Basic Electrical Engineering (BEE)
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V2 | Mesh Analysis Numerical 1 (Part 2)
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V3 | Mesh Analysis Numerical 1 (Part 3)
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V4 | Mesh Analysis Numerical 1 (Part 4)
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V5 | Mesh Analysis Numerical 1 (Part 5)
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V6 | Mesh Analysis Numerical 2 (Part 1)
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V7 | Mesh Analysis Numerical 2 (Part 2)
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V8 | Mesh Analysis Numerical 3 (Part 1)
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V9 | Mesh Analysis Numerical 3 (Part 2)
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V10 | Nodal Analysis Numerical 1 (Part 1)
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V11 | Nodal Analysis Numerical 1 (Part 2)
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V12 | Nodal Analysis Numerical 2 (Part 1)
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V13 | Nodal Analysis Numerical 2 (Part 2)
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V14 | Nodal Analysis Numerical 3 (Part 1)
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V15 | Nodal Analysis Numerical 3 (Part 2)
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V16 | Nodal Analysis Numerical 3 (Part 3)
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V17 | Nodal Analysis Numerical 4 (Part 1)
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V18 | Nodal Analysis Numerical 4 (Part 2)
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V19 | Nodal Analysis Numerical 5 (Part 1)
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V20 | Nodal Analysis Numerical 5 (Part 2)
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V21 | Nodal Analysis Numerical 5 (Part 3)
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V22 | Series Parallel Connection of Resistors Numerical 1
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V23 | Series Parallel Connection of Resistors Numerical 2
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V24 | Series Parallel Connection of Resistors Numerical 3
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V24 | Series Parallel Connection of Resistors Numerical 4
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V26 | Star Delta Transformation Numerical 3 (Part 1)
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V27 | Star Delta Transformation Numerical 3 (Part 2)
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V28 | Star Delta Transformation Numerical 4 (Part 1)
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V29 | Star Delta Transformation Numerical 4 (Part 2)
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V30 | Star Delta Transformation Numerical 5
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V31 | Supermesh Analysis Numerical 1 (Part 1)
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V32 | Supermesh Analysis Numerical 1 (Part 2)
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V33 | Supermesh Analysis Numerical 1 (Part 3)
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V34 | Supermesh Analysis Numerical 2 (Part 1)
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V35 | Supermesh Analysis Numerical 2 (Part 2)
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V36 | Supermesh Analysis Numerical 2 (Part 3)
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V37 | Supermesh Analysis Numerical 2 (Part 4)
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V38 | Supernode Analysis Numerical 1 (Part 1)
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V39 | Supernode Analysis Numerical 1 (Part 2)
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V40 | Supernode Analysis Numerical 2 (Part 1)
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V41 | Supernode Analysis Numerical 2 (Part 2)
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V42 | Supernode Analysis Numerical 2 (Part 3)
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V43 | Superposition Theorem Numerical 1 (Part 1)
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V44 | Superposition Theorem Numerical 1 (Part 2)
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V45 | Superposition Theorem Numerical 1 (Part 3)
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V46 | Superposition Theorem Numerical 2 (Part 1)
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V47 | Superposition Theorem Numerical 2 (Part 2)
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V48 | Superposition Theorem Numerical 2 (Part 3)
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V49 | Superposition Theorem Numerical 3 (Part 1)
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V50 | Superposition Theorem Numerical 3 (Part 2)
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V51 | Superposition Theorem Numerical 3 (Part 3)
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V52 | Thevenin's Theorem Numerical 1 (Part 1)
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V53 | Thevenin's Theorem Numerical 1 (Part 2)
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V54 | Thevenin's Theorem Numerical 1 (Part 3)
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V55 | Thevenin's Theorem Numerical 1 (Part 4)
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V59 | Find the current through 8/2 resistance Thevenin's Theorem (Part 1)
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V60 | Find the current through 8/2 resistance Thevenin's Theorem (Part 2)
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V61 | Find the current through 1/2 resistance using Mesh Analysis
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V62 | For the given circuit find the Norton"s equivalent points A & B
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V63 | Convert the star circuit into its equivalent delta circuit
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V64 | Using source transformation find the current flowing through the 8/2 resistance
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V65 | Find the value of current flowing through 5/2 resistance using superposition Theorem (Part 1)
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V66 | Find the value of current flowing through 5/2 resistance using superposition Theorem (Part 2)
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V67 | Find the value of current flowing through 5/2 resistance using superposition Theorem (Part 3)
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V68 | Convert the given circuit into single current source in parallel with single resistance A & B.
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Vid_70_Dec 14 1b_(Part_2)
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V71 | Find the current through 4/2 resistance using Nodals Analysis.
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V72 | Using the source transformation, find the current flowing through the 10/2 resistance(Part 1)
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V73 | Using the source transformation, find the current flowing through the 10/2 resistance(Part 2)
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V74 | find the value of R1 for max. power transfer & calculate the max power absorbed by R1 (Part 1)
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V75 | find the value of R1 for max. power transfer & calculate the max power absorbed by R1 (Part 2)
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V76 | find the value of R1 for max. power transfer & calculate the max power absorbed by R1 (Part 3)
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v77 | Find the value of R1 for max. power transfer & calculate the max power absorbed by R1 (Part 4)
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V78 | Determine the potential difference VAB for the given network (Part 1)
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V79 | Determine the potential difference VAB for the given network (Part 2)
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V80 | Find the current through 4/2 resistance for the given circuit using Mesh analysis (Part 1)
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V81 | By mesh analysis find the current through 4/2 resistance for the given circuit (Part 2)
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V82 | By superposition theorem, find current through 30/2 resistance (Part 1)
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V83 | By superposition theorem, find current through 30/2 resistance (Part 2)
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V84 | By superposition theorem, find current through 30/2 resistance (Part 3)
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V85 | Find R for maximum power transferred to it and also find maximum power (Part 1)
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V86 | Find R for maximum power transferred to it and also find maximum power (Part 2)
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V87 | Find equivalent resistance across terminals A & B of network shown
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