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Important questions
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BM3352 Electric Circuit analysis
UNIT -11.Resistors in Series and Parallel, voltage and current division2. Nodal analysis, Mesh analysis**
Ohms Law, Kirchoff‘s Current Law, Kirchoff‘s voltage law may be 2 marks askedin this topic
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UNIT -2
1. (Thevenin's and Norton Theorems**)2.Maximum Power Transfer, Delta-Wye Conversion (RAre)
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UNIT -31.Instantaneous Power, Average Power, apparent Power and Power Factor, Complex Power problemns askedin this topic **
2. Phasor relationship for R, L, and C **Don't share as screenshot
UNIT-4
1.Transient response for RC,RLC,RL using laplace and it based sumsUNIT-51.mutual Inductance,Ideal transformer
2. Magnetically Coupled CircuitsDon't share as screenshot -Stuff sector
**Very important questions are bolded and may be asked based on this topic
PART-C
1.Compulsory Questions {a case study where the student will have to read and analyse the subject }mostly asked from unit 2, 5(OR) a situation given and you have to answer on your own
BM3352 Electric Circuit analysis
2. Nodal analysis, Mesh analysis**
Ohms Law, Kirchoff‘s Current Law, Kirchoff‘s voltage law may be 2 marks askedin this topic
Don't share as screenshot
UNIT -2
2.Maximum Power Transfer, Delta-Wye Conversion (RAre)
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2. Phasor relationship for R, L, and C **
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1.Transient response for RC,RLC,RL using laplace and it based sums
2. Magnetically Coupled Circuits
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**Very important questions are bolded and may be asked based on this topic
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*These questions are expected for the exams This may or may not be asked for exams All the best.... from admin Santhosh
Thanks for your love and support guys keep supporting and share let the Engineers know about Us and leave a comment below for better improvements If there is any doubt feel free to ask me I will clear if I can or-else I will say some solutions ..get me through WhatsApp for instant updates ~$tuff$£ctorSYllabuSUNIT I BASIC CIRCUITS ANALYSIS
Basic Components of electric Circuits, Charge, current, Voltage and Power, Voltage and Current
Sources, Ohms Law, Kirchoff‘s Laws, Mesh current and node voltage method of analysis for D.C and
A.C. circuits. The single Node – Pair Circuit, series and Parallel Connected Independent Sources,
Resistors in Series and Parallel, voltage and current division, Nodal analysis, Mesh analysis.UNIT II NETWORK THEOREM AND DUALITY
Useful Circuit Analysis techniques - Linearity and superposition, Thevenin and Norton Equivalent
Circuits, Maximum Power Transfer, application of Network theorems. Network reduction: voltage and
current division, source transformation, Delta-Wye Conversion. Duals, Dual circuits.
UNIT III SINUSOIDAL STEADY STATE ANALYSIS
Sinusoidal Steady – State analysis , Characteristics of Sinusoids, The Complex Forcing Function, The
Phasor, Phasor relationship for R, L, and C, impedance and Admittance, Nodal and Mesh Analysis,
Phasor Diagrams, AC Circuit Power Analysis, Instantaneous Power, Average Power, apparent Power
and Power Factor, Complex Power.
UNIT IV TRANSIENTS AND RESONANCE IN RLC CIRCUITS
Basic RL and RC Circuits, The Source- Free RL Circuit, The Source-Free RC Circuit, The Unit-Step
Function, Driven RL Circuits, Driven RC Circuits, RLC Circuits, Frequency Response, Parallel
Resonance, Series Resonance, Quality Factor.
UNIT V COUPLED CIRCUITS AND TOPOLOGY
Magnetically Coupled Circuits, mutual Inductance, the Linear Transformer, the Ideal Transformer
UNIT I BASIC CIRCUITS ANALYSIS
Basic Components of electric Circuits, Charge, current, Voltage and Power, Voltage and Current
Sources, Ohms Law, Kirchoff‘s Laws, Mesh current and node voltage method of analysis for D.C and
A.C. circuits. The single Node – Pair Circuit, series and Parallel Connected Independent Sources,
Resistors in Series and Parallel, voltage and current division, Nodal analysis, Mesh analysis.UNIT II NETWORK THEOREM AND DUALITY
Useful Circuit Analysis techniques - Linearity and superposition, Thevenin and Norton Equivalent
Circuits, Maximum Power Transfer, application of Network theorems. Network reduction: voltage and
current division, source transformation, Delta-Wye Conversion. Duals, Dual circuits.
UNIT III SINUSOIDAL STEADY STATE ANALYSIS
Sinusoidal Steady – State analysis , Characteristics of Sinusoids, The Complex Forcing Function, The
Phasor, Phasor relationship for R, L, and C, impedance and Admittance, Nodal and Mesh Analysis,
Phasor Diagrams, AC Circuit Power Analysis, Instantaneous Power, Average Power, apparent Power
and Power Factor, Complex Power.
UNIT IV TRANSIENTS AND RESONANCE IN RLC CIRCUITS
Basic RL and RC Circuits, The Source- Free RL Circuit, The Source-Free RC Circuit, The Unit-Step
Function, Driven RL Circuits, Driven RC Circuits, RLC Circuits, Frequency Response, Parallel
Resonance, Series Resonance, Quality Factor.
UNIT V COUPLED CIRCUITS AND TOPOLOGY
Magnetically Coupled Circuits, mutual Inductance, the Linear Transformer, the Ideal Transformer