; 4'14 200 SHEETS “ [I'm-fl} If“! 22 12-144. 4-1;"! ‘ l 1 0?- EL 2.. 2,143'74’39/050 ‘ Ne:qu Equ:u;~—m7 ? 250 LL35, SLLPEK-Poslﬂou ALL—ow: (is 7; CHLCAA—LAZi 7/;6 70.74:. RisPouszi 137 [4001.16 7% 2.71:5?“sz D»; 22 £w+ goalies: 4c7705 ﬂwui . 3O VOLT Soujloﬁ L027» “g 1051‘ 3 A’ 50v“: (4)171} log— SoLvE, P2 ‘ ’ ,2'7‘ 52 1,, as,“ Supmposﬂzw /p, 2 A I. : ZCD ' 5— [IM 2 AK? I, =,L Z = 0.1557 30 +5 ...
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