For the following circuit, 1 k2 Vị 1 k2 V2 1 kQ ww 12 12 12 V 2 V 10 V 1. Write all equations for finding v1 and v2 with the aid of nodal analysis (you are not required to solve the equations). 2. Write all equations for finding i1, i2, and i3 with the aid of the mesh analysis (you are not required to solve the equations). 3. In order to find io, the superposition principle can be applied and io=io1+io2+io3 where io1, io2, and io3 are contributions due to voltage sources: 12 V, 10V, and 2V. Find io3. 4. In order to find io, Thevenin theorem can be applied to transform the original circuit to the following equivalent circuit. Find Rth and Vth. Rth Vth

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For the following circuit,
V1 1 k2
ww
1 k2
V2 1 k2
ww
1 k2_ 6
12 V
2 V
10 V
1. Write all equations for finding v1 and v2 with the aid of nodal analysis (you are not required to solve the equations).
2. Write all equations for finding i1, i2, and i3 with the aid of the mesh analysis (you are not required to solve the equations).
3. In order to find io, the superposition principle can be applied and io=io1+io2+io3 where io1, io2, and io3 are contributions due to
voltage sources: 12 V, 10V, and 2V. Find io3.
4. In order to find io, Thevenin theorem can be applied to transform the original circuit to the following equivalent circuit. Find Rth
and Vth.
Rth
Vth
Transcribed Image Text:For the following circuit, V1 1 k2 ww 1 k2 V2 1 k2 ww 1 k2_ 6 12 V 2 V 10 V 1. Write all equations for finding v1 and v2 with the aid of nodal analysis (you are not required to solve the equations). 2. Write all equations for finding i1, i2, and i3 with the aid of the mesh analysis (you are not required to solve the equations). 3. In order to find io, the superposition principle can be applied and io=io1+io2+io3 where io1, io2, and io3 are contributions due to voltage sources: 12 V, 10V, and 2V. Find io3. 4. In order to find io, Thevenin theorem can be applied to transform the original circuit to the following equivalent circuit. Find Rth and Vth. Rth Vth
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