Question

i1 8Ω 15 Ω 36 Ω 2 iy y 14 Ω 20 Ω ν1 24 Ω 10 Ω i2 40 Ω 35 Ω 12 Ω 16 Ω 0.4Vx 2013 Paul Hummel CC BY NC SAΑ(1 point) In the circuit below, i1 = -2 A, i2 = 8 A, and v1 = -2 V. Use nodal analysis to find vx and iy in the circuit below

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sol: -2A 36n www 15n aiy 14n 20n -2V 011 Vo OV I2 8A 242 S4on 0 2n 35n 6n civeurt above Vo-VE ea(i VA+V 36+ 12) VA 2-VG 48 SOAnalysis At node Ve Nodh) -iy node VA At +yV-o) VA-VA 14 56 y + 4VA +Va -7VA 56 56 iy VA t + INA O - -0ig VA= VA = no de Ve A-120 7 V -4VD =0 4VD +120 7VC e = 4 VD +120 node Vo At (-VE -Ve) 12 sub eq0 35 5 VA Vo-V 35 15 7V-7Ve t 840 +3V I05 sub es) 728 Ve +7 Ve - Vf -8V 280 -8Vx + 35VE -7 V =O 35VE KA8+At 7Vf +8V Ve 3S A node V O.4Vt 40 16 5Vf - 5 VE 32 V 2 Vf + 80 sub eq6-241+V- 96 V 0 + 9.6 Vl e - fiome q sub eq Vo-VE SU eq E-240] +8Vx sub ey 35 -( -216 VX 42 8VM 35 V -240) C 36V+8V 35 ) -(-2A48y70ig - 24y 264-iy Rot--Rish +A20 -2 22 21120 (i )0-26hig 1 $ XII -22 + 2)l 20 spsiy- -331y 21098 + 21098 36aiy 21098 21098

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